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天然及抗体偶联环孢素A应用后大鼠肾脏和胸腺的形态学(靶向药物毒性降低)

Morphology of rat kidney and thymus after native and antibody-coupled cyclosporin A application (reduced toxicity of targeted drug).

作者信息

Rossmann P, Ríhová B, Strohalm J, Ulbrich K

机构信息

Institute of Microbiology, Academy of Sciences of the Czech Republic, Prague.

出版信息

Folia Microbiol (Praha). 1997;42(3):277-87. doi: 10.1007/BF02819003.

Abstract

This study compares the toxic effects of native cyclosporia A (CyA) with those of targeted CyA that is conjugated with the anti-rat-thymocyte antibody of rabbit origin via the N-(2-hydroxypropyl)methacrylamide (HPMA) carrier bearing digestible, reactive oligopeptide side chains. Ten toxic doses of native CyA (50 mg/kg i.p.) given to young adult rats in the course of 14 d produced a severe renal lesion-diffuse microvacuolization of the proximal tubules in the deep cortex, and hypergranulation of juxtaglomerular regions. Severe atrophy of the thymic medulla was documented by morphometry. In the cortex the epithelial reticular (but not deep interdigitating) cells showed ultrastructural signs of severe degeneration and lysis. The immature CD4+8+ double-positive cortical lymphocytes were preserved whereas the single-positive medullary thymocytes were greatly depleted; there was also a restriction of MHC class II antigen expression in the medulla. The number of medullary B cells was increased. The cytokeratin net was focally shrunken in the cortex and almost negative in the medulla, with loss of Hassall's corpuscles. After ten corresponding doses of antibody-targeted conjugated CyA no damage to the renal tubules and arterioles appeared and the antiGBM or immune-complex deposition was absent. The thymus had a normal medulla with numerous mature thymocytes and the cortical epithelial reticulum remained well preserved. Thus, the main toxic effects of CyA could be eliminated by targeting. The T-cell-targeted drug was tested for preserved immunosuppressive properties and non-toxic character of HPMA copolymer carrier.

摘要

本研究比较了天然环孢素A(CyA)与靶向性CyA的毒性作用,后者通过带有可消化、反应性寡肽侧链的N-(2-羟丙基)甲基丙烯酰胺(HPMA)载体与兔源抗大鼠胸腺细胞抗体偶联。在14天内给年轻成年大鼠腹腔注射10个毒性剂量的天然CyA(50mg/kg),导致严重的肾脏病变——深皮质近端小管弥漫性微空泡化,以及肾小球旁区域颗粒增多。通过形态计量学记录了胸腺髓质的严重萎缩。在皮质中,上皮网状细胞(而非深部交错突细胞)显示出严重变性和溶解的超微结构迹象。未成熟的CD4+8+双阳性皮质淋巴细胞得以保留,而单阳性髓质胸腺细胞大量减少;髓质中MHC II类抗原表达也受到限制。髓质B细胞数量增加。细胞角蛋白网络在皮质局部收缩,在髓质中几乎呈阴性,哈索尔小体消失。给予10个相应剂量的抗体靶向偶联CyA后,未出现肾小管和小动脉损伤,也未出现抗肾小球基底膜或免疫复合物沉积。胸腺髓质正常,有大量成熟胸腺细胞,皮质上皮网状结构保存良好。因此,通过靶向作用可消除CyA的主要毒性作用。对T细胞靶向药物进行了测试,以检测HPMA共聚物载体保留的免疫抑制特性和无毒特性。

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