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奥伦-米谢尔疗法对人体体外皮肤模型的影响。

Effects of Auron-Misheil-Therapy in human in vitro skin models.

机构信息

Department of Medicine I, Albert Ludwigs University Medical School, Freiburg, Germany.

出版信息

J Dermatol. 2011 May;38(5):456-64. doi: 10.1111/j.1346-8138.2010.00994.x. Epub 2010 Nov 23.

Abstract

Auron-Misheil-Therapy (AMT) is currently under development as an anticancer treatment. The aim of the present study was the identification of possible effects and properties of AMT with regard to human skin. The study consisted of three experimental phases. Phase 1 assessed the effects of AMT on the viability of 2-D evaluated and accredited cell cultures of three cell types of human skin, namely: keratinocytes, melanocytes and fibroblasts. Three separate assays were used in this phase. Phase 2 was designed to clarify the effects of AMT on cell viability to investigate the mode of action of AMT. Two possible modes of action were investigated: proliferation inhibition and apoptosis. There was one assay to assess proliferation, and two independent assays to assess apoptosis. The third phase assessed the effects of AMT on two different types of 3-D skin models, an ex vivo model and a de novo reconstituted model. In the phase 1 tests, reduction of cell viability by AMT was demonstrated in all three cell types. In phase 2, the cell proliferation assay showed decreased proliferation rates in the presence of AMT in three out of four cell populations. In phase 3, histochemical investigations with 3-D models indicated that AMT induces desquamation, most likely as the result of apoptosis of epidermal cells. The experiments generally showed that AMT does not harm human skin at concentrations up to 3%.

摘要

Auron-Misheil-Therapy(AMT)目前正在开发中作为一种抗癌治疗方法。本研究的目的是确定 AMT 对人体皮肤可能产生的影响和特性。该研究分为三个实验阶段。第一阶段评估了 AMT 对三种人类皮肤细胞类型(角质形成细胞、黑素细胞和成纤维细胞)的二维评估和认证细胞培养物活力的影响。本阶段使用了三种单独的检测方法。第二阶段旨在阐明 AMT 对细胞活力的影响,以研究 AMT 的作用模式。研究了两种可能的作用模式:增殖抑制和细胞凋亡。有一个检测方法用于评估增殖,还有两个独立的检测方法用于评估细胞凋亡。第三阶段评估了 AMT 对两种不同类型的 3-D 皮肤模型(离体模型和重新构建的模型)的影响。在第一阶段的测试中,AMT 降低了所有三种细胞类型的细胞活力。在第二阶段,细胞增殖检测显示,在四种细胞群体中的三种中,存在 AMT 时增殖率降低。在第三阶段,用 3-D 模型进行组织化学研究表明,AMT 诱导表皮细胞的脱屑,很可能是细胞凋亡的结果。总的来说,实验表明 AMT 在高达 3%的浓度下不会对人体皮肤造成伤害。

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