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对源自人卵丘细胞的细胞产品的多种生理和治疗影响的研究。

The investigation of diverse physiological and therapeutic impact of cellular-based products derived from human cumulus cells.

作者信息

Burukçu Derya, Yilmaz Sema, Alagöz Oya, Yaltirik Cumhur Kaan, Attar Erkut, Şahin Fikrettin, Aydemir Esra

机构信息

Department of Genetics and Bioengineering, Faculty of Engineering, Yeditepe University, İstanbul, Turkey.

Department of Internal Medical Sciences and - Child Health and Diseases, Uşak University, Uşak, Turkey.

出版信息

Turk J Biol. 2022 Sep 19;46(5):400-413. doi: 10.55730/1300-0152.2626. eCollection 2022.

Abstract

Particular somatic cells, namely cumulus cells (CCs) that support the oocyte maturation, fertility, and viability by providing the nutrients and energy to the oocyte envelop the mammalian oocyte. In this study, discarded human cumulus tissues were used to reveal the value of hyaluronic acid-rich CCs on several cellular events, including differentiation. Conditioned media, recovered from the primary culture of CCs, were introduced to the human nucleus pulposus cells (hNPCs) which were functionally distorted because of the loss of chondrogenecity. Enlightening the impact of cumulus conditioned media (CCM) on wound healing and angiogenesis was also investigated. In line with these goals, differentiation of hNPCs into chondrocytes with CCM as the basal medium containing traditional differentiation agents was induced upon isolation and characterization of hCCs and hNPCs. The effects were detected by differentiation-specific cell stains and gene expression analyses. Scratch and tube formation assays were performed to detect the effect of CCM on wound healing and angiogenesis. Our results showed that cumulus cell-conditioned media promoted the chondrogenesis and osteogenesis of hNPCs. A significant increase in angiogenesis and ability for wound closure was detected only in groups cultured in CCM compared to the control. These findings demonstrated that CCM might be used in therapeutics.

摘要

特定的体细胞,即卵丘细胞(CCs),通过为卵母细胞提供营养和能量来支持卵母细胞的成熟、生育能力和生存能力,它们包裹着哺乳动物的卵母细胞。在本研究中,废弃的人类卵丘组织被用于揭示富含透明质酸的卵丘细胞在包括分化在内的多种细胞事件中的价值。从卵丘细胞原代培养物中回收的条件培养基被引入到因软骨生成能力丧失而功能失调的人髓核细胞(hNPCs)中。还研究了卵丘条件培养基(CCM)对伤口愈合和血管生成的影响。为了实现这些目标,在分离和鉴定人卵丘细胞(hCCs)和人髓核细胞(hNPCs)后,以CCM作为含有传统分化剂的基础培养基,诱导hNPCs分化为软骨细胞。通过分化特异性细胞染色和基因表达分析来检测效果。进行划痕试验和管形成试验以检测CCM对伤口愈合和血管生成的影响。我们的结果表明,卵丘细胞条件培养基促进了hNPCs的软骨生成和骨生成。与对照组相比,仅在CCM培养的组中检测到血管生成显著增加和伤口闭合能力增强。这些发现表明CCM可能用于治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48a4/10388000/ac37c7d73b0b/turkjbiol-46-5-400f1.jpg

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