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可注射水凝胶经 Diels-Alder 点击反应微创递送人脐带间充质干细胞治疗宫腔粘连。

Minimally invasive delivery of human umbilical cord-derived mesenchymal stem cells by an injectable hydrogel via Diels-Alder click reaction for the treatment of intrauterine adhesions.

机构信息

MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310058, China; Key Laboratory of Reproductive Dysfunction Management of Zhejiang Province, Assisted Reproduction Unit, Department of Obstetrics and Gynecology, Sir Run Run Shaw Hospital, School of Medicine, Zhejiang University, Hangzhou 310016, China.

Key Laboratory of Reproductive Dysfunction Management of Zhejiang Province, Assisted Reproduction Unit, Department of Obstetrics and Gynecology, Sir Run Run Shaw Hospital, School of Medicine, Zhejiang University, Hangzhou 310016, China.

出版信息

Acta Biomater. 2024 Mar 15;177:77-90. doi: 10.1016/j.actbio.2024.02.001. Epub 2024 Feb 6.

Abstract

Intrauterine adhesions (IUA) are the most common cause of uterine infertility, and conventional treatments have not consistently achieved satisfactory pregnancy rates. Stem cell therapy shows promising potential for the clinical treatment of IUA. Although various advanced biomaterials have been designed for delivering stem cells to the uterine cavity, there remain significant challenges, particularly in devising therapeutic strategies for clinical application that minimize surgical incisions and conform to the intricate structure of uterine cavity. Herein, an injectable hydrogel loaded with human umbilical cord-derived mesenchymal stem cells (UCMSCs) was synthesized via the Diels-Alder click reaction for endometrial regeneration and fertility restoration, exhibiting suitable mechanical properties, good biocompatibility, and desirable degradation properties. Notably, this hydrogel permitted minimally invasive administration and integrated seamlessly with surrounding tissue. Our study revealed that the UCMSCs-laden injectable hydrogel enhanced cell proliferation, migration, angiogenesis, and exhibited anti-fibrotic effects in vitro. The implantation of this hydrogel significantly facilitated endometrium regeneration and restored fertility in a rat endometrial damage model. Mechanistically, in vivo results indicated that the UCMSCs-laden injectable hydrogel effectively promoted macrophage recruitment and facilitated M2 phenotype polarization. Collectively, this hydrogel demonstrated efficacy in regenerating damaged endometrium, leading to the restoration of fertility. Consequently, it holds promise as a potential therapeutic strategy for endometrial damage and fertility decline arising from intrauterine adhesions. STATEMENT OF SIGNIFICANCE: Severe endometrial traumas frequently lead to intrauterine adhesions and subsequent infertility. Stem cell therapy shows promising potential for the clinical treatment of IUA; however, challenges remain, including low delivery efficiency and compromised stem cell activity during the delivery process. In this study, we fabricated an injectable hydrogel loaded with UCMSCs via the Diels-Alder click reaction, which exhibited unique bioorthogonality. The in situ-gelling hydrogels could be introduced through a minimally invasive procedure and adapt to the intricate anatomy of the uterus. The UCMSCs-laden injectable hydrogel promoted endometrial regeneration and fertility restoration in a rat endometrial damage model, efficaciously augmenting macrophage recruitment and promoting their polarization to the M2 phenotype. The administration of UCMSCs-laden injectable hydrogel presents a promising therapeutic strategy for patients with severe intrauterine adhesion.

摘要

宫腔粘连(IUA)是子宫不孕的最常见原因,传统治疗方法并未始终达到令人满意的妊娠率。干细胞治疗为 IUA 的临床治疗展示出了有前景的潜力。尽管已经设计了各种先进的生物材料来将干细胞递送到子宫腔中,但仍然存在重大挑战,特别是在设计用于临床应用的治疗策略时,这些策略需要尽量减少手术切口并符合子宫腔的复杂结构。在此,通过 Diels-Alder 点击反应合成了负载人脐带间充质干细胞(UCMSCs)的可注射水凝胶,用于子宫内膜再生和生育力恢复,该水凝胶具有合适的机械性能、良好的生物相容性和理想的降解性能。值得注意的是,这种水凝胶允许微创给药,并与周围组织无缝集成。我们的研究表明,负载 UCMSCs 的可注射水凝胶在体外增强了细胞增殖、迁移和血管生成,并表现出抗纤维化作用。该水凝胶的植入显著促进了子宫内膜的再生,并在大鼠子宫内膜损伤模型中恢复了生育力。从机制上讲,体内结果表明,负载 UCMSCs 的可注射水凝胶有效地促进了巨噬细胞的募集,并促进了 M2 表型的极化。总之,该水凝胶在再生受损的子宫内膜方面表现出了功效,从而恢复了生育力。因此,它有望成为治疗宫腔粘连和由宫腔粘连引起的生育力下降的潜在治疗策略。

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