E2-Loaded Microcapsules and Bone Marrow-Derived Mesenchymal Stem Cells with Injectable Scaffolds for Endometrial Regeneration Application.

IF 3.5 3区 医学 Q3 CELL & TISSUE ENGINEERING
Tissue Engineering Part A Pub Date : 2024-02-01 Epub Date: 2023-12-04 DOI:10.1089/ten.TEA.2023.0238
Yuelin Wu, Shengyi Gu, Jonathan M Cobb, Griffin H Dunn, Taylor A Muth, Chloe J Simchick, Baoguo Li, Wujie Zhang, Xiaolin Hua
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Abstract

Bone marrow-derived mesenchymal stem cells (BMSCs) have been recognized as new candidates for the treatment of serious endometrial injuries. However, owing to the local microenvironment of damaged endometrium, transplantation of BMSCs yielded disappointing results. In this study, Pectin-Pluronic® F-127 hydrogel as scaffolds were fabricated to provide three-dimensional architecture for the attachment, growth, and migration of BMSCs. E2 was encapsulated into the W/O/W microspheres to construct pectin-based E2-loaded microcapsules (E2 MPs), which has the potential to serve as a long-term reliable source of E2 for endometrial regeneration. Then, the BMSCs/E2 MPs/scaffolds system was injected into the uterine cavity of mouse endometrial injury model for treatment. At 4 weeks after transplantation, the system increased proliferative abilities of uterine endometrial cells, facilitated microvasculature regeneration, and restored the ability of endometrium to receive an embryo, suggesting that the BMSCs/E2 MPs/scaffolds system is a promising treatment option for endometrial regeneration. Furthermore, the mechanism of E2 in promoting the repair of endometrial injury was also investigated. Exosomes are critical paracrine mediators that act as biochemical cues to direct stem cell differentiation. In this study, it was found that the expression of endometrial epithelial cell (EEC) markers was upregulated in BMSCs treated by exosomes secreted from endometrial stromal cells (ESCs-Exos). Exosomes derived from E2-stimulated ESCs further promoted the expression level of EECs markers in BMSCs, suggesting exosomes released from ESCs by E2 stimulation could enhance the differentiation efficiency of BMSCs. Therefore, exosomes derived from ESCs play paracrine roles in endometrial regeneration stimulated by E2 and provide optimal estrogenic response.

E2负载微胶囊和具有可注射支架的骨髓基质干细胞用于子宫内膜再生应用。
骨髓间充质干细胞(BMSC)已被公认为治疗严重子宫内膜损伤的新候选细胞。然而,由于受损子宫内膜的局部微环境,骨髓基质干细胞移植的结果令人失望。在本研究中,制备了Pectin Pluronic®F-127水凝胶作为支架,为BMSC的附着、生长和迁移提供三维结构。将E2包封到W/O/W微球中,构建基于果胶的E2负载微胶囊(E2-MPs),该微胶囊有可能成为子宫内膜再生的E2的长期可靠来源。然后,将BMSCs/E2 MPs/支架系统注射到小鼠子宫内膜损伤模型的子宫腔内进行治疗。移植后四周,该系统增加了子宫内膜细胞的增殖能力,促进了微血管再生,并恢复了子宫内膜接受胚胎的能力,这表明BMSCs/E2 MPs/支架系统是子宫内膜再生的一种很有前途的治疗选择。此外,还探讨了E2促进子宫内膜损伤修复的机制。外泌体是重要的旁分泌介质,作为指导干细胞分化的生化线索。在本研究中,发现在由子宫内膜基质细胞分泌的外泌体(ESCs-Exos)处理的BMSC中,子宫内膜上皮细胞(EECs)标记物的表达上调。来自E2刺激的ESCs的外泌体进一步提高了EECs标记物在BMSCs中的表达水平,表明E2刺激从ESCs释放的外泌物可以提高BMSCs的分化效率。因此,来源于ESCs的外泌体在E2刺激的子宫内膜再生中发挥旁分泌作用,并提供最佳的雌激素反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Tissue Engineering Part A
Tissue Engineering Part A Chemical Engineering-Bioengineering
CiteScore
9.20
自引率
2.40%
发文量
163
审稿时长
3 months
期刊介绍: Tissue Engineering is the preeminent, biomedical journal advancing the field with cutting-edge research and applications that repair or regenerate portions or whole tissues. This multidisciplinary journal brings together the principles of engineering and life sciences in the creation of artificial tissues and regenerative medicine. Tissue Engineering is divided into three parts, providing a central forum for groundbreaking scientific research and developments of clinical applications from leading experts in the field that will enable the functional replacement of tissues.
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