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[缺氧对人皮肤成纤维细胞向肌成纤维细胞表型转化的影响及其机制]

[Effects of hypoxia on the phenotype transformation of human dermal fibroblasts to myofibroblasts and the mechanism].

作者信息

Zhao B, Han F, Zhang W, Wang X J, Zhang J, Yang F F, Shi J H, Su L L, Hu D H

机构信息

Burn Center of PLA, Department of Burns and Cutaneous Surgery, Xijing Hospital, the Fourth Military Medical University, Xi'an 710032, China.

出版信息

Zhonghua Shao Shang Za Zhi. 2017 Jun 20;33(6):368-373. doi: 10.3760/cma.j.issn.1009-2587.2017.06.016.

DOI:10.3760/cma.j.issn.1009-2587.2017.06.016
PMID:28648041
Abstract

To investigate the effects of hypoxia on the phenotype transformation of human dermal fibroblasts to myofibroblasts and the mechanism. The third passage of healthy adult human dermal fibroblasts in logarithmic phase were cultured in DMEM medium containing 10% fetal bovine serum for the following five experiments. (1) In experiments 1, 2, and 3, cells were divided into normoxia group and hypoxia group according to the random number table, with 10 dishes in each group. Cells of normoxia group were cultured in incubator containing 21% oxygen, while those of hypoxia group with 1% oxygen. At post culture hour (PCH) 0 and 48, 5 dishes of cells were collected from each group, respectively. mRNA expressions of markers of myofibroblasts including alpha smooth muscle actin (α-SMA), type Ⅰ collagen, and type Ⅲ collagen of cells were determined with real time fluorescent quantitative reverse transcription polymerase chain reaction in experiment 1. Protein expressions of α-SMA, type Ⅰ collagen, and type Ⅲ collagen of cells were determined with Western blotting in experiment 2. The protein expression of nuclear factor-kappa B (NF-κB) of cells was determined with Western blotting in experiment 3. (2) In experiment 4, cells were divided into normoxia group, hypoxia group, and hypoxia+ pyrrolidine dithiocarbamate (PDTC) group according to the random number table, with 5 dishes in each group. Cells in the former two groups were treated the same as those in experiment 1. Cells in hypoxia+ PDTC group were treated the same as those in hypoxia group plus adding 4 mL PDTC with a final molarity of 10 μmol/L in the culture medium. At PCH 48, the protein expression of NF-κB of cells was determined with Western blotting. (3) In experiment 5, cells were divided into normoxia group, hypoxia group, hypoxia+ PDTC group, and normoxia+ PDTC group according to the random number table, with 5 dishes in each group. Cells in the former three groups were treated the same as those in experiment 4. Cells in normoxia+ PDTC group were treated the same as those in normoxia group plus adding 4 mL PDTC with a final molarity of 10 μmol/L in the culture medium. At PCH 48, protein expressions of α-SMA, type Ⅰ collagen, and type Ⅲ collagen of cells were determined with Western blotting. Data were processed with analysis of variance of factorial design, one-way analysis of variance, and LSD- test. (1) Compared with those of normoxia group at corresponding time point, mRNA expressions and protein expressions of α-SMA, type Ⅰ collagen, and type Ⅲ collagen and the protein expression of NF-κB in fibroblasts of hypoxia group were not changed obviously at PCH 0 (with values from -1.21 to 2.04, values above 0.05), while mRNA expressions and protein expressions of α-SMA, type Ⅰ collagen, and type Ⅲ collagen and the protein expression of NF-κB significantly increased at PCH 48 (with values from -12.57 to -3.44, values below 0.01). (2) At PCH 48, the protein expression of NF-κB in fibroblasts of hypoxia group was 0.83±0.12, significantly higher than that of normoxia group (0.17±0.06, =-16.96, <0.001). The protein expression of NF-κB in fibroblasts of hypoxia+ PDTC group was 0.31±0.08, significantly lower than that of hypoxia group (=12.73, <0.001). (3) At PCH 48, protein expressions of α-SMA, type Ⅰ collagen, and type Ⅲ collagen in fibroblasts of hypoxia group were 0.73±0.09, 1.25±0.10, and 1.16±0.07, respectively, significantly higher than those of normoxia group (0.14±0.06, 0.87±0.08, and 0.77±0.13, respectively, with values from 9.24 to 11.24, values below 0.001). The protein expression of α-SMA in fibroblasts of normoxia+ PDTC group was 0.24±0.07, significantly higher than that of normoxia group (=4.22, <0.01). Protein expressions of type Ⅰ collagen and type Ⅲ collagen in fibroblasts of normoxia+ PDTC group were 0.25±0.06 and 0.32±0.11, respectively, significantly lower than those of normoxia group (with values respectively -4.31 and -3.88, values below 0.01). Protein expressions of α-SMA, type Ⅰ collagen, and type Ⅲ collagen in fibroblasts of hypoxia+ PDTC group were 0.09±0.08, 0.38±0.12, and 0.47±0.08, respectively, significantly lower than those of hypoxia group (with values from 11.78 to 22.98, values below 0.001). Hypoxia can significantly up-regulate the expressions of α-SMA, type Ⅰ collagen, and type Ⅲ collagen in human dermal fibroblasts, which may promote the phenotype transformation of fibroblasts to myofibroblasts, and this is likely to be associated with the activation of NF-κB signal pathway.

摘要

探讨缺氧对人皮肤成纤维细胞向肌成纤维细胞表型转化的影响及其机制。取处于对数生长期的健康成人皮肤成纤维细胞第三代,在含10%胎牛血清的DMEM培养基中培养,进行以下五项实验。(1)在实验1、2和3中,根据随机数字表将细胞分为常氧组和缺氧组,每组10个培养皿。常氧组细胞在含21%氧气的培养箱中培养,缺氧组细胞在含1%氧气的培养箱中培养。在培养后0小时(PCH 0)和48小时,分别从每组收集5个培养皿的细胞。实验1中,采用实时荧光定量逆转录聚合酶链反应检测细胞中肌成纤维细胞标志物α平滑肌肌动蛋白(α-SMA)、Ⅰ型胶原蛋白和Ⅲ型胶原蛋白的mRNA表达。实验2中,采用蛋白质免疫印迹法检测细胞中α-SMA、Ⅰ型胶原蛋白和Ⅲ型胶原蛋白的蛋白质表达。实验3中,采用蛋白质免疫印迹法检测细胞中核因子-κB(NF-κB)的蛋白质表达。(2)在实验4中,根据随机数字表将细胞分为常氧组、缺氧组和缺氧+吡咯烷二硫代氨基甲酸盐(PDTC)组,每组5个培养皿。前两组细胞处理同实验1。缺氧+PDTC组细胞处理同缺氧组,同时在培养基中加入终浓度为10 μmol/L的4 mL PDTC。在PCH 48时,采用蛋白质免疫印迹法检测细胞中NF-κB的蛋白质表达。(3)在实验5中,根据随机数字表将细胞分为常氧组、缺氧组、缺氧+PDTC组和常氧+PDTC组,每组5个培养皿。前三组细胞处理同实验4。常氧+PDTC组细胞处理同常氧组,同时在培养基中加入终浓度为10 μmol/L的4 mL PDTC。在PCH 48时,采用蛋白质免疫印迹法检测细胞中α-SMA、Ⅰ型胶原蛋白和Ⅲ型胶原蛋白的蛋白质表达。数据采用析因设计方差分析、单因素方差分析和LSD检验进行处理。(1)与相应时间点的常氧组相比,缺氧组成纤维细胞在PCH 0时,α-SMA、Ⅰ型胶原蛋白和Ⅲ型胶原蛋白的mRNA表达及蛋白质表达以及NF-κB的蛋白质表达变化不明显( 值为-1.21至2.04, 值均大于0.05),而在PCH 48时,α-SMA、Ⅰ型胶原蛋白和Ⅲ型胶原蛋白的mRNA表达及蛋白质表达以及NF-κB的蛋白质表达显著增加( 值为-12.57至-3.44, 值均小于0.01)。(2)在PCH 48时,缺氧组成纤维细胞中NF-κB的蛋白质表达为0.83±0.12,显著高于常氧组(0.17±0.06, =-16.96, <0.001)。缺氧+PDTC组成纤维细胞中NF-κB的蛋白质表达为0.31±0.08,显著低于缺氧组( =12.73, <0.001)。(3)在PCH 48时,缺氧组成纤维细胞中α-SMA、Ⅰ型胶原蛋白和Ⅲ型胶原蛋白的蛋白质表达分别为0.73±0.09、1.25±0.10和1.16±0.07,显著高于常氧组(分别为0.14±0.06、0.87±0.08和0.77±0.13, 值为9.24至11.24, 值均小于0.001)。常氧+PDTC组成纤维细胞中α-SMA的蛋白质表达为0.24±0.07,显著高于常氧组( =4.22, <0.01)。常氧+PDTC组成纤维细胞中Ⅰ型胶原蛋白和Ⅲ型胶原蛋白的蛋白质表达分别为0.25±0.06和0.32±0.11,显著低于常氧组( 值分别为-4.31和-3.88, 值均小于0.01)。缺氧+PDTC组成纤维细胞中α-SMA、Ⅰ型胶原蛋白和Ⅲ型胶原蛋白的蛋白质表达分别为0.09±0.08、0.38±0.12和0.47±0.08,显著低于缺氧组( 值为11.78至22.98, 值均小于0.001)。缺氧可显著上调人皮肤成纤维细胞中α-SMA、Ⅰ型胶原蛋白和Ⅲ型胶原蛋白的表达,这可能促进成纤维细胞向肌成纤维细胞的表型转化,且这可能与NF-κB信号通路的激活有关。

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