lactic acid has been researched along with Acute Edematous Pancreatitis in 30 studies
Lactic Acid: A normal intermediate in the fermentation (oxidation, metabolism) of sugar. The concentrated form is used internally to prevent gastrointestinal fermentation. (From Stedman, 26th ed)
2-hydroxypropanoic acid : A 2-hydroxy monocarboxylic acid that is propanoic acid in which one of the alpha-hydrogens is replaced by a hydroxy group.
Excerpt | Relevance | Reference |
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"To evaluate the ability of arterial blood lactic acid concentration to predict death within 28 days of admission of patients with severe acute pancreatitis (SAP) in the intensive care unit (ICU)." | 8.12 | Predictive value of arterial blood lactic acid concentration on the risk of all-cause death within 28 days of admission in patients with severe acute pancreatitis. ( Liu, H; Liu, Y; Shi, L; Wu, M; Zhang, H; Zhang, W, 2022) |
"The aim of this study was to determine whether oxymatrine has a protective effect against acute pancreatitis (AP) in a rat model of L-arginine-induced AP." | 7.78 | Oxymatrine ameliorates L-arginine-induced acute pancreatitis in rats. ( Cui, J; Dong, M; Dong, Q; Rong, D; Wang, Y; Zhang, Z, 2012) |
" We observed a patient with nonmetastatic breast cancer who died because of severe lactic acidosis (plasma lactate concentration = 27 mmol/l) after ingestion of 25 g of elemental germanium over a 2-months period." | 7.68 | Abuse of germanium associated with fatal lactic acidosis. ( Iten, PX; Krapf, R; Schaffner, T, 1992) |
"The effect of endogenous pituitary and pancreatic beta-endorphins in the physiopathologic factors of acute pancreatitis and the effect of opiate antagonist naloxone in these conditions were studied." | 7.67 | Plasma beta-endorphin and the effect of naloxone on hemodynamic changes during experimental acute pancreatitis in dogs. ( Chung, YS; Ha, SS; Hiura, A; Nishiwaki, H; Satake, K; Umeyama, K, 1989) |
"To evaluate the ability of arterial blood lactic acid concentration to predict death within 28 days of admission of patients with severe acute pancreatitis (SAP) in the intensive care unit (ICU)." | 4.12 | Predictive value of arterial blood lactic acid concentration on the risk of all-cause death within 28 days of admission in patients with severe acute pancreatitis. ( Liu, H; Liu, Y; Shi, L; Wu, M; Zhang, H; Zhang, W, 2022) |
"Patients with pancreatitis, pneumonia and the general group all shared three common predictive features as core variables, arterial base excess, lactic acid and platelets." | 3.79 | Disease-based modeling to predict fluid response in intensive care units. ( Celi, LA; Cismondi, F; Fialho, AS; Finkelstein, SN; Reti, SR; Sousa, JM; Vieira, SM, 2013) |
"The aim of this study was to determine whether oxymatrine has a protective effect against acute pancreatitis (AP) in a rat model of L-arginine-induced AP." | 3.78 | Oxymatrine ameliorates L-arginine-induced acute pancreatitis in rats. ( Cui, J; Dong, M; Dong, Q; Rong, D; Wang, Y; Zhang, Z, 2012) |
" We observed a patient with nonmetastatic breast cancer who died because of severe lactic acidosis (plasma lactate concentration = 27 mmol/l) after ingestion of 25 g of elemental germanium over a 2-months period." | 3.68 | Abuse of germanium associated with fatal lactic acidosis. ( Iten, PX; Krapf, R; Schaffner, T, 1992) |
"The effect of endogenous pituitary and pancreatic beta-endorphins in the physiopathologic factors of acute pancreatitis and the effect of opiate antagonist naloxone in these conditions were studied." | 3.67 | Plasma beta-endorphin and the effect of naloxone on hemodynamic changes during experimental acute pancreatitis in dogs. ( Chung, YS; Ha, SS; Hiura, A; Nishiwaki, H; Satake, K; Umeyama, K, 1989) |
"Identification of at-risk patients with acute pancreatitis (AP) early on in the course of hospital admission remains a challenge." | 1.91 | The utility of the bedside index of severity in acute pancreatitis at prognosticating adverse outcomes. ( Anderson, F; Clarke, DL; Ferndale, L; Makofane, TN, 2023) |
"Among 4425 acute pancreatitis patients, 3040 patients were diagnosed with moderate or severe acute pancreatitis, and 1028 patients had initial lactate measured." | 1.72 | Prognostic Value of Arterial Lactate Metabolic Clearance Rate in Moderate and Severe Acute Pancreatitis. ( Chen, Y; Gong, M; He, W; Liu, F; Liu, P; Lu, N; Shao, Q; Wan, J; Xia, L; Zeng, H; Zeng, J; Zhu, Y, 2022) |
"We included adult patients with acute pancreatitis who were admitted to the intensive care unit in the study." | 1.72 | Association between lactate-to-albumin ratio and 28-days all-cause mortality in patients with acute pancreatitis: A retrospective analysis of the MIMIC-IV database. ( Li, DP; Liu, Q; Wang, M; Wang, QZ; Wu, MM; Yan, SJ; Yu, JJ; Zheng, HL, 2022) |
"The rabbits were randomly divided into 3 groups: group A without any treatment, group B with single treatment of stilamin, and group C with treatment of saizen combined with stilamin." | 1.39 | Protective effects of saizen in combination with stilamin on intestinal mucosa of a rabbit model of severe acute pancreatitis. ( Li, B; Liu, H; Lu, Y; Xu, H; Yang, M; Yu, Y, 2013) |
"Severe acute pancreatitis was induced in the first 2 groups by injecting 5% sodium taurocholate into the pancreatic duct, and the investigation period was 12 hours." | 1.38 | Beneficial effect of hypertonic saline resuscitation in a porcine model of severe acute pancreatitis. ( Ding, WW; Ke, L; Li, JS; Li, N; Li, WQ; Ni, HB; Sun, JK; Tong, ZH, 2012) |
"Acute pancreatitis was induced by intraductal injection of 5% sodium taurodeoxycholate, and the animals were studied for 3 hours thereafter." | 1.31 | Experimental pancreatitis causes acute perturbation of energy metabolism in the intestinal wall. ( Andersson, R; Ederoth, P; Nordstrom, CH; Sun, Z, 2002) |
"Acute pancreatitis was induced in 40 Sprague-Dawley rats by ligation of the main biliopancreatic duct." | 1.31 | Whole gut washout ameliorates the progression of acute experimental pancreatitis. ( Aksoy, F; Ozer, S; Vatansev, C; Yol, S, 2000) |
"Sera was obtained from patients with pancreatic cancer ( n = 14) and chronic pancreatitis ( n = 9) and healthy control subjects ( n = 10)." | 1.31 | Putative pancreatic cancer-associated diabetogenic factor: 2030 MW peptide. ( Basso, D; Fogar, P; Gallo, N; Greco, E; Mazza, S; Pedrazzoli, S; Piva, MG; Plebani, M; Seraglia, R; Tiengo, A; Valerio, A, 2002) |
"Patients with severe acute pancreatitis die of complications closely related to the systemic activation of protease cascades." | 1.30 | Combined treatment with C1 esterase inhibitor and antithrombin III improves survival in severe acute experimental pancreatitis. ( Adler, G; Dickneite, G; Lerch, MM; Lührs, H; Weidenbach, H; Yamaguchi, H, 1997) |
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 4 (13.33) | 18.7374 |
1990's | 2 (6.67) | 18.2507 |
2000's | 5 (16.67) | 29.6817 |
2010's | 9 (30.00) | 24.3611 |
2020's | 10 (33.33) | 2.80 |
Authors | Studies |
---|---|
Wu, M | 1 |
Shi, L | 1 |
Zhang, H | 1 |
Liu, H | 2 |
Liu, Y | 1 |
Zhang, W | 1 |
Doganay, F | 1 |
Ak, R | 1 |
Yilmaz, E | 1 |
He, L | 1 |
Wang, L | 1 |
Hou, H | 1 |
Wang, GY | 1 |
Shang, D | 1 |
Zhang, GX | 1 |
Song, HY | 1 |
Jiang, N | 1 |
Liu, HH | 1 |
Chen, HL | 1 |
Zeng, J | 3 |
Wan, J | 5 |
He, W | 5 |
Zhu, Y | 9 |
Zeng, H | 4 |
Liu, P | 4 |
Gong, M | 3 |
Liu, F | 3 |
Shao, Q | 3 |
Xia, L | 5 |
Chen, Y | 3 |
Lu, N | 5 |
Liu, Q | 1 |
Zheng, HL | 1 |
Wu, MM | 1 |
Wang, QZ | 1 |
Yan, SJ | 1 |
Wang, M | 1 |
Yu, JJ | 1 |
Li, DP | 1 |
Makofane, TN | 1 |
Clarke, DL | 1 |
Anderson, F | 1 |
Ferndale, L | 1 |
Montrazi, ET | 1 |
Sasson, K | 1 |
Agemy, L | 1 |
Peters, DC | 1 |
Brenner, O | 1 |
Scherz, A | 1 |
Frydman, L | 1 |
Kayipmaz, AE | 1 |
Gedikaslan, S | 1 |
Aydogan, RF | 1 |
Shu, W | 2 |
Chen, J | 2 |
Kalantar-Zadeh, K | 1 |
Uppot, RN | 1 |
Lewandrowski, KB | 1 |
Fialho, AS | 1 |
Celi, LA | 1 |
Cismondi, F | 1 |
Vieira, SM | 1 |
Reti, SR | 1 |
Sousa, JM | 1 |
Finkelstein, SN | 1 |
Yang, C | 1 |
Hu, T | 1 |
Cao, H | 1 |
Zhang, L | 1 |
Zhou, P | 1 |
He, G | 1 |
Song, X | 1 |
Tong, A | 1 |
Guo, G | 1 |
Yang, F | 1 |
Zhang, X | 1 |
Qian, Z | 1 |
Qi, X | 1 |
Zhou, L | 1 |
Zheng, Y | 1 |
Roca, B | 1 |
Bhoomagoud, M | 1 |
Jung, T | 1 |
Atladottir, J | 1 |
Kolodecik, TR | 1 |
Shugrue, C | 1 |
Chaudhuri, A | 1 |
Thrower, EC | 1 |
Gorelick, FS | 1 |
Nohé, B | 1 |
Ploppa, A | 1 |
Schmidt, V | 1 |
Unertl, K | 1 |
Zhang, Z | 1 |
Wang, Y | 1 |
Dong, M | 1 |
Cui, J | 1 |
Rong, D | 1 |
Dong, Q | 1 |
Ni, HB | 1 |
Ke, L | 1 |
Sun, JK | 1 |
Tong, ZH | 1 |
Ding, WW | 1 |
Li, WQ | 1 |
Li, N | 1 |
Li, JS | 1 |
Pynnönen, L | 1 |
Minkkinen, M | 1 |
Räty, S | 1 |
Sand, J | 1 |
Nordback, I | 1 |
Perner, A | 1 |
Tenhunen, J | 1 |
Lu, Y | 1 |
Yu, Y | 1 |
Yang, M | 1 |
Li, B | 1 |
Xu, H | 1 |
Ederoth, P | 1 |
Sun, Z | 1 |
Nordstrom, CH | 1 |
Andersson, R | 1 |
Schuster, HP | 1 |
Paterson, KR | 1 |
Paice, BJ | 1 |
Lawson, DH | 1 |
Yamaguchi, H | 1 |
Weidenbach, H | 1 |
Lührs, H | 1 |
Lerch, MM | 1 |
Dickneite, G | 1 |
Adler, G | 1 |
Yol, S | 1 |
Ozer, S | 1 |
Aksoy, F | 1 |
Vatansev, C | 1 |
Basso, D | 1 |
Valerio, A | 1 |
Seraglia, R | 1 |
Mazza, S | 1 |
Piva, MG | 1 |
Greco, E | 1 |
Fogar, P | 1 |
Gallo, N | 1 |
Pedrazzoli, S | 1 |
Tiengo, A | 1 |
Plebani, M | 1 |
Krapf, R | 1 |
Schaffner, T | 1 |
Iten, PX | 1 |
Satake, K | 1 |
Hiura, A | 1 |
Nishiwaki, H | 1 |
Ha, SS | 1 |
Chung, YS | 1 |
Umeyama, K | 1 |
Fulop, M | 1 |
Bock, J | 1 |
Ben-Ezra, J | 1 |
Antony, M | 1 |
Danzig, J | 1 |
Gage, JS | 1 |
4 reviews available for lactic acid and Acute Edematous Pancreatitis
Article | Year |
---|---|
Adverse drug reactions to antiretroviral medication.
Topics: Anti-HIV Agents; Bone Diseases, Metabolic; Bone Marrow; Cardiovascular System; Drug Hypersensitivity | 2009 |
[Volume replacement in intensive care medicine].
Topics: Blood Pressure; Blood Volume; Cardiomyopathy, Dilated; Cholecystectomy; Colloids; Critical Care; Goa | 2011 |
Prognostic value of blood lactate in critically ill patients.
Topics: Acidosis; Acute Disease; Heart Arrest; Humans; Hypnotics and Sedatives; Intensive Care Units; Lactat | 1984 |
Undesired effects of biguanide therapy.
Topics: Acidosis; Biguanides; Cardiovascular Diseases; Chemical and Drug Induced Liver Injury; Drug Interact | 1984 |
26 other studies available for lactic acid and Acute Edematous Pancreatitis
Article | Year |
---|---|
Predictive value of arterial blood lactic acid concentration on the risk of all-cause death within 28 days of admission in patients with severe acute pancreatitis.
Topics: Acute Disease; Humans; Lactic Acid; Pancreatitis; Prognosis; Retrospective Studies; ROC Curve | 2022 |
Predictive Performance of Lactate as a Mortality Predictor in Patients with Acute Pancreatitis.
Topics: Acute Disease; Aged; Female; Humans; Lactic Acid; Male; Pancreatitis; Predictive Value of Tests; ROC | 2022 |
Bicarbonated Ringer's solution improves L-arg-induced acute pancreatitis in rats via the NF-κB and Nrf2 pathways.
Topics: Acute Disease; Amylases; Animals; Antioxidants; Lactic Acid; Lipase; NF-E2-Related Factor 2; NF-kapp | 2023 |
Qingyi decoction attenuates intestinal epithelial cell injury
Topics: Acute Disease; Amine Oxidase (Copper-Containing); Amylases; Animals; Caco-2 Cells; Calcineurin; Calc | 2022 |
Prognostic Value of Arterial Lactate Metabolic Clearance Rate in Moderate and Severe Acute Pancreatitis.
Topics: Acute Disease; Biomarkers; Humans; Lactic Acid; Metabolic Clearance Rate; Pancreatitis; Prognosis | 2022 |
Prognostic Value of Arterial Lactate Metabolic Clearance Rate in Moderate and Severe Acute Pancreatitis.
Topics: Acute Disease; Biomarkers; Humans; Lactic Acid; Metabolic Clearance Rate; Pancreatitis; Prognosis | 2022 |
Prognostic Value of Arterial Lactate Metabolic Clearance Rate in Moderate and Severe Acute Pancreatitis.
Topics: Acute Disease; Biomarkers; Humans; Lactic Acid; Metabolic Clearance Rate; Pancreatitis; Prognosis | 2022 |
Prognostic Value of Arterial Lactate Metabolic Clearance Rate in Moderate and Severe Acute Pancreatitis.
Topics: Acute Disease; Biomarkers; Humans; Lactic Acid; Metabolic Clearance Rate; Pancreatitis; Prognosis | 2022 |
Prognostic Value of Arterial Lactate Metabolic Clearance Rate in Moderate and Severe Acute Pancreatitis.
Topics: Acute Disease; Biomarkers; Humans; Lactic Acid; Metabolic Clearance Rate; Pancreatitis; Prognosis | 2022 |
Prognostic Value of Arterial Lactate Metabolic Clearance Rate in Moderate and Severe Acute Pancreatitis.
Topics: Acute Disease; Biomarkers; Humans; Lactic Acid; Metabolic Clearance Rate; Pancreatitis; Prognosis | 2022 |
Prognostic Value of Arterial Lactate Metabolic Clearance Rate in Moderate and Severe Acute Pancreatitis.
Topics: Acute Disease; Biomarkers; Humans; Lactic Acid; Metabolic Clearance Rate; Pancreatitis; Prognosis | 2022 |
Prognostic Value of Arterial Lactate Metabolic Clearance Rate in Moderate and Severe Acute Pancreatitis.
Topics: Acute Disease; Biomarkers; Humans; Lactic Acid; Metabolic Clearance Rate; Pancreatitis; Prognosis | 2022 |
Prognostic Value of Arterial Lactate Metabolic Clearance Rate in Moderate and Severe Acute Pancreatitis.
Topics: Acute Disease; Biomarkers; Humans; Lactic Acid; Metabolic Clearance Rate; Pancreatitis; Prognosis | 2022 |
Association between lactate-to-albumin ratio and 28-days all-cause mortality in patients with acute pancreatitis: A retrospective analysis of the MIMIC-IV database.
Topics: Acute Disease; Adult; Humans; Lactic Acid; Pancreatitis; Retrospective Studies; Serum Albumin | 2022 |
The utility of the bedside index of severity in acute pancreatitis at prognosticating adverse outcomes.
Topics: Acute Disease; Ethanol; Female; Humans; Lactic Acid; Male; Pancreatitis; Retrospective Studies | 2023 |
High-sensitivity deuterium metabolic MRI differentiates acute pancreatitis from pancreatic cancers in murine models.
Topics: Acute Disease; Animals; Deuterium; Disease Models, Animal; Humans; Lactic Acid; Magnetic Resonance I | 2023 |
The laboratory parameters and scoring systems used to predict clinical outcomes in geriatric patients with acute pancreatitis.
Topics: Acute Disease; Aged; Female; Humans; Lactic Acid; Male; Pancreatitis; Prognosis; Retrospective Studi | 2023 |
Initially elevated arterial lactate as an independent predictor of poor outcomes in severe acute pancreatitis.
Topics: Adult; Aged; Arteries; Female; Humans; Intra-Abdominal Hypertension; Lactic Acid; Male; Middle Aged; | 2020 |
Elevated arterial lactate level as an independent risk factor for pancreatic infection in moderately severe acute pancreatitis.
Topics: Acute Disease; Adult; Aged; Female; Humans; Infections; Lactic Acid; Male; Middle Aged; Pancreatitis | 2019 |
Case records of the Massachusetts General Hospital. Case 23-2013. A 54-year-old woman with abdominal pain, vomiting, and confusion.
Topics: Abdominal Pain; Acidosis, Lactic; Confusion; Diabetes Mellitus, Type 2; Diagnosis, Differential; Fem | 2013 |
Disease-based modeling to predict fluid response in intensive care units.
Topics: Acid-Base Imbalance; Adult; Aged; Aged, 80 and over; Blood Pressure; Cohort Studies; Computer Simula | 2013 |
Facile Construction of Chloroquine Containing PLGA-Based pDNA Delivery System for Efficient Tumor and Pancreatitis Targeting in Vitro and in Vivo.
Topics: Animals; Calorimetry, Differential Scanning; Chloroquine; HEK293 Cells; Humans; Lactic Acid; Male; M | 2015 |
Reducing extracellular pH sensitizes the acinar cell to secretagogue-induced pancreatitis responses in rats.
Topics: Adenosine Triphosphatases; Amylases; Animals; Carbachol; Ceruletide; Chymotrypsin; Enzyme Activation | 2009 |
Oxymatrine ameliorates L-arginine-induced acute pancreatitis in rats.
Topics: Alkaloids; Amine Oxidase (Copper-Containing); Amylases; Animals; Arginine; Claudin-1; Intestine, Sma | 2012 |
Beneficial effect of hypertonic saline resuscitation in a porcine model of severe acute pancreatitis.
Topics: Acute Disease; Animals; Biomarkers; Creatinine; Disease Models, Animal; Enzymes; Female; Hemodynamic | 2012 |
Luminal lactate in acute pancreatitis--validation and relation to disease severity.
Topics: Adult; Aged; Biomarkers; C-Reactive Protein; Cohort Studies; Critical Care; Female; Humans; Lactic A | 2012 |
Protective effects of saizen in combination with stilamin on intestinal mucosa of a rabbit model of severe acute pancreatitis.
Topics: Acute Disease; Animals; Apoptosis; Biomarkers; Caspase 3; Cytoprotection; Disease Models, Animal; Dr | 2013 |
Experimental pancreatitis causes acute perturbation of energy metabolism in the intestinal wall.
Topics: Animals; Area Under Curve; Energy Metabolism; Glucose; Intestine, Small; Lactic Acid; Liver; Male; M | 2002 |
Combined treatment with C1 esterase inhibitor and antithrombin III improves survival in severe acute experimental pancreatitis.
Topics: Acute Disease; Amylases; Animals; Antithrombin III; Biomarkers; Ceruletide; Complement C1 Inactivato | 1997 |
Whole gut washout ameliorates the progression of acute experimental pancreatitis.
Topics: Acute Disease; Alanine Transaminase; Amylases; Animals; Bicarbonates; Blood Glucose; Calcium; Diseas | 2000 |
Putative pancreatic cancer-associated diabetogenic factor: 2030 MW peptide.
Topics: Adult; Aged; Animals; Cells, Cultured; Culture Media, Conditioned; Female; Glucose; Humans; Lactic A | 2002 |
Abuse of germanium associated with fatal lactic acidosis.
Topics: Acidosis; Acute Kidney Injury; Adult; Chemical and Drug Induced Liver Injury; Female; Germanium; Hum | 1992 |
Plasma beta-endorphin and the effect of naloxone on hemodynamic changes during experimental acute pancreatitis in dogs.
Topics: Acute Disease; Adrenocorticotropic Hormone; Animals; beta-Endorphin; Blood Pressure; Cardiac Output; | 1989 |
Plasma lactate and 3-hydroxybutyrate levels in patients with acute ethanol intoxication.
Topics: 3-Hydroxybutyric Acid; Acute Disease; Adult; Aged; Alcoholic Intoxication; Blood Glucose; Diabetic K | 1986 |