1-anilino-8-naphthalenesulfonate has been researched along with Necrosis in 132 studies
1-anilino-8-naphthalenesulfonate: RN given refers to parent cpd
8-anilinonaphthalene-1-sulfonic acid : A naphthalenesulfonic acid that is naphthalene-1-sulfonic acid substituted by a phenylamino group at position 8.
Necrosis: The death of cells in an organ or tissue due to disease, injury or failure of the blood supply.
Excerpt | Relevance | Reference |
---|---|---|
"We investigated the usefulness of circulating miR-216a-5p and miR-217-5p that are pancreas-enriched micro RNAs (miRNAs) as biomarkers of acute pancreatic damage, and compared them with conventional pancreatic biomarkers in L-arginine-induced acute pancreatitis mouse model." | 8.31 | Evaluation of circulating miR-216a and miR-217 as biomarkers of pancreatic damage in the L-arginine-induced acute pancreatitis mouse model. ( Aoki, T; Kodama, T; Kurashige, S; Matsutani, N; Otagiri, Y; Togashi, Y, 2023) |
"To create acute pancreatitis condition experimentally in rats using cerulein, and to reveal histopathological effects in pancreatic tissue with erdosteine." | 7.85 | Effects of Erdosteine on Experimental Acute Pancreatitis Model. ( Gurleyik, E; Karapolat, B; Karapolat, S; Yasar, M, 2017) |
" This study tested the hypothesis that pyrrolidine dithiocarbamate (PDTC) attenuates experimental acute pancreatitis." | 7.72 | Pyrrolidine dithiocarbamate reduces the severity of cerulein-induced murine acute pancreatitis. ( Britti, D; Cuzzocrea, S; Di Paola, R; Genovese, T; Mazzon, E; Serraino, I; Siriwardena, A; Thiemerman, C; Virlos, I, 2003) |
"Increased serum levels of IL-8, tumour necrosis factor alpha (TNF-alpha), amylase and lipase were found in the chenodeoxycholic acid groups when compared with the saline, duct-ligated or control groups." | 7.70 | Graded experimental acute pancreatitis: monitoring of a renewed rabbit model focusing on the production of interleukin-8 (IL-8) and CD11b/CD18. ( Deleuran, B; Jakobsen, NO; Jensen, SL; Kristensen, JU; Larsen, CG; Lausten, SB; Osman, MO, 1999) |
"The effect of bradykinin on nitric oxide generation and eicosanoid production in the early stage of an experimental model of acute necrotizing pancreatitis induced by sodium taurocholate has been evaluated." | 7.69 | A bradykinin antagonist inhibited nitric oxide generation and thromboxane biosynthesis in acute pancreatitis. ( Closa, D; Gelpí, E; Hotter, G; Prats, N; Roselló-Catafau, J, 1995) |
"The severity of pancreatitis-associated lung injury was worsened after TPO treatment, but attenuated after Anti-TPO antibody treatment." | 5.38 | Involvement of thrombopoietin in acinar cell necrosis in L-arginine-induced acute pancreatitis in mice. ( Hu, G; Shen, J; Wan, R; Wang, F; Wang, X, 2012) |
" Dosing with IL-12 plus IL-18 induced 100% lethality in ob/ob mice; no lethality was observed in WT mice." | 5.35 | Interleukin-18, together with interleukin-12, induces severe acute pancreatitis in obese but not in nonobese leptin-deficient mice. ( Cabay, RJ; Dinarello, CA; Fantuzzi, G; Fayad, R; Gove, ME; Pini, M; Ponemone, V; Sennello, JA; Siegmund, B, 2008) |
"Melatonin was intraperitoneally administered before or/and after IR injury." | 5.33 | Melatonin reduces apoptosis and necrosis induced by ischemia/reperfusion injury of the pancreas. ( Briceño, J; Collado, JA; Cruz, A; Montilla, P; Muñoz-Casares, FC; Muñoz-Castañeda, JR; Muntané, J; Ortega, R; Padillo, FJ; Pera, C; Túnez, I, 2006) |
"Acute pancreatitis is an inflammatory disease characterized by pancreatic tissue edema, acinar cell necrosis, hemorrhage and inflammation of the damaged gland." | 5.32 | Differential effects of saralasin and ramiprilat, the inhibitors of renin-angiotensin system, on cerulein-induced acute pancreatitis. ( Che, CT; Ip, SP; Leung, PS; Tsang, SW; Wong, TP, 2003) |
"The management of acute pancreatitis has not changed appreciably throughout several decades." | 5.28 | Cholecystokinin augmentation of 'surgical' pancreatitis. Benefits of receptor blockade. ( Adrian, TE; Bilchik, AJ; Graham, SM; Modlin, IM; Sussman, J; Zucker, KA, 1989) |
"We investigated the usefulness of circulating miR-216a-5p and miR-217-5p that are pancreas-enriched micro RNAs (miRNAs) as biomarkers of acute pancreatic damage, and compared them with conventional pancreatic biomarkers in L-arginine-induced acute pancreatitis mouse model." | 4.31 | Evaluation of circulating miR-216a and miR-217 as biomarkers of pancreatic damage in the L-arginine-induced acute pancreatitis mouse model. ( Aoki, T; Kodama, T; Kurashige, S; Matsutani, N; Otagiri, Y; Togashi, Y, 2023) |
"To create acute pancreatitis condition experimentally in rats using cerulein, and to reveal histopathological effects in pancreatic tissue with erdosteine." | 3.85 | Effects of Erdosteine on Experimental Acute Pancreatitis Model. ( Gurleyik, E; Karapolat, B; Karapolat, S; Yasar, M, 2017) |
" This study tested the hypothesis that pyrrolidine dithiocarbamate (PDTC) attenuates experimental acute pancreatitis." | 3.72 | Pyrrolidine dithiocarbamate reduces the severity of cerulein-induced murine acute pancreatitis. ( Britti, D; Cuzzocrea, S; Di Paola, R; Genovese, T; Mazzon, E; Serraino, I; Siriwardena, A; Thiemerman, C; Virlos, I, 2003) |
"Increased serum levels of IL-8, tumour necrosis factor alpha (TNF-alpha), amylase and lipase were found in the chenodeoxycholic acid groups when compared with the saline, duct-ligated or control groups." | 3.70 | Graded experimental acute pancreatitis: monitoring of a renewed rabbit model focusing on the production of interleukin-8 (IL-8) and CD11b/CD18. ( Deleuran, B; Jakobsen, NO; Jensen, SL; Kristensen, JU; Larsen, CG; Lausten, SB; Osman, MO, 1999) |
" Pathohistological changes in pancreas, bile duct and liver as well as pathobiochemical parameters of pancreatitis (amylase and lipase activity), liver lesions (alkaline phosphatase activity and bilirubin) and fibrosis (hydroxyproline and hyaluronic acid) were measured 1 day and 1 to 24 weeks after DBTC- and DBTC/ethanol administration." | 3.70 | The influence of ethanol on long-term effects of dibutyltin dichloride (DBTC) in pancreas and liver of rats. ( Hennighausen, G; Jonas, L; Merkord, J; Nizze, H; Weber, H, 1998) |
" Excessive doses of pancreatic enzymes in combination with agents that increased intestinal permeability (oleic acid, reserpine) were associated with intestinal eosinophilia and necrosis of the jejunoileal muscle layer and inflammatory nodules in the liver, which increased with duration of insult." | 3.70 | The effect of intestinal permeability on pancreatic enzyme-induced enteropathy in the rat. ( Arango, V; Fusaro, A; Kimura, RE; Lloyd-Still, JD; Uhing, MR, 1998) |
"The effect of bradykinin on nitric oxide generation and eicosanoid production in the early stage of an experimental model of acute necrotizing pancreatitis induced by sodium taurocholate has been evaluated." | 3.69 | A bradykinin antagonist inhibited nitric oxide generation and thromboxane biosynthesis in acute pancreatitis. ( Closa, D; Gelpí, E; Hotter, G; Prats, N; Roselló-Catafau, J, 1995) |
"Intraperitoneal injection of lysine (400 mg/100 g body weight) in rats caused necrosis of pancreatic acinar cells with fat necrosis and a significant increase in serum amylase and lipase." | 3.67 | Pancreatic damage produced by injecting excess lysine in rats. ( Kishino, Y; Kitajima, S, 1985) |
"Severe acute pancreatitis mice model was induced by caerulein with lipopolysaccharide." | 1.72 | Free Fatty Acid Increases the Expression of NLRP3-Caspase1 in Adipose Tissue Macrophages in Obese Severe Acute Pancreatitis. ( Ding, Z; Guo, X; Sheng, L; Xu, T, 2022) |
"Hypertriglyceridemia has arisen as the third leading cause of acute pancreatitis." | 1.62 | The association of parameters of body composition and laboratory markers with the severity of hypertriglyceridemia-induced pancreatitis. ( Chen, L; Hu, D; Huang, Y; Man, Y; Pan, K; Yu, H; Zhang, Z, 2021) |
"We report a fatal case of acute pancreatitis in a 14-year-old adolescent girl who was brought unresponsive to the emergency room of a university hospital and died after unsuccessful resuscitation efforts." | 1.56 | Fatal Acute Pancreatitis in an Adolescent: A Case Report. ( Hade, AL; Zumwalt, RE, 2020) |
"However, the role of NQDI-1 in acute pancreatitis (AP) has not been reported." | 1.51 | NQDI-1 protects against acinar cell necrosis in three experimental mouse models of acute pancreatitis. ( Chen, W; Ding, Y; Gong, W; Li, W; Lu, G; Ma, N; Xiao, W; Xie, X; Xu, Z; Yin, L; Yuan, C; Zhu, Q, 2019) |
"Visceral fat necrosis has been associated with severe acute pancreatitis (SAP) for over 100 years; however, its pathogenesis and role in SAP outcomes are poorly understood." | 1.42 | Lipolysis of visceral adipocyte triglyceride by pancreatic lipases converts mild acute pancreatitis to severe pancreatitis independent of necrosis and inflammation. ( Cline, RA; DeLany, JP; Durgampudi, C; Navina, S; Noel, P; Patel, K; Singh, VP; Trivedi, RN, 2015) |
"This porcine model shows that IRE is feasible and safe in the pancreatic parenchyma." | 1.42 | Irreversible electroporation of the pancreas is feasible and safe in a porcine survival model. ( Fritz, S; Knapp, J; Longerich, T; Radeleff, BA; Sachsenmeier, M; Sommer, CM; Vollherbst, D; Wachter, MF; Werner, J, 2015) |
"Using the Atlanta criteria, acute pancreatitis is diagnosed when a patient presents with two of three findings, including abdominal pain suggestive of pancreatitis, serum amylase and/or lipase levels at least three times the normal level, and characteristic findings on imaging." | 1.40 | Acute pancreatitis. ( Quinlan, JD, 2014) |
"The severity of pancreatitis-associated lung injury was worsened after TPO treatment, but attenuated after Anti-TPO antibody treatment." | 1.38 | Involvement of thrombopoietin in acinar cell necrosis in L-arginine-induced acute pancreatitis in mice. ( Hu, G; Shen, J; Wan, R; Wang, F; Wang, X, 2012) |
"Pancreatic panniculitis is associated with pancreatic cancer and represents an important clue to the diagnosis." | 1.37 | Pancreatic panniculitis: a cutaneous presentation as an initial clue to the diagnosis of pancreatic cancer. ( Lueangarun, S; Mahakkanukrauh, B; Pattanaprichakul, P; Pongprasobchai, S; Sittinamsuwan, P, 2011) |
"Endosulfan can cause toxic effects on rabbit pancreases, but vitamin C has an ameliorative effect." | 1.36 | Pathological and immunohistochemical examinations of the pancreas in subacute endosulfan toxicity in rabbits. ( Mor, F; Ozmen, O; Sahinduran, S, 2010) |
" Dosing with IL-12 plus IL-18 induced 100% lethality in ob/ob mice; no lethality was observed in WT mice." | 1.35 | Interleukin-18, together with interleukin-12, induces severe acute pancreatitis in obese but not in nonobese leptin-deficient mice. ( Cabay, RJ; Dinarello, CA; Fantuzzi, G; Fayad, R; Gove, ME; Pini, M; Ponemone, V; Sennello, JA; Siegmund, B, 2008) |
"The rash was a result of necrotizing PP." | 1.35 | Necrotizing panniculitis: a skin condition associated with acinar cell carcinoma of the pancreas. ( Lakhani, A; Maas, L, 2008) |
"In severe acute pancreatitis (SAP), immunologic impairment in the early phase may be linked to subsequent infectious complications." | 1.34 | Serum immunosuppressive acidic protein levels in patients with severe acute pancreatitis. ( Ajiki, T; Fujino, Y; Fujita, T; Kuroda, Y; Matsumoto, I; Nakajima, T; Sawa, H; Shinzeki, M; Takeyama, Y; Ueda, T; Yasuda, T, 2007) |
"Melatonin was intraperitoneally administered before or/and after IR injury." | 1.33 | Melatonin reduces apoptosis and necrosis induced by ischemia/reperfusion injury of the pancreas. ( Briceño, J; Collado, JA; Cruz, A; Montilla, P; Muñoz-Casares, FC; Muñoz-Castañeda, JR; Muntané, J; Ortega, R; Padillo, FJ; Pera, C; Túnez, I, 2006) |
"Parenchymal necrosis is a major complication of pancreatitis; also, the severity of experimental pancreatitis correlates directly with necrosis and inversely with apoptosis." | 1.33 | Cell death in pancreatitis: caspases protect from necrotizing pancreatitis. ( Gukovskaya, AS; Gukovsky, I; Hong, P; Lugea, A; Mareninova, OA; Pandol, SJ; Sung, KF, 2006) |
"Pancreatic panniculitis is a rare complication occurring in 0." | 1.33 | [Pancreatic panniculitis with neuroendocrine pancreatic carcinoma]. ( Hasenöhrl, K; Meurer, M; Stein, A; Wozel, G, 2006) |
"Acute pancreatitis is an inflammatory disease characterized by pancreatic tissue edema, acinar cell necrosis, hemorrhage and inflammation of the damaged gland." | 1.32 | Differential effects of saralasin and ramiprilat, the inhibitors of renin-angiotensin system, on cerulein-induced acute pancreatitis. ( Che, CT; Ip, SP; Leung, PS; Tsang, SW; Wong, TP, 2003) |
"Due to its clinical appearance the panniculitis syndrome is most often mistaken for either erythema nodosum or rheumatoid arthritis." | 1.32 | Carcinoma of the pancreas with neuroendocrine differentiation and nodular panniculitis. ( Berkovic, D; Hallermann, C, 2003) |
"ERCP showed pancreatic duct stenosis, partial necrosis of the pancreatic body and peripancreatic necrosis with a pancreatico-pleural fistula." | 1.32 | [Pancreatico-pleural fistula in chronic pancreatitis with necrosis of the pancreatic tail]. ( Caca, K; Mössner, J; Neumann, S, 2004) |
"The development of experimental acute pancreatitis in rats was accompanied by intensification of lipid peroxidation, activation of superoxide dismutase and glutathione reductase, inhibition of glutathione transferase, and deceleration of aniline N-hydroxylation by cytochrome P-450 in the liver." | 1.31 | Free radical oxidation and activity of enzymes catalyzing biotransformation of xenobiotics in the liver of rats with experimental acute pancreatitis. ( Detyuchenko, VP; Milyakova, MN; Sarbaeva, NN; Shabanov, VI, 2001) |
" A new, highly selective, irreversible inhibitor of ICE was intraperitoneally applied at a dosage of 0." | 1.31 | Therapeutic application of caspase 1/interleukin-1beta-converting enzyme inhibitor decreases the death rate in severe acute experimental pancreatitis. ( Beger, HG; Mayer, JM; Möller, P; Paszkowski, AS; Rau, B, 2002) |
"Patients were included if they had acute pancreatitis severe enough to stop oral feeding for more than 48 hours." | 1.30 | Frequency and risk factors of recurrent pain during refeeding in patients with acute pancreatitis: a multivariate multicentre prospective study of 116 patients. ( Barthet, M; Bernades, P; Boruchowicz, A; de Calan, L; Delcenserie, R; Heresbach, D; Le Bodic, L; Lévy, P; Millat, B; Moreau, J; Pariente, EA; Sauvanet, A, 1997) |
"Ethane exhalation was significantly increased (p < 0." | 1.30 | In vivo assessment of lipid peroxidation in experimental edematous and necrotizing rat pancreatitis. ( Bernades, P; Guimont, MC; Lettéron, P; Lévy, P; Molas, G; Paye, F; Pessayre, D; Rozé, C, 1997) |
" Serum amylase was significantly reduced when IL-1ra was administered in either dosage before (p < 0." | 1.29 | Interleukin-1 receptor antagonist decreases severity of experimental acute pancreatitis. ( Fabri, PJ; Franz, M; Gower, WR; Messina, J; Norman, J; Riker, A; Rosemurgy, AS, 1995) |
"Pancreatitis was induced in rats by retrograde injection of 0." | 1.29 | Protective effect of AA-861 (5-lipoxygenase inhibitor) on experimental acute necrotizing pancreatitis in rats. ( Izumi, R; Kiriyama, M; Miyazaki, I, 1993) |
"One hundred ninety patients with acute pancreatitis (127 male, 63 female) were studied prospectively and subdivided into three etiological groups: (i) alcohol, (ii) gallstones, and (iii) other causes and idiopathic acute pancreatitis." | 1.29 | Influence of etiology on the course and outcome of acute pancreatitis. ( Beger, HG; Büchler, MW; Curti, G; Isenmann, R; Uhl, W; Vogel, R, 1996) |
"Amphotericin B was therefore supplemented with Exoderil orally, cyclosporine and steroids were maintained, and azathioprine was discontinued." | 1.28 | Cure of zygomycosis caused by a lipase-producing Rhizopus rhizopodiformis strain in a renal transplant patient. ( Björck, S; Edebo, L; Li, XG; Nordén, G; Persson, H; Svalander, C, 1991) |
"The management of acute pancreatitis has not changed appreciably throughout several decades." | 1.28 | Cholecystokinin augmentation of 'surgical' pancreatitis. Benefits of receptor blockade. ( Adrian, TE; Bilchik, AJ; Graham, SM; Modlin, IM; Sussman, J; Zucker, KA, 1989) |
"The occurrence of peripheral fat necrosis in exceptional cases of pancreatic disease is not well understood." | 1.27 | Pancreatitis with arthropathy and subcutaneous fat necrosis. Evidence for the pathogenicity of lipolytic enzymes. ( Andrews, BS; Askari, AD; Hoskins, LC; Johnson, AM; Neiderhiser, DH; Wilson, HA, 1983) |
"Pancreatitis was induced in the opossum by occluding the common bile duct above or below the entrance of the pancreatic duct." | 1.27 | The role of biliary obstruction in the pathogenesis of acute pancreatitis in the opossum. ( Coelho, JC; Moody, FG; Senninger, N; Van Buren, DH, 1986) |
"Although cutaneous fat necrosis has been associated with pancreatitis, it is unusual as the presenting complaint of this relatively common disease." | 1.27 | Fatal pancreatitis presenting with subcutaneous fat necrosis. Evidence that lipase and amylase alone do not induce lipocyte necrosis. ( Berman, B; Conteas, C; Hornbeck, L; Leong, S; Smith, B, 1987) |
"The pathologic finding of fat necrosis is not restricted to the peritoneal-retroperitoneal region, where a direct contact with these factors is the most likely cause." | 1.26 | Fat necrosis. ( Howard, JM; Lee, PC, 1979) |
"Disseminated fat necrosis can be produced by intraperitoneal injection of porcine pancreatic lipase." | 1.26 | [Studies of lipase-induced fat necrosis in rats (author's transl)]. ( Agricola, B; Himmelmann, GW; Schmitz-Moormann, P; von Wedel, R, 1978) |
"Fat necrosis was seen only when both lipase and colipase were used together." | 1.26 | Lipase and colipase in canine pancreatic juice as etiologic factors in fat necrosis. ( Appert, HE; Howard, JM; Lee, PC; Nakashima, Y, 1979) |
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 50 (37.88) | 18.7374 |
1990's | 25 (18.94) | 18.2507 |
2000's | 22 (16.67) | 29.6817 |
2010's | 26 (19.70) | 24.3611 |
2020's | 9 (6.82) | 2.80 |
Authors | Studies |
---|---|
Sofela, J | 1 |
Hunt, WTN | 1 |
Chaytor, R | 1 |
Stephens, M | 1 |
Sofela, A | 1 |
Harmse, D | 1 |
Chave, T | 1 |
Zhao, Y | 2 |
Nie, X | 1 |
Han, Z | 1 |
Liu, P | 1 |
Xu, H | 1 |
Huang, X | 1 |
Ren, Q | 1 |
Yılmaz, TU | 3 |
Eraldemir, FC | 3 |
Gürel, B | 3 |
Yavuz, Ö | 3 |
Acar, E | 3 |
İşken, T | 3 |
Yılmaz, H | 3 |
Utkan, NZ | 3 |
Kurashige, S | 1 |
Matsutani, N | 1 |
Aoki, T | 1 |
Kodama, T | 1 |
Otagiri, Y | 1 |
Togashi, Y | 1 |
Luo, P | 1 |
Zhang, BH | 1 |
Sun, JC | 1 |
Li, ZS | 1 |
Liu, XZ | 1 |
Yang, JQ | 1 |
Shen, ZA | 1 |
Xie, X | 1 |
Yuan, C | 1 |
Yin, L | 1 |
Zhu, Q | 1 |
Ma, N | 1 |
Chen, W | 1 |
Ding, Y | 1 |
Xiao, W | 2 |
Gong, W | 1 |
Lu, G | 1 |
Xu, Z | 1 |
Li, W | 1 |
Hade, AL | 1 |
Zumwalt, RE | 1 |
Chen, L | 1 |
Huang, Y | 1 |
Yu, H | 1 |
Pan, K | 1 |
Zhang, Z | 1 |
Man, Y | 1 |
Hu, D | 1 |
Kuscher, S | 1 |
Kiehl, T | 1 |
Kronberger, IE | 1 |
Moser, P | 1 |
Maier, H | 1 |
Maier, S | 1 |
Hautz, T | 1 |
Öfner, D | 1 |
Schneeberger, S | 1 |
Troppmair, J | 1 |
Xu, T | 1 |
Sheng, L | 1 |
Guo, X | 1 |
Ding, Z | 1 |
Karapolat, B | 1 |
Karapolat, S | 1 |
Gurleyik, E | 1 |
Yasar, M | 1 |
Song, G | 1 |
Ma, Z | 1 |
Liu, D | 1 |
Qian, D | 1 |
Zhou, J | 1 |
Meng, H | 1 |
Zhou, B | 2 |
Song, Z | 1 |
Prozorow-Krol, B | 1 |
Korolczuk, A | 1 |
Czechowska, G | 1 |
Slomka, M | 1 |
Madro, A | 1 |
Celinski, K | 1 |
Zhang, L | 1 |
Zhang, J | 1 |
Shea, K | 1 |
Xu, L | 1 |
Tobin, G | 1 |
Knapton, A | 1 |
Sharron, S | 1 |
Rouse, R | 1 |
Quinlan, JD | 1 |
Pérez-Plaza, A | 1 |
Montes-Torres, A | 1 |
Concha-Garzón, MJ | 1 |
Sánchez-Pérez, J | 1 |
Yasui, K | 1 |
Kawaguchi, T | 1 |
Shima, T | 1 |
Mitsuyoshi, H | 1 |
Seki, K | 1 |
Sendo, R | 1 |
Mizuno, M | 1 |
Itoh, Y | 1 |
Matsuda, F | 1 |
Okanoue, T | 1 |
Patel, K | 1 |
Trivedi, RN | 1 |
Durgampudi, C | 1 |
Noel, P | 1 |
Cline, RA | 1 |
DeLany, JP | 1 |
Navina, S | 1 |
Singh, VP | 1 |
Qiu, L | 1 |
Yin, G | 1 |
Cheng, L | 1 |
Fan, Y | 1 |
Yu, G | 1 |
Xing, M | 1 |
Jia, R | 1 |
Sun, R | 1 |
Ma, X | 1 |
Hu, G | 2 |
Wang, X | 2 |
Tang, M | 1 |
Fritz, S | 1 |
Sommer, CM | 1 |
Vollherbst, D | 1 |
Wachter, MF | 1 |
Longerich, T | 1 |
Sachsenmeier, M | 1 |
Knapp, J | 1 |
Radeleff, BA | 1 |
Werner, J | 1 |
Sagnelli, C | 1 |
Merli, M | 1 |
Uberti-Foppa, C | 1 |
Hasson, H | 1 |
Cirillo, G | 1 |
Grandone, A | 1 |
Salpietro, S | 1 |
Minichini, C | 1 |
Del Giudice, EM | 1 |
Lazzarin, A | 1 |
Sagnelli, E | 1 |
Coppola, N | 1 |
Calvano, J | 1 |
Edwards, G | 1 |
Hixson, C | 1 |
Burr, H | 1 |
Mangipudy, R | 1 |
Tirmenstein, M | 1 |
Sennello, JA | 1 |
Fayad, R | 1 |
Pini, M | 1 |
Gove, ME | 1 |
Ponemone, V | 1 |
Cabay, RJ | 1 |
Siegmund, B | 1 |
Dinarello, CA | 1 |
Fantuzzi, G | 1 |
Yilmaz, M | 1 |
Topsakal, S | 1 |
Herek, O | 1 |
Ozmen, O | 2 |
Sahinduran, S | 2 |
Buyukoglu, T | 1 |
Yonetci, N | 1 |
Mor, F | 1 |
PERRY, TT | 1 |
Catton, JA | 1 |
Lobo, DN | 1 |
Charpentier, KP | 1 |
Wolf, F | 1 |
Noble, L | 1 |
Winn, B | 1 |
Resnick, M | 1 |
Dupuy, DE | 1 |
Lugea, A | 2 |
Gong, J | 1 |
Nguyen, J | 1 |
Nieto, J | 1 |
French, SW | 1 |
Pandol, SJ | 2 |
Rockenfeller, P | 1 |
Ring, J | 1 |
Muschett, V | 1 |
Beranek, A | 1 |
Buettner, S | 1 |
Carmona-Gutierrez, D | 1 |
Eisenberg, T | 1 |
Khoury, C | 1 |
Rechberger, G | 1 |
Kohlwein, SD | 1 |
Kroemer, G | 1 |
Madeo, F | 1 |
Mazzoni, C | 1 |
Okada, T | 1 |
Yamaguchi, M | 1 |
Takahashi, T | 1 |
Izaki, K | 1 |
Uotani, K | 1 |
Sakamoto, N | 1 |
Sugimura, K | 1 |
Sugimoto, K | 1 |
Lueangarun, S | 1 |
Sittinamsuwan, P | 1 |
Mahakkanukrauh, B | 1 |
Pattanaprichakul, P | 1 |
Pongprasobchai, S | 1 |
José, A | 1 |
Sobrevals, L | 1 |
Ivorra, A | 1 |
Fillat, C | 1 |
Liu, Y | 1 |
Zhou, ZG | 1 |
Chen, KL | 1 |
Yang, L | 1 |
Yan, H | 1 |
Li, Y | 1 |
Shen, J | 2 |
Wan, R | 1 |
Wang, F | 1 |
Wetter, A | 1 |
Böcker, I | 1 |
Schlosser, T | 1 |
Saruc, M | 1 |
Nozawa, F | 1 |
Yalniz, M | 1 |
Itami, A | 1 |
Pour, PM | 1 |
Mantke, R | 2 |
Rocken, C | 2 |
Schubert, D | 2 |
Pross, M | 2 |
Sokolowski, A | 3 |
Halangk, W | 3 |
Lippert, H | 3 |
Schulz, HU | 2 |
Tsang, SW | 1 |
Ip, SP | 1 |
Wong, TP | 1 |
Che, CT | 1 |
Leung, PS | 1 |
IMMELMAN, EJ | 1 |
BANK, S | 1 |
KRIGE, H | 1 |
MARKS, IN | 1 |
Berkovic, D | 1 |
Hallermann, C | 1 |
Dlugosz, JW | 1 |
Nowak, K | 1 |
Laszewicz, W | 1 |
Andrzejewska, A | 1 |
Wroblewski, E | 1 |
Virlos, I | 1 |
Mazzon, E | 1 |
Serraino, I | 1 |
Di Paola, R | 1 |
Genovese, T | 1 |
Britti, D | 1 |
Thiemerman, C | 1 |
Siriwardena, A | 1 |
Cuzzocrea, S | 1 |
Tribl, B | 1 |
Filipp, D | 1 |
Bödeker, H | 1 |
Yu, P | 1 |
Hammerrmüller, I | 1 |
McKerlie, C | 1 |
Keim, V | 1 |
Sibbald, WJ | 1 |
Neumann, S | 1 |
Caca, K | 1 |
Mössner, J | 2 |
Glawe, C | 1 |
Emmrich, J | 1 |
Sparmann, G | 1 |
Vollmar, B | 1 |
Hasenöhrl, K | 1 |
Stein, A | 1 |
Wozel, G | 1 |
Meurer, M | 1 |
Kerekes, L | 1 |
Antal-Szalmás, P | 1 |
Dezso, B | 1 |
Sipka, S | 1 |
Furka, A | 1 |
Mikó, I | 1 |
Sápy, P | 1 |
Mareninova, OA | 1 |
Sung, KF | 1 |
Hong, P | 1 |
Gukovsky, I | 1 |
Gukovskaya, AS | 1 |
Muñoz-Casares, FC | 1 |
Padillo, FJ | 1 |
Briceño, J | 1 |
Collado, JA | 1 |
Muñoz-Castañeda, JR | 1 |
Ortega, R | 1 |
Cruz, A | 1 |
Túnez, I | 1 |
Montilla, P | 1 |
Pera, C | 1 |
Muntané, J | 1 |
Redlich, A | 1 |
Rickes, S | 1 |
Costa, SD | 1 |
Wolff, S | 1 |
Shinzeki, M | 1 |
Ueda, T | 1 |
Takeyama, Y | 1 |
Yasuda, T | 1 |
Sawa, H | 1 |
Nakajima, T | 1 |
Matsumoto, I | 1 |
Fujita, T | 1 |
Ajiki, T | 1 |
Fujino, Y | 1 |
Kuroda, Y | 1 |
Lakhani, A | 1 |
Maas, L | 1 |
Fleischer, GM | 1 |
Herden, P | 1 |
Spormann, H | 2 |
Wilson, HA | 1 |
Askari, AD | 1 |
Neiderhiser, DH | 1 |
Johnson, AM | 1 |
Andrews, BS | 1 |
Hoskins, LC | 1 |
Rao, KN | 1 |
Katyal, SL | 1 |
Iammarino, RM | 1 |
Lombardi, B | 1 |
Closa, D | 2 |
Roselló-Catafau, J | 2 |
Fernández-Cruz, L | 1 |
Gelpí, E | 2 |
Goffin, E | 1 |
Horsmans, Y | 1 |
Pirson, Y | 1 |
Cornu, C | 1 |
Geubel, A | 1 |
van Ypersele De Strihou, C | 1 |
Van Laethem, JL | 1 |
Marchant, A | 1 |
Delvaux, A | 1 |
Goldman, M | 1 |
Robberecht, P | 1 |
Velu, T | 1 |
Devière, J | 1 |
Norman, J | 1 |
Franz, M | 1 |
Messina, J | 1 |
Riker, A | 1 |
Fabri, PJ | 1 |
Rosemurgy, AS | 1 |
Gower, WR | 1 |
Hotter, G | 1 |
Prats, N | 1 |
Kiriyama, M | 1 |
Izumi, R | 1 |
Miyazaki, I | 1 |
Patil, S | 1 |
Kanase, A | 1 |
Varute, AT | 1 |
Drachenberg, C | 1 |
Klassen, D | 1 |
Bartlett, S | 1 |
Hoehn-Saric, E | 1 |
Schweitzer, E | 1 |
Johnson, L | 1 |
Weir, M | 1 |
Papadimitriou, J | 1 |
Hofbauer, B | 1 |
Friess, H | 1 |
Weber, A | 1 |
Baczako, K | 1 |
Kisling, P | 1 |
Schilling, M | 1 |
Uhl, W | 2 |
Dervenis, C | 1 |
Büchler, MW | 2 |
Isenmann, R | 1 |
Curti, G | 1 |
Vogel, R | 1 |
Beger, HG | 2 |
Lévy, P | 2 |
Heresbach, D | 1 |
Pariente, EA | 1 |
Boruchowicz, A | 1 |
Delcenserie, R | 1 |
Millat, B | 1 |
Moreau, J | 1 |
Le Bodic, L | 1 |
de Calan, L | 1 |
Barthet, M | 1 |
Sauvanet, A | 1 |
Bernades, P | 2 |
Lettéron, P | 1 |
Paye, F | 1 |
Molas, G | 1 |
Guimont, MC | 1 |
Pessayre, D | 1 |
Rozé, C | 1 |
Merkord, J | 2 |
Jonas, L | 2 |
Weber, H | 2 |
Kröning, G | 1 |
Nizze, H | 2 |
Hennighausen, G | 2 |
Lloyd-Still, JD | 1 |
Uhing, MR | 1 |
Arango, V | 1 |
Fusaro, A | 1 |
Kimura, RE | 1 |
Chen, CC | 1 |
Wang, SS | 1 |
Lee, FY | 1 |
Tsay, SH | 1 |
Wu, SL | 1 |
Lu, RH | 1 |
Chang, FY | 1 |
Lee, SD | 1 |
Calore, EE | 1 |
Sesso, A | 1 |
Puga, FR | 1 |
Cavaliere, MJ | 1 |
Calore, NM | 1 |
Weg, R | 1 |
Osman, MO | 1 |
Lausten, SB | 1 |
Jakobsen, NO | 1 |
Kristensen, JU | 1 |
Deleuran, B | 1 |
Larsen, CG | 1 |
Jensen, SL | 1 |
Pearson, EG | 1 |
Snyder, SP | 1 |
Lerch, MM | 1 |
Brandt-Nedelev, B | 1 |
Roth, W | 1 |
Ruthenbuerger, M | 1 |
Reinheckel, T | 1 |
Domschke, W | 1 |
Peters, C | 1 |
Deussing, J | 1 |
Shabanov, VI | 1 |
Sarbaeva, NN | 1 |
Milyakova, MN | 1 |
Detyuchenko, VP | 1 |
Paszkowski, AS | 1 |
Rau, B | 1 |
Mayer, JM | 1 |
Möller, P | 1 |
Lee, PC | 2 |
Howard, JM | 2 |
Schmitz-Moormann, P | 2 |
von Wedel, R | 1 |
Agricola, B | 1 |
Himmelmann, GW | 1 |
Nakashima, Y | 1 |
Appert, HE | 1 |
Abramovici, A | 1 |
Goren, G | 1 |
Gassner, S | 1 |
Urca, J | 1 |
Liban, E | 1 |
van Ooijen, B | 1 |
Tinga, CJ | 1 |
Kort, WJ | 1 |
Zijlstra, FJ | 1 |
Lamberts, SW | 1 |
Wilson, JH | 1 |
Chmiel, B | 1 |
Kuśmiderski, S | 1 |
Król, R | 1 |
Wu, N | 1 |
Xiong, Q | 1 |
Sheverdin, IuP | 1 |
Nordén, G | 1 |
Björck, S | 1 |
Persson, H | 1 |
Svalander, C | 1 |
Li, XG | 1 |
Edebo, L | 1 |
Georgadze, AK | 1 |
Buzenkov, SV | 1 |
Dzhikia, AA | 1 |
Karpov, VI | 1 |
van Klaveren, RJ | 1 |
de Mulder, PH | 1 |
Boerbooms, AM | 1 |
van de Kaa, CA | 1 |
van Haelst, UJ | 1 |
Wagener, DJ | 1 |
Hafkenscheid, JC | 1 |
Kitajima, S | 1 |
Kishino, Y | 1 |
Senninger, N | 1 |
Moody, FG | 2 |
Coelho, JC | 1 |
Van Buren, DH | 1 |
Berman, B | 1 |
Conteas, C | 1 |
Smith, B | 1 |
Leong, S | 1 |
Hornbeck, L | 1 |
Cavuoti, OP | 1 |
Martinez, G | 1 |
Lankisch, PG | 1 |
Pohl, U | 1 |
Otto, J | 1 |
Rahlf, G | 1 |
Modlin, IM | 1 |
Bilchik, AJ | 1 |
Zucker, KA | 1 |
Adrian, TE | 1 |
Sussman, J | 1 |
Graham, SM | 1 |
Díez Miralles, M | 1 |
Pardo Correcher, JM | 1 |
González Santos, J | 1 |
Graells Ferrer, ML | 1 |
Ferrando Marco, J | 1 |
Regalado Pareja, RI | 1 |
Medrano Heredia, J | 1 |
Letko, G | 1 |
Nagai, H | 1 |
Henrich, H | 1 |
Wünsch, PH | 1 |
Fischbach, W | 1 |
Aho, HJ | 1 |
Sternby, B | 1 |
Nevalainen, TJ | 1 |
Siesjö, BK | 1 |
Brégeon, C | 1 |
Sentenac, P | 1 |
Queinnec, JY | 1 |
Renier, JC | 1 |
Shust, IV | 1 |
Lokaĭ, AI | 1 |
Peter, G | 1 |
Fontaine, R | 1 |
Bollack, C | 1 |
Ceylan, I | 1 |
Mack, G | 1 |
Debray, C | 1 |
Hardouin, JP | 1 |
Leymarios, J | 1 |
Gouin, B | 1 |
Modigliani, R | 1 |
Marche, C | 1 |
Levine, M | 1 |
Danovitch, SH | 1 |
Richter, E | 1 |
Mohren, W | 1 |
Filin, VI | 1 |
Spasskaia, MG | 1 |
Zharenkova, VD | 1 |
Tang, OT | 1 |
Mir, A | 1 |
Delamore, IW | 1 |
Bornschein, W | 1 |
Weiss, HD | 1 |
Kramann, B | 1 |
Minnebaev, MM | 1 |
Erzin, MA | 1 |
Salikhov, IA | 1 |
Sharafislamov, FSh | 1 |
Mikusev, IuE | 1 |
Olbermann, M | 1 |
Prellwitz, W | 1 |
Recke, S | 1 |
Theve, NO | 2 |
Carlström, A | 1 |
Hallberg, D | 1 |
Doutre, LP | 2 |
Werle, E | 1 |
Trautschold, I | 1 |
Pĕrissat, J | 1 |
Bĕraud, C | 1 |
Hirigoyen, P | 1 |
Tamarelle, C | 1 |
Storck, G | 5 |
Kasper, H | 1 |
Kühn, HA | 1 |
Sommer, H | 1 |
Björntorp, P | 2 |
Schoenemann, VJ | 1 |
Hoferichter, J | 1 |
Myers, RS | 1 |
Hammond, WG | 1 |
Ketcham, AS | 1 |
Göran Hansson, C | 1 |
Bunao, RM | 1 |
Meyer, KK | 1 |
Papp, M | 1 |
Ormai, S | 1 |
Csáki, L | 1 |
Horváth, E | 1 |
Wanke, M | 1 |
el-Kateb, H | 1 |
3 reviews available for 1-anilino-8-naphthalenesulfonate and Necrosis
Article | Year |
---|---|
[Pathogenesis of acute pancreatitis--review of the literature].
Topics: Acute Disease; Animals; Bile Reflux; Disease Models, Animal; Enzyme Activation; Enzyme Precursors; G | 1992 |
[Role of the lymphatic system in pancreatic pathology].
Topics: Acute Disease; Amylases; Animals; Chronic Disease; Cytodiagnosis; Dogs; Humans; Lipase; Lymph; Lymph | 1972 |
Physiology, pharmacology and pathology of exocrine pancreas enzymes with special reference to proteolytic enzymes.
Topics: Amylases; Aprotinin; Cathepsins; Kallikreins; Kinins; Lipase; Models, Theoretical; Necrosis; Pancrea | 1966 |
129 other studies available for 1-anilino-8-naphthalenesulfonate and Necrosis
Article | Year |
---|---|
A rare case of lipase hypersecretion syndrome.
Topics: Aged; Arthritis; Eosinophilia; Humans; Lipase; Male; Necrosis; Neoplasm Invasiveness; Neoplasm Metas | 2022 |
The forkhead box O transcription factor regulates lipase and anti-microbial peptide expressions to promote lipid catabolism and improve innate immunity in the Eriocheir sinensis with hepatopancreatic necrosis disease.
Topics: Animals; Brachyura; Forkhead Transcription Factors; Immunity, Innate; Lipase; Lipopolysaccharides; N | 2022 |
Intraductal botulinum toxin injection suppressed the inflammation in experimental acute pancreatitis.
Topics: Acute Disease; Amylases; Animals; Botulinum Toxins; Glucagon; Inflammation; Insulins; Interleukin-6; | 2022 |
Intraductal botulinum toxin injection suppressed the inflammation in experimental acute pancreatitis.
Topics: Acute Disease; Amylases; Animals; Botulinum Toxins; Glucagon; Inflammation; Insulins; Interleukin-6; | 2022 |
Intraductal botulinum toxin injection suppressed the inflammation in experimental acute pancreatitis.
Topics: Acute Disease; Amylases; Animals; Botulinum Toxins; Glucagon; Inflammation; Insulins; Interleukin-6; | 2022 |
Intraductal botulinum toxin injection suppressed the inflammation in experimental acute pancreatitis.
Topics: Acute Disease; Amylases; Animals; Botulinum Toxins; Glucagon; Inflammation; Insulins; Interleukin-6; | 2022 |
Evaluation of circulating miR-216a and miR-217 as biomarkers of pancreatic damage in the L-arginine-induced acute pancreatitis mouse model.
Topics: Acute Disease; Amylases; Animals; Arginine; Biomarkers; Disease Models, Animal; Lipase; Mice; MicroR | 2023 |
[Study on the mechanism of early pancreatic exocrine function changes in severely scalded rats].
Topics: alpha-Amylases; Animals; Burns; Edema; Interleukin-6; Lipase; Male; Necrosis; Rats; Rats, Sprague-Da | 2023 |
NQDI-1 protects against acinar cell necrosis in three experimental mouse models of acute pancreatitis.
Topics: Acinar Cells; Amylases; Animals; Aporphines; Cell Survival; Disease Models, Animal; Down-Regulation; | 2019 |
Fatal Acute Pancreatitis in an Adolescent: A Case Report.
Topics: Acid-Base Imbalance; Adolescent; Blood Glucose; Calcium; Fatal Outcome; Female; Humans; Lipase; Necr | 2020 |
The association of parameters of body composition and laboratory markers with the severity of hypertriglyceridemia-induced pancreatitis.
Topics: Adult; Apolipoprotein A-I; Biomarkers; Body Composition; C-Reactive Protein; Female; Humans; Hypertr | 2021 |
Distal Pancreatic Resection with Splenectomy in the Rat: A Pancreatic Fistula Model to Investigate Postsurgical Damage?
Topics: Amylases; Animals; Inflammation; Ki-67 Antigen; Lipase; Necrosis; Pancreas; Pancreatic Fistula; Panc | 2021 |
Free Fatty Acid Increases the Expression of NLRP3-Caspase1 in Adipose Tissue Macrophages in Obese Severe Acute Pancreatitis.
Topics: Acute Disease; Adipose Tissue; Animals; Caspase 1; Ceruletide; Fatty Acids, Nonesterified; Inflammas | 2022 |
Effects of Erdosteine on Experimental Acute Pancreatitis Model.
Topics: Acute Disease; Amylases; Animals; Ceruletide; Disease Models, Animal; Edema; Expectorants; Lipase; M | 2017 |
Bone marrow-derived mesenchymal stem cells attenuate severe acute pancreatitis via regulation of microRNA-9 to inhibit necroptosis in rats.
Topics: Amylases; Animals; Apoptosis; Bone Marrow Cells; Cytokines; Gene Expression Regulation; Humans; Lipa | 2019 |
The effects of the adenosine A3 receptor agonist IB-MECA on sodium taurocholate-induced experimental acute pancreatitis.
Topics: Adenosine; Adenosine A3 Receptor Agonists; Animals; Anti-Inflammatory Agents, Non-Steroidal; Disease | 2013 |
Autophagy in pancreatic acinar cells in caerulein-treated mice: immunolocalization of related proteins and their potential as markers of pancreatitis.
Topics: Acinar Cells; Amylases; Animals; Autophagy; Biomarkers; Ceruletide; Immunohistochemistry; Lipase; Ma | 2014 |
Acute pancreatitis.
Topics: Acute Disease; Alcohol-Related Disorders; Amylases; Antibiotic Prophylaxis; Cholecystectomy; Enteral | 2014 |
[Pancreatic panniculitis post-endoscopic retrograde cholangiopancreatography].
Topics: Acute Disease; Adipocytes; Aged, 80 and over; Cholangiopancreatography, Endoscopic Retrograde; Chole | 2015 |
Effect of PNPLA3 rs738409 variant (I148 M) on hepatic steatosis, necroinflammation, and fibrosis in Japanese patients with chronic hepatitis C.
Topics: Adult; Aged; Cross-Sectional Studies; Fatty Liver; Female; Genetic Predisposition to Disease; Hepati | 2015 |
Lipolysis of visceral adipocyte triglyceride by pancreatic lipases converts mild acute pancreatitis to severe pancreatitis independent of necrosis and inflammation.
Topics: 3T3-L1 Cells; Adipocytes; Animals; Ceruletide; Enzyme Inhibitors; Inflammation; Intra-Abdominal Fat; | 2015 |
Astragaloside IV ameliorates acute pancreatitis in rats by inhibiting the activation of nuclear factor-κB.
Topics: Amylases; Animals; Antioxidants; Cytokines; Disease Models, Animal; Enzyme Activation; Inflammation | 2015 |
Irreversible electroporation of the pancreas is feasible and safe in a porcine survival model.
Topics: Ablation Techniques; Amylases; Animals; Biomarkers; Electroporation; Feasibility Studies; Female; Li | 2015 |
Impact of PNPLA3 variants on liver histology of 168 patients with HIV infection and chronic hepatitis C.
Topics: Adult; Amino Acid Substitution; Fatty Liver; Female; Genetic Predisposition to Disease; Genotype; He | 2016 |
Serum microRNAs-217 and -375 as biomarkers of acute pancreatic injury in rats.
Topics: Acetaminophen; Acinar Cells; Acute Disease; Amylases; Animals; Biomarkers; Ceruletide; Disease Model | 2016 |
Interleukin-18, together with interleukin-12, induces severe acute pancreatitis in obese but not in nonobese leptin-deficient mice.
Topics: Acute Disease; Acute-Phase Reaction; Adipose Tissue; Amylases; Animals; Calcium; Disease Susceptibil | 2008 |
Effects of etanercept on sodium taurocholate-induced acute pancreatitis in rats.
Topics: Amylases; Animals; Apoptosis; Biomarkers; Cholagogues and Choleretics; Disease Models, Animal; Etane | 2009 |
Pathological and immunohistochemical examinations of the pancreas in subacute endosulfan toxicity in rabbits.
Topics: Amylases; Animals; Ascorbic Acid; Blood Glucose; Caspase 3; Endosulfan; Glucagon-Secreting Cells; Im | 2010 |
Role of lymphatic vessels in the transmission of lipase in disseminated pancreatic fat necrosis.
Topics: Fat Necrosis; Humans; Lipase; Lymphatic System; Lymphatic Vessels; Necrosis; Pancreas; Pancreatic Di | 1947 |
Pizza, beer, amylase, lipase and the acute abdomen.
Topics: Abdomen, Acute; Adolescent; Alcoholic Beverages; Amylases; Biomarkers; Bulimia; Clinical Enzyme Test | 2010 |
Irreversible electroporation of the pancreas in swine: a pilot study.
Topics: Ablation Techniques; Amylases; Animals; Biomarkers; Electroporation; Feasibility Studies; Female; Li | 2010 |
Cholinergic mediation of alcohol-induced experimental pancreatitis.
Topics: Acetylcholinesterase; Amylases; Animals; Apoptosis; Autophagy; Caspase 3; Ceruletide; Cholinergic Ag | 2010 |
Fatty acids trigger mitochondrion-dependent necrosis.
Topics: Apoptosis; Fatty Acids, Nonesterified; HMGB1 Protein; Lipase; Mitochondria; Necrosis; Reactive Oxyge | 2010 |
Fat: Love it to death!
Topics: Apoptosis; Fatty Acids, Nonesterified; HMGB1 Protein; Lipase; Mitochondria; Necrosis; Reactive Oxyge | 2010 |
Is embolization of the pancreas safe? Pancreatic histological changes after selective transcatheter arterial embolization with N-butyl cyanoacrylate in a swine model.
Topics: Amylases; Angiography; Animals; Biomarkers; Celiac Artery; Cone-Beam Computed Tomography; Contrast M | 2012 |
Pancreatic panniculitis: a cutaneous presentation as an initial clue to the diagnosis of pancreatic cancer.
Topics: Aged, 80 and over; Amylases; Biopsy; Carcinoma, Pancreatic Ductal; Diagnosis, Differential; Fat Necr | 2011 |
Irreversible electroporation shows efficacy against pancreatic carcinoma without systemic toxicity in mouse models.
Topics: Alanine Transaminase; Amylases; Animals; Aspartate Aminotransferases; Biomarkers; Blood Glucose; Car | 2012 |
The ER chaperone GRP78 is associated with the severity of cerulein-induced pancreatic inflammation via regulating apoptosis of pancreatic acinar cells.
Topics: Acute Disease; Amylases; Animals; Apoptosis; Blotting, Western; Cell Line; Ceruletide; DNA-Binding P | 2012 |
Involvement of thrombopoietin in acinar cell necrosis in L-arginine-induced acute pancreatitis in mice.
Topics: Acinar Cells; Amylases; Animals; Antibodies; Apoptosis; Arginine; Immunohistochemistry; L-Lactate De | 2012 |
[Grey-Turner sign in necrotizing pancreatitis].
Topics: Cholangiopancreatography, Endoscopic Retrograde; Ecchymosis; Exudates and Transudates; Fascia; Fasci | 2012 |
Effects of porcine pancreatic enzymes on the pancreas of hamsters. Part 1: basic studies.
Topics: Amylases; Animals; Calcium Chloride; Cell Count; Cell Line; Cell Line, Tumor; Cricetinae; Dose-Respo | 2012 |
Enzymatic and histological alterations in the isolated perfused rat pancreas under conditions of oxidative stress.
Topics: Acute Disease; Amylases; Animals; Biopsy; Detergents; Disease Models, Animal; Hydrogen Peroxide; In | 2002 |
Differential effects of saralasin and ramiprilat, the inhibitors of renin-angiotensin system, on cerulein-induced acute pancreatitis.
Topics: Acute Disease; alpha-Amylases; Angiotensin Receptor Antagonists; Animals; Ceruletide; Disease Models | 2003 |
ROENTGENOLOGIC AND CLINICAL FEATURES OF INTRAMEDULLARY FAT NECROSIS IN BONES IN ACUTE AND CHRONIC PANCREATITIS.
Topics: Amylases; Black People; Bone Diseases; Child; Clinical Enzyme Tests; Fat Necrosis; Humans; Lipase; L | 1964 |
Carcinoma of the pancreas with neuroendocrine differentiation and nodular panniculitis.
Topics: Adipose Tissue; Aged; Biopsy; Carcinoma, Neuroendocrine; Diagnosis, Differential; Erythema Nodosum; | 2003 |
The effect of endothelin-1 receptor antagonists in acute experimental pancreatitis in the rats.
Topics: Animals; Benzhydryl Compounds; Chymotrypsinogen; Disease Models, Animal; Dose-Response Relationship, | 2003 |
Pyrrolidine dithiocarbamate reduces the severity of cerulein-induced murine acute pancreatitis.
Topics: Amylases; Animals; Antioxidants; Blotting, Western; Ceruletide; Edema; I-kappa B Proteins; Immunohis | 2003 |
Pseudomonas pneumonia-mediated sepsis induces expression of pancreatitis-associated protein-I in rat pancreas.
Topics: Acute-Phase Reaction; Amylases; Animals; Antigens, Neoplasm; Biomarkers, Tumor; Cytokines; Gene Expr | 2004 |
[Pancreatico-pleural fistula in chronic pancreatitis with necrosis of the pancreatic tail].
Topics: Aged; Amylases; Anti-Bacterial Agents; Catheterization; Chest Pain; Chronic Disease; Combined Modali | 2004 |
In vivo characterization of developing chronic pancreatitis in rats.
Topics: Amylases; Animals; Apoptosis; Bisbenzimidazole; Carboxylic Ester Hydrolases; Caspases; Chronic Disea | 2005 |
[Pancreatic panniculitis with neuroendocrine pancreatic carcinoma].
Topics: Aged; Biopsy; Humans; Lipase; Liver Neoplasms; Male; Necrosis; Neuroendocrine Tumors; Pancreatic Neo | 2006 |
[In vitro examination of the influence of lipase and amylase on dog's pancreas tissue incubated with endotoxins, phospholipase A2 or cytokines].
Topics: Amylases; Animals; Cytokines; Dogs; Endotoxins; Frozen Sections; In Vitro Techniques; Lipase; Necros | 2005 |
Cell death in pancreatitis: caspases protect from necrotizing pancreatitis.
Topics: Amylases; Animals; Apoptosis; Caspase 3; Caspase 7; Caspase 9; Caspases; Cell Death; Cell Membrane; | 2006 |
Melatonin reduces apoptosis and necrosis induced by ischemia/reperfusion injury of the pancreas.
Topics: Amylases; Animals; Apoptosis; Caspase 3; Caspases; Catalase; DNA Fragmentation; Glutathione; Glutath | 2006 |
Small bowel obstruction in pregnancy.
Topics: Abdominal Pain; Adult; Amylases; C-Reactive Protein; Cesarean Section; Female; Humans; Intestinal Ob | 2007 |
Serum immunosuppressive acidic protein levels in patients with severe acute pancreatitis.
Topics: Acute Disease; Adolescent; Adult; Aged; Aged, 80 and over; Biomarkers; Blood Proteins; Female; Hemat | 2007 |
Necrotizing panniculitis: a skin condition associated with acinar cell carcinoma of the pancreas.
Topics: Amylases; Carcinoma, Acinar Cell; Cellulitis; Diagnosis, Differential; Exanthema; Humans; Lipase; Ma | 2008 |
[Animal experiment studies on the role of ischemia in the pathogenesis of acute pancreatitis].
Topics: Acute Disease; alpha-Amylases; Animals; Dogs; Female; Hemorrhage; Ischemia; Lipase; Male; Microscopy | 1984 |
Pancreatitis with arthropathy and subcutaneous fat necrosis. Evidence for the pathogenicity of lipolytic enzymes.
Topics: Fat Necrosis; Fatty Acids; Humans; Joint Diseases; Lipase; Male; Middle Aged; Necrosis; Pancreatitis | 1983 |
Acute hemorrhagic pancreatic necrosis in mice. Alterations of pancreatic lipase activity, pancreas lipids, and serum lipoproteins.
Topics: Acute Disease; Animals; Choline Deficiency; Disease Models, Animal; Female; Hemorrhage; Lipase; Lipi | 1980 |
Prostaglandin D2, F2 alpha, E2, and E1 in early phase of experimental acute necrohemorrhagic pancreatitis in rats.
Topics: Acute Disease; Alprostadil; Amylases; Animals; Dinoprost; Dinoprostone; Hemorrhage; Indomethacin; Li | 1994 |
Acute necrotico-hemorrhagic pancreatitis after famciclovir prescription.
Topics: 2-Aminopurine; Acute Disease; Alanine Transaminase; Amylases; Antiviral Agents; Bilirubin; Cyclospor | 1995 |
Interleukin 10 prevents necrosis in murine experimental acute pancreatitis.
Topics: Acute Disease; Amylases; Animals; Base Sequence; Female; Interleukin-10; Lipase; Mice; Molecular Seq | 1995 |
Interleukin-1 receptor antagonist decreases severity of experimental acute pancreatitis.
Topics: Acute Disease; Amylases; Animals; Ceruletide; Edema; Interleukin 1 Receptor Antagonist Protein; Inte | 1995 |
A bradykinin antagonist inhibited nitric oxide generation and thromboxane biosynthesis in acute pancreatitis.
Topics: Acute Disease; Animals; Arginine; Bradykinin; Lipase; Male; Necrosis; NG-Nitroarginine Methyl Ester; | 1995 |
Protective effect of AA-861 (5-lipoxygenase inhibitor) on experimental acute necrotizing pancreatitis in rats.
Topics: Acute Disease; Amylases; Animals; Benzoquinones; Lipase; Lipoxygenase Inhibitors; Male; Necrosis; Pa | 1993 |
Effect of hepatoprotective ayurvedic drugs on lipolytic activities during CCl4 induced acute hepatic injury in albino rats.
Topics: Animals; Carbon Tetrachloride; Chemical and Drug Induced Liver Injury; India; Lipase; Liver; Liver D | 1993 |
Histologic grading of pancreas acute allograft rejection in percutaneous needle biopsies.
Topics: Amylases; Biomarkers; Biopsy, Needle; Graft Rejection; Humans; Inflammation; Lipase; Necrosis; Obser | 1996 |
Hyperlipaemia intensifies the course of acute oedematous and acute necrotising pancreatitis in the rat.
Topics: Acute Disease; Amylases; Animals; Cholesterol; Disease Models, Animal; Disease Progression; Edema; H | 1996 |
Influence of etiology on the course and outcome of acute pancreatitis.
Topics: Acute Disease; Adult; Aged; Aged, 80 and over; Alcoholism; Aspartate Aminotransferases; Cholelithias | 1996 |
Frequency and risk factors of recurrent pain during refeeding in patients with acute pancreatitis: a multivariate multicentre prospective study of 116 patients.
Topics: Acute Disease; Fasting; Female; Food; Humans; Lipase; Male; Middle Aged; Multivariate Analysis; Necr | 1997 |
In vivo assessment of lipid peroxidation in experimental edematous and necrotizing rat pancreatitis.
Topics: Acute Disease; Amylases; Animals; Ceruletide; Disease Models, Animal; Edema; Ethane; Lipase; Lipid P | 1997 |
Acute interstitial pancreatitis in rats induced by dibutyltin dichloride (DBTC): pathogenesis and natural course of lesions.
Topics: Acute Disease; alpha-Amylases; Animals; Bile Ducts; Fibrosis; Ligation; Lipase; Liver; Male; Microsc | 1997 |
The effect of intestinal permeability on pancreatic enzyme-induced enteropathy in the rat.
Topics: Animals; Cell Membrane Permeability; Eosinophilia; Intestinal Diseases; Intestines; Lipase; Liver; N | 1998 |
The influence of ethanol on long-term effects of dibutyltin dichloride (DBTC) in pancreas and liver of rats.
Topics: Administration, Oral; Amylases; Animals; Drug Synergism; Edema; Ethanol; Fibrosis; Hyaluronic Acid; | 1998 |
Prophylactic octreotide reduces the severity of histopathologic changes and hemodynamic shock in early taurodeoxycholate-induced experimental pancreatitis.
Topics: Acute Disease; Amylases; Animals; Blood Pressure; Heart Rate; Hemodynamics; Lipase; Male; Necrosis; | 1999 |
Sarcoplasmic lipase and non-specific esterase inhibition in myofibers of rats intoxicated with the organophosphate isofenphos.
Topics: Animals; Carboxylesterase; Carboxylic Ester Hydrolases; Cholinesterases; Diaphragm; Histocytochemist | 1999 |
Graded experimental acute pancreatitis: monitoring of a renewed rabbit model focusing on the production of interleukin-8 (IL-8) and CD11b/CD18.
Topics: Acute Disease; Amylases; Animals; Ascites; CD11 Antigens; CD18 Antigens; Chenodeoxycholic Acid; Chol | 1999 |
Pancreatic necrosis in New World camelids: 11 cases (1990-1998).
Topics: Amylases; Animals; Ascitic Fluid; Autopsy; Camelids, New World; gamma-Glutamyltransferase; Lipase; N | 2000 |
Role of cathepsin B in intracellular trypsinogen activation and the onset of acute pancreatitis.
Topics: Acute Disease; Amylases; Animals; Apoptosis; Cathepsin B; Ceruletide; Disease Models, Animal; Edema; | 2000 |
Free radical oxidation and activity of enzymes catalyzing biotransformation of xenobiotics in the liver of rats with experimental acute pancreatitis.
Topics: Acute Disease; Amylases; Animals; Biotransformation; Catalase; Catalysis; Enzyme Activation; Free Ra | 2001 |
Therapeutic application of caspase 1/interleukin-1beta-converting enzyme inhibitor decreases the death rate in severe acute experimental pancreatitis.
Topics: Acute Disease; Amylases; Animals; Caspase 1; Caspase Inhibitors; Data Interpretation, Statistical; E | 2002 |
[Enzymatic and histological alterations in the isolated perfused rat pancreas in the taurocholate and cerulein model of acute pancreatitis].
Topics: Acute Disease; Amylases; Animals; Ceruletide; Cholagogues and Choleretics; Detergents; Disease Model | 2001 |
Fat necrosis.
Topics: Acute Disease; Animals; Colipases; Fat Necrosis; Humans; Lipase; Necrosis; Pancreatic Juice; Pancrea | 1979 |
[Studies of lipase-induced fat necrosis in rats (author's transl)].
Topics: Adipose Tissue; Animals; Cell Membrane; Circadian Rhythm; Fat Necrosis; Leukocytes; Lipase; Male; Mi | 1978 |
Lipase and colipase in canine pancreatic juice as etiologic factors in fat necrosis.
Topics: Animals; Colipases; Dogs; Drug Synergism; Fat Necrosis; Female; Immune Sera; Injections, Intraperito | 1979 |
[Pathophysiological aspects of experimental fat necrosis and its relation to acute pancreatic necrosis].
Topics: Animals; Epinephrine; Fat Necrosis; Lipase; Models, Biological; Necrosis; Pancreas; Pancreatic Disea | 1976 |
Effects of long-acting somatostatin analog (SMS 201-995) on eicosanoid synthesis and survival in rats with acute necrotizing pancreatitis.
Topics: 6-Ketoprostaglandin F1 alpha; Acute Disease; Amylases; Animals; Dinoprostone; Eicosanoids; Lipase; M | 1992 |
[Determination of pancreatic blood flow at the early stage of acute haemorrhagic necrotizing pancreatitis induced by sodium taurocholate in rats].
Topics: Acute Disease; Amylases; Animals; Lipase; Necrosis; Pancreas; Pancreatitis; Rats; Rats, Inbred Strai | 1991 |
[Neuroendocrine aspects of the pathogenesis of fatty pancreonecrosis].
Topics: Enzyme Activation; Humans; Hyperinsulinism; Insulin; Lipase; Lipolysis; Necrosis; Pancreas; Pancreat | 1991 |
Cure of zygomycosis caused by a lipase-producing Rhizopus rhizopodiformis strain in a renal transplant patient.
Topics: Adult; Amphotericin B; Antifungal Agents; Humans; Kidney Transplantation; Lipase; Male; Microbial Se | 1991 |
[Features of diagnosis and treatment of fatty pancreatic necrosis].
Topics: Cholecystokinin; Clinical Enzyme Tests; Enkephalin, Leucine-2-Alanine; Humans; Lipase; Necrosis; Pan | 1991 |
Pancreatic carcinoma with polyarthritis, fat necrosis, and high serum lipase and trypsin activity.
Topics: Adenocarcinoma; Arthritis; Fat Necrosis; Humans; Lipase; Male; Middle Aged; Necrosis; Pancreatic Neo | 1990 |
Pancreatic damage produced by injecting excess lysine in rats.
Topics: Amylases; Animals; Body Weight; Injections, Intraperitoneal; Lipase; Lysine; Male; Microscopy, Elect | 1985 |
The role of biliary obstruction in the pathogenesis of acute pancreatitis in the opossum.
Topics: Acute Disease; Amylases; Animals; Bile Ducts; Bile Reflux; Calcium; Cholestasis; Female; Lipase; Mal | 1986 |
Fatal pancreatitis presenting with subcutaneous fat necrosis. Evidence that lipase and amylase alone do not induce lipocyte necrosis.
Topics: Acute Disease; Amylases; Fat Necrosis; Humans; In Vitro Techniques; Lipase; Male; Middle Aged; Necro | 1987 |
Role of pancreatic duct occlusion with prolamine (Ethibloc) in necrotizing pancreatitis.
Topics: Amylases; Animals; Bile Ducts; Diatrizoate; Drug Combinations; Embolization, Therapeutic; Fatty Acid | 1988 |
When should treatment of acute experimental pancreatitis be started? The early phase of bile-induced acute pancreatitis.
Topics: Acute Disease; Amylases; Animals; Disease Models, Animal; Lipase; Male; Necrosis; Pancreas; Pancreat | 1988 |
Cholecystokinin augmentation of 'surgical' pancreatitis. Benefits of receptor blockade.
Topics: Acute Disease; Amylases; Animals; Benzodiazepinones; Cholecystokinin; Devazepide; Female; Guinea Pig | 1989 |
[Biochemical and functional changes in experimental acute pancreatitis in the rat].
Topics: Acute Disease; Amylases; Animals; Body Fluids; Calcium; Creatinine; Duodenum; Female; Lipase; Male; | 1989 |
Experimental acute pancreatitis--a quantification of dynamics at enzymic and histomorphologic levels.
Topics: Acute Disease; Adipose Tissue; alpha-Amylases; Animals; Female; Lipase; Necrosis; Pancreas; Pancreat | 1989 |
Role of pancreatic enzymes and their substrates in autodigestion of the pancreas. In vitro studies with isolated rat pancreatic acini.
Topics: Acute Disease; Animals; Lipase; Male; Necrosis; Pancreas; Pancreatitis; Phospholipases A; Phospholip | 1989 |
Fat necrosis in human acute pancreatitis. An immunohistological study.
Topics: Adipose Tissue; Adult; Breast Diseases; Colipases; Female; Humans; Immunoenzyme Techniques; Lipase; | 1986 |
Calcium and ischemic brain damage.
Topics: Animals; Brain; Brain Ischemia; Calcium; Cell Membrane Permeability; Humans; Lipase; Necrosis; Nerve | 1986 |
[Pancreatic cytosteatonecrosis].
Topics: Adult; Arthritis; Bone and Bones; Bone Diseases; Fat Necrosis; Female; Humans; Lipase; Male; Middle | 1987 |
[Destructive and reparative processes in the liver following poisoning by toadstools].
Topics: Acid Phosphatase; Adenosine Triphosphatases; Alkaline Phosphatase; Animals; Cell Membrane Permeabili | 1971 |
[Biological characterization of dermonecrotoxin from Staphylococcus aureus].
Topics: Alkaline Phosphatase; Animals; Bacterial Proteins; Chemical Precipitation; Coagulase; Drug Resistanc | 1972 |
[Focal medionecrosis and its relationship with arteriosclerosis].
Topics: Adrenal Glands; Age Factors; Animals; Aortic Diseases; Arteriosclerosis; Blood Vessels; Calcinosis; | 1969 |
[Subacute and chronic pancreatitis, massive ascites and subcutaneous fatty necrosis: 2 cases; review of the literature].
Topics: Adipose Tissue; Adolescent; Adult; Aged; Ascites; Ascitic Fluid; Biopsy; Child; Chronic Disease; Fem | 1969 |
Metastatic carcinoma to the pancreas. Another cause for acute pancreatitis.
Topics: Acute Disease; Amylases; Calcium; Carcinoma, Bronchogenic; Carcinoma, Small Cell; Duodenum; Humans; | 1973 |
[Histochemical changes in experimental partially permanent ischemia of the cat pancreas].
Topics: Acid Phosphatase; Animals; Cats; Dihydrolipoamide Dehydrogenase; Electron Transport Complex IV; Este | 1973 |
[Parapancreatitis as major component of severe forms of acute pancreatitis].
Topics: Abscess; Anti-Bacterial Agents; Diuretics; Edema; Hemorrhage; Humans; Lipase; Necrosis; Pancreas; Pa | 1974 |
Unusual presentation of seat-belt syndrome.
Topics: Accidents, Traffic; Adipose Tissue; Adult; Amylases; Female; Humans; Lipase; Necrosis; Pancreas; Sea | 1974 |
[Changes in serum-lipase activity after endoscopic retrograde pancreatography (author's transl)].
Topics: Abscess; Adult; Aged; Chronic Disease; Contrast Media; Endoscopy; Humans; Lipase; Middle Aged; Necro | 1974 |
[Evocation test with secretin and pancreozymin in the diagnosis of pancreatic disease].
Topics: Amylases; Calcinosis; Cholecystokinin; Clinical Enzyme Tests; Humans; Lipase; Lipomatosis; Necrosis; | 1973 |
Studies in fat necrosis. IV. Anastomosis between the abdominal cavities in rats with and without experimentally induced pancreatitis.
Topics: Abdomen; Adipose Tissue; Animals; Calcium; Fatty Acids, Nonesterified; Glycerol; Lipase; Lipid Mobil | 1973 |
Studies in fat necrosis. V. Effect of glucose and insulin on fat necrosis in rats with experimental pancreatitis.
Topics: Abdomen; Adipose Tissue; Animals; Calcium; Epididymis; Fatty Acids, Nonesterified; Glucose; Glycerol | 1973 |
[Tapping-lavage of the peritoneum in pancreatitis: value and limits (author's transl)].
Topics: Acute Disease; Ascitic Fluid; Humans; Intestinal Diseases; Lipase; Necrosis; Pancreatitis; Peritonea | 1973 |
[Diagnosis of pancreatic necrosis. Value of punct-lavage of the peritoneum].
Topics: Amylases; Ascitic Fluid; Humans; Lipase; Necrosis; Pancreatic Diseases; Pancreatitis; Peritoneal Cav | 1972 |
Experimental fat necrosis in the rat. I. Studies with the vital microscope.
Topics: Adipose Tissue; Animals; Bile Acids and Salts; Epididymis; In Vitro Techniques; Lipase; Lipids; Male | 1972 |
[Current conceptions of the pathogenesis and diagnosis of acute pancreatitis].
Topics: Amylases; Ascites; Blood Glucose; Calcium; Colic; Humans; Leukocytosis; Lipase; Lymphopenia; Necrosi | 1972 |
Triglyceride hydrolysis and calcium accumulation in the rat epididymal fat pad exposed in vitro to norepinephrine and pancreatic lipase.
Topics: Adipose Tissue; Animals; Buffers; Calcium; Epididymis; Fatty Acids, Nonesterified; Glycerol; Hydroly | 1971 |
[Elastase inhibitor in the serum during acute and chronic pancreatitis].
Topics: Acute Disease; Amylases; Buffers; Chronic Disease; Humans; Lipase; Methods; Necrosis; Pancreatic Ela | 1971 |
Fat necrosis in acute pancreatitis. Morphological and chemical studies in the rat.
Topics: Acute Disease; Adipose Tissue; Animals; Bile Acids and Salts; Calcium; Carbonates; Epididymis; Fatty | 1971 |
[Diagnosis of pancreatic necrosis using laparotomy].
Topics: Acute Disease; Amylases; Cholelithiasis; Gastrectomy; Humans; Laparotomy; Lipase; Necrosis; Pancreat | 1969 |
Cryosurgical necrosis of the head of the pancreas.
Topics: Alkaline Phosphatase; Amylases; Animals; Bilirubin; Cryosurgery; Edema; Hematocrit; Leukocyte Count; | 1970 |
Fat cell necrosis in experimentally induced acute pancreatitis in the rat.
Topics: Animals; Bile Acids and Salts; Lipase; Necrosis; Pancreatitis; Rats | 1970 |
Chemical composition of fat necrosis in experimental pancreatitis in the rat.
Topics: Acute Disease; Adipose Tissue; Animals; Bile Acids and Salts; Calcium; Carbonates; Fatty Acids, None | 1971 |
Pancreatitis with encephalomalacia and ascites. Case report.
Topics: Adult; Amylases; Ascites; Encephalomalacia; Female; Humans; Lipase; Necrosis; Pancreas; Pancreatitis | 1971 |
The role of lymph and blood circulation in pancreatic self-digestion and the development of extrapancreatic necroses.
Topics: Amylases; Animals; Autolysis; Blood Proteins; Chromium Isotopes; Dogs; Female; Iodine; Lipase; Liver | 1968 |
[Morphological findings in experimental acute pancreatitis].
Topics: Animals; Bile Acids and Salts; Dogs; Inflammation; Lipase; Mast Cells; Necrosis; Oils; Pancreas; Pan | 1969 |
Experimental fat necrosis.
Topics: Adipose Tissue; Amylases; Animals; Bile Acids and Salts; Cats; Dogs; Lipase; Necrosis; Pancreatic Ex | 1965 |