Impairment of blood rheology by cholestatic jaundice in human beings.
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[1] W. Arossa,et al. Diagnostic value of serum bile acids and routine liver function tests in hepatobiliary diseases , 1983, Digestive Diseases and Sciences.
[2] S. Isaji,et al. Comparative Study of Perioperative Management of Hepatic Resection , 2000, Digestive Diseases and Sciences.
[3] W. Reinhart,et al. Commercial taxane formulations induce stomatocytosis and increase blood viscosity , 2001, British journal of pharmacology.
[4] S. Shott,et al. Hypertriglyceridemia and other factors associated with plasma viscosity. , 2001, The American journal of medicine.
[5] C. Brondino,et al. Effects of bilirubin molecular species on membrane dynamic properties of human erythrocyte membranes: a spin label electron paramagnetic resonance spectroscopy study. , 2001, Archives of biochemistry and biophysics.
[6] M. Mayer,et al. Association of serum bilirubin concentration with risk of coronary artery disease. , 2000, Clinical chemistry.
[7] P. Schwandt,et al. Contribution of fibrinogen and lipoproteins to plasma viscosity in hypercholesterolemia and hypertriglyceridemia: evaluation by selective depletion of low-density lipoproteins or fibrinogen. , 2000, Metabolism: clinical and experimental.
[8] Rui F. M. Silva,et al. Assessment of bilirubin toxicity to erythrocytes. Implication in neonatal jaundice management , 2000, European journal of clinical investigation.
[9] H. Meiselman,et al. Ifosfamide‐induced stomatocytosis and mesna‐induced echinocytosis: influence on biorheological properties of blood , 1999, European journal of haematology.
[10] P. Dennery,et al. Antioxidant and Cytotoxic Effects of Bilirubin on Neonatal Erythrocytes , 1999, Pediatric Research.
[11] A. Molina-Carballo,et al. Changes in Erythrocytic Deformability and Plasma Viscosity in Neonatal Ictericia , 1999, American journal of perinatology.
[12] D. Wüstner,et al. Release of phospholipids from erythrocyte membranes by taurocholate is determined by their transbilayer orientation and hydrophobic backbone. , 1998, Biochemistry.
[13] R. Silva,et al. Effect of bilirubin on erythrocyte shape and haemolysis, under hypotonic, aggregating or non-aggregating conditions, and correlation with cell age. , 1997, Scandinavian journal of clinical and laboratory investigation.
[14] M. K. Ali,et al. Calcium-induced bilirubin-dependent hemolysis of human erythrocytes. , 1997, Biochimica et biophysica acta.
[15] G. Salvioli,et al. The Influence of 2‐Hydroxypropyl‐β‐cyclodextrin on the Haemolysis Induced by Bile Acids , 1996, The Journal of pharmacy and pharmacology.
[16] Rui F. M. Silva,et al. Alterations of erythrocyte morphology and lipid composition by hyperbilirubinemia. , 1996, Clinica chimica acta; international journal of clinical chemistry.
[17] S. Tazuma,et al. Protection against hydrophobic bile salt-induced cell membrane damage by liposomes and hydrophilic bile salts. , 1993, The American journal of physiology.
[18] G. P. Martin,et al. Bile Salt‐ and Lysophosphatidylcholine‐induced Membrane Damage in Human Erythrocytes , 1992, The Journal of pharmacy and pharmacology.
[19] W. Reinhart,et al. The influence of erythrocyte shape on suspension viscosities , 1992, European journal of clinical investigation.
[20] J. Lu,et al. The influence of bilirubin on fluidity and rotational correlation times of human erythrocyte membrane. , 1992, Cell biology international reports.
[21] V. Sieso,et al. Experimental studies on unconjugated bilirubin binding by human erythrocytes. , 1990, Clinica chimica acta; international journal of clinical chemistry.
[22] R. Wennberg. The Importance of Free Bilirubin Acid Salt in Bilirubin Uptake by Erythrocytes and Mitochondria , 1988, Pediatric Research.
[23] R. Semba,et al. Interaction of bilirubin with human erythrocyte membranes. Bilirubin binding to neuraminidase- and phospholipase-treated membranes. , 1987, Biochemical Journal.
[24] O'Connor Mj. Mechanical biliary obstruction. A review of the multisystemic consequences of obstructive jaundice and their impact on perioperative morbidity and mortality. , 1985 .
[25] J E Ferrell,et al. Phosphoinositide metabolism and the morphology of human erythrocytes , 1984, The Journal of cell biology.
[26] S. Kashiwamata,et al. Interaction of bilirubin with human erythrocyte membranes. , 1983, Biochemical Journal.
[27] N. Shaklai,et al. The interaction of hemin and bilirubin with the human red cell membrane. , 1982, Biochimica et biophysica acta.
[28] V. Bajpai,et al. Bilirubin-induced erythrocyte membrane cytotoxicity. , 1981, Experimental and molecular pathology.
[29] K. Kawai,et al. Effect of bilirubin on ATPase activity of human erythrocyte membranes. , 1981, Research communications in chemical pathology and pharmacology.
[30] P. Lowe,et al. Membrane fluidity and bile salt damage. , 1981, Biochimica et biophysica acta.
[31] S. P. Lee,et al. Dihydrocholesterol-induced gallstones in the rabbit: evidence that bile acids cause gallbladder epithelial injury. , 1979, British journal of experimental pathology.
[32] H. Meiselman,et al. Rheology of shape-transformed human red cells. , 1978, Biorheology.
[33] T. Rodman,et al. RNA synthesis in preovulatory mouse oocytes , 1976, The Journal of cell biology.
[34] M. Sheetz,et al. Equilibrium and kinetic effects of drugs on the shapes of human erythrocytes , 1976, The Journal of cell biology.
[35] O. Fausa,et al. Serum bile acid concentrations in patients with liver disease. , 1976, Scandinavian journal of gastroenterology.
[36] S. Chien,et al. Chapter 26 – Biophysical Behavior of Red Cells in Suspensions , 1975 .
[37] C. Bishop,et al. The red blood cell , 1974 .
[38] Marcel Bessis,et al. Red Cell Shape , 1973, Springer Berlin Heidelberg.
[39] D. Bratlid. Bilirubin binding by human erythrocytes. , 1972, Scandinavian journal of clinical and laboratory investigation.
[40] M. Bessis,et al. Red cell shapes. An illustrated classification and its rationale. , 1972, Nouvelle revue francaise d'hematologie.
[41] B. Deuticke. Transformation and restoration of biconcave shape of human erythrocytes induced by amphiphilic agents and changes of ionic environment. , 1968, Biochimica et biophysica acta.