首页> 美国卫生研究院文献>other >Application of Detergents or High Hydrostatic Pressure as Decellularization Processes in Uterine Tissues and Their Subsequent Effects on In Vivo Uterine Regeneration in Murine Models
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Application of Detergents or High Hydrostatic Pressure as Decellularization Processes in Uterine Tissues and Their Subsequent Effects on In Vivo Uterine Regeneration in Murine Models

机译:洗涤剂或高静水压力作为子宫组织脱细胞过程的应用及其对小鼠模型体内子宫再生的影响

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摘要

Infertility caused by ovarian or tubal problems can be treated using In Vitro Fertilization and Embryo Transfer (IVF-ET); however, this is not possible for women with uterine loss and malformations that require uterine reconstruction for the treatment of their infertility. In this study, we are the first to report the usefulness of decellularized matrices as a scaffold for uterine reconstruction. Uterine tissues were extracted from Sprague Dawley (SD) rats and decellularized using either sodium dodecyl sulfate (SDS) or high hydrostatic pressure (HHP) at optimized conditions. Histological staining and quantitative analysis showed that both SDS and HHP methods effectively removed cells from the tissues with, specifically, a significant reduction of DNA contents for HHP constructs. HHP constructs highly retained the collagen content, the main component of extracellular matrices in uterine tissue, compared to SDS constructs and had similar content levels of collagen to the native tissue. The mechanical strength of the HHP constructs was similar to that of the native tissue, while that of the SDS constructs was significantly elevated. Transmission electron microscopy (TEM) revealed no apparent denaturation of collagen fibers in the HHP constructs compared to the SDS constructs. Transplantation of the decellularized tissues into rat uteri revealed the successful regeneration of the uterine tissues with a 3-layer structure 30 days after the transplantation. Moreover, a lot of epithelial gland tissue and Ki67 positive cells were detected. Immunohistochemical analyses showed that the regenerated tissues have a normal response to ovarian hormone for pregnancy. The subsequent pregnancy test after 30 days transplantation revealed successful pregnancy for both the SDS and HHP groups. These findings indicate that the decellularized matrix from the uterine tissue can be a potential scaffold for uterine regeneration.
机译:由卵巢或输卵管问题引起的不孕症可以使用体外受精和胚胎移植(IVF-ET)进行治疗;但是,这对于那些需要子宫重建以治疗不孕症的子宫丢失和畸形的妇女是不可能的。在这项研究中,我们是第一个报告脱细胞基质作为子宫重建支架的有用性的研究。从Sprague Dawley(SD)大鼠中提取子宫组织,并在最佳条件下使用十二烷基硫酸钠(SDS)或高静水压(HHP)脱细胞。组织学染色和定量分析表明,SDS和HHP方法均可有效地从组织中去除细胞,尤其是HHP构建体的DNA含量显着降低。与SDS构建物相比,HHP构建物高度保留了子宫组织中细胞外基质主要成分的胶原蛋白含量,并且胶原蛋白的含量水平与天然组织相似。 HHP构建体的机械强度与天然组织的机械强度相似,而SDS构建体的机械强度显着提高。透射电子显微镜(TEM)显示,与SDS构建体相比,HHP构建体中胶原纤维没有明显变性。将脱细胞的组织移植到大鼠子宫中,表明在移植后30天,具有三层结构的子宫组织成功再生。此外,还检测到许多上皮腺组织和Ki67阳性细胞。免疫组织化学分析表明,再生组织对卵巢激素的妊娠反应正常。移植30天后的随后妊娠试验显示,SDS和HHP组均成功妊娠。这些发现表明,来自子宫组织的脱细胞基质可能是子宫再生的潜在支架。

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