Franko Roksan, de Almeida Monteiro Melo Ferraz Marcia
Clinic of Ruminants, Faculty of Veterinary Medicine Ludwig-Maximilians-Universität München Oberschleißheim Germany.
Gene Center Ludwig-Maximilians-Universität München Munich Germany.
J Extracell Biol. 2024 Sep 5;3(9):e70007. doi: 10.1002/jex2.70007. eCollection 2024 Sep.
The interest in the growing field of extracellular vesicle (EV) research highlights their significance in intercellular signalling and the selective transfer of biological information between donor and recipient cells. EV studies have provided valuable insights into intercellular communication mechanisms, signal identification and their involvement in disease states, offering potential avenues for manipulating pathological conditions, detecting biomarkers and developing drug-delivery systems. While our understanding of EV functions in reproductive tissues has significantly progressed, exploring their potential as biomarkers for infertility, therapeutic interventions and enhancements in assisted reproductive technologies remains to be investigated. This knowledge gap stems partly from the difficulties associated with large-scale EV production relevant to clinical applications. Most existing studies on EV production rely on conventional 2D cell culture systems, characterized by suboptimal EV yields and a failure to replicate in vivo conditions. This results in the generation of EVs that differ from their in vivo counterparts. Hence, this review firstly delves into the importance of EVs in reproduction to then expand on current techniques for in vitro EV production, specifically examining diverse methods of culture and the potential of bioengineering technologies to establish innovative systems for enhanced EV production.
对细胞外囊泡(EV)研究这一不断发展的领域的关注凸显了它们在细胞间信号传导以及供体细胞与受体细胞之间生物信息的选择性传递中的重要性。EV研究为细胞间通讯机制、信号识别及其在疾病状态中的作用提供了有价值的见解,为控制病理状况、检测生物标志物和开发药物递送系统提供了潜在途径。虽然我们对EV在生殖组织中的功能的理解有了显著进展,但探索它们作为不孕症的生物标志物、治疗干预措施以及辅助生殖技术改进的潜力仍有待研究。这一知识差距部分源于与临床应用相关的大规模EV生产的困难。大多数现有的EV生产研究依赖于传统的二维细胞培养系统,其特点是EV产量不理想且无法复制体内条件。这导致产生的EV与体内的EV不同。因此,本综述首先深入探讨EV在生殖中的重要性,然后扩展当前体外EV生产技术,特别研究不同的培养方法以及生物工程技术建立创新系统以提高EV产量的潜力。