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Protective Effects of HBSP on Ischemia Reperfusion and Cyclosporine A Induced Renal Injury

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...

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Autores principales: Wu, Yuanyuan, Zhang, Junlin, Liu, Feng, Yang, Cheng, Zhang, Yufang, Liu, Aifen, Shi, Lan, Wu, Yajun, Zhu, Tongyu, Nicholson, Michael L., Fan, Yaping, Yang, Bin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3824821/
https://www.ncbi.nlm.nih.gov/pubmed/24282430
http://dx.doi.org/10.1155/2013/758159
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author Wu, Yuanyuan
Zhang, Junlin
Liu, Feng
Yang, Cheng
Zhang, Yufang
Liu, Aifen
Shi, Lan
Wu, Yajun
Zhu, Tongyu
Nicholson, Michael L.
Fan, Yaping
Yang, Bin
author_facet Wu, Yuanyuan
Zhang, Junlin
Liu, Feng
Yang, Cheng
Zhang, Yufang
Liu, Aifen
Shi, Lan
Wu, Yajun
Zhu, Tongyu
Nicholson, Michael L.
Fan, Yaping
Yang, Bin
author_sort Wu, Yuanyuan
collection PubMed
description 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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spelling pubmed-38248212013-11-26 Protective Effects of HBSP on Ischemia Reperfusion and Cyclosporine A Induced Renal Injury Wu, Yuanyuan Zhang, Junlin Liu, Feng Yang, Cheng Zhang, Yufang Liu, Aifen Shi, Lan Wu, Yajun Zhu, Tongyu Nicholson, Michael L. Fan, Yaping Yang, Bin Clin Dev Immunol Research Article 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. Hindawi Publishing Corporation 2013 2013-10-27 /pmc/articles/PMC3824821/ /pubmed/24282430 http://dx.doi.org/10.1155/2013/758159 Text en Copyright © 2013 Yuanyuan Wu et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Wu, Yuanyuan
Zhang, Junlin
Liu, Feng
Yang, Cheng
Zhang, Yufang
Liu, Aifen
Shi, Lan
Wu, Yajun
Zhu, Tongyu
Nicholson, Michael L.
Fan, Yaping
Yang, Bin
Protective Effects of HBSP on Ischemia Reperfusion and Cyclosporine A Induced Renal Injury
title Protective Effects of HBSP on Ischemia Reperfusion and Cyclosporine A Induced Renal Injury
title_full Protective Effects of HBSP on Ischemia Reperfusion and Cyclosporine A Induced Renal Injury
title_fullStr Protective Effects of HBSP on Ischemia Reperfusion and Cyclosporine A Induced Renal Injury
title_full_unstemmed Protective Effects of HBSP on Ischemia Reperfusion and Cyclosporine A Induced Renal Injury
title_short Protective Effects of HBSP on Ischemia Reperfusion and Cyclosporine A Induced Renal Injury
title_sort protective effects of hbsp on ischemia reperfusion and cyclosporine a induced renal injury
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3824821/
https://www.ncbi.nlm.nih.gov/pubmed/24282430
http://dx.doi.org/10.1155/2013/758159
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