Page last updated: 2024-10-19

nitrites and Colitis

nitrites has been researched along with Colitis in 34 studies

Nitrites: Salts of nitrous acid or compounds containing the group NO2-. The inorganic nitrites of the type MNO2 (where M=metal) are all insoluble, except the alkali nitrites. The organic nitrites may be isomeric, but not identical with the corresponding nitro compounds. (Grant & Hackh's Chemical Dictionary, 5th ed)

Colitis: Inflammation of the COLON section of the large intestine (INTESTINE, LARGE), usually with symptoms such as DIARRHEA (often with blood and mucus), ABDOMINAL PAIN, and FEVER.

Research Excerpts

ExcerptRelevanceReference
"In this study, the therapeutic effect of quinic acid (QA), which has anti-inflammatory activity, was investigated on acetic acid-induced colitis in male Wistar rats."8.31Quinic acid ameliorates ulcerative colitis in rats, through the inhibition of two TLR4-NF-κB and NF-κB-INOS-NO signaling pathways. ( Amini-Khoei, H; Ghasemi-Dehnoo, M; Lorigooini, Z; Rafieian-Kopaei, M; Sabzevary-Ghahfarokhi, M, 2023)
"The aim of this study was to evaluate the protective effect of the sulfated-polysaccharide (PLS) fraction extracted from the seaweed Gracilaria birdiae in rats with trinitrobenzenesulfonic acid (TNBS)-induced colitis."7.80Sulfated-polysaccharide fraction extracted from red algae Gracilaria birdiae ameliorates trinitrobenzenesulfonic acid-induced colitis in rats. ( Aragão, KS; Barbosa, AL; Batista, JA; Brito, TV; Chaves, LS; Franco, AX; Freitas, AL; Júnior, JS; Medeiros, JV; Neto, JP; Prudêncio, RS; Silva, RO; Soares, PM; Souza, MH, 2014)
"Mice were divided into: control group, colitis group (4% DSS for four days) and two pentamidine-treated colitis groups (0."7.78The antiprotozoal drug pentamidine ameliorates experimentally induced acute colitis in mice. ( Capoccia, E; Cirillo, C; Cuomo, R; Esposito, G; Sarnelli, G; Scuderi, C; Steardo, L, 2012)
" We examined the role of neuropeptide Y (NPY) and neuronal nitric oxide synthase (nNOS) in modulating colitis."7.74Targeted deletion of neuropeptide Y (NPY) modulates experimental colitis. ( Bala, V; Chandrasekharan, B; Gewirtz, AT; Jones, D; Kolachala, VL; Sitaraman, SV; Srinivasan, S; Vijay-Kumar, M, 2008)
"Colitis was induced in mice by intracolonic administration of dinitrobenzenesulfonic acid."5.42Orally administered allyl sulfides from garlic ameliorate murine colitis. ( Borrelli, F; Clavel, T; Fasolino, I; Haller, D; Izzo, AA; Romano, B, 2015)
" L-NAME treatment, applied at the dosage of 50 mg/kg/day, does not have any protective effect on the colonic injury."5.32Effects of intrarectal and intraperitoneal N(G)-nitro-L-arginine methyl ester treatment in 2,4,6-trinitrobenzenesulfonic acid induced colitis in rats. ( Angin, K; Dundar, E; Inal, M; Saricam, T; Vardareli, E, 2003)
"In this study, the therapeutic effect of quinic acid (QA), which has anti-inflammatory activity, was investigated on acetic acid-induced colitis in male Wistar rats."4.31Quinic acid ameliorates ulcerative colitis in rats, through the inhibition of two TLR4-NF-κB and NF-κB-INOS-NO signaling pathways. ( Amini-Khoei, H; Ghasemi-Dehnoo, M; Lorigooini, Z; Rafieian-Kopaei, M; Sabzevary-Ghahfarokhi, M, 2023)
"Due to the high side effects of commonly used drugs and according to the pharmacological properties reported for coumaric acid (CA), this study was designed to determine the impact of CA on acetic acid-induced colitis in rats, considering its possible anti-inflammatory, antioxidant, and anti-apoptotic properties."4.12Coumaric acid ameliorates experimental colitis in rats through attenuation of oxidative stress, inflammatory response and apoptosis. ( Amini-Khoei, H; Ashrafi-Dehkordi, K; Ghasemi-Dehnoo, M; Lorigooini, Z; Rafieian-Kopaei, M, 2022)
" Our aim was to examine local and remote consequences of ASA-Tris administration in 2-,4-,6-trinitrobenzene-sulfonic acid (TNBS)-induced colitis as compared to ASA or mesalamine (5-aminosalicylate) treatment."3.88Acetylsalicylic acid-tris-hydroxymethyl-aminomethane reduces colon mucosal damage without causing gastric side effects in a rat model of colitis. ( Boros, M; Érces, D; Ghyczy, M; Hartmann, P; Jász, DK; Lajkó, N; Molnár, R; Szűcs, S; Tóth, G; Ugocsai, M; Varga, G, 2018)
"7 macrophages) and in vivo, in the trinitrobenzenesulfonic acid (TNBS) model of rat colitis."3.83Antiinflammatory and immunomodulatory activity of an ethanolic extract from the stem bark of Terminalia catappa L. (Combretaceae): In vitro and in vivo evidences. ( Abiodun, OO; Algieri, F; Galvez, J; Gomez-Caravaca, AM; Rodriguez-Cabezas, ME; Rodríguez-Nogales, A; Segura-Carretero, A; Utrilla, MP, 2016)
"The aim of this study was to evaluate the protective effect of the sulfated-polysaccharide (PLS) fraction extracted from the seaweed Gracilaria birdiae in rats with trinitrobenzenesulfonic acid (TNBS)-induced colitis."3.80Sulfated-polysaccharide fraction extracted from red algae Gracilaria birdiae ameliorates trinitrobenzenesulfonic acid-induced colitis in rats. ( Aragão, KS; Barbosa, AL; Batista, JA; Brito, TV; Chaves, LS; Franco, AX; Freitas, AL; Júnior, JS; Medeiros, JV; Neto, JP; Prudêncio, RS; Silva, RO; Soares, PM; Souza, MH, 2014)
"Mice were divided into: control group, colitis group (4% DSS for four days) and two pentamidine-treated colitis groups (0."3.78The antiprotozoal drug pentamidine ameliorates experimentally induced acute colitis in mice. ( Capoccia, E; Cirillo, C; Cuomo, R; Esposito, G; Sarnelli, G; Scuderi, C; Steardo, L, 2012)
" We examined the role of neuropeptide Y (NPY) and neuronal nitric oxide synthase (nNOS) in modulating colitis."3.74Targeted deletion of neuropeptide Y (NPY) modulates experimental colitis. ( Bala, V; Chandrasekharan, B; Gewirtz, AT; Jones, D; Kolachala, VL; Sitaraman, SV; Srinivasan, S; Vijay-Kumar, M, 2008)
" In order to evaluate the participation of nitric oxide and superoxide in such diseases, we examined the expression of nitric oxide synthase (NOS) and superoxide dismutase (SOD) as well as their activities in whole excised colons of rats with colitis induced by intralumenal administration of 2,4,6-trinitrobenzenesulfonic acid."3.69Induction of nitric oxide synthase and concomitant suppression of superoxide dismutases in experimental colitis in rats. ( Fujii, J; Nakamura, M; Seo, HG; Suzuki, K; Takata, I; Taniguchi, N; Tatsumi, H, 1995)
"Colitis was induced by intrarectal (i."1.43Behavioral despair associated with a mouse model of Crohn's disease: Role of nitric oxide pathway. ( Abbasi, A; Dehpour, AR; Fakhfouri, G; Fakhraei, N; Ghia, JE; Heydarpour, P; Khoshkish, S; Rahimian, R; Salehi-Sadaghiani, M; Wang, H, 2016)
"Colitis was induced in mice by intracolonic administration of dinitrobenzenesulfonic acid."1.42Orally administered allyl sulfides from garlic ameliorate murine colitis. ( Borrelli, F; Clavel, T; Fasolino, I; Haller, D; Izzo, AA; Romano, B, 2015)
"Colitis was induced in mice by administrating dextran sulfate sodium (DSS) with concurrent administration of nitrite (1 mM) or nitrate (10 mM) in the drinking water for 7 days."1.40Preventive and therapeutic effects of nitrite supplementation in experimental inflammatory bowel disease. ( Borniquel, S; Holm, L; Jädert, C; Lundberg, JO; Phillipson, M, 2014)
" The results demonstrated that chronic administration of galanin improved the colon injury than the TNBS induced."1.34Chronic administration of galanin attenuates the TNBS-induced colitis in rats. ( Calvo, JR; Motilva, V; Sánchez-Fidalgo, S; Talero, E, 2007)
"Rats treated with rofecoxib, aminoguanidine hydrochloride and their combinations reduced the inflammation, acute colonic damage produced by TNBS as verified by macroscopic changes in colon."1.34Influence of simultaneous inhibition of cyclooxygenase-2 and inducible nitric oxide synthase in experimental colitis in rats. ( Dudhgaonkar, SP; Kataria, M; Kumar, D; Raviprakash, V; Tandan, SK, 2007)
" L-NAME treatment, applied at the dosage of 50 mg/kg/day, does not have any protective effect on the colonic injury."1.32Effects of intrarectal and intraperitoneal N(G)-nitro-L-arginine methyl ester treatment in 2,4,6-trinitrobenzenesulfonic acid induced colitis in rats. ( Angin, K; Dundar, E; Inal, M; Saricam, T; Vardareli, E, 2003)
"In 11 of 12 cases of newly diagnosed ulcerative colitis, iNOS protein was expressed in the epithelial cells, while no other positive cells were found in the lamina propria."1.30Expression of inducible nitric oxide synthase activity in human colon epithelial cells: modulation by T lymphocyte derived cytokines. ( Kolios, G; Murphy, CT; Robertson, DA; Rooney, N; Westwick, J, 1998)

Research

Studies (34)

TimeframeStudies, this research(%)All Research%
pre-19901 (2.94)18.7374
1990's9 (26.47)18.2507
2000's10 (29.41)29.6817
2010's9 (26.47)24.3611
2020's5 (14.71)2.80

Authors

AuthorsStudies
Kaviani, A1
Khansari Nejad, N1
Akour, A1
AlMuhaissen, SA1
Nusair, MB1
Al-Tammemi, AB1
Mahmoud, NN1
Jalouqa, S1
Alrawashdeh, MN1
Shanahan, JP1
Moore, CM1
Kampf, JW1
Szymczak, NK1
Guo, J1
Wang, H5
Luo, Y1
An, H1
Zhang, Z4
Liu, G1
Li, J8
Metcalfe, GD1
Smith, TW1
Hippler, M1
Ayala Izurieta, JE1
Márquez, CO1
García, VJ1
Jara Santillán, CA1
Sisti, JM1
Pasqualotto, N1
Van Wittenberghe, S1
Delegido, J1
Kubo, Y1
Kitagawa, Y1
Miyazaki, T1
Sohda, M1
Yamaji, T1
Sakai, M1
Saeki, H1
Nemoto, K1
Oyama, T2
Muto, M1
Takeuchi, H1
Toh, Y1
Matsubara, H1
Mano, M1
Kono, K1
Kato, K1
Yoshida, M1
Kawakubo, H1
Booka, E1
Yamatsuji, T1
Kato, H1
Ito, Y1
Ishikawa, H1
Ishihara, R1
Tsushima, T1
Kawachi, H1
Kojima, T1
Kuribayashi, S1
Makino, T1
Matsuda, S1
Doki, Y1
Ma, P1
Tang, X1
Zhang, L5
Wang, X5
Wang, W3
Zhang, X7
Wang, S2
Zhou, N1
Dodd, J1
Jordan, R1
Makhlina, M1
Pesco Koplowitz, L1
Koplowitz, B1
Barnett, K1
Yang, WH1
Spana, C1
Buchanan, SW1
Mafa-Attoye, T1
Dunfield, K1
Thevathasan, NV1
Isaac, ME1
Wu, X4
Huang, JW1
Su, BK1
Yuan, L1
Zheng, WQ1
Zhang, H3
Zheng, YX1
Zhu, W1
Chou, PT1
Manso, AP1
De Morais, DC1
Yamamoto, K1
Owen, G1
de Carvalho, RM1
Palma-Dibb, RG1
Brown, JC1
Yang, S2
Mire, EF1
Miele, L1
Ochoa, A1
Zabaleta, J1
Katzmarzyk, PT1
Moi, CT1
Bhowmick, S1
Qureshi, M1
Wang, K2
Feng, B1
Yang, Y4
Chen, Y1
Wang, Y9
Yang, L1
Jiang, K1
James, TD1
Chaturvedi, V1
Postiglione, WM1
Chakraborty, RD1
Yu, B3
Tabiś, W1
Hameed, S1
Biniskos, N1
Jacobson, A1
Zhou, H2
Greven, M1
Ferry, VE1
Leighton, C1
Wu, F2
Lei, H2
Chen, G1
Chen, C1
Song, Y2
Cao, Z1
Zhang, C5
Zhou, J1
Lu, Y2
Pappone, C1
Santinelli, V1
Mecarocci, V1
Tondi, L1
Ciconte, G1
Manguso, F1
Sturla, F1
Vicedomini, G1
Micaglio, E1
Anastasia, L1
Pica, S1
Camporeale, A1
Lombardi, M1
Shieh, PB1
Elfring, G1
Trifillis, P1
Santos, C1
Peltz, SW1
Parsons, JA1
Apkon, S1
Darras, BT1
Campbell, C1
McDonald, CM1
Galaviz, KI1
Shah, NS1
Gutierrez, M1
Collins, LF1
Lahiri, CD1
Moran, CA1
Szabo, B1
Sumitani, J1
Rhodes, J1
Marconi, VC1
Nguyen, ML1
Cantos, VD1
Armstrong, WS1
Colasanti, JA1
Wang, L4
Choi, HS1
Su, Y1
Lee, B1
Choi, JH1
Jang, SH1
Jang, YS1
Seo, JW1
Ghasemi-Dehnoo, M2
Amini-Khoei, H2
Lorigooini, Z2
Ashrafi-Dehkordi, K1
Rafieian-Kopaei, M2
Sabzevary-Ghahfarokhi, M1
Halim, AA1
Alsayed, B1
Embarak, S1
Yaseen, T1
Dabbous, S1
Fontaine, O1
Dueluzeau, R1
Raibaud, P1
Chabanet, C1
Popoff, MR1
Badoual, J1
Gabilan, JC1
Andremont, A1
Gómez, L1
Andrés, S1
Sánchez, J1
Alonso, JM1
Rey, J1
López, F1
Jiménez, A1
Yan, Z1
Zhou, L1
Zhao, Y3
Wang, J6
Huang, L2
Hu, K1
Liu, H4
Guo, Z1
Huang, H4
Yang, R1
Owen, TW1
Al-Kaysi, RO1
Bardeen, CJ1
Cheng, Q1
Wu, S1
Cheng, T1
Zhou, X1
Wang, B4
Zhang, Q4
Yao, Y3
Ochiai, T1
Ishiguro, H2
Nakano, R2
Kubota, Y2
Hara, M1
Sunada, K1
Hashimoto, K1
Kajioka, J1
Fujishima, A1
Jiao, J3
Gai, QY3
Zang, YP2
Niu, LL2
Fu, YJ3
Yao, LP1
Qin, QP1
Wang, ZY1
Liu, J4
Aleksic Sabo, V1
Knezevic, P1
Borges-Argáez, R1
Chan-Balan, R1
Cetina-Montejo, L1
Ayora-Talavera, G1
Sansores-Peraza, P1
Gómez-Carballo, J1
Cáceres-Farfán, M1
Jang, J1
Akin, D1
Bashir, R1
Yu, Z1
Zhu, J2
Jiang, H1
He, C2
Xiao, Z1
Xu, J2
Sun, Q1
Han, D1
Zhao, K2
Zhu, L1
Li, X4
Fu, H2
Wilson, BK1
Step, DL1
Maxwell, CL1
Gifford, CA1
Richards, CJ1
Krehbiel, CR1
Warner, JM1
Doerr, AJ1
Erickson, GE1
Guretzky, JA1
Rasby, RJ1
Watson, AK1
Klopfenstein, TJ1
Sun, Y4
Liu, Z3
Pham, TD1
Lee, BK1
Yang, FC1
Wu, KH1
Lin, WP1
Hu, MK1
Lin, L3
Shao, J1
Sun, M1
Xu, G1
Xu, N1
Wang, R1
Liu, S1
He, H1
Dong, X2
Yang, M2
Yang, Q1
Duan, S1
Yu, Y2
Han, J2
Chen, L2
Yang, X1
Li, W3
Wang, T2
Campbell, DA1
Gao, K1
Zager, RA1
Johnson, ACM1
Guillem, A1
Keyser, J1
Singh, B1
Steubl, D1
Schneider, MP1
Meiselbach, H1
Nadal, J1
Schmid, MC1
Saritas, T1
Krane, V1
Sommerer, C1
Baid-Agrawal, S1
Voelkl, J1
Kotsis, F1
Köttgen, A1
Eckardt, KU1
Scherberich, JE1
Li, H4
Yao, L2
Sun, L3
Zhu, Z1
Naren, N1
Zhang, XX2
Gentile, GL1
Rupert, AS1
Carrasco, LI1
Garcia, EM1
Kumar, NG1
Walsh, SW1
Jefferson, KK1
Guest, RL1
Samé Guerra, D1
Wissler, M1
Grimm, J1
Silhavy, TJ1
Lee, JH2
Yoo, JS1
Kim, Y1
Kim, JS2
Lee, EJ1
Roe, JH1
Delorme, M1
Bouchard, PA1
Simon, M1
Simard, S1
Lellouche, F1
D'Urzo, KA1
Mok, F1
D'Urzo, AD1
Koneru, B1
Lopez, G1
Farooqi, A1
Conkrite, KL1
Nguyen, TH1
Macha, SJ1
Modi, A1
Rokita, JL1
Urias, E1
Hindle, A1
Davidson, H1
Mccoy, K1
Nance, J1
Yazdani, V1
Irwin, MS1
Wheeler, DA1
Maris, JM1
Diskin, SJ1
Reynolds, CP1
Abhilash, L1
Kalliyil, A1
Sheeba, V1
Hartley, AM2
Meunier, B2
Pinotsis, N1
Maréchal, A2
Xu, JY1
Genko, N1
Haraux, F1
Rich, PR1
Kamalanathan, M1
Doyle, SM1
Xu, C1
Achberger, AM1
Wade, TL1
Schwehr, K1
Santschi, PH1
Sylvan, JB1
Quigg, A1
Leong, W1
Xu, W2
Gao, S1
Zhai, X1
Wang, C2
Gilson, E1
Ye, J1
Yan, R1
Zhang, Y6
Hu, Z1
You, Q1
Cai, Q1
Yang, D1
Gu, S1
Dai, H1
Zhao, X1
Gui, C1
Gui, J1
Wu, PK1
Hong, SK1
Starenki, D1
Oshima, K1
Shao, H1
Gestwicki, JE1
Tsai, S1
Park, JI1
Zhao, R1
Gu, Z1
Dong, C2
Guo, G1
Li, L4
Barrett, HE1
Meester, EJ1
van Gaalen, K1
van der Heiden, K1
Krenning, BJ1
Beekman, FJ1
de Blois, E1
de Swart, J1
Verhagen, HJ1
Maina, T1
Nock, BA1
Norenberg, JP1
de Jong, M1
Gijsen, FJH1
Bernsen, MR1
Martínez-Milla, J1
Galán-Arriola, C1
Carnero, M1
Cobiella, J1
Pérez-Camargo, D1
Bautista-Hernández, V1
Rigol, M1
Solanes, N1
Villena-Gutierrez, R1
Lobo, M1
Mateo, J1
Vilchez-Tschischke, JP1
Salinas, B1
Cussó, L1
López, GJ1
Fuster, V1
Desco, M1
Sanchez-González, J1
Ibanez, B1
van den Berg, P1
Schweitzer, DH1
van Haard, PMM1
Geusens, PP1
van den Bergh, JP1
Zhu, X1
Huang, X2
Xu, H2
Yang, G2
Lin, Z1
Salem, HF1
Nafady, MM1
Kharshoum, RM1
Abd El-Ghafar, OA1
Farouk, HO1
Domiciano, D1
Nery, FC1
de Carvalho, PA1
Prudente, DO1
de Souza, LB1
Chalfun-Júnior, A1
Paiva, R1
Marchiori, PER1
Lu, M2
An, Z1
Jiang, J2
Du, S1
Cui, J1
Wu, W1
Liu, Y7
Song, J1
Lian, Q1
Uddin Ahmad, Z1
Gang, DD1
Konggidinata, MI1
Gallo, AA1
Zappi, ME1
Yang, TWW1
Johari, Y1
Burton, PR1
Earnest, A1
Shaw, K1
Hare, JL1
Brown, WA1
Kim, GA1
Han, S1
Choi, GH1
Choi, J1
Lim, YS1
Gallo, A1
Cancelli, C1
Ceron, E1
Covino, M1
Capoluongo, E1
Pocino, K1
Ianiro, G1
Cammarota, G1
Gasbarrini, A1
Montalto, M1
Somasundar, Y1
Lu, IC1
Mills, MR1
Qian, LY1
Olivares, X1
Ryabov, AD1
Collins, TJ1
Zhao, L1
Doddipatla, S1
Thomas, AM1
Nikolayev, AA1
Galimova, GR1
Azyazov, VN1
Mebel, AM1
Kaiser, RI1
Guo, S1
Yang, P1
Yu, X2
Wu, Y2
Han, B1
George, MW1
Moor, MB1
Bonny, O1
Langenberg, E1
Paik, H1
Smith, EH1
Nair, HP1
Hanke, I1
Ganschow, S1
Catalan, G1
Domingo, N1
Schlom, DG1
Assefa, MK1
Wu, G2
Hayton, TW1
Becker, B1
Enikeev, D1
Netsch, C1
Gross, AJ1
Laukhtina, E1
Glybochko, P1
Rapoport, L1
Herrmann, TRW1
Taratkin, M1
Dai, W1
Shi, J2
Carreno, J1
Kloner, RA1
Pickersgill, NA1
Vetter, JM1
Kim, EH1
Cope, SJ1
Du, K1
Venkatesh, R1
Giardina, JD1
Saad, NES1
Bhayani, SB1
Figenshau, RS1
Eriksson, J1
Landfeldt, E1
Ireland, S1
Jackson, C1
Wyatt, E1
Gaudig, M1
Stancill, JS1
Happ, JT1
Broniowska, KA1
Hogg, N1
Corbett, JA1
Tang, LF1
Bi, YL1
Fan, Y2
Sun, YB1
Wang, AL1
Xiao, BH1
Wang, LF1
Qiu, SW1
Guo, SW1
Wáng, YXJ1
Sun, J2
Chu, S1
Pan, Q1
Li, D2
Zheng, S2
Ma, L1
Hu, T1
Wang, F1
Han, Z1
Yin, Z1
Ge, X1
Xie, K1
Lei, P1
Dias-Santagata, D1
Lennerz, JK1
Sadow, PM1
Frazier, RP1
Govinda Raju, S1
Henry, D1
Chung, T1
Kherani, J1
Rothenberg, SM1
Wirth, LJ1
Marti, CN1
Choi, NG1
Bae, SJ1
Ni, L1
Luo, X1
Dai, T1
Lee, R1
Fleischer, AS1
Wemhoff, AP1
Ford, CR1
Kleppinger, EL1
Helms, K1
Bush, AA1
Luna-Abanto, J1
García Ruiz, L1
Laura Martinez, J1
Álvarez Larraondo, M1
Villoslada Terrones, V1
Dukic, L1
Maric, N1
Simundic, AM1
Chogtu, B1
Ommurugan, B1
Thomson, SR1
Kalthur, SG1
Benidir, M1
El Massoudi, S1
El Ghadraoui, L1
Lazraq, A1
Benjelloun, M1
Errachidi, F1
Cassar, M1
Law, AD1
Chow, ES1
Giebultowicz, JM1
Kretzschmar, D1
Salonurmi, T1
Nabil, H1
Ronkainen, J1
Hyötyläinen, T1
Hautajärvi, H1
Savolainen, MJ1
Tolonen, A1
Orešič, M1
Känsäkoski, P1
Rysä, J1
Hakkola, J1
Hukkanen, J1
Zhu, N1
Li, Y4
Du, Q1
Hao, P1
Cao, X1
Li, CX1
Zhao, S1
Luo, XM1
Feng, JX1
Gonzalez-Cotto, M1
Guo, L1
Karwan, M1
Sen, SK1
Barb, J1
Collado, CJ1
Elloumi, F1
Palmieri, EM1
Boelte, K1
Kolodgie, FD1
Finn, AV1
Biesecker, LG1
McVicar, DW1
Qu, F1
Deng, Z1
Xie, Y2
Tang, J3
Chen, Z2
Luo, W1
Xiong, D1
Zhao, D1
Fang, J1
Zhou, Z1
Niu, PP1
Song, B1
Xu, YM1
Qiu, N1
Yin, J1
Zhang, J3
Guo, W1
Liu, M2
Liu, T2
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Reviews

2 reviews available for nitrites and Colitis

ArticleYear
    Biomaterial investigations in dentistry, 2021, Volume: 8, Issue:1

    Topics: Adult; Alcohol Drinking; Ammonia; Animals; Anti-Inflammatory Agents; Area Under Curve; B-Lymphocytes

2021
    The Egyptian journal of chest diseases and tuberculosis, 2016, Volume: 65, Issue:1

    Topics: A549 Cells; Acetylmuramyl-Alanyl-Isoglutamine; Acinetobacter baumannii; Acute Lung Injury; Adaptor P

2016

Trials

2 trials available for nitrites and Colitis

ArticleYear
    The Egyptian journal of chest diseases and tuberculosis, 2016, Volume: 65, Issue:1

    Topics: A549 Cells; Acetylmuramyl-Alanyl-Isoglutamine; Acinetobacter baumannii; Acute Lung Injury; Adaptor P

2016
Treatment of Crohn's disease with recombinant human interleukin 10 induces the proinflammatory cytokine interferon gamma.
    Gut, 2002, Volume: 50, Issue:2

    Topics: Administration, Cutaneous; Chronic Disease; Colitis; Crohn Disease; Double-Blind Method; Drug Resist

2002

Other Studies

31 other studies available for nitrites and Colitis

ArticleYear
Protective effect of 17S‑epoxy‑docosapentaenoic acid against dextran sulfate sodium induced ulcerative colitis in BALB/c mice.
    Molecular medicine reports, 2022, Volume: 26, Issue:3

    Topics: Animals; Colitis; Colitis, Ulcerative; Colon; Dextran Sulfate; Disease Models, Animal; Fatty Acids,

2022
Coumaric acid ameliorates experimental colitis in rats through attenuation of oxidative stress, inflammatory response and apoptosis.
    Inflammopharmacology, 2022, Volume: 30, Issue:6

    Topics: Acetic Acid; Animals; Anti-Inflammatory Agents; Antioxidants; Apoptosis; Colitis; Colon; Coumaric Ac

2022
Quinic acid ameliorates ulcerative colitis in rats, through the inhibition of two TLR4-NF-κB and NF-κB-INOS-NO signaling pathways.
    Immunity, inflammation and disease, 2023, Volume: 11, Issue:8

    Topics: Acetic Acid; Animals; Antioxidants; Colitis; Colitis, Ulcerative; Inflammation; Male; NF-kappa B; Ni

2023
Protective effects of growth hormone-releasing hormone analogs in DSS-induced colitis in mice.
    Scientific reports, 2021, 01-28, Volume: 11, Issue:1

    Topics: Animals; Anti-Inflammatory Agents; Biomarkers; Biopsy; Colitis; Cytokines; Dextran Sulfate; Dinopros

2021
Acetylsalicylic acid-tris-hydroxymethyl-aminomethane reduces colon mucosal damage without causing gastric side effects in a rat model of colitis.
    Inflammopharmacology, 2018, Volume: 26, Issue:1

    Topics: Animals; Anti-Inflammatory Agents, Non-Steroidal; Aspirin; Colitis; Colon; Disease Models, Animal; I

2018
Preventive and therapeutic effects of nitrite supplementation in experimental inflammatory bowel disease.
    Redox biology, 2014, Volume: 2

    Topics: Animals; Cell Line; Colitis; Colon; Dextran Sulfate; Dietary Supplements; Disease Models, Animal; Dr

2014
Sulfated-polysaccharide fraction extracted from red algae Gracilaria birdiae ameliorates trinitrobenzenesulfonic acid-induced colitis in rats.
    The Journal of pharmacy and pharmacology, 2014, Volume: 66, Issue:8

    Topics: Animals; Colitis; Colon; Cytokines; Dexamethasone; Glutathione; Gracilaria; Inflammation; Lipid Pero

2014
Orally administered allyl sulfides from garlic ameliorate murine colitis.
    Molecular nutrition & food research, 2015, Volume: 59, Issue:3

    Topics: Administration, Oral; Allyl Compounds; Animals; Anti-Inflammatory Agents, Non-Steroidal; Benzenesulf

2015
Behavioral despair associated with a mouse model of Crohn's disease: Role of nitric oxide pathway.
    Progress in neuro-psychopharmacology & biological psychiatry, 2016, Jan-04, Volume: 64

    Topics: Animals; Antidepressive Agents; Colitis; Colon; Crohn Disease; Depression; Disease Models, Animal; E

2016
Antiinflammatory and immunomodulatory activity of an ethanolic extract from the stem bark of Terminalia catappa L. (Combretaceae): In vitro and in vivo evidences.
    Journal of ethnopharmacology, 2016, Nov-04, Volume: 192

    Topics: Animals; Anti-Inflammatory Agents; Chromatography, High Pressure Liquid; Colitis; Colon; Cytokines;

2016
Targeted deletion of neuropeptide Y (NPY) modulates experimental colitis.
    PloS one, 2008, Oct-01, Volume: 3, Issue:10

    Topics: Animals; Catalase; Colitis; Dextran Sulfate; Disease Models, Animal; Gene Deletion; Glutathione; Inf

2008
Vascular contribution of adrenomedullin to microcirculatory improvement in experimental colitis.
    European journal of pharmacology, 2011, Nov-30, Volume: 670, Issue:2-3

    Topics: Adrenomedullin; Animals; Biomarkers; Colitis; Cyclooxygenase 2; Disease Models, Animal; Gene Express

2011
The antiprotozoal drug pentamidine ameliorates experimentally induced acute colitis in mice.
    Journal of neuroinflammation, 2012, Dec-23, Volume: 9

    Topics: Animals; Antiprotozoal Agents; Colitis; Colon; Cyclooxygenase 2; Dextran Sulfate; Dinoprostone; Dise

2012
Effects of intrarectal and intraperitoneal N(G)-nitro-L-arginine methyl ester treatment in 2,4,6-trinitrobenzenesulfonic acid induced colitis in rats.
    Experimental and toxicologic pathology : official journal of the Gesellschaft fur Toxikologische Pathologie, 2003, Volume: 55, Issue:4

    Topics: Acute Disease; Administration, Rectal; Animals; Colitis; Disease Models, Animal; Drug Therapy, Combi

2003
Neutrophil-mediated formation of carcinogenic N-nitroso compounds in an in vitro model for intestinal inflammation.
    Toxicology letters, 2004, Dec-30, Volume: 154, Issue:3

    Topics: Caco-2 Cells; Carcinogens; Colitis; Colonic Neoplasms; DNA Adducts; Humans; Neutrophil Activation; N

2004
DSS-induced colitis is exacerbated in STAT-6 knockout mice.
    Inflammatory bowel diseases, 2005, Volume: 11, Issue:10

    Topics: Animals; Colitis; Dextran Sulfate; Disease Models, Animal; Interferon-gamma; Mice; Mice, Inbred BALB

2005
Chronic administration of galanin attenuates the TNBS-induced colitis in rats.
    Regulatory peptides, 2007, Jun-07, Volume: 141, Issue:1-3

    Topics: Animals; Blotting, Western; Colitis; Cyclooxygenase 2; Disease Models, Animal; Dose-Response Relatio

2007
Influence of simultaneous inhibition of cyclooxygenase-2 and inducible nitric oxide synthase in experimental colitis in rats.
    Inflammopharmacology, 2007, Volume: 15, Issue:5

    Topics: Animals; Catalase; Colitis; Colon; Cyclooxygenase 2; Cyclooxygenase 2 Inhibitors; Drug Therapy, Comb

2007
Influence of soluble guanylate cyclase inhibition on inflammation and motility disturbances in DSS-induced colitis.
    European journal of pharmacology, 2008, Jan-28, Volume: 579, Issue:1-3

    Topics: Animals; Colitis; Cyclic GMP; Dextran Sulfate; Disease Models, Animal; Enzyme Inhibitors; Guanylate

2008
Induction of nitric oxide synthase and concomitant suppression of superoxide dismutases in experimental colitis in rats.
    Archives of biochemistry and biophysics, 1995, Dec-01, Volume: 324, Issue:1

    Topics: Animals; Blotting, Northern; Colitis; Colon; Disease Models, Animal; Enzyme Induction; Female; Gene

1995
Potential role of nitric oxide in a model of chronic colitis in rhesus macaques.
    Gastroenterology, 1995, Volume: 108, Issue:3

    Topics: Amino Acid Oxidoreductases; Animals; Base Sequence; Chronic Disease; Colitis; Colon; Macaca mulatta;

1995
Spontaneous intestinal inflammation and nitric oxide metabolism in HLA-B27 transgenic rats.
    Gastroenterology, 1995, Volume: 109, Issue:1

    Topics: Animals; Animals, Genetically Modified; Colitis; Colon; Disease Models, Animal; Edetic Acid; Gastric

1995
Quantitation of nitrate and nitrite in extracellular fluids.
    Methods in enzymology, 1996, Volume: 268

    Topics: Animals; Aspergillus; Colitis; Ethylenediamines; Extracellular Space; Free Radical Scavengers; Granu

1996
Effects of cyclosporine or FK506 in chronic colitis.
    The Journal of pharmacology and experimental therapeutics, 1997, Volume: 280, Issue:2

    Topics: Animals; Blood Pressure; Body Weight; Colitis; Colon; Cyclosporine; Female; Granulomatous Disease, C

1997
Intracolonic release of nitric oxide during trinitrobenzene sulfonic acid rat colitis.
    Digestive diseases and sciences, 1997, Volume: 42, Issue:12

    Topics: Animals; Colitis; Colon; Disease Models, Animal; Leukotriene B4; Male; Nitric Oxide; Nitric Oxide Sy

1997
Nitric oxide and inflammatory bowel disease: evidence for local intestinal production in children with active colonic disease.
    Journal of pediatric gastroenterology and nutrition, 1998, Volume: 26, Issue:1

    Topics: Adolescent; Child; Child, Preschool; Colitis; Colon; Enzyme Induction; Epithelium; Feces; Female; Hu

1998
Effects of nitric oxide synthase inhibition or sulfasalazine on the spontaneous colitis observed in HLA-B27 transgenic rats.
    The Journal of pharmacology and experimental therapeutics, 1998, Volume: 284, Issue:2

    Topics: Animals; Animals, Genetically Modified; Body Weight; Colitis; Colon; Enzyme Inhibitors; HLA-B27 Anti

1998
Expression of inducible nitric oxide synthase activity in human colon epithelial cells: modulation by T lymphocyte derived cytokines.
    Gut, 1998, Volume: 43, Issue:1

    Topics: Acute Disease; Adult; Aged; Aged, 80 and over; Blotting, Northern; Blotting, Western; Colitis; Colit

1998
Innate immune responses in children and adults with Shigellosis.
    Infection and immunity, 2000, Volume: 68, Issue:6

    Topics: Acute Disease; Adolescent; Adult; Age Factors; Anti-Inflammatory Agents; Child; Child, Preschool; Co

2000
Spontaneously developing chronic colitis in IL-10/iNOS double-deficient mice.
    American journal of physiology. Gastrointestinal and liver physiology, 2000, Volume: 279, Issue:1

    Topics: Age Factors; Animals; Blotting, Western; Chronic Disease; Colitis; Colon; Female; Fluorescent Antibo

2000
Detectable colonic nitrite levels in inflammatory bowel disease--mucosal or bacterial malfunction?
    Digestion, 1986, Volume: 35, Issue:4

    Topics: Ammonia; Bacteria; Colitis; Colitis, Ulcerative; Humans; Hydrogen Peroxide; Intestinal Mucosa; Nitra

1986