Intra-ovarian injection of bone marrow-derived c-Kit+ cells for ovarian rejuvenation in menopausal rats.

IF 2.2 4区 工程技术 Q3 PHARMACOLOGY & PHARMACY Bioimpacts Pub Date : 2022-01-01 Epub Date: 2021-09-25 DOI:10.34172/bi.2021.23499
Sepideh Sheshpari, Mahnaz Shahnazi, Shahin Ahmadian, Mohammad Nouri, Mehran Mesgari Abbasi, Rahim Beheshti, Reza Rahbarghazi, Ali Honaramooz, Mahdi Mahdipour
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引用次数: 9

Abstract

Introduction: Cell-based therapies with certain cell types are touted as novel and hopeful therapeutic intervention in the clinical setting. Here, we aimed to assess the regenerative potential of c-Kit+ cells in the rejuvenation of ovarian tissue and fertility rate in rat model of premature ovarian failure (POF). Methods: Rats were treated with 160 mg/kg/BW of 4-vinylcyclohexene dioxide for 15 days. Freshly enriched rat bone marrow-derived c-Kit+ (MACS) and c-Kit- cells (4×105 cells/10 µL) were transplanted into the ovaries of treatment and control animals. Prior to transplantation as well as 2, 4, 6, and 8 weeks post-transplantation, randomly-selected rats were euthanized and ovarian tissues were subjected to pathophysiological examinations and real-time PCR analyses. Results: POF status was confirmed by the presence of pathological features and a decreased number of immature and mature follicles compared with the control group (P < 0.05). Histological examination revealed a substantial reduction of atretic follicles in POF rats receiving c-Kit+ cells in comparison with POF rats that did not receive these cells (P < 0.05). Compared with the control samples, angiogenesis-related genes, Angpt2 and KDR, showed increased and decreased expressions in POF ovaries, respectively (P < 0.05). c-Kit+ cells had potential to restore angiogenesis in the ovarian tissue within normal ranges. Systemic levels of FSH did not significantly change in pre- or post-transplantation time points for any group (P > 0.05). Notable reduction of collagen deposition was found in c-Kit-treated rats. Transplantation of c-Kit+ cells also restored the reduced fertility rate (P < 0.05). Conclusion: The administration of c-Kit+ cells can modulate angiogenesis and pathological changes, leading to the rejuvenation of ovarian function of a rat model of premature menopause.

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卵巢内注射骨髓源性c-Kit+细胞对绝经大鼠卵巢年轻化的影响。
在临床环境中,以特定细胞类型为基础的细胞疗法被认为是一种新颖而有希望的治疗干预手段。在此,我们旨在评估c-Kit+细胞在卵巢组织年轻化中的再生潜力和卵巢早衰(POF)大鼠模型的生育能力。方法:大鼠灌胃160 mg/kg/BW的4-乙烯基二氧化环己烯15 d。将新鲜富集的大鼠骨髓源性c-Kit+ (MACS)和c-Kit-细胞(4×105 cells/10µL)移植到实验组和对照组的卵巢中。在移植前及移植后2、4、6、8周,随机选择大鼠实施安乐死,对卵巢组织进行病理生理检查和实时PCR分析。结果:与对照组相比,存在病理特征,未成熟卵泡和成熟卵泡数量减少,证实了POF状态(P +细胞与未接受这些细胞的POF大鼠相比,pangpt2和KDR在POF卵巢中的表达分别增加和减少)(P +细胞在正常范围内具有恢复卵巢组织血管生成的潜力。各组移植前后全身FSH水平无显著变化(P > 0.05)。c- kit处理大鼠胶原沉积明显减少。结论:c-Kit+细胞可调节早绝经大鼠模型卵巢血管生成和病理改变,使卵巢功能恢复。
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来源期刊
Bioimpacts
Bioimpacts Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
4.80
自引率
7.70%
发文量
36
审稿时长
5 weeks
期刊介绍: BioImpacts (BI) is a peer-reviewed multidisciplinary international journal, covering original research articles, reviews, commentaries, hypotheses, methodologies, and visions/reflections dealing with all aspects of biological and biomedical researches at molecular, cellular, functional and translational dimensions.
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