Dual functional nanoparticles containing SOX duo and ANGPT4 shRNA for osteoarthritis treatment

软骨发生 转染 硫氧化物9 KLF4公司 小发夹RNA 骨关节炎 基质金属蛋白酶 细胞生物学 生物 分子生物学 化学 干细胞 医学 基因表达 病理 基因敲除 基因 SOX2 生物化学 转录因子 替代医学
作者
Jeong Se-Young,Mi‐Lan Kang,Jeong‐Won Park,Gun‐Il Im
出处
期刊:Journal of Biomedical Materials Research Part B [Wiley]
卷期号:108 (1): 234-242 被引量:17
标识
DOI:10.1002/jbm.b.34383
摘要

Abstract In our previous studies, we found that adult stem cells transfected with sex‐determining region Y‐box (SOX)‐9, ‐6 and ‐5 genes (SOX trio) enhanced chondrogenesis and suppressed the progression of osteoarthritis (OA). The inhibition of angiopoietin‐like 4 (ANGPT4) is known to reduce levels of cartilage damaging enzymes, such as, matrix metalloproteinases (MMPs). In this study, we designed nanoparticles comprising dexamethasone‐conjugated polyethylenimine ( DEX PEI) complexed with minicircle plasmid (MC) harboring SOX duo ( SOX‐9 , ‐ 6 ) and ANGPTL4 small hairpin RNA ( shANG ) [ MC SOX9/6/shANG ] in the expectation that transfection of these nanoparticles would enhance chondrogenesis of stem cells and suppress inflammation in OA. Adipose‐derived stem cells (ADSCs) transfected with MC SOX9/6/shANG ( MC SOX9/6/shANG ‐tADSCs) showed significantly higher expressions of COL2 gene and protein than MC SOX9/6 ‐transfected ADSCs ( MC SOX9/6 ‐tADSCs) during in vitro chondrogenesis while both enhanced chondrogenesis in the absence of growth factor addition as compared with negative controls. Furthermore, the expressions of MMP13 and MMP3 genes were significantly more diminished in MC SOX9/6/shANG ‐tADSCs than in MC SOX9/6 ‐tADSCs. In vivo experiments using surgically‐induced OA rats showed MC SOX9/6/shANG ‐tADSC‐treated rats had significantly lower levels of cyclooxygenase (COX‐2) and MMP13 in synovial fluids than MC SOX9/6 ‐tADSC‐treated rats, but no significant difference was observed between them in histological appearances. Both groups showed significantly less joint destruction than control groups did. These results demonstrate that dual functional nanoparticles containing SOX duo and ANGPT4 shRNA enhance chondrogenesis of ADSCs and suppress inflammation in OA. © 2019 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater 108B:234–242, 2020.
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