Literature DB >> 24408869

Delayed administration of a single dose of lithium promotes recovery from AKI.

Hui Bao1, Yan Ge, Zhen Wang, Shougang Zhuang, Lance Dworkin, Ai Peng, Rujun Gong.   

Abstract

Evidence suggests that glycogen synthase kinase 3β (GSK3β) contributes to AKI; however, its role in post-AKI kidney repair remains uncertain. Here, delayed treatment with a single dose of lithium, a selective inhibitor of GSK3β and a US Food and Drug Administration-approved mood stabilizer, accelerated recovery of renal function, promoted repopulation of renal tubular epithelia, and improved kidney repair in murine models of cisplatin- and ischemia/reperfusion-induced AKI. These effects associated with reduced GSK3β activity and elevated expression of proproliferative molecules, including cyclin D1, c-Myc, and hypoxia-inducible factor 1α (HIF-1α), in renal tubular epithelia. In cultured renal tubular cells, cisplatin exposure led to transient repression of GSK3β activity followed by a prolonged upregulation of activity. Rescue treatment with lithium inhibited GSK3β activity, enhanced nuclear expression of cyclin D1, c-Myc, and HIF-1α, and boosted cellular proliferation. Similarly, ectopic expression of a kinase-dead mutant of GSK3β enhanced the expression of cyclin D1, c-Myc, and HIF-1α and amplified cellular proliferation after cisplatin injury, whereas forced expression of a constitutively active mutant of GSK3β abrogated the effects of lithium. Mechanistically, GSK3β colocalized and physically interacted with cyclin D1, c-Myc, and HIF-1α in tubular cells. In silico analysis revealed that cyclin D1, c-Myc, and HIF-1α harbor putative GSK3β consensus phosphorylation motifs, implying GSK3β-directed phosphorylation and subsequent degradation of these molecules. Notably, cotreatment with lithium enhanced the proapoptotic effects of cisplatin in cultured colon cancer cells. Collectively, our findings suggest that pharmacologic targeting of GSK3β by lithium may be a novel therapeutic strategy to improve renal salvage after AKI.

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Year:  2014        PMID: 24408869      PMCID: PMC3935583          DOI: 10.1681/ASN.2013040350

Source DB:  PubMed          Journal:  J Am Soc Nephrol        ISSN: 1046-6673            Impact factor:   10.121


  52 in total

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Journal:  J Clin Invest       Date:  2001-11       Impact factor: 14.808

Review 5.  Microvascular endothelial injury and dysfunction during ischemic acute renal failure.

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9.  Regulation of hypoxia-inducible factor-1alpha protein level during hypoxic conditions by the phosphatidylinositol 3-kinase/Akt/glycogen synthase kinase 3beta pathway in HepG2 cells.

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Review 10.  Cisplatin nephrotoxicity.

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  39 in total

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2.  The β isoform of GSK3 mediates podocyte autonomous injury in proteinuric glomerulopathy.

Authors:  Changbin Li; Yan Ge; Lance Dworkin; Ai Peng; Rujun Gong
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Review 3.  Remote ischemic preconditioning for kidney protection: GSK3β-centric insights into the mechanism of action.

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Review 4.  Molecular mechanisms in lithium-associated renal disease: a systematic review.

Authors:  Soham Rej; Shamira Pira; Victoria Marshe; André Do; Dominique Elie; Karl J Looper; Nathan Herrmann; Daniel J Müller
Journal:  Int Urol Nephrol       Date:  2016-06-29       Impact factor: 2.370

Review 5.  Glycogen Synthase Kinase-3 Signaling in Acute Kidney Injury.

Authors:  Abeda Jamadar; Reena Rao
Journal:  Nephron       Date:  2020-07-29       Impact factor: 2.847

6.  Basic research: the long and the short of it-the temporal effects of renal lithium exposure are beginning to be unravelled.

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7.  Lithium in kidney diseases: big roles for the smallest metal.

Authors:  Man J Livingston; Zheng Dong
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Review 8.  Lithium in the Kidney: Friend and Foe?

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9.  Competing Actions of Type 1 Angiotensin II Receptors Expressed on T Lymphocytes and Kidney Epithelium during Cisplatin-Induced AKI.

Authors:  Jiandong Zhang; Nathan P Rudemiller; Mehul B Patel; QingQing Wei; Norah S Karlovich; Alexander D Jeffs; Min Wu; Matthew A Sparks; Jamie R Privratsky; Marcela Herrera; Susan B Gurley; Sergei A Nedospasov; Steven D Crowley
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Review 10.  What we need to know about the effect of lithium on the kidney.

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Journal:  Am J Physiol Renal Physiol       Date:  2016-04-27
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