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转化生长因子β1羧基末端结构域短肽的体外软骨生成诱导作用

In Vitro Chondrogenesis Induction by Short Peptides of the Carboxy-Terminal Domain of Transforming Growth Factor β1.

作者信息

Pitou Maria, Papachristou Eleni, Bratsios Dimitrios, Kefala Georgia-Maria, Tsagkarakou Anastasia S, Leonidas Demetrios D, Aggeli Amalia, Papadopoulos Georgios E, Papi Rigini M, Choli-Papadopoulou Theodora

机构信息

Laboratory of Biochemistry, School of Chemistry, Aristotle University of Thessaloniki (AUTh), 54124 Thessaloniki, Greece.

Laboratory of Biomedical Engineering, School of Chemical Engineering, Aristotle University of Thessaloniki (AUTh), 54124 Thessaloniki, Greece.

出版信息

Biomedicines. 2023 Nov 29;11(12):3182. doi: 10.3390/biomedicines11123182.

Abstract

Τransforming growth factor β1 (TGF-β1) comprises a key regulator protein in many cellular processes, including in vivo chondrogenesis. The treatment of human dental pulp stem cells, separately, with Leu-Ser (C-terminal domain of TGF-β1), as well as two very short peptides, namely, 90-YYVGRKPK-97 (peptide 8) and 91-YVGRKP-96 (peptide 6) remarkably enhanced the chondrogenic differentiation capacity in comparison to their full-length mature TGF-β1 counterpart either in monolayer cultures or 3D scaffolds. In 3D scaffolds, the reduction of the elastic modulus and viscous modulus verified the production of different amounts and types of ECM components. Molecular dynamics simulations suggested a mode of the peptides' binding to the receptor complex TβRII-ALK5 and provided a possible structural explanation for their role in inducing chondrogenesis, along with endogenous TGF-β1. Further experiments clearly verified the aforementioned hypothesis, indicating the signal transduction pathway and the involvement of TβRII-ALK5 receptor complex. Real-time PCR experiments and Western blot analysis showed that peptides favor the ERK1/2 and Smad2 pathways, leading to an articular, extracellular matrix formation, while TGF-β1 also favors the Smad1/5/8 pathway which leads to the expression of the metalloproteinases ADAMTS-5 and MMP13 and, therefore, to a hypertrophic chondrocyte phenotype. Taken together, the two short peptides, and, mainly, peptide 8, could be delivered with a scaffold to induce in vivo chondrogenesis in damaged articular cartilage, constituting, thus, an alternative therapeutic approach for osteoarthritis.

摘要

转化生长因子β1(TGF-β1)是许多细胞过程中的关键调节蛋白,包括体内软骨形成。分别用Leu-Ser(TGF-β1的C末端结构域)以及两种非常短的肽,即90-YYVGRKPK-97(肽8)和91-YVGRKP-96(肽6)处理人牙髓干细胞,与它们的全长成熟TGF-β1对应物相比,在单层培养或3D支架中均显著增强了软骨形成分化能力。在3D支架中,弹性模量和粘性模量的降低证实了不同数量和类型的细胞外基质成分的产生。分子动力学模拟表明了这些肽与受体复合物TβRII-ALK5的结合模式,并为它们与内源性TGF-β1一起在诱导软骨形成中的作用提供了可能的结构解释。进一步的实验清楚地证实了上述假设,表明了信号转导途径以及TβRII-ALK5受体复合物的参与。实时PCR实验和蛋白质印迹分析表明,这些肽有利于ERK1/2和Smad2途径,导致关节细胞外基质形成,而TGF-β1也有利于Smad1/5/8途径,该途径导致金属蛋白酶ADAMTS-5和MMP13的表达,因此导致肥大软骨细胞表型。综上所述,这两种短肽,主要是肽8,可以与支架一起递送,以诱导受损关节软骨的体内软骨形成,从而构成骨关节炎的一种替代治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a6e/10740954/feebc9d377b8/biomedicines-11-03182-g001.jpg

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