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成功实现优化灌注和冷冻保存整个卵巢并同种异体移植,改善了卵巢早衰大鼠模型的生育能力。

Successful fertility following optimized perfusion and cryopreservation of whole ovary and allotransplantation in a premature ovarian insufficiency rat model.

机构信息

Department of Gynecology, Obstetrics and Gynecology Hospital, Fudan University, Shanghai, 200090, China.

Department of Urology, Shanghai General Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, 200080, China.

出版信息

J Ovarian Res. 2018 May 2;11(1):35. doi: 10.1186/s13048-018-0401-4.

Abstract

BACKGROUND

Fertility preservation by whole ovary cryopreservation and transplantation (WOCP&TP) with vascular anastomosis requires successful cryopreservation. In this study, we investigated the possibility of restoring ovarian function and natural fertility after WOCP&TP in a premature ovarian insufficiency (POI) rat model. The influence of cryopreservation on the offspring of rats following WOCP&TP was also explored.

METHOD

Rats aged 8-10 weeks were used as donors and recipients for allotransplantation. Fifteen rat whole ovaries were divided into three groups: the optimized group, the conventional group, and the fresh group. Different perfusion modes were used before cryopreservation and after thawing. Whole ovaries were observed by morphologic analysis, immunohistochemical staining, and transferase-mediated deoxyuridine triphosphate nick end-labeling assay. Ovarian function and fertility after WOCP&TP were then observed in 25 cyclophosphamide-induced POI rats for 8 months. Ovarian function was assessed by vaginal smears and blood hormone levels. Fertility restoration was quantified as the live birth rate after mating. The filial generation of rats was mated at 8-10 weeks of age. Offspring were observed for birth defect.

RESULTS

Histological evaluation demonstrated intact morphology of follicles in all groups, with 77.6% of the total number of follicles identified as intact in the optimized group. The apoptotic rates of ovarian cells in the optimized group were significantly lower than that in the conventional group. Of the 20 live POI rats, 14 (70%) began to recover ovarian function after 2 weeks of transplantation, with normal hormone levels achieved 4 weeks after transplantation. Four of 14 rats were pregnant and delivered live offspring. One rat had a second pregnancy and delivered a second litter of live offspring. When the offspring matured, they were mated, and second and third generations of rats were born. All offspring had no abnormalities in appearance.

CONCLUSIONS

High rates of restoration of ovarian function and natural fertility with multiple generations of offspring were obtained following WOCP&TP in a cyclophosphamide-induced POI rat model by utilizing optimized perfusion. Cryopreservation did not affect the viability of successive generations.

摘要

背景

通过卵巢整体冷冻保存和移植(WOCP&TP)联合血管吻合术进行生育力保存需要成功的冷冻保存。本研究旨在探讨在卵巢早衰(POI)大鼠模型中,WOCP&TP 后恢复卵巢功能和自然生育力的可能性。还探讨了 WOCP&TP 后冷冻保存对大鼠后代的影响。

方法

将 8-10 周龄的大鼠用作同种异体移植的供体和受体。将 15 个大鼠整体卵巢分为三组:优化组、常规组和新鲜组。冷冻保存前和解冻后使用不同的灌注模式。通过形态学分析、免疫组织化学染色和转移酶介导的脱氧尿苷三磷酸缺口末端标记法观察整个卵巢。然后,在 25 只环磷酰胺诱导的 POI 大鼠中观察 WOCP&TP 后 8 个月的卵巢功能和生育力。通过阴道涂片和血液激素水平评估卵巢功能。通过交配后的活产率来量化生育力的恢复。8-10 周龄时,大鼠的子代进行交配。观察子代是否有出生缺陷。

结果

组织学评估显示所有组的卵泡形态完整,优化组中总卵泡数的 77.6%被鉴定为完整。优化组卵巢细胞的凋亡率明显低于常规组。在 20 只存活的 POI 大鼠中,有 14 只(70%)在移植后 2 周开始恢复卵巢功能,移植后 4 周达到正常激素水平。14 只大鼠中有 4 只怀孕并产下活产仔。一只大鼠再次怀孕并产下第二窝活产仔。当子代成熟时,它们进行交配,第二代和第三代大鼠出生。所有子代在外貌上均无异常。

结论

通过利用优化的灌注,在环磷酰胺诱导的 POI 大鼠模型中进行 WOCP&TP 后,获得了卵巢功能和自然生育力的高恢复率,并产生了多代后代。冷冻保存不影响后代的存活率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55c9/5930692/163943b11ceb/13048_2018_401_Fig1_HTML.jpg

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