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共转染的人软骨细胞:IGF-I和SOX9的过表达增强了软骨基质成分胶原蛋白-II和糖胺聚糖的合成。

Cotransfected human chondrocytes: over-expression of IGF-I and SOX9 enhances the synthesis of cartilage matrix components collagen-II and glycosaminoglycans.

作者信息

Simental-Mendía M, Lara-Arias J, Álvarez-Lozano E, Said-Fernández S, Soto-Domínguez A, Padilla-Rivas G R, Martínez-Rodríguez H G

机构信息

Department of Biochemistry and Molecular Medicine, Faculty of Medicine, Autonomous University of Nuevo León, Monterrey, NL, Mexico.

Autonomous University of Nuevo León, Laboratory of Tissue Engineering, Bone and Tissue Bank, Universitary Hospital, Monterrey, NL, Mexico.

出版信息

Braz J Med Biol Res. 2015 Dec;48(12):1063-70. doi: 10.1590/1414-431X20154732. Epub 2015 Oct 6.

Abstract

Damage to cartilage causes a loss of type II collagen (Col-II) and glycosaminoglycans (GAG). To restore the original cartilage architecture, cell factors that stimulate Col-II and GAG production are needed. Insulin-like growth factor I (IGF-I) and transcription factor SOX9are essential for the synthesis of cartilage matrix, chondrocyte proliferation, and phenotype maintenance. We evaluated the combined effect of IGF-I and SOX9 transgene expression on Col-II and GAG production by cultured human articular chondrocytes. Transient transfection and cotransfection were performed using two mammalian expression plasmids (pCMV-SPORT6), one for each transgene. At day 9 post-transfection, the chondrocytes that were over-expressing IGF-I/SOX9 showed 2-fold increased mRNA expression of the Col-II gene, as well as a 57% increase in Col-II protein, whereas type I collagen expression (Col-I) was decreased by 59.3% compared with controls. The production of GAG by these cells increased significantly compared with the controls at day 9 (3.3- vs 1.8-times, an increase of almost 83%). Thus, IGF-I/SOX9 cotransfected chondrocytes may be useful for cell-based articular cartilage therapies.

摘要

软骨损伤会导致II型胶原蛋白(Col-II)和糖胺聚糖(GAG)流失。为恢复原始软骨结构,需要能刺激Col-II和GAG生成的细胞因子。胰岛素样生长因子I(IGF-I)和转录因子SOX9对软骨基质合成、软骨细胞增殖及表型维持至关重要。我们评估了IGF-I和SOX9转基因表达对培养的人关节软骨细胞产生Col-II和GAG的联合作用。使用两种哺乳动物表达质粒(pCMV-SPORT6)进行瞬时转染和共转染,每个转基因各用一种质粒。转染后第9天,过表达IGF-I/SOX9的软骨细胞Col-II基因的mRNA表达增加了2倍,Col-II蛋白增加了57%,而I型胶原蛋白表达(Col-I)与对照相比降低了59.3%。这些细胞在第9天产生的GAG与对照相比显著增加(3.3倍对1.8倍,增加近83%)。因此,IGF-I/SOX9共转染的软骨细胞可能对基于细胞的关节软骨治疗有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08d5/4661021/e96c422fb353/1414-431X-bjmbr-48-12-01063-gf001.jpg

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