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人体皮肤在器官培养中的维持:胰岛素样生长因子-1受体和表皮生长因子受体的作用。

Maintenance of human skin in organ culture: role for insulin-like growth factor-1 receptor and epidermal growth factor receptor.

作者信息

Tavakkol A, Varani J, Elder J T, Zouboulis C C

机构信息

Skin Clinical Investigations Group, Colgate-Palmolive Company, Piscataway, NJ, USA.

出版信息

Arch Dermatol Res. 1999 Dec;291(12):643-51. doi: 10.1007/s004030050469.

Abstract

Recent studies have shown that adult skin incubated in low-Ca2+ (0.15 mM) medium rapidly degenerates but that normal architecture is maintained when the tissue is incubated in high-Ca2+ medium (1.4 mM Ca2+). To investigate whether the skin cell-produced growth factors insulin-like growth factor-1 (IGF-1) and epidermal growth factor (EGF) play a role in these events, 2-mm skin punch biopsies were obtained and maintained for 8 to 10 days in a basal medium containing 0.15 mM Ca2+ with and without growth factors, or containing 1.4 mM Ca2+ with and without antibodies to the same growth factors. In parallel experiments, cultured human keratinocytes were incubated for 2 days in the same basal medium in the presence or absence of the same growth factors and antibodies. Consistent with previous reports, organ cultures incubated in the low-Ca2+ (0.15 mM) medium rapidly degenerated. Neither IGF-1 nor EGF prevented the complete degeneration of epidermis and dermis in these organ cultures. Interestingly, the addition of an anti-IGF-1 receptor (IGF-1R) antibody to the organ cultures maintained in high-Ca2+ medium induced changes reminiscent of those seen when the organ cultures were maintained in low-Ca2+ medium, i.e. tissue degeneration. In contrast, antibodies to EGF receptor, used for comparison, only produced focal areas of epidermal necrosis. In vitro, IGF-1 is a known mitogen for keratinocytes. In cultured human keratinocytes, anti-IGF-1R antibody partially inhibited the IGF-1-mediated stimulation of human keratinocyte proliferation without affecting normal spontaneous growth. Additionally, IGF-1R immunolocalized to basal keratinocytes in vivo, exhibited specific binding to IGF-1 in vitro. This indicated a critical role for IGF-1R in both organ cultures ex vivo and cultured cells in vitro. Messenger RNA encoding both IGF-1 and IGF-1R were readily detected by RT-PCR in organ cultures incubated in both low- and high-Ca2+ medium. There were no detectable differences in IGF-1 mRNA in organ cultures growing in the low- or high-Ca2+ medium, but lower levels of IGF-1R mRNA were observed in the organ cultures maintained in low-Ca2+ medium than in those in high Ca2+ medium. These findings are consistent with homeostatic changes in the tissue grown under different calcium concentrations. IGF-1 mRNA was detected in several skin cell populations in vitro, even though it was undetectable in cultured keratinocytes. Taken together these findings indicate that (1) the IGF-1/ IGF-1R loop is critically involved in maintenance of human skin organ cultures ex vivo, and (2) IGF-1, locally produced by skin cells other than keratinocytes, interacts with its receptor, predominantly expressed in basal keratinocytes, to maintain tissue homeostasis.

摘要

最近的研究表明,在低钙(0.15 mM)培养基中孵育的成人皮肤会迅速退化,但当组织在高钙培养基(1.4 mM Ca2+)中孵育时,正常结构得以维持。为了研究皮肤细胞产生的生长因子胰岛素样生长因子-1(IGF-1)和表皮生长因子(EGF)是否在这些事件中起作用,获取了2毫米的皮肤打孔活检组织,并在含有0.15 mM Ca2+且添加或不添加生长因子的基础培养基中,或在含有1.4 mM Ca2+且添加或不添加针对相同生长因子的抗体的基础培养基中维持8至10天。在平行实验中,将培养的人角质形成细胞在相同的基础培养基中,在有或没有相同生长因子和抗体的情况下孵育2天。与先前的报道一致,在低钙(0.15 mM)培养基中孵育的器官培养物迅速退化。在这些器官培养物中,IGF-1和EGF均不能阻止表皮和真皮的完全退化。有趣的是,向在高钙培养基中维持的器官培养物中添加抗IGF-1受体(IGF-1R)抗体,会诱导出类似于在低钙培养基中维持器官培养物时所观察到的变化,即组织退化。相比之下,用于比较的抗EGF受体抗体仅产生表皮坏死的局部区域。在体外,IGF-1是已知的角质形成细胞促分裂原。在培养的人角质形成细胞中,抗IGF-1R抗体部分抑制了IGF-1介导的人角质形成细胞增殖刺激,而不影响正常的自发生长。此外,IGF-1R在体内免疫定位于基底角质形成细胞,在体外表现出与IGF-1的特异性结合。这表明IGF-1R在体外器官培养物和体外培养细胞中均起关键作用。通过RT-PCR在低钙和高钙培养基中孵育的器官培养物中很容易检测到编码IGF-1和IGF-1R的信使RNA。在低钙或高钙培养基中生长的器官培养物中,IGF-1 mRNA没有可检测到的差异,但在低钙培养基中维持的器官培养物中观察到的IGF-1R mRNA水平低于高钙培养基中的水平。这些发现与在不同钙浓度下生长的组织中的稳态变化一致。即使在培养的角质形成细胞中未检测到IGF-1 mRNA,但在体外的几种皮肤细胞群体中检测到了IGF-1 mRNA。综上所述,这些发现表明:(1)IGF-1/IGF-1R环在体外人皮肤器官培养物的维持中起关键作用;(2)由角质形成细胞以外的皮肤细胞局部产生的IGF-1与其主要在基底角质形成细胞中表达的受体相互作用,以维持组织稳态。

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