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环孢素G在体内对大鼠骨骼的损害比环孢素A小的证据。

Evidence that cyclosporine G is less deleterious to rat bone in vivo than cyclosporine A.

作者信息

Stein B, Takizawa M, Schlosberg M, Movsowitz C, Fallon M, Berlin J A, Epstein S

机构信息

Department of Medicine, Albert Einstein Medical Center, Philadelphia, PA 19141.

出版信息

Transplantation. 1992 Mar;53(3):628-32. doi: 10.1097/00007890-199203000-00026.

Abstract

We have previously shown that CsA administration to rats causes a high turnover bone loss with bone resorption exceeding bone formation. Similar findings have been reported in renal and cardiac transplantation patients administered CsA. Cyclosporine-G (CsG), a natural equipotent immunosuppressive analogue of CsA, has been shown to be less nephrotoxic than CsA. We therefore compared the effects of CsG and CsA on bone mineral metabolism. Sixty male Sprague-Dawley rats were divided into 3 equal groups as follows: group A (n = 20) was the control; group B (n = 20) received CsA 15 mg/kg by daily gavage; and group C received CsG 15 mg/kg by daily gavage for 28 days. Rats were bled weekly for measurement of circulating biochemical parameters of bone mineral metabolism and after sacrifice on day 28, the tibiae were removed for histomorphometric analysis. The tibial bone histomorphometry revealed that the percentage of bone volume was significantly reduced, and the osteoclast count increased in both the CsA and CsG group, but significantly less so in the CsG than the CsA group. Parameters reflecting bone formation in the CsG group were similar to controls but significantly different from the CsA group. Bone Gla protein levels in the CsA group were significantly increased compared with the control and CsG groups from day 14. Serum 1,25 dihydroxyvitamin D was increased significantly in the CsA group on days 14 and 28 compared with both control and CsG groups, and was significantly elevated in the CsG group compared with controls on the same days. We conclude that CsG is significantly less deleterious to bone mineral metabolism than CsA in the rat in vivo.

摘要

我们之前已经表明,给大鼠施用环孢素A(CsA)会导致骨转换率高,骨吸收超过骨形成。在接受CsA治疗的肾移植和心脏移植患者中也有类似的发现。环孢素-G(CsG)是CsA的一种天然等效免疫抑制类似物,已被证明比CsA的肾毒性更小。因此,我们比较了CsG和CsA对骨矿物质代谢的影响。将60只雄性Sprague-Dawley大鼠分为3组,每组20只:A组(n = 20)为对照组;B组(n = 20)每天通过灌胃给予15 mg/kg CsA;C组每天通过灌胃给予15 mg/kg CsG,持续28天。每周对大鼠进行采血,以测量骨矿物质代谢的循环生化参数,并在第28天处死大鼠后,取出胫骨进行组织形态计量学分析。胫骨组织形态计量学显示,CsA组和CsG组的骨体积百分比均显著降低,破骨细胞数量增加,但CsG组比CsA组显著减少。CsG组中反映骨形成的参数与对照组相似,但与CsA组有显著差异。从第14天起,CsA组的骨钙素水平与对照组和CsG组相比显著升高。与对照组和CsG组相比,CsA组在第14天和第28天的血清1,25-二羟维生素D显著升高,且在同一天,CsG组与对照组相比也显著升高。我们得出结论,在大鼠体内,CsG对骨矿物质代谢的有害作用明显小于CsA。

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