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首页> 外文期刊>Stem cells international >Rock Inhibitor Y-27632 Enables Feeder-Free, Unlimited Expansion of Sus scrofa domesticus Swine Airway Stem Cells to Facilitate Respiratory Research
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Rock Inhibitor Y-27632 Enables Feeder-Free, Unlimited Expansion of Sus scrofa domesticus Swine Airway Stem Cells to Facilitate Respiratory Research

机译:岩石抑制剂Y-27632使SUS Scrofa Domesticus Swineus Shive Sheg细胞的无限膨胀可以促进呼吸研究

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摘要

Current limitations in the efficacy of treatments for chronic respiratory disorders position them as prospective regenerative medicine therapeutic targets. A substantial barrier to these ambitions is that research requires large numbers of cells whose acquisition is hindered by the limited availability of human tissue samples leading to an overreliance on physiologically dissimilar rodents. The development of cell culture strategies for airway cells from large mammals will more effectively support the transition from basic research to clinical therapy. Using readily available porcine lungs, we isolated conducting airway tissue and subsequently a large number of porcine airway epithelial cells (pAECs) using a digestion and mechanical scraping technique. Cells were cultured in a variety of culture media formulations, both foetal bovine serum-containing and serum-free media, in air (21%) and physiological (2%) oxygen tension and in the presence and absence of Rho kinase inhibitor Y-27362 (RI). Cell number at isolation and subsequent population doublings were determined; cells were characterised during culture and following differentiation by immunofluorescence, histology, and IL-8 ELISA. Cells were positive for epithelial markers (pan-cytokeratin and E-cadherin) and negative for fibroblastic markers (vimentin and smooth muscle actin). Supplementation of cultures with Y-27632 allowed for unlimited expansion whilst sustaining an epithelial phenotype. Early passage pAECs readily produced differentiated air-liquid interface (ALI) cultures with a capacity for mucociliary differentiation retained after substantial expansion, strongly modulated by the culture condition applied. Primary pAECs will be a useful tool to further respiratory-oriented research whilst RI-expanded pAECs are a promising tool, particularly with further optimisation of culture conditions.
机译:慢性呼吸系统障碍治疗疗效的电流限制将它们视为前瞻性再生医学治疗靶标。对这些野心的大量障碍是,研究需要大量的细胞,其采集受到影响的人体组织样本的有限可用性,导致生理异常不同的啮齿动物的过度。来自大型哺乳动物的气道细胞的细胞培养策略的发展将更有效地支持从基本研究到临床治疗的过渡。使用易于使用的猪肺,我们使用消化和机械刮擦技术隔离导电气道组织并随后是大量的猪气道上皮细胞(PAEC)。细胞在各种培养基制剂中培养,胎儿牛含血清和无血清培养基,在空气(21%)和生理(2%)氧气张力以及rho激酶抑制剂Y-27362的存在和不存在下(ri)。确定单独的细胞数和随后的群体倍增次数;在培养过程中表征细胞,并通过免疫荧光,组织学和IL-8 ELISA进行分化。细胞对于上皮标记物(Pan-Cytokeratin和E-cadherin)阳性,并且对纤维细胞标记物(Pimentin和平滑肌肌动蛋白)阴性。用Y-27632补充培养物,允许无限扩张,同时维持上皮表型。早期通过PAECS易于产生的分化的空气液体界面(ALI)培养物,其具有在大量膨胀后保留的粘膜分化的能力,通过施加的培养条件强烈调节。主要PAEC是进一步呼吸导向的研究的有用工具,而RI扩展的PAEC是一个有前途的工具,特别是进一步优化培养条件。

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