Oosit Maturasyonunda Vitaminlerin Rolü

Yazarlar

Cemile Merve Seymen
https://orcid.org/0000-0002-8945-3801

Özet

Oosit maturasyonu, fertilizasyon ve embriyonel gelişim için kritik bir süreç olup folikülogenez ile eş zamanlı olarak ilerleyen nükleer ve sitoplazmik değişimleri kapsamaktadır. In vitro maturasyon (IVM) tekniklerinde karşılaşılan en büyük engel olan oksidatif stresi önlemek amacıyla kültür ortamlarına C, D, E, B1, B12 vitaminleri ile beta-karoten, retinoik asit ve koenzim Q10 gibi antioksidan ajanlar eklenmektedir. Bu vitaminlerin optimal dozlarda kullanımı oosit kalitesini artırıp maturasyon süreçlerini desteklerken, hatalı konsantrasyonlar gelişim üzerinde olumsuz etkiler yaratabilmektedir.

 

Oocyte maturation is a vital process for fertilization and embryonic development, involving nuclear and cytoplasmic changes that occur simultaneously with folliculogenesis. To overcome oxidative stress, the main challenge in in vitro maturation (IVM) techniques, culture media are supplemented with antioxidants such as vitamins C, D, E, B1, B12, beta-carotene, retinoic acid, and coenzyme Q10. While the use of these vitamins at optimal doses enhances oocyte quality and supports maturation, incorrect concentrations can negatively impact the development process.

Referanslar

Delilbaşı L, Balaban B, Ayaş B. (2000). Gametler (Sperm/Oosit) Fertilizasyon ve Embriyoner Gelişim Bölüm-I. Ankara: Serono Yayınları.

Ross, M.H., Pawlina, W. (2014). Histoloji konu anlatımı ve atlas. (Barış BAYKAL, Çev. Ed.). Ankara: Palme Yayınevi

Kuyucu Y, Tap Ö. Oosit olgunlaşma süreci ve düzenleyici faktörler. Arşiv Kaynak Tarama Dergisi, 2009; 18:227.

Mescher, A.L. (2016). Junqueira temel histoloji atlas kitap. (Seyhun SOLAKOĞLU, Çev. Ed.). İstanbul: Nobel Tıp Kitabevi

Eşrefoğlu, M. (2009). Özel histoloji. Malatya: Medipress Matbaacılık

Kierszenbaum, A.L. (2006). Histoloji ve hücre biyolojisi. (Ramazan DEMİR, Çev. Ed.). Ankara: Palme Yayınevi

Abramovich SS, Edry I, Galiani D, et al. Disruption of gap junctional communication within the ovarian follicle induces oocyte maturation. Endocrinology, 2006; 147: 2280–2286. Doi: 10.1210/en.2005-1011

Grondahl C. Oocyte maturation. Danish Medical Bulletin, 2008; 55:1-16.

Barnes FL, Sirard MA. Oocyte maturation. Seminars In Reproductive Medicine, 2000; 18(2): 123-32. Doi: 10.1055/s-2000-12551

Hammes SR. The further redefining of steroid-mediated signaling. Proceedings of the National Academy of Sciences, 2003; 100(5): 2168-70. Doi: 10.1073/pnas.0530224100

Richard FJ. Regulation of meiotic maturation. Journal of Animal Science, 2007; 85:4-6. Doi: 10.2527/jas.2006-475

Sen A, Ciazza F. Oocyte maturation: A story of arrest and release. Frontiers in Bioscience, 2013; 5: 451-77. Doi: 10.2741/s383

Fan HY, Sun QY. Involvement of mitogen-activated protein kinase cascade during oocyte maturation and fertilization in mammals. Biology of Reproduction, 2004; 70: 535–547. Doi: 10.1095/biolreprod.103.022830

Delilbaşı, L. (2008). A’dan Z’ye tüp bebek laboratuvar. Ankara: Veri Medikal Yayıncılık.

Gardner D.K. (2009). In Vitro Fertilization-Pratik Yaklaşım. (Hasan SERDAROĞLU, Çev.Ed.) Ankara: Doğan Tıp Kitabevi

Gardner D.K., Weissman A., Howles C.M., Shoham Z. (2010). Yardımla Üreme Teknikleri Temel Kitabı-Laboratuvar ve Klinik Görüşler. (Tülay İREZ, Oktay ARDA, Semih KALELİ, Çev.Ed.). Ankara: Nobel Tıp Kitabevleri

Khazaei M, Aghaz F. Reactive oxygen species generation and use of antioxidants during ın vitro maturation of oocytes. International Journal of Fertility and Sterility, 2017; 11(2): 63-70. Doi: 10.22074/ijfs.2017.4995.

Nadri B, Zeinoaldini S, Kohram H. Ascorbic acid effects on in vitro maturation of mouse oocyte with or without cumulus cell. African Journal of Biotechnology, 2009; 8(20): 5627-31.

Uysal O, Bucak MN. Effects of oxidized glutathione, bovine serum albumin, cysteine and lycopene on the quality of frozen-thawed ram semen. Acta Veterinaria Brno, 2007; 76(3): 383-90. Doi: 10.2754/avb200776030383

Tao Y, Zhou B, Xia G, Wang F, Wg Z, Fu M. Exposure to Lascorbic acid or α-tocopherol facilitates the development of porcine denuded oocytes from metaphase I to metaphase II and prevents cumulus cells from fragmentation. Reproduction in Domestic Animals, 2004; 39(1): 52- 57. Doi: 10.1046/j.1439-0531.2003.00478.x

Asard H, Smirnoff J, May N (2004). Vitamin C: Its functions and biochemistry in animals and plants. New York: BIOS Scientific Publishers

Xu F, Wolf S, Green O, Xu J. Vitamin D in follicular development and oocyte maturation. Reproduction, 2021; 161: 129-37. Doi: 10.1530/REP -20-0608

Ciepiela P, Duleba AJ, Kowaleczko E, Chelstowski K, Kurzawa R. Vitamin D as a follicular marker of human oocyte quality and a serum marker of in vitro fertilization outcome. Journal of Assisted Reproduction and Genetics, 2018; 35: 1265-76. Doi: 10.1007/s10815-018-1179-4

Shim YJ, Hong YH, Lee J, Jee BC. Impact of vitamin D3 supplementation on the in vitro growth of mouse preantral follicles. Clinical and Experimental Reproductive Medicine, 2021; 48(4): 347-51. Doi: 10.5653/cerm.2021.04735

Adeldust H, Zeinoaldini S, Kohram H, Roudbar MA, Joupari MD. In vitro maturation of ovine oocyte in a modified granulosa cells co-culture system and alpha-tocopherol supplementation: Effects on nuclear maturation and cleavage. Journal of Animal Science and Technology, 2015; 57:27. Doi: 10.1186/s40781-015-0061-5

Ashraf M, Mustansir F, Baqir SM, Alam F, Rehman R. Changes in vitamin E levels as a marker of female infertility. JPMA, 2020; 70:1762. Doi: 10.5455/JPMA.40329

Dalvit G, Llanes SP, Descalzo A, Insani M, Beconi M, Cetica P. Reproduction in Domestic Animals, 2005; 40: 93-97. Doi: 10.1111/j.1439-0531.2004.00522.x

Marques A, Santos P, Antunes G, Chaveiro A, Moreira da Silva F. Effect of α-tocopherol on in vitro maturation of bovine cumulus-oocyte complexes. Canadian Journal of Animal Science, 2008; 88: 463-67. Doi: 10.4141/CJAS07139

Esmaiel S, Tahereh H, Noreddin NMS, Massood E. Mancozeb exposure during development and lactation periods results in decreased oocyte maturation, fertilization rates, and implantation in the first-generation mice pups: Protective effect of vitamins E and C. Toxicology and Industrial Health, 2019; 35(11-12): 714-25. Doi: 10.1177/0748233719890965

Rostami T, Fathi F, Assadollahi V, Hosseini J, et al. Effect of cyanocobalamin on oocyte maturation, in vitro fertilization, and embryo development in mice. Zygote, 2021; 29: 161-5-68. Doi: 10.1017/ S0967199420000635

Tsuji A, Nakamura T, Shibata K. Effects of mild and severe vitamin b1 deficiencies on the meiotic maturation of mice oocytes. Nutrition and Metabolic Insights, 2017; 10: 1-9. Doi: 10.1177/117863881769382

Yu S, Zhao Y, Feng Y, Zhang H, et al. β-carotene improves oocyte development and maturation under oxidative stress in vitro. In Vitro Cellular&Developmental Biology-Animal, 2019; 55: 548-58. Doi: 10.1007/s11626-019-00373-0

Abdelnour SA, El-Hack MEA, Swelum AAA, et al. The usefulness of retinoic acid supplementation during ın vitro oocyte maturation for the ın vitro embryo production of livestock: A review. Animals, 2019; 9: 561. Doi: 10.3390/ani9080561

Rodriguez-Varela C, Labarta E. Does coenzyme q10 supplementation imrpove human oocyte quality? International Journal of Molecular Sciences, 2021; 22: 9541. Doi: 10.3390/ijms22179541

Ma L, Cai L, Hu M, Wang J, et al. Coenzyme Q10 supplementation of human oocyte in vitro maturation reduces postmeiotic aneuploidies. Fertility and Sterility, 2020; 114: 331–337. Doi: 10.1016/j.fertnstert.2020.04.002

Gelecek

19 Eylül 2022

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