Boonmaleerat Kanchanit, Wanachewin Orawan, Phitak Thanyaluck, Pothacharoen Peraphan, Kongtawelert Prachya
Thailand Excellence Center for Tissue Engineering and Stem Cells, Department of Biochemistry, Faculty of Medicine, Chiang Mai University, Chiang Mai, 50200, Thailand.
Program in Biology, Faculty of Science and Technology, Chiang Rai Rajabhat University, Chiang Rai, 57100, Thailand.
Cell Biochem Biophys. 2018 Jun;76(1-2):279-292. doi: 10.1007/s12013-017-0817-2. Epub 2017 Aug 22.
Osteoarthritis is a degenerative joint disease in which interleukin-1β plays a major role in the inflammatory process. Administration of collagen hydrolysate was an optional treatment of osteoarthritis. Fish has become an interesting source of collagen hydrolysate because of religious reason and there is no risk from mad cow disease. However, the effects of different sizes of fish collagen hydrolysate on cartilage and chondrocyte metabolism have not been well studied yet. This study examined the effect of different sizes of fish collagen hydrolysate on cartilage metabolism. Three different sizes of fish collagen hydrolysate were prepared by size exclusion using centrifugation, which composed of small fraction (<3 kDa), medium fraction (3-10 kDa) and large fraction (>10 kDa). Using porcine cartilage explant, in physiological condition, all the three fractions had no effect on cartilage metabolism, but they could induce pro-MMP3 and pro-MMP13 secretions through activation of p-ERK and p-p38. In pathological condition induced by interleukin-1β and oncostatin-M, small and medium fractions showed additive effect with interleukin-1β and oncostatin-M on cartilage degradation, whereas large size had no effect. In addition, the effect of small size occurred through further activation of p-p65, which resulted in further induction of active-MMP13, while medium size had a different mechanism. In conclusion, all three fractions fish collagen hydrolysate had no effect on cartilage metabolism in physiological condition, but small and medium fractions had adverse effect on cartilage in pathological condition. Taken together, various sizes of fish collagen hydrolysate showed different effects on cartilage metabolism. Therefore, different sizes of fish collagen hydrolysates play different roles on cartilage metabolism, especially in the pathological condition.
骨关节炎是一种退行性关节疾病,其中白细胞介素-1β在炎症过程中起主要作用。胶原蛋白水解物的给药是骨关节炎的一种可选治疗方法。由于宗教原因,鱼类已成为胶原蛋白水解物的一个有趣来源,并且不存在疯牛病风险。然而,不同大小的鱼胶原蛋白水解物对软骨和软骨细胞代谢的影响尚未得到充分研究。本研究考察了不同大小的鱼胶原蛋白水解物对软骨代谢的影响。通过离心尺寸排阻法制备了三种不同大小的鱼胶原蛋白水解物,分别为小分子量组分(<3 kDa)、中分子量组分(3-10 kDa)和大分子量组分(>10 kDa)。使用猪软骨外植体,在生理条件下,所有这三个组分对软骨代谢均无影响,但它们可通过激活p-ERK和p-p38诱导前MMP3和前MMP13的分泌。在白细胞介素-1β和制瘤素-M诱导的病理条件下,小分子量和中分子量组分在软骨降解方面与白细胞介素-1β和制瘤素-M表现出相加作用,而大分子量组分则无影响。此外,小分子量组分的作用是通过进一步激活p-p65导致活性MMP13的进一步诱导,而中分子量组分则有不同的机制。总之,所有三个组分的鱼胶原蛋白水解物在生理条件下对软骨代谢均无影响,但小分子量和中分子量组分在病理条件下对软骨有不良影响。综上所述,不同大小的鱼胶原蛋白水解物对软骨代谢表现出不同的影响。因此,不同大小的鱼胶原蛋白水解物在软骨代谢中发挥不同作用,尤其是在病理条件下。