Protective effects of HBSP on ischemia reperfusion and cyclosporine a induced renal injury.

Clinical & Developmental Immunology Pub Date : 2013-01-01 Epub Date: 2013-10-27 DOI:10.1155/2013/758159
Yuanyuan Wu, Junlin Zhang, Feng Liu, Cheng Yang, Yufang Zhang, Aifen Liu, Lan Shi, Yajun Wu, Tongyu Zhu, Michael L Nicholson, Yaping Fan, Bin Yang
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引用次数: 29

Abstract

Ischemia reperfusion (IR) and cyclosporine A (CsA) injuries are unavoidable in kidney transplantation and are associated with allograft dysfunction. Herein, the effect and mechanism of a novel tissue protective peptide, helix B surface peptide (HBSP) derived from erythropoietin, were investigated in a rat model. The right kidney was subjected to 45 min ischemia, followed by left nephrectomy and 2-week reperfusion, with or without daily treatment of CsA 25 mg/kg and/or HBSP 8 nmol/kg. Blood urea nitrogen was increased by CsA but decreased by HBSP at 1 week and 2 weeks, while the same changes were revealed in urinary protein/creatinine only at 2 weeks. HBSP also significantly ameliorated tubulointerstitial damage and interstitial fibrosis, which were gradually increased by IR and CsA. In addition, apoptotic cells, infiltrated inflammatory cells, and active caspase-3+ cells were greatly reduced by HBSP in the both IR and IR + CsA groups. The 17 kD active caspase-3 protein was decreased by HBSP in the IR and IR + CsA kidneys, with decreased mRNA only in the IR + CsA kidneys. Taken together, it has been demonstrated, for the first time, that HBSP effectively improved renal function and tissue damage caused by IR and/or CsA, which might be through reducing caspase-3 activation and synthesis, apoptosis, and inflammation.

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HBSP对缺血再灌注和环孢素a所致肾损伤的保护作用。
缺血再灌注(IR)和环孢素A (CsA)损伤在肾移植中是不可避免的,并与同种异体移植功能障碍有关。本研究在大鼠模型上研究了一种新型组织保护肽——螺旋B表面肽(HBSP)的作用及其机制。右肾缺血45 min,左肾切除,再灌注2周,每日给予或不给予CsA 25 mg/kg和/或HBSP 8 nmol/kg。血清尿素氮在1周和2周时CsA升高,而HBSP降低,而尿蛋白/肌酐仅在2周时出现相同的变化。HBSP还显著改善了IR和CsA逐渐增加的小管间质损伤和间质纤维化。此外,IR和IR + CsA组的凋亡细胞、浸润炎性细胞和活性caspase-3+细胞均被HBSP显著减少。HBSP降低了IR和IR + CsA肾脏中17kd活性caspase-3蛋白的mRNA表达,仅在IR + CsA肾脏中降低。综上所述,研究首次证明HBSP可以有效改善IR和/或CsA引起的肾功能和组织损伤,这可能是通过减少caspase-3的激活和合成、细胞凋亡和炎症来实现的。
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