RADA-16-based Sef-assembled Peptide Nanofiber Scaffolds Loaded with TGF-1 Enhance the Chondrogenic Differentiation Potential of BMSCs In vitro

CURRENT STEM CELL RESEARCH & THERAPY(2024)

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摘要
Objective: At present, cartilage repair does not offer ideal efficacy. Fortunately, recent studies have claimed that RADA-16 peptide is an attractive therapeutic strategy for repairing cartilage defects. Therefore, this study tried to explore the effect of RADA-16 loaded with transforming growth factor-beta (TGF-beta) 1 on cartilage differentiation of bone marrow mesenchymal stem cells (BMSCs).Methods: First, the RADA-16 peptide was synthesized by solid phase peptide, and a well-defined hydrogel was formed by supramolecular peptide self-assembly. Then, TGF-beta 1 (loading concentration of 10 ng/mL) was loaded into RADA-16, with scanning electron microscopy to observe the morphology of the TGF-beta 1/RADA-16 hydrogel and detect its related properties. Next, BMSCs were isolated from bone marrow samples and identified. TGF-beta 1/RADA-16 was co-cultured with L929, BMSCs, and C28/I2 cells, respectively, and the survival and proliferation ability of the cells was determined by live/dead cell staining and MTT assay. Chondrogenic differentiation and sGAG production of BMSCs were determined by Alcian blue staining and Blyscan assay, the expression of cartilage-associated genes by qRT-PCR, and the levels of inflammatory factors by ELISA. As for mechanism investigation, the Smad and ERK/MAPK signaling pathways were detected by western blot.Results: RADA-16 hydrogel exhibited a well-distributed and interconnected porous surface structure, with a loading rate of 91.9% for TGF-beta 1. The TGF-beta 1/RADA-16 hydrogel had good release and degradation properties, and had no negative effect on the survival and proliferation ability of BMSCs, L929, and C28/I2 cells. Importantly, TGF-beta 1/RADA-16 hydrogel significantly accelerated chondrogenic differentiation and sGAG generation in BMSCs, and decreased pro-inflammatory factor production. In addition, the hydrogel also significantly activated the Smad and ERK/MAPK pathways of BMSCs.Conclusion: RADA-16 loaded with TGF-beta 1 has good biological properties and can enhance the chondrogenic differentiation ability of BMSCs.
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关键词
MTT assay,nano self-assembled polypeptide,RADA-16,transforming growth factor-beta (TGF-beta) 1,bone marrow mesenchymal stem cells (BMSCs),proliferation
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