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基于脱细胞子宫内膜水凝胶的改良人子宫内膜类器官模型

Improved Models of Human Endometrial Organoids Based on Hydrogels from Decellularized Endometrium.

作者信息

Francés-Herrero Emilio, Juárez-Barber Elena, Campo Hannes, López-Martínez Sara, de Miguel-Gómez Lucía, Faus Amparo, Pellicer Antonio, Ferrero Hortensia, Cervelló Irene

机构信息

Department of Pediatrics, Obstetrics and Gynecology, Faculty of Medicine and Odontology, Universitat de València, 46010 Valencia, Spain.

Fundación Instituto Valenciano de Infertilidad (FIVI), Instituto de Investigación Sanitaria La Fe, 46026 Valencia, Spain.

出版信息

J Pers Med. 2021 Jun 3;11(6):504. doi: 10.3390/jpm11060504.

Abstract

Organoids are three-dimensional (3D) multicellular tissue models that mimic their corresponding in vivo tissue. Successful efforts have derived organoids from primary tissues such as intestine, liver, and pancreas. For human uterine endometrium, the recent generation of 3D structures from primary endometrial cells is inspiring new studies of this important tissue using precise preclinical models. To improve on these 3D models, we decellularized pig endometrium containing tissue-specific extracellular matrix and generated a hydrogel (EndoECM). Next, we derived three lines of human endometrial organoids and cultured them in optimal and suboptimal culture expansion media with or without EndoECM (0.01 mg/mL) as a soluble additive. We characterized the resultant organoids to verify their epithelial origin, long-term chromosomal stability, and stemness properties. Lastly, we determined their proliferation potential under different culture conditions using proliferation rates and immunohistochemical methods. Our results demonstrate the importance of a bioactive environment for the maintenance and proliferation of human endometrial organoids.

摘要

类器官是模仿其相应体内组织的三维(3D)多细胞组织模型。已经成功地从肠道、肝脏和胰腺等原代组织中获得了类器官。对于人类子宫内膜,最近从原代子宫内膜细胞生成的3D结构正在激发使用精确临床前模型对这一重要组织进行的新研究。为了改进这些3D模型,我们去除了含有组织特异性细胞外基质的猪子宫内膜,并生成了一种水凝胶(EndoECM)。接下来,我们获得了三株人类子宫内膜类器官,并将它们在添加或不添加EndoECM(0.01 mg/mL)作为可溶性添加剂的最佳和次优培养扩增培养基中培养。我们对所得类器官进行了表征,以验证其上皮来源、长期染色体稳定性和干性特性。最后,我们使用增殖率和免疫组织化学方法确定了它们在不同培养条件下的增殖潜力。我们的结果证明了生物活性环境对人类子宫内膜类器官的维持和增殖的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f23/8229407/e0dff6756285/jpm-11-00504-g001.jpg

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