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[转化生长因子β诱导黄韧带细胞的增殖效应及其对结缔组织生长因子的影响]

[Proliferation effect of ligamentum flavum cells induced by transforming growth factor β and its effect on connective tissue growth factor].

作者信息

Lu Changhuai, Liu Zhijun, Zhang Hongbo, Duan Yang, Cao Yanlin

机构信息

Department of Spine Disease Area of Orthopedics and Traumatology, No.1 Traditional Chinese Medicine Hospital in Changde, Changde Hospital Affiliated to Hunan University of Traditional Chinese Medicine, Changde Hunan, 415000, P.R.China.

Department of Spinal Surgery, Zhujiang Hospital of Southern Medical University, Guangzhou Guangdong, 510282,

出版信息

Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi. 2019 Jul 15;33(7):883-888. doi: 10.7507/1002-1892.201812016.

Abstract

OBJECTIVE

To investigate the effect of transforming growth factor β (TGF-β ) induced proliferation of ligamentum flavum cells and ligamentum flavum hypertrophy and its effect on connective tissue growth factor (CTGF) expression.

METHODS

The ligamentum flavum tissue in lumbar intervertebral disc herniation was extracted and the ligamentum flavum cells were isolated and cultured by collagenase pre-digestion method. Morphological observation, immunofluorescence staining observation, and MTT assay were used for cell identification. The 3rd generation ligamentum flavum cells were divided into 5 groups. The cells of groups A, B, C, and D were respectively sealed with 3 ng/mL TGF-β , 50 ng/mL CTGF, 3 ng/mL TGF-β +CTGF neutralizing antibody, and 50 ng/mL CTGF+CTGF neutralizing antibody. Serum free DMEM was added to group E as the control. MTT assay was used to detect the effects of TGF-β and CTGF on the proliferation of ligamentum flavum cells. Western blot was used to detect the expression of CTGF protein. Real-time fluorescence quantitative PCR (qRT-PCR) was used to detect the expression of collagen type Ⅰ, collagen type Ⅲ, and CTGF genes.

RESULTS

The morphological diversity of cultured ligamentum flavum cells showed typical phenotype of ligamentum flavum fibroblasts; all cells expressed collagen type Ⅰ and vimentin, and some cells expressed collagen type Ⅲ; MTT identification showed that with the prolongation of culture time, the absorbance ( ) value of each generation of cells increased gradually, and the value of the same generation of cells at each time point was significantly different ( <0.05), there was no significant difference in value between the cells of each generation at the same time point ( 0.05). After cultured for 24 hours, MTT assay showed that the value of cells in groups A and B was significantly higher than that of group E ( <0.05). After adding CTGF neutralizing antibody, the value of cells in groups C and D decreased, but it was still higher than that of group E ( <0.05). There were also significant differences among groups A, C and groups B, D ( <0.05). Western blot analysis showed that the relative expression of CTGF protein in groups A and B was significantly higher than that in group E ( <0.05), while the relative expression of CTGF protein in groups C and D was significantly lower than that in group E ( <0.05), and the difference between groups A, C and groups B, D was also significant ( <0.05). qRT-PCR detection showed that the mRNA relative expression of CTGF, collagen type Ⅰ, and collagen type Ⅲ in group A was significantly higher than that in group E ( <0.05). After adding neutralizing antibody, the mRNA relative expression of genes in group C was inhibited and were significantly lower than that in group A, but still significantly higher than that in group E ( <0.05). The mRNA relative expressions of collagen type Ⅰ and collagen type Ⅲ in group B was significantly higher than that in group E ( <0.05), but the mRNA relative expression of CTGF was not significantly different from that in group E ( >0.05); after neutralizing antibody was added, the mRNA relative expression of collagen type Ⅰ and collagen type Ⅲ in group D was inhibited and was significantly lower than that in group B, but still significantly higher than that in group E ( <0.05); there was no significant difference in the mRNA relative expression of CTGF between group D and groups B, E ( >0.05).

CONCLUSION

TGF-β can promote CTGF, collagen typeⅠ, collagen type Ⅲ gene level and protein expression in ligamentum flavum cells, and TGF-β can synergistically promote proliferation of ligamentum flavum cells through CTGF.

摘要

目的

探讨转化生长因子β(TGF-β)诱导黄韧带细胞增殖及黄韧带肥厚的作用及其对结缔组织生长因子(CTGF)表达的影响。

方法

提取腰椎间盘突出症患者的黄韧带组织,采用胶原酶预消化法分离培养黄韧带细胞。通过形态学观察、免疫荧光染色观察及MTT法进行细胞鉴定。将第3代黄韧带细胞分为5组。A、B、C、D组细胞分别用3 ng/mL TGF-β、50 ng/mL CTGF、3 ng/mL TGF-β+CTGF中和抗体、50 ng/mL CTGF+CTGF中和抗体处理。E组加入无血清DMEM作为对照。采用MTT法检测TGF-β和CTGF对黄韧带细胞增殖的影响。采用蛋白质印迹法检测CTGF蛋白表达。采用实时荧光定量PCR(qRT-PCR)检测Ⅰ型胶原、Ⅲ型胶原及CTGF基因表达。

结果

培养的黄韧带细胞形态多样,呈现典型的黄韧带成纤维细胞表型;所有细胞均表达Ⅰ型胶原和波形蛋白,部分细胞表达Ⅲ型胶原;MTT鉴定显示,随着培养时间延长,各代细胞的吸光度()值逐渐升高,同一代细胞在各时间点的 值差异有统计学意义(<0.05),同一时间点各代细胞的 值差异无统计学意义(>0.05)。培养24小时后,MTT法检测显示A、B组细胞的 值显著高于E组(<0.05)。加入CTGF中和抗体后,C、D组细胞的 值降低,但仍高于E组(<0.05)。A、C组与B、D组之间也有显著差异(<0.05)。蛋白质印迹分析显示,A、B组CTGF蛋白相对表达量显著高于E组(<0.05),而C、D组CTGF蛋白相对表达量显著低于E组(<0.05);A、C组与B、D组之间的差异也有统计学意义(<0.05)。qRT-PCR检测显示,A组CTGF、Ⅰ型胶原及Ⅲ型胶原mRNA相对表达量显著高于E组(<0.05)。加入中和抗体后,C组基因的mRNA相对表达量受到抑制,显著低于A组,但仍显著高于E组(<0.05)。B组Ⅰ型胶原和Ⅲ型胶原mRNA相对表达量显著高于E组(<0.05),但CTGF mRNA相对表达量与E组差异无统计学意义(>0.05);加入中和抗体后,D组Ⅰ型胶原和Ⅲ型胶原mRNA相对表达量受到抑制,显著低于B组,但仍显著高于E组(<0.05);D组与B、E组CTGF mRNA相对表达量差异无统计学意义(>0.05)。

结论

TGF-β可促进黄韧带细胞中CTGF、Ⅰ型胶原、Ⅲ型胶原基因水平及蛋白表达,且TGF-β可通过CTGF协同促进黄韧带细胞增殖。

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