不孕症细胞治疗和表观遗传学见解。

Q3 Medicine
Nahal Eshghifar, Behnam Kamali Dehghan, Atieh Abedin Do, Saeideh Zamani Koukhaloo, Mohsen Habibi, Farkhondeh Pouresmaeili
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引用次数: 1

摘要

辅助生殖技术(ART)的最新进展使严重不孕症的夫妇能够怀孕,但这种方法并不是对所有病例都有效。干细胞是未分化的细胞,存在于胚胎、胎儿和成年生命的不同阶段,能够形成不同的细胞类型、组织和器官。由于其无限的资源和难以置信的分化能力,被认为是治疗不孕症的潜在的新的治疗生物学工具。在生殖医学中,干细胞在体外刺激下发育出各种特化功能细胞,包括雄性和雌性配子。表观遗传模式可以在某些药物暴露或生活方式的改变下改变基因组。因此,如果修饰的性质是完全可以接受的,表观遗传学相关的疾病可能会得到治疗。事实证明,我们对表观遗传过程及其与不育症的关系的了解不仅有助于我们了解病因,而且有助于治疗某些类型的男性不育症。探索疾病发展中的遗传和表观遗传变异可以帮助确定这两种现象之间的相互作用模式,并可能改进治疗方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Infertility cell therapy and epigenetic insights.

Recent advances in assisted reproductive technology (ART) have allowed couples with severe infertility to conceive, but the methods are not effective for all cases. Stem cells as undifferentiated cells which are found in different stages of embryonic, fetal and adult life are known to be capable of forming different cell types, tissues, and organs. Due to their unlimited resources and the incredible power of differentiation are considered as potential new therapeutic biological tools for treatment of infertility. For reproductive medicine, stem cells are stimulated in vitro to develop various specialized functional cells including male and female gametes. The epigenetic patterns can be modified in the genome under certain drugs exposure or lifestyle alterations. Therefore, epigenetics-related disorders may be treated if the nature of the modifications is completely admissible. It is proved that our understanding of epigenetic processes and its association with infertility would help us not only to understand the etiological factors but also to treat some type of male infertilities. Exploration of both genetic and epigenetic variations in the disease development could help in the identification of the interaction patterns between these two phenomena and possible improvement of therapeutic methods.

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来源期刊
Human Antibodies
Human Antibodies Medicine-Immunology and Allergy
CiteScore
3.50
自引率
0.00%
发文量
27
期刊介绍: Human Antibodies is an international journal designed to bring together all aspects of human hybridomas and antibody technology under a single, cohesive theme. This includes fundamental research, applied science and clinical applications. Emphasis in the published articles is on antisera, monoclonal antibodies, fusion partners, EBV transformation, transfections, in vitro immunization, defined antigens, tissue reactivity, scale-up production, chimeric antibodies, autoimmunity, natural antibodies/immune response, anti-idiotypes, and hybridomas secreting interesting growth factors. Immunoregulatory molecules, including T cell hybridomas, will also be featured.
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