首页> 外文期刊>Archives of dermatological research. >Human melanocytes grown in epidermal equivalents transfer their melanin to follicular outer root sheath keratinocytes.
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Human melanocytes grown in epidermal equivalents transfer their melanin to follicular outer root sheath keratinocytes.

机译:以表皮等价物生长的人类黑素细胞将其黑色素转移至卵泡外根鞘角质形成细胞。

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摘要

Because outer root sheath (ORS) cells are valuable substitutes for interfollicular epidermal keratinocytes, we wanted to determine whether epidermal equivalents generated from ORS cells and containing cultured melanocytes can serve as an in vitro model for skin pigmentation. In such epidermal equivalents prepared with ORS cells and melanocytes from donors of phototypes II, III and VI, a stratified epithelium resembling normal epidermis developed within 14 days, as documented by histological, ultrastructural (e.g. basement membrane-like structure, keratohyalin granules, keratinosomes) and immunohistochemical (e.g. keratins, integrins, gp80, involucrin, filaggrin) criteria. The melanocytes were localized in the basal layer and accounted for 10% of the total cell number. Heavily pigmented melanocytes from black donors contained regular melanosomes in all stages of maturation, whereas melanocytes derived from white donors contained predominantly melanosomes of stages I and II. Melanosome-laden dendrites were readily detected extending from the heavily pigmented melanocytes, while they were less conspicuous in melanocytes from white donors. The extent of melanosome transfer was independent of the racial origin of the ORS cells. Melanosomes could also be transferred "through racial barriers". Melanosomes, mainly of stages III and IV, were detected in the ORS cells, being distributed either as single or compound melanosomes, again irrespective of the racial origin of the ORS cells. In conclusion, pigmented epidermal equivalents generated from ORS cells offer practical advantages over other in vitro pigmentation models: (1) the ORS cells are easily and repeatedly available from any donor regardless of age; (2) primary cultures of ORS cells are free of contaminating melanocytes, a bias if using interfollicular epidermal keratinocytes; (3) a high degree of epidermal differentiation is maintained for 3 weeks in fully defined medium, enabling labelling and stimulation experiments to be performed and compounds interfering with melanin pigmentation to be tested.
机译:由于外根鞘(ORS)细胞是小泡间表皮角质形成细胞的有价值的替代品,我们想确定从ORS细胞产生并包含培养的黑素细胞的表皮等效物是否可以用作皮肤色素沉着的体外模型。用组织学,超微结构(如基底膜样结构,角膜透明质蛋白颗粒,角蛋白体)证明,在用来自照相类型II,III和VI的供体的ORS细胞和黑素细胞制备的此类表皮等效物中,类似于正常表皮的分层上皮在14天内形成。和免疫组化(例如,角蛋白,整联蛋白,gp80,整合素,丝蛋白)标准。黑色素细胞位于基底层,占总细胞数的10%。来自黑色供体的色素沉着的黑素细胞在成熟的所有阶段均含有规则的黑素体,而来自白色供体的黑素细胞则主要包含I和II期的黑素体。富含黑素体的树突很容易从色素沉着的黑素细胞中延伸出来,而在白色供体的黑素细胞中则不那么明显。黑素体转移的程度与ORS细胞的种族起源无关。黑素体也可以“通过种族障碍”转移。在ORS细胞中检测到主要为III和IV期的黑素体,其以单一或复合黑素体的形式分布,同样与ORS细胞的种族起源无关。总之,与其他体外色素沉着模型相比,由ORS细胞产生的有色表皮等效物具有许多实际优势:(1)不论年龄大小,任何捐赠者都可以轻松,重复获得ORS细胞; (2)ORS细胞的原代培养物中没有污染的黑素细胞,如果使用小泡间表皮角质形成细胞则存在偏倚; (3)在完全限定的培养基中将高度的表皮分化维持3周,从而可以进行标记和刺激实验,并测试干扰黑色素色素沉着的化合物。

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