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Tamir Kanias

TitleAffiliate
InstitutionUniversity of Colorado Denver - Anschutz Medical Campus
DepartmentSOM-Pathology

    Collapse Bibliographic 
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    Publications listed below are automatically derived from MEDLINE/PubMed and other sources, which might result in incorrect or missing publications. Faculty can login to make corrections and additions.
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    1. Roubinian NH, Reese SE, Qiao H, Plimier C, Fang F, Page GP, Cable RG, Custer B, Gladwin MT, Goel R, Harris B, Hendrickson JE, Kanias T, Kleinman S, Mast AE, Sloan SR, Spencer BR, Spitalnik SL, Busch MP, Hod EA. Donor genetic and nongenetic factors affecting red blood cell transfusion effectiveness. JCI Insight. 2022 01 11; 7(1). PMID: 34793330.
      View in: PubMed
    2. Hazegh K, Anawalt BD, Dumont LJ, Kanias T. Toxic masculinity in red blood cell units? Testosterone therapy in blood donors revisited. Transfusion. 2021 11; 61(11):3174-3180. PMID: 34519056.
      View in: PubMed
    3. Page GP, Kanias T, Guo YJ, Lanteri MC, Zhang X, Mast AE, Cable RG, Spencer BR, Kiss JE, Fang F, Endres-Dighe SM, Brambilla D, Nouraie M, Gordeuk VR, Kleinman S, Busch MP, Gladwin MT. Multiple-ancestry genome-wide association study identifies 27 loci associated with measures of hemolysis following blood storage. J Clin Invest. 2021 07 01; 131(13). PMID: 34014839.
      View in: PubMed
    4. D'Alessandro A, Fu X, Kanias T, Reisz JA, Culp-Hill R, Guo Y, Gladwin MT, Page G, Kleinman S, Lanteri M, Stone M, Busch MP, Zimring JC. Donor sex, age and ethnicity impact stored red blood cell antioxidant metabolism through mechanisms in part explained by glucose 6-phosphate dehydrogenase levels and activity. Haematologica. 2021 05 01; 106(5):1290-1302. PMID: 32241843.
      View in: PubMed
    5. Alexander K, Hazegh K, Fang F, Sinchar D, Kiss JE, Page GP, D'Alessandro A, Kanias T. Testosterone replacement therapy in blood donors modulates erythrocyte metabolism and susceptibility to hemolysis in cold storage. Transfusion. 2021 01; 61(1):108-123. PMID: 33073382.
      View in: PubMed
    6. Stefanoni D, Fu X, Reisz JA, Kanias T, Nemkov T, Page GP, Dumont L, Roubinian N, Stone M, Kleinman S, Busch M, Zimring JC, D'Alessandro A. Nicotine exposure increases markers of oxidant stress in stored red blood cells from healthy donor volunteers. Transfusion. 2020 06; 60(6):1160-1174. PMID: 32385854.
      View in: PubMed
    7. Bertolone L, Roy MK, Hay AM, Morrison EJ, Stefanoni D, Fu X, Kanias T, Kleinman S, Dumont LJ, Stone M, Nemkov T, Busch MP, Zimring JC, D'Alessandro A. Impact of taurine on red blood cell metabolism and implications for blood storage. Transfusion. 2020 06; 60(6):1212-1226. PMID: 32339326.
      View in: PubMed
    8. Hazegh K, Bravo MD, Kamel H, Dumont L, Kanias T. The prevalence and demographic determinants of blood donors receiving testosterone replacement therapy at a large USA blood service organization. Transfusion. 2020 05; 60(5):947-954. PMID: 32176332.
      View in: PubMed
    9. Roubinian NH, Kanias T. Blood donor component-recipient linkages: is there fire where there is smoke? Transfusion. 2019 08; 59(8):2485-2488. PMID: 31374151.
      View in: PubMed
    10. Fang F, Hazegh K, Sinchar D, Guo Y, Page GP, Mast AE, Kleinman S, Busch MP, Kanias T. Sex hormone intake in female blood donors: impact on haemolysis during cold storage and regulation of erythrocyte calcium influx by progesterone. Blood Transfus. 2019 07; 17(4):263-273. PMID: 31385799.
      View in: PubMed
    11. Donnenberg AD, Kanias T, Triulzi DJ, Dennis CJ, Meyer EM, Gladwin M. Improved quantitative detection of biotin-labeled red blood cells by flow cytometry. Transfusion. 2019 08; 59(8):2691-2698. PMID: 31172532.
      View in: PubMed
    12. Kanias T, Busch MP. Diversity in a blood bag: application of omics technologies to inform precision Transfusion Medicine. Blood Transfus. 2019 07; 17(4):258-262. PMID: 31184580.
      View in: PubMed
    13. Donnenberg AD, Kanias T, Triulzi DJ, Dennis CJ, Moore LR, Meyer EM, Sinchar D, Kiss JE, Normolle DP, Gladwin MT. Current good manufacturing practices-compliant manufacture and measurement of biotin-labeled red blood cells. Cytotherapy. 2019 07; 21(7):793-800. PMID: 31097327.
      View in: PubMed
    14. D'Alessandro A, Reisz JA, Zhang Y, Gehrke S, Alexander K, Kanias T, Triulzi DJ, Donadee C, Barge S, Badlam J, Jain S, Risbano MG, Gladwin MT. Effects of aged stored autologous red blood cells on human plasma metabolome. Blood Adv. 2019 03 26; 3(6):884-896. PMID: 30890545.
      View in: PubMed
    15. Stone M, Keating SM, Kanias T, Lanteri MC, Lebedeva M, Sinchar D, Hampton D, Jakub A, Rychka V, Brewer G, Bakkour S, Gefter N, Murcia K, Page GP, Endres-Dighe S, Bialkowski W, Fu X, Zimring J, Raife TJ, Kleinman S, Gladwin MT, Busch MP. Piloting and implementation of quality assessment and quality control procedures in RBC-Omics: a large multi-center study of red blood cell hemolysis during storage. Transfusion. 2019 01; 59(1):57-66. PMID: 30566231.
      View in: PubMed
    16. Kanias T, Stone M, Page GP, Guo Y, Endres-Dighe SM, Lanteri MC, Spencer BR, Cable RG, Triulzi DJ, Kiss JE, Murphy EL, Kleinman S, Gladwin MT, Busch MP, Mast AE. Frequent blood donations alter susceptibility of red blood cells to storage- and stress-induced hemolysis. Transfusion. 2019 01; 59(1):67-78. PMID: 30474858.
      View in: PubMed
    17. D'Alessandro A, Culp-Hill R, Reisz JA, Anderson M, Fu X, Nemkov T, Gehrke S, Zheng C, Kanias T, Guo Y, Page G, Gladwin MT, Kleinman S, Lanteri M, Stone M, Busch M, Zimring JC. Heterogeneity of blood processing and storage additives in different centers impacts stored red blood cell metabolism as much as storage time: lessons from REDS-III-Omics. Transfusion. 2019 01; 59(1):89-100. PMID: 30353560.
      View in: PubMed
    18. Raslan R, Shah BN, Zhang X, Kanias T, Han J, Machado RF, Gladwin MT, Gordeuk VR, Saraf SL. Hemolysis and hemolysis-related complications in females vs. males with sickle cell disease. Am J Hematol. 2018 11; 93(11):E376-E380. PMID: 30117177.
      View in: PubMed
    19. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 20433918.
      View in: PubMed
    20. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 22897637.
      View in: PubMed
    21. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 21747051.
      View in: PubMed
    22. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 23255558.
      View in: PubMed
    23. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 22446184.
      View in: PubMed
    24. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 30456907.
      View in: PubMed
    25. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 27507802.
      View in: PubMed
    26. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 30267427.
      View in: PubMed
    27. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 30312994.
      View in: PubMed
    28. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 26206798.
      View in: PubMed
    29. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 30408207.
      View in: PubMed
    30. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 24588210.
      View in: PubMed
    31. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 26991891.
      View in: PubMed
    32. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 32394461.
      View in: PubMed
    33. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 32735605.
      View in: PubMed
    34. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 32358816.
      View in: PubMed
    35. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 19968714.
      View in: PubMed
    36. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 33146433.
      View in: PubMed
    37. Rulifson G, Bielefeldt AR. Evolution of Students' Varied Conceptualizations About Socially Responsible Engineering: A Four Year Longitudinal Study. Sci Eng Ethics. 2019 06; 25(3):939-974. PMID: 35321643.
      View in: PubMed
    38. Kanias T, Lanteri MC, Page GP, Guo Y, Endres SM, Stone M, Keating S, Mast AE, Cable RG, Triulzi DJ, Kiss JE, Murphy EL, Kleinman S, Busch MP, Gladwin MT. Ethnicity, sex, and age are determinants of red blood cell storage and stress hemolysis: results of the REDS-III RBC-Omics study. Blood Adv. 2017 Jun 27; 1(15):1132-1141. PMID: 29034365.
      View in: PubMed
    39. Osei-Hwedieh DO, Kanias T, Croix CS, Jessup M, Xiong Z, Sinchar D, Franks J, Xu Q, M Novelli E, Sertorio JT, Potoka K, Binder RJ, Basu S, Belanger AM, Kim-Shapiro DB, Triulzi D, Lee JS, Gladwin MT. Sickle Cell Trait Increases Red Blood Cell Storage Hemolysis and Post-Transfusion Clearance in Mice. EBioMedicine. 2016 Sep; 11:239-248. PMID: 27523807.
      View in: PubMed
    40. Risbano MG, Kanias T, Triulzi D, Donadee C, Barge S, Badlam J, Jain S, Belanger AM, Kim-Shapiro DB, Gladwin MT. Effects of Aged Stored Autologous Red Blood Cells on Human Endothelial Function. Am J Respir Crit Care Med. 2015 Nov 15; 192(10):1223-33. PMID: 26222884.
      View in: PubMed
    41. Cortés-Puch I, Remy KE, Solomon SB, Sun J, Wang D, Al-Hamad M, Kelly SM, Sinchar D, Bellavia L, Kanias T, Popovsky MA, Kim-Shapiro DB, Klein HG, Natanson C. In a canine pneumonia model of exchange transfusion, altering the age but not the volume of older red blood cells markedly alters outcome. Transfusion. 2015 Nov; 55(11):2564-75. PMID: 26469998.
      View in: PubMed
    42. Belanger AM, Keggi C, Kanias T, Gladwin MT, Kim-Shapiro DB. Effects of nitric oxide and its congeners on sickle red blood cell deformability. Transfusion. 2015 Oct; 55(10):2464-72. PMID: 25912054.
      View in: PubMed
    43. Huang S, Hou HW, Kanias T, Sertorio JT, Chen H, Sinchar D, Gladwin MT, Han J. Towards microfluidic-based depletion of stiff and fragile human red cells that accumulate during blood storage. Lab Chip. 2015 Jan 21; 15(2):448-58. PMID: 25406942.
      View in: PubMed
    44. Cortés-Puch I, Wang D, Sun J, Solomon SB, Remy KE, Fernandez M, Feng J, Kanias T, Bellavia L, Sinchar D, Perlegas A, Solomon MA, Kelley WE, Popovsky MA, Gladwin MT, Kim-Shapiro DB, Klein HG, Natanson C. Washing older blood units before transfusion reduces plasma iron and improves outcomes in experimental canine pneumonia. Blood. 2014 Feb 27; 123(9):1403-11. PMID: 24366359.
      View in: PubMed
    45. Saraf SL, Zhang X, Kanias T, Lash JP, Molokie RE, Oza B, Lai C, Rowe JH, Gowhari M, Hassan J, Desimone J, Machado RF, Gladwin MT, Little JA, Gordeuk VR. Haemoglobinuria is associated with chronic kidney disease and its progression in patients with sickle cell anaemia. Br J Haematol. 2014 Mar; 164(5):729-39. PMID: 24329963.
      View in: PubMed
    46. Wang D, Piknova B, Solomon SB, Cortes-Puch I, Kern SJ, Sun J, Kanias T, Gladwin MT, Helms C, Kim-Shapiro DB, Schechter AN, Natanson C. In vivo reduction of cell-free methemoglobin to oxyhemoglobin results in vasoconstriction in canines. Transfusion. 2013 Dec; 53(12):3149-63. PMID: 23488474.
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    47. Nouraie M, Lee JS, Zhang Y, Kanias T, Zhao X, Xiong Z, Oriss TB, Zeng Q, Kato GJ, Gibbs JS, Hildesheim ME, Sachdev V, Barst RJ, Machado RF, Hassell KL, Little JA, Schraufnagel DE, Krishnamurti L, Novelli E, Girgis RE, Morris CR, Rosenzweig EB, Badesch DB, Lanzkron S, Castro OL, Goldsmith JC, Gordeuk VR, Gladwin MT. The relationship between the severity of hemolysis, clinical manifestations and risk of death in 415 patients with sickle cell anemia in the US and Europe. Haematologica. 2013 Mar; 98(3):464-72. PMID: 22983573.
      View in: PubMed
    48. Kanias T, Gladwin MT. Nitric oxide, hemolysis, and the red blood cell storage lesion: interactions between transfusion, donor, and recipient. Transfusion. 2012 Jul; 52(7):1388-92. PMID: 22780890.
      View in: PubMed
    49. Kanias T, Acker JP. G.B. Quan et al., Inhibition of high glucose-induced erythrocyte phosphatidylserine exposure by leupeptin and disaccharides, Cryobiology 56 (1) (2008) 53-61. Cryobiology. 2009 Apr; 58(2):240. PMID: 19168046.
      View in: PubMed
    50. Kanias T, Acker JP. Trehalose loading into red blood cells is accompanied with hemoglobin oxidation and membrane lipid peroxidation. Cryobiology. 2009 Apr; 58(2):232-9. PMID: 19135990.
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    51. Levavi-Sivan B, Hedvat R, Kanias T, Francis G, Becker K, Kerem Z. Exposure of tilapia pituitary cells to saponins: insight into their mechanism of action. Comp Biochem Physiol C Toxicol Pharmacol. 2005 Jan; 140(1):79-86. PMID: 15792626.
      View in: PubMed
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