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Metabolic imaging via fluorescence lifetime imaging microscopy for egg and embryo assessment

机译:通过荧光寿命成像显微镜进行代谢成像,用于鸡蛋和胚胎评估

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摘要

Current strategies for embryo assessment in the assisted reproductive technology laboratories rely primarily on morphologic parameters that have limited accuracy for determining embryo viability. Even with the addition of invasive diagnostic interventions such as preimplantation genetic testing for aneuploidy alone or in combination with mitochondrial DNA copy number assessment, at least one third of embryos fail to implant. Therefore, at a time when the clinical benefits of single ET are widely accepted, improving viability assessment of embryos is ever more important. Building on the previous work demonstrating the importance of metabolic state in oocytes and embryos, metabolic imaging via fluorescence lifetime imaging microscopy offers new and potentially useful diagnostic method by detecting natural fluorescence of FAD and NADH, the two electron transporters that play a central role in oxidative phosphorylation. Recent studies demonstrate that fluorescence lifetime imaging microscopy can detect oocyte and embryo metabolic function and dysfunction in a multitude of experimental models and provide encouraging evidence for use in scientific investigation and possibly for clinical application. (C) 2018 by American Society for Reproductive Medicine.
机译:辅助生殖技术实验室中胚胎评估的现行策略主要依赖于形态学参数,其具有有限的精度来确定胚胎活力。即使添加侵入性诊断干预措施,例如单层单倍性或与线粒体DNA拷贝数评估组合,胚胎中的至少三分之一不能植入。因此,在单一ET的临床益处被广泛接受的时候,改善对胚胎的生存性评估更为重要。在以前的工作中建立在卵母细胞和胚胎中的代谢状态的重要性,通过荧光寿命显微镜的代谢成像通过检测FAD和NADH的天然荧光,这是在氧化中起到核心作用的两种电子运输车提供了新的和潜在有用的诊断方法磷酸化。最近的研究表明,荧光寿命显微镜可以检测卵母细胞和胚胎代谢功能和功能障碍,在众多实验模型中,并提供令人鼓舞的基础,以便在科学调查中使用,并可能用于临床应用。 (c)2018年通过美国生殖医学协会。

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