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lactic acid and Chronic Lung Injury

lactic acid has been researched along with Chronic Lung Injury in 18 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.

Research Excerpts

ExcerptRelevanceReference
"Bosutinib as an adjunct therapy to a balanced transfusion strategy reduced resuscitation volume, improved shock reversal, and reduced vascular leak and organ injury in a rat polytrauma model."4.02Bosutinib reduces endothelial permeability and organ failure in a rat polytrauma transfusion model. ( Aman, J; Botros, L; Hollmann, MW; Juffermans, NP; Kers, J; Kleinveld, DJB; Maas, MAW, 2021)
" In both groups, blood samples were collected from the right superior pulmonary vein, and inflammation and oxidative stress markers (malondialdehyde, lactic acid, platelet-activating factor, and myeloperoxidase) were studied."3.77Does on-pump normothermic beating-heart valve surgery with low tidal volume ventilation protect the lungs? ( Altinay, L; Babaroglu, S; Cicekcioglu, F; Katircioglu, SF; Mungan, U; Parlar, AI; Saydam, GS; Topcu, DI; Tütün, U; Yay, K, 2011)
"Atelectasis also causes post-perfusion lung injury."2.78Ventilation during cardiopulmonary bypass did not attenuate inflammatory response or affect postoperative outcomes. ( Durukan, AB; Gurbuz, HA; Salman, N; Ucar, HI; Unal, EU; Yorgancioglu, CE, 2013)
"Group IV mice had the least acute lung injury, with no detectable interleukin-6 response."2.70Improved resuscitation minimizes respiratory dysfunction and blunts interleukin-6 and nuclear factor-kappa B activation after traumatic hemorrhage. ( Claridge, JA; Schulman, AM; Young, JS, 2002)
"Radiation-induced lung injury (RILI) is a consequence of therapeutic thoracic irradiation (TR) for many cancers, and there are no FDA-approved curative strategies."1.91Exhaled breath condensate identifies metabolic dysregulation in patients with radiation-induced lung injury. ( Allegood, JC; Camus, SV; Cowart, LA; Freeberg, MAT; Jackson, PD; Liu, J; Pierre-Louis Odoom, J; Sanchez Rosado, RM; Silvey, S; Sime, PJ; Szomju, BB; Thatcher, TH; Toft, R; Weiss, E, 2023)
"Acute lung injury often results in significant morbidity and mortality, and current therapeutic modalities have proven to be ineffective."1.43Nanoparticle facilitated inhalational delivery of erythropoietin receptor cDNA protects against hyperoxic lung injury. ( Gyawali, D; Hsia, CCW; Menon, JU; Moe, OW; Nguyen, KT; Punnakitikashem, P; Ravikumar, P; Takahashi, M; Togao, O; Ye, J; Zhang, J, 2016)
"To discuss the risk factors of acute respiratory distress syndrome (ARDS) in patients with sepsis in emergency department."1.42[Analysis of the risk factors of acute respiratory distress syndrome of Berlin new definition in patients with sepsis in emergency department]. ( Liu, Z; Qiao, L, 2015)
"Different animal models of experimental lung injury have been used to investigate mechanisms of lung injury."1.42Time- and dose-dependent severity of lung injury in a rat model of sepsis. ( Azamfirei, L; Cioc, AD; Copotoiu, SM; Cotoi, OS; Fodor, P; Fodor, RŞ; Georgescu, AM; Grigorescu, BL, 2015)

Research

Studies (18)

TimeframeStudies, this research(%)All Research%
pre-19901 (5.56)18.7374
1990's3 (16.67)18.2507
2000's1 (5.56)29.6817
2010's10 (55.56)24.3611
2020's3 (16.67)2.80

Authors

AuthorsStudies
Pierre-Louis Odoom, J1
Freeberg, MAT1
Camus, SV1
Toft, R1
Szomju, BB1
Sanchez Rosado, RM1
Jackson, PD1
Allegood, JC1
Silvey, S1
Liu, J1
Cowart, LA1
Weiss, E1
Thatcher, TH1
Sime, PJ1
Pourfathi, M2
Xin, Y1
Rosalino, M1
Cereda, M1
Kadlecek, S2
Duncan, I1
Profka, H2
Hamedani, H2
Siddiqui, S2
Ruppert, K1
Chatterjee, S1
Rizi, RR1
Kleinveld, DJB1
Botros, L1
Maas, MAW1
Kers, J1
Aman, J1
Hollmann, MW1
Juffermans, NP1
Bongard, RD1
Yan, K1
Hoffmann, RG1
Audi, SH1
Zhang, X1
Lindemer, BJ1
Townsley, MI1
Merker, MP1
Durukan, AB1
Gurbuz, HA1
Salman, N1
Unal, EU1
Ucar, HI1
Yorgancioglu, CE1
Thind, K1
Jensen, MD1
Hegarty, E1
Chen, AP1
Lim, H1
Martinez-Santiesteban, F1
Van Dyk, J1
Wong, E1
Scholl, TJ1
Santyr, GE1
Shaghaghi, H1
Deshpande, C1
Martinez, D1
Ishii, M1
Rizi, R1
Qiao, L1
Liu, Z1
Ravikumar, P1
Menon, JU1
Punnakitikashem, P1
Gyawali, D1
Togao, O1
Takahashi, M1
Zhang, J1
Ye, J1
Moe, OW1
Nguyen, KT1
Hsia, CCW1
Fodor, RŞ1
Georgescu, AM1
Cioc, AD1
Grigorescu, BL1
Cotoi, OS1
Fodor, P1
Copotoiu, SM1
Azamfirei, L1
Morshed, S1
Corrales, LA1
Lin, K1
Miclau, T1
Tütün, U1
Parlar, AI1
Altinay, L1
Topcu, DI1
Babaroglu, S1
Yay, K1
Mungan, U1
Cicekcioglu, F1
Saydam, GS1
Katircioglu, SF1
Eisenhut, M1
Claridge, JA1
Schulman, AM1
Young, JS1
Kellum, JA1
Kramer, DJ1
Mankad, S1
Bellomo, R1
Lee, K1
Pinsky, MR1
De Backer, D1
Creteur, J1
Zhang, H1
Norrenberg, M1
Vincent, JL1
Cryer, HG1
Mavroudis, C1
Yu, J1
Roberts, AM1
Cué, JI1
Richardson, JD1
Polk, HC1
Harmon, JW1
Sampson, JA1
Graeber, GM1
Phillips, Y1
Richmond, D1

Trials

2 trials available for lactic acid and Chronic Lung Injury

ArticleYear
Ventilation during cardiopulmonary bypass did not attenuate inflammatory response or affect postoperative outcomes.
    Cardiovascular journal of Africa, 2013, Volume: 24, Issue:6

    Topics: Aged; Biomarkers; Cardiopulmonary Bypass; Coronary Artery Bypass; Elective Surgical Procedures; Fema

2013
Improved resuscitation minimizes respiratory dysfunction and blunts interleukin-6 and nuclear factor-kappa B activation after traumatic hemorrhage.
    Critical care medicine, 2002, Volume: 30, Issue:8

    Topics: Airway Resistance; Animals; Blood Pressure; Bronchoalveolar Lavage Fluid; Cardiopulmonary Resuscitat

2002

Other Studies

16 other studies available for lactic acid and Chronic Lung Injury

ArticleYear
Exhaled breath condensate identifies metabolic dysregulation in patients with radiation-induced lung injury.
    American journal of physiology. Lung cellular and molecular physiology, 2023, 06-01, Volume: 324, Issue:6

    Topics: Biomarkers; Breath Tests; Humans; Idiopathic Pulmonary Fibrosis; Lactic Acid; Lung; Lung Injury; Lun

2023
Pulmonary pyruvate metabolism as an index of inflammation and injury in a rat model of acute respiratory distress syndrome.
    NMR in biomedicine, 2020, Volume: 33, Issue:11

    Topics: Animals; Disease Models, Animal; Hypoxia-Inducible Factor 1, alpha Subunit; Intercellular Adhesion M

2020
Bosutinib reduces endothelial permeability and organ failure in a rat polytrauma transfusion model.
    British journal of anaesthesia, 2021, Volume: 126, Issue:5

    Topics: Aniline Compounds; Animals; Blood Transfusion; Disease Models, Animal; Endothelium, Vascular; Lactic

2021
Depleted energy charge and increased pulmonary endothelial permeability induced by mitochondrial complex I inhibition are mitigated by coenzyme Q1 in the isolated perfused rat lung.
    Free radical biology & medicine, 2013, Volume: 65

    Topics: Adenosine Triphosphate; Animals; Anti-Bacterial Agents; Blood-Air Barrier; Capillary Permeability; E

2013
Mapping metabolic changes associated with early Radiation Induced Lung Injury post conformal radiotherapy using hyperpolarized ¹³C-pyruvate Magnetic Resonance Spectroscopic Imaging.
    Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology, 2014, Volume: 110, Issue:2

    Topics: Animals; Carbon Isotopes; Carbon-13 Magnetic Resonance Spectroscopy; Heart; Lactic Acid; Lung; Lung

2014
Metabolic spectroscopy of inflammation in a bleomycin-induced lung injury model using hyperpolarized 1-(13) C pyruvate.
    NMR in biomedicine, 2014, Volume: 27, Issue:8

    Topics: Analysis of Variance; Animals; Bleomycin; Carbon Isotopes; Disease Models, Animal; Inflammation; Lac

2014
[Analysis of the risk factors of acute respiratory distress syndrome of Berlin new definition in patients with sepsis in emergency department].
    Zhonghua wei zhong bing ji jiu yi xue, 2015, Volume: 27, Issue:7

    Topics: Berlin; Emergency Service, Hospital; Humans; Incidence; Lactic Acid; Lung Injury; Prognosis; Respira

2015
Nanoparticle facilitated inhalational delivery of erythropoietin receptor cDNA protects against hyperoxic lung injury.
    Nanomedicine : nanotechnology, biology, and medicine, 2016, Volume: 12, Issue:3

    Topics: Administration, Inhalation; Animals; Cell Line; DNA, Complementary; Gene Transfer Techniques; Humans

2016
Time- and dose-dependent severity of lung injury in a rat model of sepsis.
    Romanian journal of morphology and embryology = Revue roumaine de morphologie et embryologie, 2015, Volume: 56, Issue:4

    Topics: Alanine Transaminase; Animals; Arteries; Aspartate Aminotransferases; Blood Gas Analysis; Blood Urea

2015
Femoral nailing during serum bicarbonate-defined hypo-perfusion predicts pulmonary organ dysfunction in multi-system trauma patients.
    Injury, 2011, Volume: 42, Issue:7

    Topics: Adult; Anion Transport Proteins; Antiporters; Cohort Studies; Female; Femoral Fractures; Fracture Fi

2011
Does on-pump normothermic beating-heart valve surgery with low tidal volume ventilation protect the lungs?
    The heart surgery forum, 2011, Volume: 14, Issue:5

    Topics: Biomarkers; Cardiac Surgical Procedures; Coronary Artery Bypass, Off-Pump; Female; Health Status Ind

2011
The link between inhibition of nitric oxide metabolite production and reduction of LPS induced lung injury.
    International immunopharmacology, 2012, Volume: 14, Issue:2

    Topics: Animals; Humans; Lactic Acid; Lipopolysaccharides; Lung Injury; Mice; Models, Animal; Nitric Oxide;

2012
Release of lactate by the lung in acute lung injury.
    Advances in experimental medicine and biology, 1997, Volume: 411

    Topics: Biological Transport, Active; Case-Control Studies; Critical Illness; Humans; Hypoxia; Lactic Acid;

1997
Lactate production by the lungs in acute lung injury.
    American journal of respiratory and critical care medicine, 1997, Volume: 156, Issue:4 Pt 1

    Topics: Acute Disease; Animals; Cardiac Output; Female; Humans; Infant, Newborn; Lactic Acid; Lung; Lung Inj

1997
Shock, transfusion, and pneumonectomy. Death is due to right heart failure and increased pulmonary vascular resistance.
    Annals of surgery, 1990, Volume: 212, Issue:2

    Topics: Animals; Blood Pressure; Blood Transfusion; Cardiac Output; Cardiac Output, Low; Heart; Lactates; La

1990
Readily available serum chemical markers fail to aid in diagnosis of blast injury.
    The Journal of trauma, 1988, Volume: 28, Issue:1 Suppl

    Topics: Animals; Blast Injuries; Creatine Kinase; Digestive System; L-Lactate Dehydrogenase; Lactates; Lacti

1988