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Evaluation of animal models for the hair-inducing capacity of cultured human dermal papilla cells.

机译:动物模型对培养的人真皮乳头细胞的毛发诱导能力的评估。

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BACKGROUND: The dermal papilla (DP) interacts with epithelial cells for folliculogenesis. For translational research on cell therapies for hair regrowth with cultured human DP cells (hDPCs), a model to evaluate the capacity of hDPCs to induce hair formation is inevitable. METHODS: Chamber models were constructed by transplanting 4 different combinations of mouse or human epithelial and mesenchymal cells into a silicone chamber implanted onto the back of nude mice. In parallel, 3 types of sandwich constructs were created by inserting hDPCs or human DP tissue between the epidermis and dermis of isolated rat footpad skin or human facial skin, and subcutaneously transplanting the constructs into the back of nude mice. Four to six weeks later, skin sections of each model were histologically examined. RESULTS: Folliculoneogenesis was detected in both chamber and sandwich models, although the induction rate and maturity of the hair follicles varied among cell combination subgroups in each model. The difference in hair induction rate was not statistically significant between 2 representative chamber and sandwich subgroups using cultured hDPCs. The sandwich model, however, required fewer hDPCs, did not require human keratinocytes, and exhibited a higher rate of successful sample collection. CONCLUSIONS: Although there is no significant difference in hair induction rate, the sandwich model using cultured hDPCs and the rat sole skin is more feasible than the chamber model using human cultured keratinocytes and hDPCs as a tool to evaluate the hair-inducing capacity of cultured hDPCs.
机译:背景:真皮乳头(DP)与上皮细胞相互作用,形成卵泡。对于培养的人DP细胞(hDPC)进行毛发再生的细胞疗法的转化研究,评估hDPC诱导毛发形成能力的模型是不可避免的。方法:通过将小鼠或人上皮和间充质细胞的4种不同组合移植到植入裸鼠背部的硅胶腔室中,构建腔室模型。平行地,通过在分离的大鼠足垫皮肤或人面部皮肤的表皮和真皮之间插入hDPC或人DP组织,并将该构建物皮下移植到裸鼠的背部,来创建3种类型的三明治构建体。四到六周后,对每个模型的皮肤切片进行组织学检查。结果:虽然在每个模型的细胞组合亚组中,毛囊的诱导率和成熟度均不同,但在室模型和三明治模型中均检测到卵泡形成。使用培养的hDPC,在2个代表性室和三明治亚组之间,毛发诱导率的差异在统计学上不显着。然而,三明治模型需要较少的hDPC,不需要人角质形成细胞,并且显示出较高的成功样品收集率。结论:虽然在头发诱导率上没有显着差异,但是使用培养的hDPCs和大鼠唯一的皮肤的三明治模型比使用人培养的角质形成细胞和hDPCs作为评估培养的hDPCs的头发诱导能力的室模型更可行。 。

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