The Synergistic Effect of Anabolic Steroid and Loading on Intercellular Calcium Signaling Via Gap Junctions in Human Supraspinatus Tendon Cells

I. Triantafyllopoulos, N. Dede
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Abstract

Objective: We hypothesized that anabolic steroid administration would act synergistically with substrate strain in two-dimensional cultures of human supraspinatus tendon cells, to upregulate the expression of connexin-43 and to increase the Ca2+ wave propagation through gap junctions. Methods: Supraspinatus tendon cells were isolated intra-operatively from human specimens during shoulder arthroscopy. Cells were plated in two-dimensional spot cultures and arranged into four experimental groups: 1) non-load, non-steroid (NLNS, n=12 wells); 2) non-load, steroid (NLS, n=12 wells); 3) load, non-steroid (LNS, n=12 wells); and 4) load, steroid (LS, n=12 wells) in order to produce bioartificial tendons (BATs). The load groups were stretched in culture plates and the steroid groups were given nandrolone decanoate. When BATs were macro- and microscopically mature, at five days, they were evaluated with immunocytochemistry for connexin-43 staining, fluorescence microscopy for calcium imaging and mechanical stimulation with a micropipette tip manipulation for calcium propagation. Dose response test was performed in order to establish any relation between nandrolone decanoate dose and calcium signaling response. ATP was applied to the spot culture cells from all groups and all patients to determine if the cells were sensitive to extracellular ATP. Results: Load-steroid group demonstrated the greatest density of cnx43 in comparison to all other groups. There were no significant differences between the groups considering the percentage of cells responding after mechanical stimulation (cell recruitment). The cells of load-steroid group showed a significantly greater mean peak [Ca2+]ic compared to the values of the other groups (p<0.05). The propagation time was significantly decreased in the LS group compared with the other groups (p<0.05). There were no significant differences between the groups considering the number of cells that were responding spontaneously prior to stimulation or the number of responding cells that were oscillating after the stimulation. Conclusion: Nandrolone decanoate and loading seem to have a synergistic effect on the upregulation of the gap junction protein cxn43 enhancing calcium signaling via gap junctions. Consecutively, anabolic steroid administration and load may enhance the formation of a better-organized cytoskeleton and particularly the actin stress monofilaments.
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合成代谢类固醇和负荷对人冈上肌腱细胞间隙连接细胞间钙信号的协同作用
目的:我们假设合成代谢类固醇政府将与亚基应变协同作用,上调连接蛋白43的表达,并增加Ca2+波通过间隙连接的传播。方法:术中从人肩关节镜标本中分离冈上肌腱细胞。二维斑点培养细胞,分为4个实验组:1)无负载、非甾体(NLNS, n=12孔);2)空载,甾体(NLS, n=12孔);3)载,非甾体(LNS, n=12孔);4)负载类固醇(LS, n=12孔),以产生生物人工肌腱(BATs)。负荷组在培养板中拉伸,类固醇组给予癸酸诺龙。当蝙蝠在宏观和微观下成熟时,在第5天,用免疫细胞化学进行连接蛋白43染色,荧光显微镜进行钙成像,并用微管尖端操作进行机械刺激以进行钙增殖。为了确定癸酸诺龙剂量与钙信号反应之间的关系,我们进行了剂量反应试验。将三磷酸腺苷应用于所有组和所有患者的斑点培养细胞,以确定细胞对细胞外ATP是否敏感。结果:负荷类固醇组cnx43的密度高于其他各组。考虑到机械刺激(细胞招募)后细胞反应的百分比,两组之间没有显著差异。负荷类固醇组细胞的平均峰值[Ca2+]ic明显高于其他各组(p<0.05)。与其他组相比,LS组的繁殖时间显著缩短(p<0.05)。考虑到刺激前自发反应的细胞数量或刺激后振荡反应的细胞数量,两组之间没有显著差异。结论:烯酸诺龙和负载似乎对缝隙连接蛋白cxn43的上调有协同作用,通过缝隙连接增强钙信号。连续地,合成代谢类固醇的施用和负荷可能会促进更有组织的细胞骨架的形成,特别是肌动蛋白应激单丝。
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