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首页> 外文期刊>International Journal of Nanomedicine >CD44+/CD24- breast cancer cells exhibit phenotypic reversion in three-dimensional self-assembling peptide RADA16 nanofiber scaffold
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CD44+/CD24- breast cancer cells exhibit phenotypic reversion in three-dimensional self-assembling peptide RADA16 nanofiber scaffold

机译:CD44 + / CD24-乳腺癌细胞在三维自组装肽RADA16纳米纤维支架中表现出表型逆转

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摘要

Background: Self-assembling peptide nanofiber scaffolds have been shown to be a -permissive biological material for tissue repair, cell proliferation, differentiation, etc. Recently, a subpopulation (CD44+/CD24-) of breast cancer cells has been reported to have stem/progenitor cell properties. The aim of this study was to investigate whether this subpopulation of cancer cells have different phenotypes in self-assembling COCH3-RADARADARADARADA-CONH2 (RADA16) peptide nanofiber scaffold compared with Matrigel? (BD Biosciences, Two Oak Park, Bedford, MA, USA) and collagen I.Methods: CD44 and CD24 expression was determined by flow cytometry. Cell proliferation was measured by 5-bromo-2'-deoxyuridine assay and DNA content measurement. Immunostaining was used to indicate the morphologies of cells in three-dimensional (3D) cultures of different scaffolds and the localization of β-catenin in the colonies. Western blot was used to determine the expression of signaling proteins. In vitro migration assay and inoculation into nude mice were used to evaluate invasion and tumorigenesis in vivo.Results: The breast cancer cell line MDA-MB-435S contained a high percentage (>99%) of CD44+/CD24- cells, which exhibited phenotypic reversion in 3D RADA16 nanofiber scaffold compared with collagen I and Matrigel. The newly formed reverted acini-like colonies reassembled a basement membrane and reorganized their cytoskeletons. At the same time, cells cultured and embedded in RADA16 peptide scaffold exhibited growth arrest. Also, they exhibited different migration potential, which links their migration ability with their cellular morphology. Consistent with studies in vitro, the in vivo tumor formation assay further supported of the functional changes caused by the reversion in 3D RADA16 culture. Expression levels of intercellular surface adhesion molecule-1 were upregulated in cells cultured in RADA16 scaffolds, and the NF-kappa B inhibitor pyrrolidine dithiocarbamate could inhibit RADA16-induced upregulation of intercellular surface adhesion molecule-1 and the phenotype reversion of MDA-MB-453S cells.Conclusion: Culturing a CD44+/CD24--enriched breast cancer cell population in 3D RADA16 peptide nanofiber scaffold led to a significant phenotypic reversion compared with Matrigel and collagen I.
机译:背景:自组装肽纳米纤维支架已被证明是一种允许组织修复,细胞增殖,分化等作用的生物材料。最近,据报道,乳腺癌细胞的亚群(CD44 + / CD24-)具有干细胞/祖细胞特性。这项研究的目的是研究与Matrigel相比,这种亚细胞群在自组装COCH3-RADARADARADARADA-CONH2(RADA16)肽纳米纤维支架中是否具有不同的表型? (BD Biosciences,Two Oak Park,Bedford,MA,USA)和胶原蛋白I。方法:通过流式细胞术确定CD44和CD24的表达。细胞增殖通过5-溴-2'-脱氧尿苷测定和DNA含量测量来测量。免疫染色用于指示不同支架的三维(3D)培养中的细胞形态以及菌落中β-catenin的定位。 Western印迹用于确定信号传导蛋白的表达。结果:乳腺癌细胞系MDA-MB-435S中CD44 + / CD24-细胞的比例较高(> 99%),表现出表型。与胶原蛋白I和Matrigel相比,在3D RADA16纳米纤维支架中的逆转。新形成的回复性腺泡状菌落重新组装了基底膜并重组了它们的细胞骨架。同时,在RADA16肽支架中培养并包埋的细胞表现出生长停滞。而且,它们表现出不同的迁移潜力,这将其迁移能力与其细胞形态联系在一起。与体外研究一致,体内肿瘤形成测定进一步支持了由3D RADA16培养物中的逆转引起的功能变化。在RADA16支架上培养的细胞中细胞间表面粘附分子-1的表达水平上调,并且NF-κB抑制剂吡咯烷二硫代氨基甲酸酯可以抑制RADA16诱导的细胞间表面粘附分子-1的上调和MDA-MB-453S的表型回复。结论:在3D RADA16肽纳米纤维支架中培养富含CD44 + / CD24的乳腺癌细胞群,与Matrigel和I型胶原相比,导致显着的表型逆转。

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