Peng Cheng, Xiao Tao, Luo Yuan-ming, Liu Xia-jun, Lin Mian-hui, Hu Jin-xi
Research Institute of Traumatic Orthopaedics, Second Xiangya Hospital, Central South University, Changsha 410011, China.
Zhong Nan Da Xue Xue Bao Yi Xue Ban. 2008 Mar;33(3):197-203.
To explore the effect of insulin-like growth factor (IGF-1) on the concentration of NO and PGE(2) in the supernatant of rabbit articular chondrocytes induced by IL-1, and to explore the mechanism of IGF-1 in the development of osteoarthritis (OA).
The samples were divided into 7 groups: IL-1beta 10 microg/L group, IL-1beta 10 microg/L+IGF-1 1 microg/L group, IL-1beta 10 microg/L+IGF-1 10 microg/L group, IL-1beta 10 microg/L+IGF-1 50 microg/L group, IL-1beta 10 microg/L+IGF-1 100 microg/L group, IGF-1 50 microg/L group, and a blank control group. The chondrocytes from the articular cartilage of 2 month old rabbits were cultivated and identified, and then co-cultured in the second filial generation chondrocytes on plates with or without recombinant human IGF-1 or IL-1. The concentration of NO was detected by nitrate reductase kit, and that of PGE(2) by enzyme-linked immunosorbent assay (ELISA). The results were analyzed by statistical method.
The average value of NO and PGE(2) was (89.971+/-10.224) micromol/L and (22.028+/-8.731) micromol/L in the IL-1beta 10 microg/L group, and (12.404+/-8.809) micromol/L and (1.900+/-0.227) ng/L in the blank control group. The concentration of NO and PGE(2) in IL-1beta 10 microg/L group was significantly higher than that in the blank control group (P<0.05). At the same concentration of 10 microg/L, IGF-1 could dose-dependently decrease the increase of NO and PGE(2) concentration induced by IL-1beta in the chondrocytes supernatant in vitro, and the optimum concentration of IGF-1 was 50 microg/L.
IL-1 can significantly increase the concentration of NO and PGE(2), and IGF-1 can dose-dependently decrease the concentration of NO and PGE(2) in the chondrocytes supernatant in vitro. The optimum concentration of IGF-1 was 50 microg/L.
探讨胰岛素样生长因子(IGF-1)对白细胞介素-1(IL-1)诱导的兔关节软骨细胞上清液中一氧化氮(NO)和前列腺素E2(PGE2)浓度的影响,以及IGF-1在骨关节炎(OA)发生发展中的作用机制。
将样本分为7组:IL-1β 10 μg/L组、IL-1β 10 μg/L + IGF-1 1 μg/L组、IL-1β 10 μg/L + IGF-1 10 μg/L组、IL-1β 10 μg/L + IGF-1 50 μg/L组、IL-1β 10 μg/L + IGF-1 100 μg/L组、IGF-1 50 μg/L组和空白对照组。培养并鉴定2月龄兔关节软骨的软骨细胞,然后将第二代软骨细胞在有无重组人IGF-1或IL-1的培养板上共培养。采用硝酸还原酶试剂盒检测NO浓度,酶联免疫吸附测定(ELISA)法检测PGE2浓度。采用统计学方法分析结果。
IL-1β 10 μg/L组中NO和PGE2的平均值分别为(89.971±10.224)μmol/L和(22.028±8.731)μmol/L,空白对照组中分别为(12.404±8.809)μmol/L和(1.900±0.227)ng/L。IL-1β 10 μg/L组中NO和PGE2的浓度显著高于空白对照组(P<0.05)。在相同浓度10 μg/L时,IGF-1能剂量依赖性降低体外软骨细胞上清液中IL-1β诱导的NO和PGE2浓度升高,IGF-1的最佳浓度为50 μg/L。
IL-1能显著升高NO和PGE2的浓度,IGF-1能剂量依赖性降低体外软骨细胞上清液中NO和PGE2的浓度。IGF-1的最佳浓度为50 μg/L。