[Fibulin-3 Regulates Tissue Inhibitor of Metalloproteinases 3 to Inhibit Senescence in Intervertebral Disc Nucleus Pulposus Cells].

Q3 Medicine 四川大学学报(医学版) Pub Date : 2024-09-20 DOI:10.12182/20240760604
Xuke Wang, Yang Zhang, Gang Luo, Junke Kong, Xiangyang Cao, Qingfeng Wang
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Abstract

Objective: To investigate the effect of fibulin-3 on the senescence of intervertebral disc nucleus pulposus cells (NPCs) through the regulation of tissue inhibitor of metalloproteinases 3 (TIMP-3) expression and to elucidate the molecular mechanisms involved.

Methods: 1). The nucleus pulposus tissues and imaging data of 37 patients who had undergone intervertebral disc surgery were collected. The degree of degeneration of the intervertebral discs were classified according to the Pfirrmann grading system. The senescence degree of NPCs was determined using senescence-associated β-galactosidase (SA-β-gal) staining. Fibulin-3 expression levels were determined using Western blot and ELISA. The relationship between fibulin-3 and disc degeneration and NPCs senescence was investigated. 2). Human intervertebral disc NPCs were cultured in vitro. The proliferation and senescence of NPC across continuous passage were observed via CCK-8 assay and SA-β-gal staining, respectively. Fibulin-3 expression levels and the expression of inflammatory cytokines and matrix metalloproteinases were assessed. Exogenous fibulin-3 was added to verify its effect on the proliferation and senescence of NPCs. 3). The effect of fibulin-3 on the apoptosis and proliferation of NPCs was verified through gene overexpression, which was used in combination with an apoptosis inhibitor for bidirectional verification. 4). Bioinformatics analysis was performed to explore the relationship between fibulin-3 and the TIMP family. Experiments overexpressing fibulin-3 and silencing the TIMP-3 gene were performed to verify their role in NPCs senescence.

Results: 1). The intervertebral disc degeneration samples from 37 patients were classified according to the Pfirrmann grading system. The higher the degeneration grade, the lower fibulin-3 expression. Spearman correlation analysis showed that the disc grade was negatively correlated with the NPC senescence grade (r=-0.87, P<0.001) and fibulin-3 expression (r=-0.79, P<0.001). 2). As the passage number of NPCs increased, fibulin-3 expression gradually decreased, cell proliferation ability weakened, and the expression of inflammatory cytokines and matrix metalloproteinases increased. After exogenous fibulin-3 was added, cell morphology and growth status were maintained, cell senescence was significantly inhibited, and the expression of inflammatory cytokines and matrix metalloproteinases was markedly reduced. 3). Gene overexpression experiments showed that fibulin-3 reduced NPC apoptosis and promoted cell proliferation, thereby inhibiting NPC senescence. 4). Bioinformatics analysis revealed a significant association between fibulin-3 and TIMP-3 of the TIMP family. Further experiments confirmed that overexpressing fibulin-3 enhanced TIMP-3 expression, while silencing the TIMP-3 gene significantly weakened the inhibitory effect of fibulin-3 on NPCs senescence. This indicates that, through regulating TIMP-3, fibulin-3 inhibits the activity of matrix metalloproteinases, affects the synthesis and degradation of the extracellular matrix, and ultimately inhibits NPCs senescence.

Conclusion: This study demonstrates that fibulin-3 plays a crucial role in inhibiting the senescence of intervertebral disc NPCs by regulating TIMP-3. The specific mechanisms involved are as follows, fibulin-3 upregulates TIMP-3 expression, inhibits matrix metalloproteinase activity, and reduces extracellular matrix degradation, thereby promoting extracellular matrix synthesis. Additionally, fibulin-3 inhibits NPCs senescence by reducing apoptosis and promoting cell proliferation. Therefore, fibulin-3 and TIMP-3 have potential therapeutic significance in maintaining intervertebral disc health and delaying degeneration.

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[纤维蛋白-3 调控组织金属蛋白酶抑制剂 3 抑制椎间盘核浆细胞的衰老】。]
目的研究纤维素-3通过调控金属蛋白酶组织抑制剂3(TIMP-3)的表达对椎间盘髓核细胞(NPCs)衰老的影响,并阐明其中的分子机制。)方法:1)收集 37 名接受过椎间盘手术的患者的髓核组织和影像学资料。根据 Pfirrmann 分级系统对椎间盘的退变程度进行分类。用衰老相关的β-半乳糖苷酶(SA-β-gal)染色法确定鼻咽癌的衰老程度。纤维蛋白-3的表达水平是通过Western印迹和ELISA测定的。研究了纤维蛋白-3 与椎间盘变性和鼻咽癌衰老之间的关系。2).体外培养人类椎间盘 NPCs。分别通过 CCK-8 检测法和 SA-β-gal 染色法观察 NPC 在连续通道中的增殖和衰老情况。评估了纤维蛋白-3的表达水平以及炎性细胞因子和基质金属蛋白酶的表达。加入外源性纤维蛋白-3 以验证其对鼻咽癌增殖和衰老的影响。3).通过基因过表达验证纤维蛋白-3 对鼻咽癌细胞凋亡和增殖的影响,并与凋亡抑制剂结合使用进行双向验证。4).为探索纤维蛋白-3 与 TIMP 家族的关系,进行了生物信息学分析。进行了过表达纤维蛋白-3和沉默TIMP-3基因的实验,以验证它们在鼻咽癌衰老中的作用:1).根据 Pfirrmann 分级系统对 37 例患者的椎间盘退变样本进行了分类。退变等级越高,纤维素-3 的表达量越低。斯皮尔曼相关分析表明,椎间盘分级与鼻咽癌衰老分级呈负相关(r=-0.87,Pr=-0.79),而沉默 TIMP-3 基因可显著削弱纤维蛋白-3 对鼻咽癌衰老的抑制作用。这表明,纤维素-3通过调节TIMP-3,抑制基质金属蛋白酶的活性,影响细胞外基质的合成和降解,最终抑制NPCs的衰老:本研究表明,纤维蛋白-3 通过调节 TIMP-3 在抑制椎间盘 NPCs 的衰老过程中起着至关重要的作用。具体机制如下:纤维素-3 上调 TIMP-3 的表达,抑制基质金属蛋白酶的活性,减少细胞外基质降解,从而促进细胞外基质的合成。此外,纤维素-3 还能通过减少细胞凋亡和促进细胞增殖来抑制鼻咽癌的衰老。因此,纤维素-3 和 TIMP-3 在维持椎间盘健康和延缓退化方面具有潜在的治疗意义。
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来源期刊
四川大学学报(医学版)
四川大学学报(医学版) Biochemistry, Genetics and Molecular Biology-Molecular Biology
CiteScore
0.70
自引率
0.00%
发文量
8695
期刊介绍: "Journal of Sichuan University (Medical Edition)" is a comprehensive medical academic journal sponsored by Sichuan University, a higher education institution directly under the Ministry of Education of the People's Republic of China. It was founded in 1959 and was originally named "Journal of Sichuan Medical College". In 1986, it was renamed "Journal of West China University of Medical Sciences". In 2003, it was renamed "Journal of Sichuan University (Medical Edition)" (bimonthly). "Journal of Sichuan University (Medical Edition)" is a Chinese core journal and a Chinese authoritative academic journal (RCCSE). It is included in the retrieval systems such as China Science and Technology Papers and Citation Database (CSTPCD), China Science Citation Database (CSCD) (core version), Peking University Library's "Overview of Chinese Core Journals", the U.S. "Index Medica" (IM/Medline), the U.S. "PubMed Central" (PMC), the U.S. "Biological Abstracts" (BA), the U.S. "Chemical Abstracts" (CA), the U.S. EBSCO, the Netherlands "Abstracts and Citation Database" (Scopus), the Japan Science and Technology Agency Database (JST), the Russian "Abstract Magazine", the Chinese Biomedical Literature CD-ROM Database (CBMdisc), the Chinese Biomedical Periodical Literature Database (CMCC), the China Academic Journal Network Full-text Database (CNKI), the Chinese Academic Journal (CD-ROM Edition), and the Wanfang Data-Digital Journal Group.
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