Tigist Kassa
Affiliations: | 2007-2012 | Chemistry | Howard University |
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Kassa T, Jana S, Baek JH, et al. (2024) Impact of cold storage on the oxygenation and oxidation reactions of red blood cells. Frontiers in Physiology. 15: 1427094 |
Hicks W, Jana S, Kassa T, et al. (2024) Biopreservation and Reversal of Oxidative Injury During Blood Storage by a Novel Curcumin-based Gel Formulation. Research Square |
Jana S, Kassa T, Wood F, et al. (2023) Changes in hemoglobin oxidation and band 3 during blood storage impact oxygen sensing and mitochondrial bioenergetic pathways in the human pulmonary arterial endothelial cell model. Frontiers in Physiology. 14: 1278763 |
Kassa T, Whalin JG, Richards MP, et al. (2021) Caffeic acid: an antioxidant with novel antisickling properties. Febs Open Bio |
Hicks W, Meng F, Kassa T, et al. (2020) Effects of α subunit substitutions on the oxidation of βCys93 and the stability of sickle cell hemoglobin. Redox Report : Communications in Free Radical Research. 25: 95-103 |
Kassa T, Wood F, Strader MB, et al. (2019) Antisickling Drugs Targeting βCys93 Reduce Iron Oxidation and Oxidative Changes in Sickle Cell Hemoglobin. Frontiers in Physiology. 10: 931 |
Meng F, Kassa T, Strader MB, et al. (2019) Substitutions in the β subunits of sickle-cell hemoglobin improve oxidative stability and increase the delay time of sickle-cell fiber formation. The Journal of Biological Chemistry |
Jana S, Strader MB, Meng F, et al. (2018) Hemoglobin oxidation-dependent reactions promote interactions with band 3 and oxidative changes in sickle cell-derived microparticles. Jci Insight. 3 |
Meng F, Kassa T, Jana S, et al. (2018) A Comprehensive Biochemical and Biophysical Characterization of Hemoglobin-based Oxygen Carrier (HBOC) Therapeutics: All HBOCs Are Not Created Equally. Bioconjugate Chemistry |
Kassa T, Brad Strader M, Nakagawa A, et al. (2017) Targeting βCys93 in hemoglobin S with an antisickling agent possessing dual allosteric and antioxidant effects. Metallomics : Integrated Biometal Science |