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Cultivation of Hair Matrix Cells from Cashmere Goat Skins and Exemplified Applications

机译:来自羊绒山羊皮和举例说明的毛发基质细胞的培养

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摘要

A functional interpretation of filtered candidates and predicted regulatory pathways related to cashmere growth from sequencing trials needs available cell models, especially for hair matrix cells (HMCs), whose continual proliferation and differentiation result in rapid hair growth. To fulfill such goals, we herein obtained primary goat HMCs via a microdissection-based method; optimized the selection of the culture medium and coating substances for better cell maintenance; and exemplified their usefulness through examining the effects of calcium and all-trans retinoic acid (ATRA) on cells using immunoblotting, flow cytometry, and other techniques. As a result, we successfully acquired primary and passaged goat HMCs with typical keratinocyte morphology. Calcium-free RPMI (Roswell Park Memorial Institute) 1640 and MEM (minimum Eagle’s medium) outperformed normal DMEM/F12 (Dulbecco’s modified Eagle’s medium/Nutrient Mixture F-12) on long-term cell maintenance, whereas serum-free media K-SFM and EpiLife failed to support cell growth. HMCs differed molecularly and morphologically from their neighbor dermal papilla cells on expressions of feature genes, such as HOXC13, and on characteristic keratinocyte-like appearances versus fibroblast shapes, respectively. Higher calcium concentrations significantly stimulated the expression of the genes (e.g., KRT1 and IVL) involved in keratinocyte differentiation and, promoted cell proliferation. Moreover, 10−5 M ATRA obviously boosted goat HMC expansions and changed their cell cycle distributions compared to the controls. Our study shines a light on researches exploring the mechanisms underlying the growth of cashmere.
机译:过滤的候选者和预测与羊绒生长相关的序列试验相关的监管途径的功能解释需要可用的细胞模型,特别是对于毛状基质细胞(HMC),其不断增殖和分化导致快速毛发生生长。为了满足这些目标,我们通过基于微量的方法获得了主要山羊HMC;优化培养基和涂层物质的选择,以进行更好的细胞维护;并举例说明了使用免疫印迹,流式细胞术和其他技术对细胞对细胞的影响。因此,我们成功地用典型的角质形成细胞形态获得了主要和传代的山羊HMC。无钙的RPMI(Roswell Park Memorial Institute)1640和MEM(最低鹰的媒体)优于正常的DMEM / F12(Dulbecco的改良鹰的培养基/营养混合物F-12),无论是长期的细胞维护,而无血清介质K-SFM和血糖未能支持细胞生长。 HMCs在特征基因如HoxC13的表达上与其邻居皮脂乳头细胞和成纤维细胞样外形的特征性基因的表达不同。较高的钙浓度显着刺激涉及角质形成细胞分化的基因(例如,KRT1和IVL)的表达,促进细胞增殖。此外,10-5米ATRA明显提升了山羊HMC扩展,并与控件相比改变了其细胞周期分布。我们的研究阐明了探索羊绒增长的机制的研究。

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