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Fully synthetic matrices for in vitro culture of primary human intestinal enteroids and endometrial organoids

机译:用于初级人类肠道内肠骨和子宫内膜有机体的体外培养的全合成基质

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Epithelial organoids derived from human donor tissues are important tools in fields ranging from regenerative medicine to drug discovery. Organoid culture requires expansion of stem/progenitor cells in Matrigel, a tumor-derived extracellular matrix (ECM). An alternative completely synthetic ECM could improve reproducibility, clarify mechanistic phenomena, and enable human implantation of organoids. We designed synthetic ECMs with tunable biomolecular and biophysical properties to identify gel compositions supporting human tissue-derived stem/progenitor epithelial cells as enteroids and organoids starting with single cells rather than tissue fragments. The synthetic ECMs consist of 8-arm PEG-macromers modified with ECM-binding peptides and different combinations of integrin-binding peptides, crosslinked with peptides susceptible to matrix metalloprotease (MMP) degradation, and tuned to exhibit a range of biophysical properties. A gel containing an alpha 2 beta 1 integrin-binding peptide (GFOGER) and matrix binder peptides grafted to a 20 kDa 8-arm PEG macromer showed the most robust support of human duodenal and colon enteroids and endometrial organoids. In this synthetic ECM, human intestinal enteroids and endometrial organoids emerge from single cells and show cell-specific and apicobasal polarity markers upon differentiation. Intestinal enteroids, in addition, retain their proliferative capacity, are functionally responsive to basolateral stimulation, express canonical markers of intestinal crypt cells including Paneth cells, and can be serially passaged. The success of this synthetic ECM in supporting human postnatal organoid culture from multiple different donors and from both the intestine and endometrium suggests it may be broadly useful for other epithelial organoid culture.
机译:源自人体供体组织的上皮细胞器是从再生医学到药物发现的田地中的重要工具。有机体培养需要在Matrigel中的茎/祖细胞膨胀,肿瘤衍生的细胞外基质(ECM)。替代完全合成的ECM可以提高再现性,澄清机械现象,并使人体植入有机体。我们设计了具有可调谐生物分子和生物物理性质的合成ECM,以鉴定支持人类组织衍生的茎/祖细胞的凝胶组合物,以单细胞和组织片段开始。合成ECM由用ECM结合肽和整联蛋白结合肽的不同组合改性的8臂PEG - 大分子剂组成,与易受基质金属蛋白酶(MMP)降解的肽交联,并调节以表现一系列生物物理性质。含有α2β1整合蛋白结合肽(GFoger)和接枝到20kDa 8臂PEG大分子体的基质粘合剂肽的凝胶显示出人十二指肠和结肠内胚胎和子宫内膜器有机体的最强大的支持。在这种合成的ECM中,人肠道肠毒性和子宫内膜有机体从单细胞出现,并在分化时显示细胞特异性和烟道物极性标记物。此外,肠道进入含量,保留其增殖能力,功能敏感性对基底外侧刺激,表达肠柱细胞的表达规范标志物,包括碱细胞,可以连续传代。这种合成ECM在从多个不同供体和肠道和子宫内瘤的支持人类产后有机体培养方面的成功表明它可能对其他上皮细胞体培养物广泛有用。

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