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人子宫内膜衍生的 Adventitial 细胞球体负载抗菌微针用于子宫再生。

Human Endometrium-Derived Adventitial Cell Spheroid-Loaded Antimicrobial Microneedles for Uterine Regeneration.

机构信息

Center for Reproductive Medicine and Obstetrics and Gynecology, The Affiliated Drum Tower Hospital of Nanjing University Medical School, Nanjing, 210008, China.

Center for Molecular Reproductive Medicine, Nanjing University, Nanjing, 210008, China.

出版信息

Small. 2022 Aug;18(31):e2201225. doi: 10.1002/smll.202201225. Epub 2022 Jul 7.

DOI:10.1002/smll.202201225
PMID:35798313
Abstract

Asherman's syndrome (AS) occurs as a consequence of severe damage to the endometrial basalis, usually leading to menstrual abnormalities, infertility, and recurrent miscarriage in women. Currently, human endometrium-derived adventitial cells (En-ADVs) are considered ideal seed cells with high pluripotency for regenerative medicine. However, critical issues such as noninvasive repair of tissues, targeting of native stem cells, and continuous action in the injured sites are not well resolved. Herein, En-ADV spheroid-loaded hierarchical microneedles (MN/En-ADV) for in situ intrauterine repair are developed. The flexible microneedles are fabricated with gelatin methacryloyl and lactoferrin, imparting the characteristics of rapid degradation and antimicrobial activity. Benefiting from an array of microwells on microneedles, En-ADVs can rapidly form 3D cell spheroids, which display higher potential for cell proliferation, differentiation, and migration than dissociated cells. With the application of MN/En-ADV, the repaired uteri show well-defined myometrial regeneration, angiogenesis, and an increase of endometrial receptivity in a rat AS model. Notably, embryos are able to implant in the reconstructed sites and remain viable, indicating that this system promotes the restoration of both normal morphology and reproductive function in the injured uterus. It is anticipated that multifunctional MN/En-ADV can be an ideal candidate for versatile in situ tissue regeneration.

摘要

Asherman 综合征(AS)是由于子宫内膜基底层严重损伤引起的,通常导致女性月经异常、不孕和反复流产。目前,人子宫内膜衍生的外膜细胞(En-ADVs)被认为是再生医学中具有高多能性的理想种子细胞。然而,一些关键问题,如组织的非侵入性修复、天然干细胞的靶向以及损伤部位的持续作用等,尚未得到很好的解决。在此,开发了用于原位子宫内修复的 En-ADV 球体负载分级微针(MN/En-ADV)。这些灵活的微针是由明胶甲基丙烯酰和乳铁蛋白制成的,赋予了快速降解和抗菌活性的特性。受益于微针上的一系列微槽,En-ADV 可以快速形成 3D 细胞球体,与分散细胞相比,其具有更高的细胞增殖、分化和迁移潜力。在 MN/En-ADV 的应用下,修复后的子宫表现出明确的子宫肌层再生、血管生成和子宫内膜容受性增加,在大鼠 AS 模型中。值得注意的是,胚胎能够在重建部位着床并保持存活,这表明该系统促进了受伤子宫正常形态和生殖功能的恢复。预计多功能 MN/En-ADV 可以成为多功能原位组织再生的理想候选物。

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