Free fatty acids are responsible for the hidden blood loss in total hip and knee arthroplasty.
暂无分享,去创建一个
Yu Cong | Jianning Zhao | Nirong Bao | Zhiyong Chang | Li-wu Zhou | T. Guo | Wen-Bin Fan
[1] S. Asri-Rezaei,et al. Evaluation of antioxidant status and oxidative stress in sheep naturally infected with Babesia ovis. , 2012, Veterinary parasitology.
[2] P. Sil,et al. Tertiary butyl hydroperoxide induced oxidative damage in mice erythrocytes: Protection by taurine. , 2012, Pathophysiology : the official journal of the International Society for Pathophysiology.
[3] R. Otton,et al. Impact of the carotenoid astaxanthin on phagocytic capacity and ROS/RNS production of human neutrophils treated with free fatty acids and high glucose. , 2011, International immunopharmacology.
[4] Xianlong Zhang,et al. Hidden blood loss after total hip arthroplasty. , 2011, The Journal of arthroplasty.
[5] Qin Yang,et al. Anti- and pro-oxidant effects of (+)-catechin on hemoglobin-induced protein oxidative damage. , 2011, Toxicology in vitro : an international journal published in association with BIBRA.
[6] G. Cao,et al. Analysis on hidden blood loss of total knee arthroplasty in treating knee osteoarthritis , 2011, Chinese medical journal.
[7] Yu Cong,et al. [Prognostic significance of hidden blood loss in total hip arthroplasty (THA)]. , 2011, Zhongguo gu shang = China journal of orthopaedics and traumatology.
[8] Keerati Charoencholvanich,et al. Tranexamic Acid Reduces Blood Loss and Blood Transfusion after TKA: A Prospective Randomized Controlled Trial , 2011, Clinical orthopaedics and related research.
[9] E. Lissi,et al. Effect of pre-exposure of human erythrocytes to oxidants on the haemolytic activity of Sticholysin II. A comparison between peroxynitrite and hypochlorous acid , 2011, Free radical research.
[10] Hui Zhao,et al. The effect of tourniquet use on hidden blood loss in total knee arthroplasty , 2009, International Orthopaedics.
[11] C. Winterbourn,et al. Peroxiredoxin 2 and peroxide metabolism in the erythrocyte. , 2008, Antioxidants & redox signaling.
[12] S. Chari,et al. Pro-oxidant and anti-oxidant status in patients of sickle cell anaemia , 2004, Indian Journal of Clinical Biochemistry.
[13] J. L. Iribarren,et al. Tranexamic acid attenuates inflammatory response in cardiopulmonary bypass surgery through blockade of fibrinolysis: a case control study followed by a randomized double-blind controlled trial , 2007, Critical care.
[14] Mohamed H. Ahmed,et al. Fatal fat embolism complicating cemented total knee replacement: another manifestation of the metabolic syndrome? , 2007, Archives of Orthopaedic and Trauma Surgery.
[15] A. Mullaji,et al. Blood loss in total knee arthroplasty: an analysis of risk factors , 2007, International Orthopaedics.
[16] C. Chinopoulos,et al. Bioenergetics and the formation of mitochondrial reactive oxygen species. , 2006, Trends in pharmacological sciences.
[17] H. Kehlet,et al. Hidden blood loss after surgery for hip fracture. , 2006, The Journal of bone and joint surgery. British volume.
[18] C. Brighton,et al. Up-regulation of bone morphogenetic proteins in cultured murine bone cells with use of specific electric fields. , 2006, The Journal of bone and joint surgery. American volume.
[19] G. Reiser,et al. Rotenone-like Action of the Branched-chain Phytanic Acid Induces Oxidative Stress in Mitochondria* , 2006, Journal of Biological Chemistry.
[20] S. Yamasaki,et al. Tranexamic acid reduces postoperative blood loss in cementless total hip arthroplasty. , 2005, The Journal of bone and joint surgery. American volume.
[21] A. A. Starkov,et al. Mitochondrial metabolism of reactive oxygen species , 2005, Biochemistry (Moscow).
[22] M. Beal,et al. Mitochondrial α-Ketoglutarate Dehydrogenase Complex Generates Reactive Oxygen Species , 2004, The Journal of Neuroscience.
[23] J. Newman,et al. Hidden blood loss following hip and knee arthroplasty. Correct management of blood loss should take hidden loss into account. , 2004, The Journal of bone and joint surgery. British volume.
[24] R. Melcher,et al. Stability analysis of craniovertebral junction fixation techniques. , 2004, The Journal of bone and joint surgery. American volume.
[25] R. Gottlieb. Cytochrome P450: major player in reperfusion injury. , 2003, Archives of biochemistry and biophysics.
[26] L. Good,et al. Tranexamic acid decreases external blood loss but not hidden blood loss in total knee replacement. , 2003, British journal of anaesthesia.
[27] I. Altuntaş,et al. The effects of organophosphate insecticide methidathion on lipid peroxidation and anti-oxidant enzymes in rat erythrocytes: role of vitamins E and C , 2002, Human & experimental toxicology.
[28] M. Bryszewska,et al. Hypochlorous acid-induced oxidative damage of human red blood cells: effects of tert-butyl hydroperoxide and nitrite on the HOCl reaction with erythrocytes. , 2002, Bioelectrochemistry.
[29] S. Yoshino,et al. Abnormal Echogenic Findings Detected by Transesophageal Echocardiography and Cardiorespiratory Impairment during Total Knee Arthroplasty with Tourniquet , 2002, Anesthesiology.
[30] Igor Aurrekoetxea,et al. Pro-oxidant and antioxidant potential of catecholestrogens against ferrylmyoglobin-induced oxidative stress. , 2002, Biochimica et biophysica acta.
[31] Gary Fiskum,et al. Generation of reactive oxygen species by the mitochondrial electron transport chain , 2002, Journal of neurochemistry.
[32] R. Pitto,et al. The Clinical Relevance of Embolic Events Detected by Transesophageal Echocardiography During Cemented Total Hip Arthroplasty: A Randomized Clinical Trial , 2001, Anesthesia and analgesia.
[33] Evans,et al. How much blood is really lost in total knee arthroplasty?. Correct blood loss management should take hidden loss into account. , 2000, The Knee.
[34] S. Papa,et al. Arachidonic acid interaction with the mitochondrial electron transport chain promotes reactive oxygen species generation. , 1999, Free radical biology & medicine.
[35] Chang-an Yu,et al. Generation of Superoxide Anion by Succinate-Cytochromec Reductase from Bovine Heart Mitochondria* , 1998, The Journal of Biological Chemistry.
[36] C. Winterbourn,et al. Oxidation of intracellular glutathione after exposure of human red blood cells to hypochlorous acid. , 1995, The Biochemical journal.
[37] W. Blackburn,et al. Determinants of neutrophil HOCI generation: ligand‐dependent responses and the role of surface adhesion , 1994, Journal of leukocyte biology.
[38] J. Eaton,et al. Free fatty acids enhance hypochlorous acid production by activated neutrophils. , 1994, The Journal of laboratory and clinical medicine.
[39] B. Roelofsen,et al. Kinetics and site specificity of hydroperoxide-induced oxidative damage in red blood cells. , 1992, Free radical biology & medicine.
[40] M. Ritter,et al. Unwashed filtered shed blood collected after knee and hip arthroplasties. A source of autologous red blood cells. , 1991, The Journal of bone and joint surgery. American volume.
[41] M. Hess,et al. PGH Synthase and Lipoxygenase Generate Superoxide in the Presence of NADH or NADPH , 1986, Circulation research.
[42] T. Molski,et al. Modulation of Rabbit Neutrophil Aggregation and Degranulation by Free Fatty Acids , 1984, Journal of leukocyte biology.
[43] J B Gross,et al. Estimating allowable blood loss: corrected for dilution. , 1983, Anesthesiology.
[44] I. Walker,et al. Blood loss with knee joint replacement. , 1981, Journal of the Royal College of Surgeons of Edinburgh.
[45] R. Pringle,et al. Reduction in haemoglobin after knee joint surgery. , 1973, Annals of the rheumatic diseases.