lactic acid has been researched along with Acute Hepatic Failure in 59 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 |
---|---|---|
"Splenic rupture followed by lactic acidosis and hypoglycaemia should lead to suspicion of a cancer-mediated Warburg effect, and prompt urgent chemotherapy." | 8.31 | B-cell hepatosplenic lymphoma presenting in adult patient after spontaneous splenic rupture followed by severe persistent hypoglycaemia: type B lactic acidosis and acute liver failure. ( Gude, MF; Hamilton-Dutoit, S; Moen, M; Steiniche, T, 2023) |
" Several patients with lactic acidosis and glucose levels below 1." | 7.80 | A patient with acute liver failure and extreme hypoglycaemia with lactic acidosis who was not in a coma: causes and consequences of lactate-protected hypoglycaemia. ( Gladden, LB; Goodwin, ML; McDonald, JR; Nijsten, MW; Oldenbeuving, G; Reijngoud, DJ; Sayilir, R, 2014) |
"Data were collected early after admission and again at the time of onset of grade 3-4 hepatic encephalopathy from acetaminophen-induced fulminant hepatic failure." | 7.73 | Prognostic implications of hyperlactatemia, multiple organ failure, and systemic inflammatory response syndrome in patients with acetaminophen-induced acute liver failure. ( Larsen, FS; Schmidt, LE, 2006) |
"Splenic rupture followed by lactic acidosis and hypoglycaemia should lead to suspicion of a cancer-mediated Warburg effect, and prompt urgent chemotherapy." | 4.31 | B-cell hepatosplenic lymphoma presenting in adult patient after spontaneous splenic rupture followed by severe persistent hypoglycaemia: type B lactic acidosis and acute liver failure. ( Gude, MF; Hamilton-Dutoit, S; Moen, M; Steiniche, T, 2023) |
" Several patients with lactic acidosis and glucose levels below 1." | 3.80 | A patient with acute liver failure and extreme hypoglycaemia with lactic acidosis who was not in a coma: causes and consequences of lactate-protected hypoglycaemia. ( Gladden, LB; Goodwin, ML; McDonald, JR; Nijsten, MW; Oldenbeuving, G; Reijngoud, DJ; Sayilir, R, 2014) |
"The pathogenesis of brain edema in an experimental model of ALF involves a cytotoxic mechanism: the metabolism of ammonia in astrocytes induces an increase of glutamine and lactate that appears to mediate cellular swelling." | 3.76 | Diffusion tensor imaging supports the cytotoxic origin of brain edema in a rat model of acute liver failure. ( Alonso, J; Chavarria, L; Cordoba, J; Lope-Piedrafita, S; Oria, M; Romero-Gimenez, J, 2010) |
"Hyperammonemia causes brain edema and high intracranial pressure (ICP) in acute liver failure (ALF) by accumulation of glutamine in brain." | 3.74 | Cerebral glutamine concentration and lactate-pyruvate ratio in patients with acute liver failure. ( Bjerring, PN; Frederiksen, HJ; Hansen, BA; Hauerberg, J; Jorgensen, L; Larsen, FS; Tofteng, F, 2008) |
"The most common causes of ALF were indeterminate liver failure (21%), acute hepatitis B (18%), acetaminophen ingestion (16%), and Budd-Chiari syndrome (9%)." | 3.74 | Prognostic implications of lactate, bilirubin, and etiology in German patients with acute liver failure. ( Bahr, MJ; Hadem, J; Klempnauer, J; Manns, MP; Rifai, K; Schneider, AS; Stiefel, P; Tillmann, HL; Wedemeyer, H, 2008) |
"Data were collected early after admission and again at the time of onset of grade 3-4 hepatic encephalopathy from acetaminophen-induced fulminant hepatic failure." | 3.73 | Prognostic implications of hyperlactatemia, multiple organ failure, and systemic inflammatory response syndrome in patients with acetaminophen-induced acute liver failure. ( Larsen, FS; Schmidt, LE, 2006) |
"Brain alterations such as hepatic encephalopathy or brain edema are usually associated with liver failure." | 2.50 | Magnetic resonance of the brain in chronic and acute liver failure. ( Chavarria, L; Cordoba, J, 2014) |
"In patients with acute liver failure cerebral microdialysis studies show a linear correlation between the lactate to pyruvate ratio and the glutamine concentration, as well as to some of the adenosine triphosphate degradation products." | 2.49 | Changes in cerebral oxidative metabolism in patients with acute liver failure. ( Bjerring, PN; Larsen, FS, 2013) |
"2." | 2.43 | Selection for acute liver failure: have we got it right? ( Blei, AT, 2005) |
"There is increasing evidence that both acute liver failure and sepsis are accompanied by a hypermetabolic state in the hepatosplanchnic area, characterized by enhanced glycolysis and hyperlactatemia." | 2.42 | Splanchnic metabolism in acute liver failure and sepsis. ( Clemmesen, O; Larsen, FS; Ott, P, 2004) |
"Massive cellular necrosis in acute liver failure (ALF) is dominantly immune mediated and innate immune cells are major pathophysiological determinants in liver damage." | 1.62 | Higher circulating natural killer cells and lower lactate levels at admission predict spontaneous survival in non-acetaminophen induced acute liver failure. ( Agrawal, T; Bajpai, M; Jagdish, RK; Maiwall, R; Rajan, V; Sarin, SK; Trehanpati, N, 2021) |
" In a separate dose-response experiment cortex from healthy rats was incubated for 120 min in ammonium acetate in concentrations up to 80 mM prior to respirometry." | 1.46 | Accumulation of lactate in the rat brain during hyperammonaemia is not associated with impaired mitochondrial respiratory capacity. ( Bjerring, PN; Larsen, FS; Witt, AM, 2017) |
"We investigated the association between hepatic encephalopathy (HE) scores, abnormal EEG or neuroimaging, and short-term outcome." | 1.40 | EEG abnormalities are associated with increased risk of transplant or poor outcome in children with acute liver failure. ( Alonso, E; Goldstein, J; Grimason, M; Hussain, E; Smith, CM; Wainwright, MS; Whitington, PF, 2014) |
"Cerebral edema is a well-recognized and potentially fatal complication of acute liver failure (ALF)." | 1.39 | Cerebral microdialysis reflects the neuroprotective effect of fractionated plasma separation and adsorption in acute liver failure better and earlier than intracranial pressure: a controlled study in pigs. ( Koblihova, E; Laszikova, E; Pantoflicek, T; Prazak, J; Ryska, M; Ryska, O, 2013) |
"Acetaminophen-induced acute liver failure (ALF) is a complex multiorgan illness." | 1.38 | Comparison of the sequential organ failure assessment score with the King's College Hospital criteria and the model for end-stage liver disease score for the prognosis of acetaminophen-induced acute liver failure. ( Agarwal, B; Betrosian, A; Burroughs, AK; Cholongitas, E; O'Beirne, J; Patch, D; Shaw, S; Theocharidou, E; Vasianopoulou, P, 2012) |
"Seven patients with acute liver failure and high risk of intracranial hypertension were included for cerebral microdialysis and intracranial pressure monitoring." | 1.38 | The effect of fractionated plasma separation and adsorption on cerebral amino acid metabolism and oxidative metabolism during acute liver failure. ( Bjerring, PN; Clemmesen, JO; Frederiksen, HJ; Hauerberg, J; Larsen, FS; Nielsen, HB, 2012) |
"Patients with acute liver failure (ALF) often die of intracranial pressure (IP) and cerebral herniation." | 1.37 | Brain region-selective mechanisms contribute to the progression of cerebral alterations in acute liver failure in rats. ( Agusti, A; Boix, J; Cauli, O; Cerdán, S; Felipo, V; López-Larrubia, P; Nieto-Charques, L; Rodrigo, R, 2011) |
"The pathogenesis of cerebral edema in acute liver failure is suggested, in in vitro and animal studies, to involve a compromised oxidative metabolism with a decrease in cerebral ATP levels and an increase in purine concentrations." | 1.36 | Brain hypoxanthine concentration correlates to lactate/pyruvate ratio but not intracranial pressure in patients with acute liver failure. ( Bjerring, PN; Frederiksen, HJ; Hansen, BA; Hauerberg, J; Jørgensen, L; Larsen, FS; Tofteng, F, 2010) |
"Acute liver failure is often accompanied by hyperdynamic circulation, which is also a characteristic of septic shock." | 1.35 | Hemodynamics and metabolic studies on septic shock in patients with acute liver failure. ( Chen, PC; Chen, YC; Chu, YY; Fang, JT; Lien, JM; Peng, YS; Tang, JH; Tian, YC; Tsai, MH; Wu, CS; Yang, C, 2008) |
"We previously demonstrated in pigs with acute liver failure (ALF) that albumin dialysis using the molecular adsorbents recirculating system (MARS) attenuated a rise in intracranial pressure (ICP)." | 1.34 | Association of reduced extracellular brain ammonia, lactate, and intracranial pressure in pigs with acute liver failure. ( Belanger, M; Davies, NA; Jalan, R; Nedredal, GI; Revhaug, A; Rose, C; Sen, S; Ytrebø, LM, 2007) |
"Fulminant hepatic encephalopathy has a high mortality." | 1.33 | Microdialysis in the management of hepatic encephalopathy. ( Al-Rawi, PG; Czosnyka, M; Gimson, A; Hutchinson, PJ; Menon, DK; O'Connell, MT, 2006) |
"Hepatocyte regeneration in acute hepatic failure is essential for recovery, but requires a large amount of energy." | 1.29 | Plasma exchange and the arterial blood ketone body ratio in patients with acute hepatic failure. ( Maeda, T; Onishi, S; Saibara, T; Yamamoto, Y, 1994) |
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 1 (1.69) | 18.2507 |
2000's | 23 (38.98) | 29.6817 |
2010's | 31 (52.54) | 24.3611 |
2020's | 4 (6.78) | 2.80 |
Authors | Studies |
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Alhadab, A | 1 |
AlShihabi, H | 1 |
Mohamed, F | 1 |
AlDuhilib, Z | 1 |
Arain, Z | 1 |
Bader, R | 1 |
Moen, M | 1 |
Hamilton-Dutoit, S | 1 |
Steiniche, T | 1 |
Gude, MF | 1 |
Figueira, ERR | 1 |
Rocha-Filho, JA | 1 |
Lanchotte, C | 1 |
Nacif, LS | 1 |
de Paiva Haddad, LB | 1 |
Assalin, AR | 1 |
Shinkado, YR | 1 |
Vintimilla, AM | 1 |
Galvao, FHF | 1 |
D'Albuquerque, LAC | 1 |
Agrawal, T | 1 |
Maiwall, R | 1 |
Rajan, V | 1 |
Bajpai, M | 1 |
Jagdish, RK | 1 |
Sarin, SK | 1 |
Trehanpati, N | 1 |
Wei, YL | 1 |
Tian, Q | 1 |
Zhao, XX | 1 |
Qiu, GZ | 1 |
Xu, Y | 1 |
Sasaki, K | 1 |
Sakamoto, S | 1 |
Uchida, H | 1 |
Narumoto, S | 1 |
Shigeta, T | 1 |
Fukuda, A | 1 |
Ito, R | 1 |
Irie, R | 1 |
Yoshioka, T | 1 |
Murayama, K | 1 |
Kasahara, M | 1 |
Michard, B | 1 |
Artzner, T | 1 |
Lebas, B | 1 |
Besch, C | 1 |
Guillot, M | 1 |
Faitot, F | 1 |
Lefebvre, F | 1 |
Bachellier, P | 1 |
Castelain, V | 1 |
Maestraggi, Q | 1 |
Schneider, F | 1 |
Prazak, J | 2 |
Laszikova, E | 2 |
Pantoflicek, T | 2 |
Ryska, O | 2 |
Koblihova, E | 2 |
Ryska, M | 2 |
Chavarria, L | 3 |
Cordoba, J | 3 |
Hussain, E | 1 |
Grimason, M | 1 |
Goldstein, J | 1 |
Smith, CM | 1 |
Alonso, E | 1 |
Whitington, PF | 1 |
Wainwright, MS | 1 |
Amathieu, R | 1 |
Triba, MN | 1 |
Nahon, P | 1 |
Bouchemal, N | 1 |
Kamoun, W | 1 |
Haouache, H | 1 |
Trinchet, JC | 1 |
Savarin, P | 1 |
Le Moyec, L | 1 |
Dhonneur, G | 1 |
Chang, RA | 1 |
Chen, Z | 1 |
Li, ZF | 1 |
Oldenbeuving, G | 1 |
McDonald, JR | 1 |
Goodwin, ML | 1 |
Sayilir, R | 1 |
Reijngoud, DJ | 1 |
Gladden, LB | 1 |
Nijsten, MW | 1 |
Romero-Giménez, J | 2 |
Monteagudo, E | 1 |
Lope-Piedrafita, S | 2 |
Maharaj, R | 1 |
Pingitore, A | 1 |
Menon, K | 1 |
Kane, P | 1 |
Wendon, J | 1 |
Bernal, W | 3 |
Liu, M | 1 |
Yang, J | 1 |
Hu, W | 1 |
Zhang, S | 1 |
Wang, Y | 1 |
Hertz, L | 1 |
Song, D | 1 |
Peng, L | 1 |
Chen, Y | 1 |
Özçay, F | 1 |
Karadağ Öncel, E | 1 |
Barış, Z | 1 |
Canan, O | 1 |
Moray, G | 1 |
Haberal, M | 1 |
Witt, AM | 1 |
Larsen, FS | 10 |
Bjerring, PN | 5 |
Feldman, AG | 1 |
Sokol, RJ | 1 |
Hardison, RM | 1 |
Alonso, EM | 1 |
Squires, RH | 1 |
Narkewicz, MR | 1 |
Tsai, MH | 1 |
Chen, YC | 1 |
Lien, JM | 1 |
Tian, YC | 1 |
Peng, YS | 1 |
Fang, JT | 1 |
Yang, C | 1 |
Tang, JH | 1 |
Chu, YY | 1 |
Chen, PC | 1 |
Wu, CS | 1 |
Novelli, G | 1 |
Rossi, M | 1 |
Ferretti, G | 1 |
Pugliese, F | 1 |
Ruberto, F | 1 |
Lai, Q | 1 |
Novelli, S | 1 |
Piemonte, V | 1 |
Turchetti, L | 1 |
Morabito, V | 1 |
Annesini, MC | 1 |
Berloco, PB | 1 |
Oria, M | 1 |
Alonso, J | 1 |
Du, WB | 1 |
Pan, XP | 1 |
Li, LJ | 1 |
Schmidt, LE | 2 |
Kjelland, CB | 1 |
Djogovic, D | 1 |
Hauerberg, J | 4 |
Jørgensen, L | 1 |
Frederiksen, HJ | 4 |
Tofteng, F | 2 |
Hansen, BA | 3 |
Westbrook, RH | 1 |
Yeoman, AD | 1 |
Joshi, D | 1 |
Heaton, ND | 2 |
Quaglia, A | 1 |
O'Grady, JG | 1 |
Auzinger, G | 1 |
Heneghan, MA | 1 |
Wendon, JA | 2 |
Cauli, O | 1 |
López-Larrubia, P | 1 |
Rodrigo, R | 1 |
Agusti, A | 1 |
Boix, J | 1 |
Nieto-Charques, L | 1 |
Cerdán, S | 1 |
Felipo, V | 1 |
Dabos, KJ | 1 |
Whalen, HR | 1 |
Newsome, PN | 1 |
Parkinson, JA | 1 |
Henderson, NC | 1 |
Sadler, IH | 1 |
Hayes, PC | 1 |
Plevris, JN | 1 |
Cholongitas, E | 2 |
Theocharidou, E | 1 |
Vasianopoulou, P | 1 |
Betrosian, A | 1 |
Shaw, S | 3 |
Patch, D | 3 |
O'Beirne, J | 2 |
Agarwal, B | 1 |
Burroughs, AK | 3 |
Nielsen, HB | 1 |
Clemmesen, JO | 1 |
Li, GZ | 1 |
Wang, ZH | 1 |
Cui, W | 1 |
Fu, JL | 1 |
Wang, YR | 1 |
Liu, P | 1 |
Roy, P | 1 |
Das, S | 1 |
Auddy, RG | 1 |
Saha, A | 1 |
Mukherjee, A | 1 |
Zwingmann, C | 2 |
Chatauret, N | 4 |
Leibfritz, D | 2 |
Butterworth, RF | 4 |
Rose, C | 4 |
van de Kerkhove, MP | 1 |
Di Florio, E | 1 |
Scuderi, V | 1 |
Mancini, A | 1 |
Belli, A | 1 |
Bracco, A | 1 |
Scala, D | 1 |
Scala, S | 1 |
Zeuli, L | 1 |
Di Nicuolo, G | 1 |
Amoroso, P | 1 |
Calise, F | 1 |
Chamuleau, RA | 1 |
Clemmesen, O | 1 |
Ott, P | 1 |
Lee, KU | 1 |
Zheng, LX | 1 |
Cho, YB | 1 |
Kim, KH | 1 |
Ha, J | 1 |
Suh, KS | 1 |
Jung, SE | 1 |
Macquillan, GC | 2 |
Seyam, MS | 1 |
Nightingale, P | 1 |
Neuberger, JM | 1 |
Murphy, N | 1 |
Blei, AT | 1 |
Cholongitas, EB | 1 |
Betrossian, A | 2 |
Leandro, G | 1 |
Hutchinson, PJ | 1 |
Gimson, A | 1 |
Al-Rawi, PG | 1 |
O'Connell, MT | 1 |
Czosnyka, M | 1 |
Menon, DK | 1 |
Eefsen, M | 1 |
Dethloff, T | 1 |
Ytrebø, LM | 1 |
Davies, NA | 1 |
Sen, S | 1 |
Nedredal, GI | 1 |
Belanger, M | 1 |
Revhaug, A | 1 |
Jalan, R | 1 |
Gow, PJ | 1 |
Warrilow, S | 1 |
Lontos, S | 1 |
Lubel, J | 1 |
Wongseelashote, S | 1 |
Jones, RM | 1 |
Bellomo, R | 1 |
Angus, PW | 1 |
Senzolo, M | 1 |
Jorgensen, L | 1 |
Hadem, J | 1 |
Stiefel, P | 1 |
Bahr, MJ | 1 |
Tillmann, HL | 1 |
Rifai, K | 1 |
Klempnauer, J | 1 |
Wedemeyer, H | 1 |
Manns, MP | 1 |
Schneider, AS | 1 |
Saibara, T | 1 |
Maeda, T | 1 |
Onishi, S | 1 |
Yamamoto, Y | 1 |
Pere, P | 1 |
Höckerstedt, K | 1 |
Isoniemi, H | 1 |
Lindgren, L | 1 |
Murphy, ND | 1 |
Kodakat, SK | 1 |
Jooste, CA | 1 |
Muiesan, P | 1 |
Rela, M | 1 |
Therrien, G | 1 |
Trial | Phase | Enrollment | Study Type | Start Date | Status | ||
---|---|---|---|---|---|---|---|
A Multi-Center Group to Study Acute Liver Failure in Children[NCT00986648] | 158 participants (Actual) | Observational | 2000-01-31 | Completed | |||
Cerebral Microdialysis in Patients With Fulminant Hepatic Failure[NCT00836420] | 50 participants (Actual) | Observational | 2000-01-31 | Completed | |||
[information is prepared from clinicaltrials.gov, extracted Sep-2024] |
7 reviews available for lactic acid and Acute Hepatic Failure
Article | Year |
---|---|
Magnetic resonance of the brain in chronic and acute liver failure.
Topics: Aspartic Acid; Biomarkers; Brain; Brain Chemistry; Brain Edema; Choline; Creatine; Glutamic Acid; Gl | 2014 |
Multifactorial Effects on Different Types of Brain Cells Contribute to Ammonia Toxicity.
Topics: Ammonia; Animals; Astrocytes; Brain; Cyclic GMP; Energy Metabolism; Glutamine; Hepatic Encephalopath | 2017 |
Prognostic models for acute liver failure.
Topics: alpha-Fetoproteins; Ammonia; Humans; Lactic Acid; Liver Failure, Acute; Models, Biological; Phosphat | 2010 |
The role of serum lactate in the acute care setting.
Topics: Acidosis, Lactic; Adult; Aged; Antiretroviral Therapy, Highly Active; Biomarkers; Critical Care; Dru | 2010 |
Changes in cerebral oxidative metabolism in patients with acute liver failure.
Topics: Amino Acids; Ammonia; Animals; Brain; Brain Chemistry; Humans; Hyperammonemia; Lactic Acid; Liver Fa | 2013 |
Splanchnic metabolism in acute liver failure and sepsis.
Topics: Humans; Ketone Bodies; Lactic Acid; Liver Failure, Acute; Oxygen Consumption; Sepsis; Splanchnic Cir | 2004 |
Selection for acute liver failure: have we got it right?
Topics: alpha-Fetoproteins; Biomarkers; Decision Making; Graft Survival; Humans; Lactic Acid; Liver Failure, | 2005 |
1 trial available for lactic acid and Acute Hepatic Failure
Article | Year |
---|---|
Bridging a patient with acute liver failure to liver transplantation by the AMC-bioartificial liver.
Topics: Adult; Ammonia; Animals; Bilirubin; Female; Hepatitis B; Hepatocytes; Humans; Lactic Acid; Liver Fai | 2003 |
51 other studies available for lactic acid and Acute Hepatic Failure
Article | Year |
---|---|
Pediatric acute liver failure in Saudi Arabia: prognostic indicators, outcomes and the role of genetic testing.
Topics: Child; Genetic Testing; Humans; Lactic Acid; Liver Failure, Acute; Prognosis; Retrospective Studies; | 2023 |
B-cell hepatosplenic lymphoma presenting in adult patient after spontaneous splenic rupture followed by severe persistent hypoglycaemia: type B lactic acidosis and acute liver failure.
Topics: Acidosis, Lactic; Adult; Humans; Hypoglycemia; Lactic Acid; Liver Failure, Acute; Lymphoma, Non-Hodg | 2023 |
Creatinine-lactate score predicts mortality in non-acetaminophen-induced acute liver failure in patients listed for liver transplantation.
Topics: Adult; Creatinine; Female; Humans; Lactic Acid; Liver Failure, Acute; Liver Transplantation; Male; M | 2021 |
Higher circulating natural killer cells and lower lactate levels at admission predict spontaneous survival in non-acetaminophen induced acute liver failure.
Topics: Adult; Female; Humans; Killer Cells, Natural; Lactic Acid; Liver Failure, Acute; Male; Middle Aged; | 2021 |
Association between MFN2 gene polymorphisms and the risk and prognosis of acute liver failure: a case-control study in a Chinese population.
Topics: Adult; Ammonia; Asian People; Case-Control Studies; China; Female; Gene Frequency; Genetic Predispos | 2017 |
Liver Transplantation for Mitochondrial Respiratory Chain Disorder: A Single-Center Experience and Excellent Marker of Differential Diagnosis.
Topics: Adult; Biomarkers; Diagnosis, Differential; Female; Humans; Lactic Acid; Liver Failure, Acute; Liver | 2017 |
Liver transplantation in critically ill patients: Preoperative predictive factors of post-transplant mortality to avoid futility.
Topics: Adult; Critical Illness; Female; Follow-Up Studies; Graft Rejection; Humans; Lactic Acid; Liver Fail | 2017 |
Cerebral microdialysis reflects the neuroprotective effect of fractionated plasma separation and adsorption in acute liver failure better and earlier than intracranial pressure: a controlled study in pigs.
Topics: Ammonia; Animals; Brain Edema; Cerebrum; Extracorporeal Circulation; Glucose; Glutamic Acid; Glutami | 2013 |
EEG abnormalities are associated with increased risk of transplant or poor outcome in children with acute liver failure.
Topics: Alanine Transaminase; Aspartate Aminotransferases; Child; Child, Preschool; Electroencephalography; | 2014 |
Serum 1H-NMR metabolomic fingerprints of acute-on-chronic liver failure in intensive care unit patients with alcoholic cirrhosis.
Topics: Biomarkers; Creatinine; Glutamine; Humans; Intensive Care Units; Ketone Bodies; Lactic Acid; Liver C | 2014 |
Role of HGF-loaded nanoparticles in treating rat acute hepatic failure.
Topics: Animals; Biomarkers; Cells, Cultured; Chemistry, Pharmaceutical; Chitosan; Delayed-Action Preparatio | 2013 |
A patient with acute liver failure and extreme hypoglycaemia with lactic acidosis who was not in a coma: causes and consequences of lactate-protected hypoglycaemia.
Topics: Acetaminophen; Acidosis, Lactic; Analgesics, Non-Narcotic; Blood Glucose; Follow-Up Studies; Humans; | 2014 |
Real-time assessment of ¹³C metabolism reveals an early lactate increase in the brain of rats with acute liver failure.
Topics: Alanine; Animals; Brain; Carbon; Carbon Isotopes; Computer Systems; Disease Progression; Lactic Acid | 2015 |
Images of the Month: MDMA-Induced Acute Liver Failure and Transient Abdominal Pneumatosis.
Topics: Adult; Female; Heart; Humans; Ileus; Kidney; Lactic Acid; Liver; Liver Failure, Acute; N-Methyl-3,4- | 2015 |
Superior performance of co-cultured mesenchymal stem cells and hepatocytes in poly(lactic acid-glycolic acid) scaffolds for the treatment of acute liver failure.
Topics: Animals; Biocompatible Materials; Cell Differentiation; Cell Survival; Cells, Cultured; Coculture Te | 2016 |
Etiologies, outcomes, and prognostic factors of pediatric acute liver failure: A single center's experience in Turkey.
Topics: Adolescent; Ammonia; Bilirubin; Blood Coagulation Tests; Child; Child, Preschool; Female; Hepatitis | 2016 |
Accumulation of lactate in the rat brain during hyperammonaemia is not associated with impaired mitochondrial respiratory capacity.
Topics: Animals; Biosensing Techniques; Brain Chemistry; Cerebral Cortex; Citric Acid Cycle; Encephalitis; H | 2017 |
Lactate and Lactate: Pyruvate Ratio in the Diagnosis and Outcomes of Pediatric Acute Liver Failure.
Topics: Adolescent; Age Factors; Biomarkers; Child; Child, Preschool; Cohort Studies; Female; Humans; Lactic | 2017 |
Hemodynamics and metabolic studies on septic shock in patients with acute liver failure.
Topics: Aldosterone; APACHE; Blood Gas Analysis; Female; Hemodynamics; Hepatitis B; Hospital Mortality; Huma | 2008 |
Predictive criteria for the outcome of patients with acute liver failure treated with the albumin dialysis molecular adsorbent recirculating system.
Topics: Adult; Albumins; Critical Care; Cytokines; Dialysis; Female; Hemodynamics; Humans; Lactic Acid; Live | 2009 |
Diffusion tensor imaging supports the cytotoxic origin of brain edema in a rat model of acute liver failure.
Topics: Ammonia; Animals; Astrocytes; Blood-Brain Barrier; Brain; Brain Edema; Diffusion Tensor Imaging; Glu | 2010 |
Is lactate concentration of major value in determining the prognosis in patients with acute liver failure? Hardly.
Topics: Acetaminophen; Humans; Lactic Acid; Liver Failure, Acute; Liver Transplantation; Patient Selection; | 2010 |
Lactate is important in determining prognosis in acute liver failure.
Topics: Humans; Lactic Acid; Liver Failure, Acute; Liver Transplantation; Patient Selection; Prognosis | 2010 |
Brain hypoxanthine concentration correlates to lactate/pyruvate ratio but not intracranial pressure in patients with acute liver failure.
Topics: Adolescent; Adult; Brain; Brain Edema; Female; Humans; Hyperammonemia; Hypoxanthine; Inosine; Intrac | 2010 |
Outcomes of severe pregnancy-related liver disease: refining the role of transplantation.
Topics: Adult; Fatty Liver; Female; Humans; Hypertension, Pregnancy-Induced; Lactic Acid; Liver Diseases; Li | 2010 |
Brain region-selective mechanisms contribute to the progression of cerebral alterations in acute liver failure in rats.
Topics: Ammonia; Animals; Blood-Brain Barrier; Brain Edema; Capillary Permeability; Cerebellum; Cerebrum; En | 2011 |
Impaired gluconeogenesis in a porcine model of paracetamol induced acute liver failure.
Topics: Acetaminophen; Amino Acids; Animals; Biomarkers; Citric Acid Cycle; Disease Models, Animal; Gluconeo | 2011 |
Comparison of the sequential organ failure assessment score with the King's College Hospital criteria and the model for end-stage liver disease score for the prognosis of acetaminophen-induced acute liver failure.
Topics: Acetaminophen; Adult; Analgesics, Non-Narcotic; APACHE; Biomarkers; Chemical and Drug Induced Liver | 2012 |
Artificial liver support system reduces intracranial pressure more effectively than bioartificial system: an experimental study.
Topics: Ammonia; Animals; Bilirubin; Biomarkers; Cerebrovascular Circulation; Disease Models, Animal; Equipm | 2012 |
The effect of fractionated plasma separation and adsorption on cerebral amino acid metabolism and oxidative metabolism during acute liver failure.
Topics: Adult; Amino Acids; Cerebrum; Dialysis Solutions; Extracorporeal Circulation; Female; Glutamine; Hep | 2012 |
Tumor necrosis factor alpha increases intestinal permeability in mice with fulminant hepatic failure.
Topics: Animals; Claudin-1; Colon; Intestinal Mucosa; Lactic Acid; Liver Failure, Acute; Male; Mice; Mice, I | 2012 |
Engineered andrographolide nanoparticles mitigate paracetamol hepatotoxicity in mice.
Topics: Acetaminophen; Analgesics, Non-Narcotic; Animals; Anti-Inflammatory Agents; Diterpenes; Heparin; Lac | 2013 |
Selective increase of brain lactate synthesis in experimental acute liver failure: results of a [H-C] nuclear magnetic resonance study.
Topics: Amino Acids; Ammonia; Animals; Blood; Body Water; Brain; Brain Edema; Carbon Isotopes; Glucose; Hepa | 2003 |
Mild hypothermia in the prevention of brain edema in acute liver failure: mechanisms and clinical prospects.
Topics: Ammonia; Brain; Brain Edema; Glutamic Acid; Humans; Hypothermia, Induced; Lactic Acid; Liver Failure | 2002 |
Effects of hypothermia on brain glucose metabolism in acute liver failure: a H/C-nuclear magnetic resonance study.
Topics: Alanine; Amino Acids; Animals; Brain; Citric Acid Cycle; Glucose; Hypothermia, Induced; Lactic Acid; | 2003 |
An experimental animal model of fulminant hepatic failure in pigs.
Topics: Acidosis; Ammonia; Animals; Aspartate Aminotransferases; Bilirubin; Blood Glucose; Blood Urea Nitrog | 2005 |
Blood lactate but not serum phosphate levels can predict patient outcome in fulminant hepatic failure.
Topics: Adult; Biomarkers; Female; Humans; Lactic Acid; Liver Failure, Acute; Liver Transplantation; Male; M | 2005 |
Prognostic implications of hyperlactatemia, multiple organ failure, and systemic inflammatory response syndrome in patients with acetaminophen-induced acute liver failure.
Topics: Acetaminophen; Adolescent; Adult; Aged; Analgesics, Non-Narcotic; Child; Female; Hepatic Encephalopa | 2006 |
King's criteria, APACHE II, and SOFA scores in acute liver failure.
Topics: Acetaminophen; Adult; Analgesics, Non-Narcotic; APACHE; Female; Humans; Lactic Acid; Liver Failure, | 2006 |
Is it worthwhile to use cerebral microdialysis in patients with acute liver failure?
Topics: Acetaminophen; Analgesics, Non-Narcotic; Anti-Inflammatory Agents, Non-Steroidal; Blood Glucose; Bra | 2006 |
Microdialysis in the management of hepatic encephalopathy.
Topics: Acetaminophen; Analgesics, Non-Narcotic; Blood Glucose; Brain; Brain Edema; Critical Care; Dextropro | 2006 |
Comparison of terlipressin and noradrenalin on cerebral perfusion, intracranial pressure and cerebral extracellular concentrations of lactate and pyruvate in patients with acute liver failure in need of inotropic support.
Topics: Adolescent; Adult; Brain; Cerebrovascular Circulation; Extracellular Fluid; Female; Humans; Intracra | 2007 |
Association of reduced extracellular brain ammonia, lactate, and intracranial pressure in pigs with acute liver failure.
Topics: Ammonia; Animals; Brain Chemistry; Disease Models, Animal; Extracellular Space; Female; Glutamic Aci | 2007 |
Time to review the selection criteria for transplantation in paracetamol-induced fulminant hepatic failure?
Topics: Acetaminophen; Analgesics, Non-Narcotic; Biomarkers; Humans; Lactic Acid; Liver Failure, Acute; Live | 2007 |
Prognostic impact of lactate in acute liver failure.
Topics: Adult; Biomarkers; Female; Follow-Up Studies; Humans; Lactic Acid; Liver Failure, Acute; Male; Progn | 2008 |
Cerebral glutamine concentration and lactate-pyruvate ratio in patients with acute liver failure.
Topics: Adolescent; Adult; Aged; Astrocytes; Brain; Brain Edema; Critical Care; Female; Glutamine; Humans; H | 2008 |
Prognostic implications of lactate, bilirubin, and etiology in German patients with acute liver failure.
Topics: Acetaminophen; Adolescent; Adult; Aged; Analgesics, Non-Narcotic; Bilirubin; Biomarkers; Budd-Chiari | 2008 |
Plasma exchange and the arterial blood ketone body ratio in patients with acute hepatic failure.
Topics: 3-Hydroxybutyric Acid; Acetoacetates; Adult; Aged; Arteries; Child; Citrates; Citric Acid; Female; H | 1994 |
Cerebral blood flow and oxygenation in liver transplantation for acute or chronic hepatic disease without venovenous bypass.
Topics: Adolescent; Adult; Aged; Anesthesia, General; Blood Flow Velocity; Brain; Cerebrovascular Circulatio | 2000 |
Liver and intestinal lactate metabolism in patients with acute hepatic failure undergoing liver transplantation.
Topics: Female; Hepatic Veins; Humans; International Normalized Ratio; Intestinal Mucosa; Lactic Acid; Liver | 2001 |
Mild hypothermia prevents cerebral edema and CSF lactate accumulation in acute liver failure.
Topics: Ammonia; Animals; Brain; Brain Edema; Energy Metabolism; Hepatic Encephalopathy; Hypothermia, Induce | 2001 |