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Skin Immunomodulation during Regeneration: Emerging New Targets

机译:再生期间皮肤免疫调节:新的新目标

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摘要

Adipose-Derived Stem Cells (ADSC) are present within the hypodermis and are also expected to play a pivotal role in wound healing, immunomodulation, and rejuvenation activities. They orchestrate, through their exosome, the mechanisms associated to cell differentiation, proliferation, and cell migration by upregulating genes implicated in different functions including skin barrier, immunomodulation, cell proliferation, and epidermal regeneration. ADSCs directly interact with their microenvironment and specifically the immune cells, including macrophages and T and B cells, resulting in differential inflammatory and anti-inflammatory mechanisms impacting, in return, ADSCs microenvironment and thus skin function. These useful features of ADSCs are involved in tissue repair, where the required cell proliferation, angiogenesis, and anti-inflammatory responses should occur rapidly in damaged sites. Different pathways involved have been reported such as Growth Differentiation Factor-11 (GDF11), Tumor Growth Factor (TGF)-β, Metalloproteinase (MMP), microRNA, and inflammatory cytokines that might serve as specific biomarkers of their immunomodulating capacity. In this review, we try to highlight ADSCs’ network and explore the potential indicators of their immunomodulatory effect in skin regeneration and aging. Assessment of these biomarkers might be useful and should be considered when designing new clinical therapies using ADSCs or their specific exosomes focusing on their immunomodulation activity.
机译:脂肪衍生的干细胞(ADSC)存在于皮肤病内,并且还预期在伤口愈合,免疫调节和复兴活动中发挥枢轴作用。它们通过外出组织核心与细胞分化,增殖和细胞迁移相关的机制,这些机制通过涉及不同函数的上调基因,包括皮肤屏障,免疫调节,细胞增殖和表皮再生。 ADSCs与其微环境直接相互作用,特别是免疫细胞,包括巨噬细胞和T和B细胞,导致差异炎症和抗炎机制影响,以换热,ADSCS微环境和因此皮肤功能。 ADSCs的这些有用的特征涉及组织修复,其中所需的细胞增殖,血管生成和抗炎反应应该在受损的位置迅速发生。涉及所涉及的不同途径,例如生长分化因子-11(GDF11),肿瘤生长因子(TGF)-β,金属蛋白酶(MMP),microRNA和炎性细胞因子,其可能用作其免疫调节能力的特定生物标志物。在这篇综述中,我们尝试突出ADSCS网络并探讨其在皮肤再生和老化中的免疫调节作用的潜在指标。对这些生物标志物的评估可能是有用的,并且在使用ADSC或其特定外来的新临床疗法设计新的临床疗法时应考虑,这些临床疗法专注于其免疫调节活性。

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