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组织工程化具有仿生结构和细胞外基质微环境的子宫促进子宫重建。

Promotion of uterine reconstruction by a tissue-engineered uterus with biomimetic structure and extracellular matrix microenvironment.

机构信息

Department of Orthopedic Surgery and Orthopedic Research Institute, Laboratory of Stem Cell and Tissue Engineering, State Key Laboratory of Biotherapy, West China Hospital, Sichuan University, Chengdu, Sichuan 610041, China.

Frontier Medical Center, Tianfu Jincheng Laboratory, Chengdu, Sichuan 610212, China.

出版信息

Sci Adv. 2023 Nov 17;9(46):eadi6488. doi: 10.1126/sciadv.adi6488. Epub 2023 Nov 15.

Abstract

The recurrence rate for severe intrauterine adhesions is as high as 60%, and there is still lack of effective prevention and treatment. Inspired by the nature of uterus, we have developed a bilayer scaffold (ECM-SPS) with biomimetic heterogeneous features and extracellular matrix (ECM) microenvironment of the uterus. As proved by subtotal uterine reconstruction experiments, the mechanical and antiadhesion properties of the bilayer scaffold could meet the requirement for uterine repair. With the modification with tissue-specific cell-derived ECM, the ECM-SPS had the ECM microenvironment signatures of both the endometrium and myometrium and exhibited the property of inducing stem cell-directed differentiation. Furthermore, the ECM-SPS has recruited more endogenous stem cells to promote endometrial regeneration at the initial stage of repair, which was accompanied by more smooth muscle regeneration and a higher pregnancy rate. The reconstructed uterus could also sustain normal pregnancy and live birth. The ECM-SPS may thereby provide a potential treatment for women with severe intrauterine adhesions.

摘要

重度宫腔粘连的复发率高达 60%,目前仍缺乏有效的预防和治疗方法。受子宫结构的启发,我们开发了一种具有仿生异质特征和子宫细胞外基质 (ECM) 微环境的双层支架(ECM-SPS)。通过子宫次全重建实验证明,双层支架具有满足子宫修复要求的力学性能和抗粘连性能。通过组织特异性细胞衍生的 ECM 修饰,ECM-SPS 具有子宫内膜和子宫肌层的 ECM 微环境特征,并表现出诱导干细胞定向分化的特性。此外,ECM-SPS 募集了更多内源性干细胞,以促进修复初期的子宫内膜再生,伴随着更多的平滑肌再生和更高的妊娠率。重建的子宫也可以维持正常妊娠和活产。因此,ECM-SPS 可能为重度宫腔粘连患者提供一种潜在的治疗方法。

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