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The Effectiveness of Anti-Apoptotic Agents to Preserve Primordial Follicles and Prevent Tissue Damage during Ovarian Tissue Cryopreservation and Xenotransplantation

机译:抗凋亡剂以保存原始卵泡的有效性,防止组织损伤在卵巢组织冷冻保存和异种术中

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摘要

The purpose of this study is to investigate the effectiveness of sphingosine-1-phosphate (S1P) and Z-VAD-FMK (Z-VAD) as anti-apoptotic agents to preserve ovarian function and prevent tissue damage during ovarian tissue cryopreservation and transplantation. This study consisted of two steps, in vitro and in vivo. In the first step, human ovarian tissues were cryopreserved using slow-freezing media alone, S1P, or Z-VAD (control, S1P, Z-VAD group); based on the outcomes in these groups, Z-VAD was selected for subsequent xenotransplantation. In the second step, human frozen/thawed ovarian tissues were grafted into fifty mice divided into three groups: slow-freezing/thawing and transplantation without an anti-apoptotic agent (Trans-control) and xenotransplantation with or without Z-VAD injection (Trans-Z-VAD-positive and Trams-Z-VAD-negative groups, respectively). In the first step, the Z-VAD group had a significantly higher primordial follicular count than the S1P (p = 0.005) and control groups (p = 0.04). Transplanted ovarian tissues were obtained 4 weeks after transplantation (second step). Angiogenesis was significantly increased in the Z-VAD-negative (p = 0.03) and -positive (p = 0.04) groups compared to the control group. This study demonstrated that slow-freezing and transplantation with Z-VAD is an effective method for preserving primordial follicle counts, decreasing double-strand DNA breaks, and increasing angiogenesis in a mouse model. Further molecular and clinical studies are needed to confirm these results.
机译:本研究的目的是探讨鞘氨醇-1-磷酸(S1P)和Z-VAD-FMK(Z-VAD)作为抗凋亡剂以保护卵巢功能的有效性,并防止卵巢组织冷冻保存和移植过程中的组织损伤。本研究由两步,体外和体内组成。在第一步中,使用S1P或Z-VAD(对照,S1P,Z-VAD组)使用缓慢冷冻介质进行冷冻保存人卵巢组织;基于这些组的结果,选择Z-VAD用于后续的异种持续物质。在第二步中,将人冷冻/解冻的卵巢组织移植到分为三组的五十小鼠中:慢凝结/解冻和移植而没有抗凋亡剂(反式控制)和具有或没有Z-VAD注射的异种持续物(Trans -Z-VAD阳性和轨道 - Z-VAD阴性组)。在第一步中,Z-VAD组具有比S1P(P = 0.005)和对照组的最高原始滤泡计数(P = 0.04)。移植后4周获得移植的卵巢组织(第二步)。与对照组相比,Z-VAD阴性(P = 0.03)和阳性(P = 0.04)基团显着增加血管生成。该研究表明,用Z-VAD缓慢和移植是一种用于保留原始卵泡计数的有效方法,降低双链DNA断裂,以及在小鼠模型中增加血管生成。需要进一步的分子和临床研究来确认这些结果。

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