Kim Tae-Hoon, Yun Young-Pil, Shim Kyu-Sik, Kim Hak-Jun, Kim Sung Eun, Park Kyeongsoon, Song Hae-Ryong
1Department of Orthopedic Surgery, Konkuk University School of Medicine, 120-1 Neungdong-ro, Hwayang-dong, Gwangjin-gu, Seoul, 05029 Korea.
2Department of Orthopedic Surgery and Rare Diseases Institute, Korea University Guro Hospital, Korea University College of Medicine, #148, Guro-dong, Guro-gu, Seoul, 08308 Korea.
Tissue Eng Regen Med. 2018 May 3;15(3):263-274. doi: 10.1007/s13770-018-0119-9. eCollection 2018 Jun.
The aim of this study was to prepare inclusion nanocomplexes of hyaluronic acid-β-cyclodextrin and simvastatin (HA-β-CD/SIM) and evaluate anti-inflammation effects on lipopolysaccharide (LPS)-activated synoviocytes and chondrogenic differentiation effects on rat adipose-derived stem cells (rADSCs). The β-CD moieties in HA-β-CD could incorporate SIM to form HA-β-CD/SIM nanocomplexes with diameters of 297-350 nm. HA-β-CD/SIM resulted in long-term release of SIM from the nanocomplexes for up to 63 days in a sustained manner. studies revealed that HA-β-CD/SIM nanocomplexes were able to effectively and dose-dependently suppress the mRNA expression levels of pro-inflammatory markers such as matrix metallopeptidase-3 (MMP-3), MMP-13, cyclooxygenase-2 (COX-2), a disintegrin and metalloproteinase with thrombospondin motifs-5 (ADAMTS-5), interleukin-6 (IL-6), and tumor necrosis factor (TNF-α) in LPS-stimulated synoviocytes. HA-β-CD/SIM-treated rADSCs significantly and dose-dependently enhanced mRNA expressions of aggrecan, collagen type II (COL2A1), and collagen type X (COL10A1), implying that HA-β-CD/SIM greatly induced the chondrogenic differentiation of rADSCs. Conclusively, HA-β-CD/SIM nanocomplexes will be a promising therapeutic material to alleviate inflammation as well as promote chondrogenesis.
本研究的目的是制备透明质酸-β-环糊精与辛伐他汀的包合物纳米复合物(HA-β-CD/SIM),并评估其对脂多糖(LPS)激活的滑膜细胞的抗炎作用以及对大鼠脂肪来源干细胞(rADSCs)的软骨形成分化作用。HA-β-CD中的β-CD部分可包合SIM,形成直径为297 - 350 nm的HA-β-CD/SIM纳米复合物。HA-β-CD/SIM可使纳米复合物中的SIM持续长期释放长达63天。研究表明,HA-β-CD/SIM纳米复合物能够有效且剂量依赖性地抑制LPS刺激的滑膜细胞中促炎标志物如基质金属蛋白酶-3(MMP-3)、MMP-13、环氧化酶-2(COX-2)、含血小板反应蛋白基序的解聚素和金属蛋白酶-5(ADAMTS-5)、白细胞介素-6(IL-6)和肿瘤坏死因子(TNF-α)的mRNA表达水平。经HA-β-CD/SIM处理的rADSCs显著且剂量依赖性地增强了聚集蛋白聚糖、Ⅱ型胶原(COL2A1)和Ⅹ型胶原(COL10A1)的mRNA表达,这意味着HA-β-CD/SIM极大地诱导了rADSCs的软骨形成分化。总之,HA-β-CD/SIM纳米复合物将是一种有前景的治疗材料,可减轻炎症并促进软骨形成。