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人卵巢组织与工程化内皮细胞的共移植:一种将加速灌注与直接旁分泌递送相结合的基于细胞的策略。

Co-transplantation of Human Ovarian Tissue with Engineered Endothelial Cells: A Cell-based Strategy Combining Accelerated Perfusion with Direct Paracrine Delivery.

作者信息

Man Limor, Park Laura, Bodine Richard, Ginsberg Michael, Zaninovic Nikica, Schattman Glenn, Schwartz Robert E, Rosenwaks Zev, James Daylon

机构信息

Center for Reproductive Medicine and Infertility, Weill Cornell Medical College.

Angiocrine Biosciences, Inc.

出版信息

J Vis Exp. 2018 May 16(135):57472. doi: 10.3791/57472.

Abstract

Infertility is a frequent side effect of chemotherapy and/or radiotherapy and for some patients, cryopreservation of oocytes or embryos is not an option. As an alternative, an increasing number of these patients are choosing to cryopreserve ovarian tissue for autograft following recovery and remission. Despite improvements in outcomes among patients undergoing auto-transplantation of cryopreserved ovarian tissue, efficient revascularization of grafted tissue remains a major obstacle. To mitigate ischemia and thus improve outcomes in patients undergoing auto-transplantation, we developed a vascular cell-based strategy for accelerating perfusion of ovarian tissue. We describe a method for co-transplantation of exogenous endothelial cells (ExECs) with cryopreserved ovarian tissue in a mouse xenograft model. We extend this approach to employ ExECs that have been engineered to constitutively express Anti-Mullerian hormone (AMH), thus enabling sustained paracrine signaling input to ovarian grafts. Co-transplantation with ExECs increased follicular volume and improved antral follicle development, and AMH-expressing ExECs promoted retention of quiescent primordial follicles. This combined strategy may be a useful tool for mitigating ischemia and modulating follicular activation in the context of fertility preservation and/or infertility at large.

摘要

不孕是化疗和/或放疗常见的副作用,对于一些患者来说,冷冻保存卵母细胞或胚胎并非可行选择。作为替代方案,越来越多此类患者选择冷冻保存卵巢组织,以便在康复和病情缓解后进行自体移植。尽管接受冷冻保存卵巢组织自体移植的患者治疗效果有所改善,但移植组织的有效血管重建仍是一个主要障碍。为了减轻缺血,从而改善自体移植患者的治疗效果,我们开发了一种基于血管细胞的策略来加速卵巢组织灌注。我们描述了一种在小鼠异种移植模型中将外源性内皮细胞(ExECs)与冷冻保存的卵巢组织共同移植的方法。我们将这种方法扩展到使用经过工程改造以组成性表达抗苗勒管激素(AMH)的ExECs,从而使卵巢移植物能够持续获得旁分泌信号输入。与ExECs共同移植可增加卵泡体积并改善窦卵泡发育,而表达AMH的ExECs可促进静止原始卵泡的保留。这种联合策略可能是在生育力保存和/或总体不孕情况下减轻缺血和调节卵泡激活的有用工具。

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