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Chick embryo xenograft model reveals a novel perineural niche for human adipose-derived stromal cells

机译:小鸡胚胎异种移植模型揭示了人类脂肪来源的基质细胞的新型神经外生境

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Human adipose-derived stromal cells (hADSC) are a heterogeneous cell population that contains adult multipotent stem cells. Although it is well established that hADSC have skeletal potential in vivo in adult organisms, in vitro assays suggest further differentiation capacity, such as into glia. Thus, we propose that grafting hADSC into the embryo can provide them with a much more instructive microenvironment, allowing the human cells to adopt diverse fates or niches. Here, hADSC spheroids were grafted into either the presumptive presomitic mesoderm or the first branchial arch (BA1) regions of chick embryos. Cells were identified without previous manipulations via human-specific Alu probes, which allows efficient long-term tracing of heterogeneous primary cultures. When grafted into the trunk, in contrast to previous studies, hADSC were not found in chondrogenic or osteogenic territories up to E8. Surprisingly, 82.5% of the hADSC were associated with HNK1+ tissues, such as peripheral nerves. Human skin fibroblasts showed a smaller tropism for nerves. In line with other studies, hADSC also adopted perivascular locations. When grafted into the presumptive BA1, 74.6% of the cells were in the outflow tract, the final goal of cardiac neural crest cells, and were also associated with peripheral nerves. This is the first study showing that hADSC could adopt a perineural niche in vivo and were able to recognize cues for neural crest cell migration of the host. Therefore, we propose that xenografts of human cells into chick embryos can reveal novel behaviors of heterogeneous cell populations, such as response to migration cues.
机译:人脂肪来源的基质细胞(hADSC)是包含成年专能干细胞的异质细胞群。尽管已经确定hADSC在成年生物体内具有体内骨骼潜能,但体外测定表明进一步的分化能力,例如向胶质细胞分化。因此,我们建议将hADSC移植到胚胎中可以为它们提供更具指导性的微环境,从而使人类细胞能够适应多种命运或壁ni。在这里,hADSC球体被移植到鸡胚的假定的早熟中胚层或第一分支弓(BA1)区域。无需事先通过人类特异性Alu探针进行操作即可鉴定出细胞,从而可以长期有效地追踪异种原代培养物。与以前的研究相反,当移植到树干中时,在直到E8的成软骨或成骨区域都没有发现hADSC。令人惊讶的是,hADSC的82.5%与HNK1 +组织(如周围神经)有关。人的皮肤成纤维细胞显示出较小的神经向性。与其他研究一致,hADSC还采用了血管周围位置。当移植到推测的BA1中时,有74.6%的细胞在流出道中,这是心脏神经rest细胞的最终目标,并且还与周围神经有关。这是第一项研究,表明hADSC可以在体内采用神经周围小生境,并且能够识别宿主神经neural细胞迁移的线索。因此,我们建议人类细胞异种移植到鸡胚中可以揭示异质细胞群体的新行为,例如对迁移线索的反应。

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