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分次消融铒:钇铝石榴石激光多次堆叠脉冲治疗对标准化人类三维器官型皮肤模型的分子效应

Molecular effects of fractional ablative erbium:YAG laser treatment with multiple stacked pulses on standardized human three-dimensional organotypic skin models.

作者信息

Schmitt Laurenz, Amann P M, Marquardt Y, Heise R, Czaja K, Gerber P A, Steiner T, Hölzle F, Baron Jens Malte

机构信息

Department of Dermatology and Allergology, Medical Faculty, RWTH Aachen University, Pauwelsstrasse 30, 52074, Aachen, Germany.

Department of Dermatology and Allergology, Medical Faculty, Heinrich-Heine University, Düsseldorf, Germany.

出版信息

Lasers Med Sci. 2017 May;32(4):805-814. doi: 10.1007/s10103-017-2175-0. Epub 2017 Mar 15.

Abstract

The molecular changes in gene expression following ablative laser treatment of skin lesions, such as atrophic scars and UV-damaged skin, are not completely understood. A standardized in vitro model of human skin, to study the effects of laser treatment on human skin, has been recently developed. Therefore, the aim of the investigation was to examine morphological and molecular changes caused by fractional ablative erbium:YAG laser treatment on an in vitro full-thickness 3D standardized organotypic model of human skin. A fractional ablative erbium:YAG laser was used to irradiate organotypic human 3D models. Laser treatments were performed at four different settings using a variety of stacked pulses with similar cumulative total energy fluence (60 J/cm). Specimens were harvested at specified time points and real-time PCR (qRT-PCR) and microarray studies were performed. Frozen sections were examined histologically. Three days after erbium:YAG laser treatment, a significantly increased mRNA expression of matrix metalloproteinases and their inhibitors (MMP1, MMP2, MMP3, TIMP1, and TIMP2), chemokines (CXCL1, CXCL2, CXCL5, and CXCL6), and cytokines such as IL6, IL8, and IL24 could be detected. qRT-PCR studies confirmed the enhanced mRNA expression of IL6, IL8, IL24, CXCLs, and MMPs. In contrast, the mRNA expression of epidermal differentiation markers, such as keratin-associated protein 4, filaggrin, filaggrin 2, and loricrin, and antimicrobial peptides (S100A7A, S100A9, and S100A12) as well as CASP14, DSG2, IL18, and IL36β was reduced. Four different settings with similar cumulative doses have been tested (N10%, C10%, E10%, and W25%). These laser treatments resulted in different morphological changes and effects on gene regulations. Longer pulse durations (1000 μs) especially had the strongest impact on gene expression and resulted in an upregulation of genes, such as collagen-1A2, collagen-5A2, and collagen-6A2, as well as FGF2. Histologically, all treatment settings resulted in a complete regeneration of the epidermis 3 days after irradiation. Fractional ablative erbium:YAG laser treatment with a pulse stacking technique resulted in histological alterations and shifts in the expression of various genes related to epidermal differentiation, inflammation, and dermal remodeling depending on the treatment setting applied. A standardized in vitro 3D model of human skin proved to be a useful tool for exploring the effects of various laser settings both on skin morphology and gene expression during wound healing. It provides novel data on the gene expression and microscopic architecture of the exposed skin. This may enhance our understanding of laser treatment at a molecular level.

摘要

对于诸如萎缩性瘢痕和紫外线损伤皮肤等皮肤病变,在剥脱性激光治疗后基因表达的分子变化尚未完全明确。最近已开发出一种标准化的人体皮肤体外模型,用于研究激光治疗对人体皮肤的影响。因此,本研究的目的是在体外全层三维标准化人体皮肤器官型模型上,研究分次剥脱铒:钇铝石榴石激光治疗所引起的形态学和分子变化。使用分次剥脱铒:钇铝石榴石激光照射人体三维器官型模型。采用四种不同的参数设置,使用多种具有相似累积总能量密度(60 J/cm²)的叠加脉冲进行激光治疗。在特定时间点采集样本,并进行实时定量聚合酶链反应(qRT-PCR)和微阵列研究。对冰冻切片进行组织学检查。铒:钇铝石榴石激光治疗三天后,可检测到基质金属蛋白酶及其抑制剂(MMP1、MMP2、MMP3、TIMP1和TIMP2)、趋化因子(CXCL1、CXCL2、CXCL5和CXCL6)以及细胞因子如IL6、IL8和IL24的mRNA表达显著增加。qRT-PCR研究证实了IL6、IL8、IL24、CXCLs和MMPs的mRNA表达增强。相比之下,表皮分化标志物如角蛋白相关蛋白4、丝聚合蛋白、丝聚合蛋白2和兜甲蛋白,以及抗菌肽(S100A7A、S100A9和S100A12)以及CASP14、DSG2、IL18和IL36β的mRNA表达降低。已测试了四种具有相似累积剂量的不同参数设置(N10%、C10%、E10%和W25%)。这些激光治疗导致了不同的形态学变化和对基因调控的影响。较长的脉冲持续时间(1000 μs)对基因表达的影响尤其强烈,并导致了诸如胶原蛋白-1A2、胶原蛋白-5A2和胶原蛋白-6A2以及FGF2等基因的上调。组织学上,所有治疗参数设置在照射三天后均导致表皮完全再生。采用脉冲叠加技术的分次剥脱铒:钇铝石榴石激光治疗根据所应用的治疗参数设置,导致了与表皮分化、炎症和真皮重塑相关的各种基因表达的组织学改变和变化。标准化的人体皮肤体外三维模型被证明是探索各种激光参数设置对伤口愈合过程中皮肤形态和基因表达影响的有用工具。它提供了关于暴露皮肤的基因表达和微观结构的新数据。这可能会增强我们在分子水平上对激光治疗的理解。

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