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Application of microfluidic technologies to human assisted reproduction

机译:微流技术在人类辅助生殖中的应用

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摘要

Microfluidics can be considered both a science and a technology. It is defined as the study of fluid behavior at a sub-microliter level and the investigation into its application to cell biology, chemistry, genetics, molecular biology and medicine. There are at least two characteristics of microfluidics, mechanical and biochemical, which can be influential in the field of mammalian gamete and preimplantation embryo biology. These microfluidic characteristics can assist in basic biological studies on sperm, oocyte and preimplantation embryo structure, function and environment. The mechanical and biochemical characteristics of microfluidics may also have practical and/or technical application(s) to assisted reproductive technologies (ART) in rodents, domestic species, endangered species and humans. This review will consider data in mammals, and when available humans, addressing the potential application(s) of microfluidics to assisted reproduction. There are numerous sequential steps in the clinical assisted reproductive laboratory process that work, yet could be improved. Cause and effect relations of procedural inefficiencies can be difficult to identify and/or remedy. Data will be presented that consider microfluidic applications to sperm isolation, oocyte cumulus complex isolation, oocyte denuding, oocyte mechanical manipulation, conventional insemination, intracytoplasmic sperm injection, embryo culture, embryo analysis and oocyte and embryo cryopreservation. While these studies have progressed in animal models, data with human gametes and embryos are significantly lacking. These data from clinical trials are requisite for making future evidence-based decisions regarding the application of microfluidics in human ART.
机译:微流体学可以被视为科学和技术。它的定义是对亚微升水平的流体行为进行研究,并将其应用于细胞生物学,化学,遗传学,分子生物学和医学领域。微流体的至少两个特征是机械的和生物化学的,它们在哺乳动物配子和植入前胚胎生物学领域可能具有影响力。这些微流体特征可有助于精子,卵母细胞和植入前胚胎的结构,功能和环境的基础生物学研究。微流体的机械和生化特性也可能在啮齿动物,家养物种,濒危物种和人类的辅助生殖技术(ART)中具有实用和/或技术应用。这篇综述将考虑哺乳动物以及可能存在的人类的数据,探讨微流体在辅助生殖中的潜在应用。在临床辅助生殖实验室过程中,有许多连续的步骤可以起作用,但有待改进。程序效率低下的因果关系可能难以识别和/或补救。将提供考虑将微流体应用于精子分离,卵母细胞卵丘复合体分离,卵母细胞剥脱,卵母细胞机械操作,常规授精,胞浆内精子注射,胚胎培养,胚胎分析以及卵母细胞和胚胎冷冻保存的数据。尽管这些研究已在动物模型中取得进展,但仍缺乏有关人类配子和胚胎的数据。来自临床试验的这些数据对于做出有关微流控技术在人类抗逆转录病毒疗法中应用的未来循证决策至关重要。

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