Invicta Research and Development Center, 81-740 Sopot, Poland.
Department of Obstetrics and Gynecological Nursing, Faculty of Health Sciences, Medical University of Gdansk, 80-210 Gdansk, Poland.
Cells. 2022 Feb 24;11(5):797. doi: 10.3390/cells11050797.
Mitochondria are well known as 'the powerhouses of the cell'. Indeed, their major role is cellular energy production driven by both mitochondrial and nuclear DNA. Such a feature makes these organelles essential for successful fertilisation and proper embryo implantation and development. Generally, mitochondrial DNA is exclusively maternally inherited; oocyte's mitochondrial DNA level is crucial to provide sufficient ATP content for the developing embryo until the blastocyst stage of development. Additionally, human fertility and early embryogenesis may be affected by either point mutations or deletions in mitochondrial DNA. It was suggested that their accumulation may be associated with ovarian ageing. If so, is mitochondrial dysfunction the cause or consequence of ovarian ageing? Moreover, such an obvious relationship of mitochondria and mitochondrial genome with human fertility and early embryo development gives the field of mitochondrial research a great potential to be of use in clinical application. However, even now, the area of assessing and improving DNA quantity and function in reproductive medicine drives many questions and uncertainties. This review summarises the role of mitochondria and mitochondrial DNA in human reproduction and gives an insight into the utility of their clinical use.
线粒体是众所周知的“细胞的动力工厂”。事实上,它们的主要作用是通过线粒体和核 DNA 驱动细胞能量产生。这种特性使这些细胞器对于成功受精和适当的胚胎着床和发育至关重要。一般来说,线粒体 DNA 是完全母系遗传的;卵母细胞的线粒体 DNA 水平对于为发育中的胚胎提供足够的 ATP 含量至关重要,直到胚胎发育到囊胚阶段。此外,人类的生育能力和早期胚胎发生可能受到线粒体 DNA 中的点突变或缺失的影响。有人提出,它们的积累可能与卵巢衰老有关。如果是这样,线粒体功能障碍是卵巢衰老的原因还是结果?此外,线粒体及其线粒体基因组与人类生育能力和早期胚胎发育的这种明显关系,使线粒体研究领域具有很大的临床应用潜力。然而,即使是现在,评估和改善生殖医学中 DNA 数量和功能的领域也引发了许多问题和不确定性。本文总结了线粒体和线粒体 DNA 在人类生殖中的作用,并深入探讨了其临床应用的实用性。