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Original Article

Induction of Heat-Shock Proteins HSP73 and HSP90 in Rat Kidneys After Ischemia

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Pages 405-419 | Published online: 07 Jul 2009

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Juan Antonio Ortega-Trejo, Rosalba Pérez-Villalva, Jonatan Barrera-Chimal, Diego L. Carrillo-Pérez, Luis E. Morales-Buenrostro, Gerardo Gamba, María Elena Flores & Norma A. Bobadilla. (2015) Heat shock protein 72 (Hsp72) specific induction and temporal stability in urine samples as a reliable biomarker of acute kidney injury (AKI). Biomarkers 20:6-7, pages 453-459.
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Atsushi Komatsuda, Hideki Wakuil, Hirokazu Imai, Hideaki Itoh, Tadashi Yasuda & Akira B Miura. (1999) Expression of 90-kDa Heat Shock Protein Within Regenerative Tubular Cells in a Patient with Acute Oliguric Renal Failure Due to Malignant Hypertension. Renal Failure 21:1, pages 113-117.
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Articles from other publishers (34)

Aidan W. Porter, Diep N. Nguyen, Dennis R. Clayton, Wily G. Ruiz, Stephanie M. Mutchler, Evan C. Ray, Allison L. Marciszyn, Lubika J. Nkashama, Arohan R. Subramanya, Sebastien Gingras, Thomas R. Kleyman, Gerard Apodaca, Linda M. Hendershot, Jeffrey L. Brodsky & Teresa M. Buck. (2022) The molecular chaperone GRP170 protects against ER stress and acute kidney injury in mice. JCI Insight 7:5.
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Yuqing Sun, Xin Zhang, Xiaofan Shen, Shuo Wang, Qi Wang & Xiuwei Yang. (2021) Computational and experimental characterization of isomers of escin-induced renal cytotoxicity by inhibiting heat shock proteins. European Journal of Pharmacology 908, pages 174372.
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Hemalatha Ramamoorthy, Premila Abraham & Bina Isaac. (2020) Melatonin protects against tenofovir-induced nephrotoxicity in rats by targeting multiple cellular pathways. Human & Experimental Toxicology 40:5, pages 826-850.
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Vikram Sabapathy, Rajkumar Venkatadri, Murat Dogan & Rahul Sharma. (2020) The Yin and Yang of Alarmins in Regulation of Acute Kidney Injury. Frontiers in Medicine 7.
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Natalia Chebotareva, Anatoliy Vinogradov, Alla Gindis, Ekaterina Tao & Sergey Moiseev. (2020) Heat shock protein 90 and NFkB levels in serum and urine in patients with chronic glomerulonephritis. Cell Stress and Chaperones 25:3, pages 495-501.
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Natalia Chebotareva, Irina Bobkova & Evgeniy Shilov. (2017) Heat shock proteins and kidney disease: perspectives of HSP therapy. Cell Stress and Chaperones 22:3, pages 319-343.
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Frank Park. (2015) Accessory proteins for heterotrimeric G-proteins in the kidney. Frontiers in Physiology 6.
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Harindarpal S. Gill, Kun-Young Choi, Lakshmi Kammili & Anastas Popratiloff. (2015) Rescue of the temperature-sensitive, autosomal-recessive mutation R298S in the sodium-bicarbonate cotransporter NBCe1-A characterized by a weakened dimer and abnormal aggregation. Biochimica et Biophysica Acta (BBA) - General Subjects 1850:6, pages 1286-1296.
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Christopher Y. Lu. 2013. Seldin and Giebisch's The Kidney. Seldin and Giebisch's The Kidney 2985 3006 .
Anastasia Krivoruchko & Kenneth B. Storey. (2009) Regulation of the heat shock response under anoxia in the turtle, Trachemys scripta elegans. Journal of Comparative Physiology B 180:3, pages 403-414.
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Christopher Y. Lu & Martin Senitko. 2008. Seldin and Giebisch's The Kidney. Seldin and Giebisch's The Kidney 2577 2589 .
Philipp Lechler, Xiaoqing Wu, Wanja Bernhardt, Valentina Campean, Susanne Gastiger, Thomas Hackenbeck, Bernd Klanke, Alexander Weidemann, Christina Warnecke, Kerstin Amann, Dirk Engehausen, Carsten Willam, Kai-Uwe Eckardt, Franz Rödel & Michael Sean Wiesener. (2007) The Tumor Gene Survivin Is Highly Expressed in Adult Renal Tubular Cells. The American Journal of Pathology 171:5, pages 1483-1498.
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Christopher Y Lu, John Hartono, Martin Senitko & Jianlin Chen. (2007) The inflammatory response to ischemic acute kidney injury: a result of the ‘right stuff’ in the ‘wrong place’?. Current Opinion in Nephrology and Hypertension 16:2, pages 83-89.
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Zhipeng WangLi LiuQibing MeiLinna LiuYuhua RanRong Zhang. (2006) Increased Expression of Heat Shock Protein 72 Protects Renal Proximal Tubular Cells from Gentamicin-induced Injury. Journal of Korean Medical Science 21:5, pages 904.
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Zhipeng Wang, Liu Li, Qibing Mei, Linna Liu, Yuhua Ran & Rong Zhang. (2006) INCREASED EXPRESSION OF HEAT SHOCK PROTEIN (HSP)72 IN A HUMAN PROXIMAL TUBULAR CELL LINE (HK-2) WITH GENTAMICIN-INDUCED INJURY. The Journal of Toxicological Sciences 31:1, pages 61-70.
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Christoph Aufricht. (2005) Heat-shock protein 70: molecular supertool?. Pediatric Nephrology 20:6, pages 707-713.
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J. Keith Tolson, Stephen M. Roberts, Bernard Jortner, Melinda Pomeroy & David S. Barber. (2005) Heat shock proteins and acquired resistance to uranium nephrotoxicity. Toxicology 206:1, pages 59-73.
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Annick Caron, Richard Raoul Desrosiers & Richard Béliveau. (2004) Kidney ischemia–reperfusion regulates expression and distribution of tubulin subunits, β-actin and rho GTPases in proximal tubules. Archives of Biochemistry and Biophysics 431:1, pages 31-46.
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Hua Zhou, Akihiko Kato, Hideo Yasuda, Mari Odamaki, Hideaki Itoh & Akira Hishida. (2003) The induction of heat shock protein-72 attenuates cisplatin-induced acute renal failure in rats. Pflügers Archiv - European Journal of Physiology 446:1, pages 116-124.
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Yadunanda Kumar & Utpal Tatu. (2003) Stress protein flux during recovery from simulated ischemia: Induced heat shock protein 70 confers cytoprotection by suppressing JNK activation and inhibiting apoptotic cell death. PROTEOMICS 3:4, pages 513-526.
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R. William G. Watson, Thierry Lebret & John M. Fitzpatrick. (2003) Heat shock proteins in the genitourinary system. Current Urology Reports 4:1, pages 70-76.
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Bettina Bidmon, Michaela Endemann, Thomas M?ller, Klaus Arbeiter, Kurt Herkner & Christoph Aufricht. (2002) HSP-25 and HSP-90 stabilize Na,K-ATPase in cytoskeletal fractions of ischemic rat renal cortex. Kidney International 62:5, pages 1620-1627.
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Steven C. BorkanSteven R. Gullans. (2002) Molecular Chaperones in the Kidney. Annual Review of Physiology 64:1, pages 503-527.
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B. de Vries, M. A. R. C. Daemen & W. A. Buurman. 2002. Mechanisms of Organ Dysfunction in Critical Illness. Mechanisms of Organ Dysfunction in Critical Illness 253 264 .
K. K. Meldrum, D. R. Meldrum, S. F. Sezen, J. K. Crone & A. L. Burnett. (2001) Heat shock prevents simulated ischemia-induced apoptosis in renal tubular cells via a PKC-dependent mechanism. American Journal of Physiology-Regulatory, Integrative and Comparative Physiology 281:1, pages R359-R364.
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Bettina Bidmon, Michaela Endemann, Thomas Müller, Klaus Arbeiter, Kurt Herkner & Christoph Aufricht. (2000) Heat shock protein-70 repairs proximal tubule structure after renal ischemia. Kidney International 58:6, pages 2400-2407.
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Michael Pieper, Harald D. Rupprecht, Katja M. Bruch, Emile De Heer & Harald O. Schöcklmann. (2000) Requirement of heat shock protein 90 in mesangial cell mitogenesis. Kidney International 58:6, pages 2377-2389.
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Franz-X. Beck, Wolfgang Neuhofer & Eva Müller. (2000) Molecular chaperones in the kidney: distribution, putative roles, and regulation. American Journal of Physiology-Renal Physiology 279:2, pages F203-F215.
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Yadunanda Kumar & Utpal Tatu. (2000) Induced Hsp70 is in small, cytoplasmic complexes in a cell culture model of renal ischemia: a comparative study with heat shock. Cell Stress & Chaperones 5:4, pages 314.
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Atsushi Komatsuda, Hideki Wakui, Hiroshi Ohtani, Hirokazu Imai, Akira B. Miura & Hideaki Itoh. (2002) Intracellular localization of HSP73 and HSP90 in rat kidneys with acute lysosomal thesaurismosis. Pathology International 49:6, pages 513-518.
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Péter Csermely, Tamás Schnaider, Csaba So″ti, Zoltán Prohászka & Gábor Nardai. (1998) The 90-kDa Molecular Chaperone Family. Pharmacology & Therapeutics 79:2, pages 129-168.
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Guozhong Tao, Atsushi Komatsuda, Akira B. Miura, Hideaki Itoh & Yohtalou Tashima. (1997) Expression of 60-kDa and inducible 70-kDa stress proteins in gentamicin-induced acute renal failure. Clinical and Experimental Nephrology 1:4, pages 254-260.
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Leendert C. Paul, Jagadeesan Muralidharan, Syed A. Muzaffar & Jean-François Valentin. 1997. Late Graft Loss. Late Graft Loss 51 61 .
Atsushi KOMATSUDA, Hideki WAKUI, Hirokazu IMAI, Akira B MIURA, Hideaki ITOH & Yohtalou TASHIMA. (2007) Expression of 90‐kDa heat‐shock protein within cellular crescents in human diseased kidneys. Nephrology 2:2, pages 87-91.
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