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首页> 外文期刊>Experimental dermatology >Methods in hair research: how to objectively distinguish between anagen and catagen in human hair follicle organ culture.
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Methods in hair research: how to objectively distinguish between anagen and catagen in human hair follicle organ culture.

机译:头发研究的方法:如何在人的毛囊器官培养中客观地区分生长期和生长期。

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摘要

The organ culture of human scalp hair follicles (HFs) is the best currently available assay for hair research in the human system. In order to determine the hair growth-modulatory effects of agents in this assay, one critical read-out parameter is the assessment of whether the test agent has prolonged anagen duration or induced catagen in vitro. However, objective criteria to distinguish between anagen VI HFs and early catagen in human HF organ culture, two hair cycle stages with a deceptively similar morphology, remain to be established. Here, we develop, document and test an objective classification system that allows to distinguish between anagen VI and early catagen in organ-cultured human HFs, using both qualitative and quantitative parameters that can be generated by light microscopy or immunofluorescence. Seven qualitative classification criteria are defined that are based on assessing the morphology of the hair matrix, the dermal papilla and the distribution of pigmentary markers (melanin, gp100). These are complemented by ten quantitative parameters. We have tested this classification system by employing the clinically used topical hair growth inhibitor, eflornithine, and show that eflornithine indeed produces the expected premature catagen induction, as identified by the novel classification criteria reported here. Therefore, this classification system offers a standardized, objective and reproducible new experimental method to reliably distinguish between human anagen VI and early catagen HFs in organ culture.
机译:人头皮毛囊(HFs)的器官培养是目前人类系统中用于头发研究的最佳方法。为了确定该试剂在该试验中对头发生长的调节作用,一个关键的读出参数是评估测试试剂是延长了生长期还是在体外诱导了生长期。然而,尚需建立区分人类HF器官培养中生长期VI HF和早期催化源的客观标准,这两个毛发周期阶段具有看似相似的形态。在这里,我们开发,记录和测试一种客观的分类系统,该系统可以使用可以通过光学显微镜或免疫荧光产生的定性和定量参数来区分器官培养的人类HF中的生长期VI和早期生长期。基于评估头发基质,真皮乳头和色素标记物(黑色素,gp100)的分布,定义了七个定性分类标准。这些辅以十个定量参数。我们已经通过使用临床上使用的局部毛发生长抑制剂eflornithine测试了该分类系统,并显示eflornithine确实产生了预期的过早催产剂诱导作用,如此处报道的新分类标准所确定。因此,该分类系统提供了一种标准化,客观且可重现的新实验方法,可以可靠地区分器官培养物中的人类生长期VI和早期生长期HF。

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