Trolox Antioxidant as a Factor in Stabilization of Human Cord Blood Nucleated Cells During Cryopreservation

Авторы

DOI:

https://doi.org/10.15407/cryo33.02.122

Ключевые слова:

cord blood nucleated cells, cryopreservation, DMSO, trolox, stages of apoptosis

Аннотация

Probl Cryobiol Cryomed 2023; 33(2):122-132

Биографии авторов

Pavlo Zubov , Institute for Problems of Cryobiology and Cryomedicine of the National Academy of Sciences of Ukraine, Kharkiv

Department of Cryocytology

Oksana Zubova, Institute for Problems of Cryobiology and Cryomedicine of the National Academy of Sciences of Ukraine, Kharkiv

Department of Cryocytology

Lyubov Babijchuk, Institute for Problems of Cryobiology and Cryomedicine of the National Academy of Sciences of Ukraine, Kharkiv

Department of Cryocytology

Библиографические ссылки

Babijchuk LO, Gryschenko VI, Gurina TM, etc., inventors; Institute for Problems of Cryobiology and Cryomedicine of NAS of Ukraine, assignee. [The technique of cryopreservation for cord blood nucleated cells, including hematopoietic stem cells]. Ukraine patent № 92227. 2010 Oct 11. Ukrainian.

Baishya SK, Biswas RK, Govindasamy K, et al. Effect of reduced glutathione, water soluble vitamin E analogue and butylated hydroxytoluene on the post thaw characteristics of boar spermatozoa. CryoLetters. 2018; 39(4): 227-34. PubMed

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Davis JM, editor. Basic cell culture. A practical approach. Oxford: Oxford University Press; 2002. 382p.

Donaldson C, Armitage WJ, Denning-Kendall PA, et al. Optimal cryopreservation of human umbilical cord blood. Bone Marrow Transplant. 1996; 18(4): 725-73. PubMed

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Ha SJ, Kim BG, Lee YA, et al. Effect of antioxidants and apoptosis inhibitors on cryopreservation of murine germ cells enriched for spermatogonial stem cells. PLoS One [Internet]. 2016 Aug 22 [cited 2022 Sept 12]; 11(8): e0161372. Available from: https://journals.plos.org/plosone/article?id=10.1371/journal.pone.0161372 CrossRef

Kekre N, Antin JH. Hematopoietic stem cell transplantation donor sources in the 21st century: choosing the ideal donor when a perfect match does not exist. Blood. 2014; 124(3): 334-43. CrossRef

Massey KD, Burton KP. Free radical damage in neonatal rat cardiac myocyte cultures: effects of alpha-tocopherol, Trolox and phytol. Free Radic Biol Med. 1990; 8(5): 449-58. CrossRef

Minaei M, Barbarestani M, Nekoonam S, et al. Effect of Trolox addition to cryopreservation media on human sperm motility. Iran J Reprod Med. 2012; 10(2): 99-104. PubMed

Murugesan M, Nair CK, Nayanar SK, Pentapati KC. Flow cytometric enumeration of CD34+ hematopoietic stem cells: A comparison between single- versus dual-platform methodology using the ISHAGE protocol. Asian J Transfus Sci. 2019; 13(1): 43-6. CrossRef

Oram JF, Wolfbauer G, Vaughan AM, et al. Phospholipid transfer protein interacts with and stabilizes ATP-binding cassette transporter A1 and enhances cholesterol efflux from cells. J Biol Chem. 2003; 278(52): 52379-85. CrossRef

Ray PD, Huang BW, Tsuji Y. Reactive oxygen species homeostasis and redox regulation in cellular signaling. Cell Signal. 2012; 24(5): 981-90. CrossRef

Rocha V, Gluckman E. Eurocord-Netcord registry and European blood and marrow transplant group. Improving outcomes of cord blood transplantation: HLA matching, cell dose and other graft- and transplantation-related factors. Br J Haematology. 2009; 147(2): 262-74. CrossRef

Varo-Ghiuru F, Miclea I, Hettig A, et al. Lutein, trolox, ascorbic acid and combination of trolox with ascorbic acid can improve boar semen quality during cryopreservation. CryoLetters. 2015; 36(1): 1-7. PubMed

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Загрузки

Опубликован

2023-09-25

Как цитировать

Zubov , P., Zubova, O., & Babijchuk, L. (2023). Trolox Antioxidant as a Factor in Stabilization of Human Cord Blood Nucleated Cells During Cryopreservation. Проблемы криобиологии и криомедицины, 33(2), 122–132. https://doi.org/10.15407/cryo33.02.122

Выпуск

Раздел

Криоконсервирование биологических систем