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1
Acetazolamide Attenuates Lithium-Induced Nephrogenic Diabetes Insipidus.
J Am Soc Nephrol. 2016 Jul;27(7):2082-91. doi: 10.1681/ASN.2015070796. Epub 2015 Nov 16.
2
Hydrochlorothiazide attenuates lithium-induced nephrogenic diabetes insipidus independently of the sodium-chloride cotransporter.
Am J Physiol Renal Physiol. 2014 Mar 1;306(5):F525-33. doi: 10.1152/ajprenal.00617.2013. Epub 2013 Dec 18.
3
Lithium-induced NDI: acetazolamide reduces polyuria but does not improve urine concentrating ability.
Am J Physiol Renal Physiol. 2017 Sep 1;313(3):F669-F676. doi: 10.1152/ajprenal.00147.2017. Epub 2017 Jun 14.
4
Lithium induces aerobic glycolysis and glutaminolysis in collecting duct principal cells.
Am J Physiol Renal Physiol. 2018 Feb 1;314(2):F230-F239. doi: 10.1152/ajprenal.00297.2017. Epub 2017 Oct 25.
5
Lithium-induced nephrogenic diabetes insipidus: renal effects of amiloride.
Clin J Am Soc Nephrol. 2008 Sep;3(5):1324-31. doi: 10.2215/CJN.01640408. Epub 2008 Jul 2.
6
Development of lithium-induced nephrogenic diabetes insipidus is dissociated from adenylyl cyclase activity.
J Am Soc Nephrol. 2006 Apr;17(4):1063-72. doi: 10.1681/ASN.2005080884. Epub 2006 Feb 22.
10
Use of acetazolamide in lithium-induced nephrogenic diabetes insipidus: a case report.
Endocrinol Diabetes Metab Case Rep. 2018 Feb 20;2018. doi: 10.1530/EDM-17-0154. eCollection 2018.

引用本文的文献

1
Acetazolamide for Bipolar Disorders: A Scoping Review.
Brain Sci. 2023 Jan 13;13(1):140. doi: 10.3390/brainsci13010140.
2
Folic acid-induced animal model of kidney disease.
Animal Model Exp Med. 2021 Nov 24;4(4):329-342. doi: 10.1002/ame2.12194. eCollection 2021 Dec.
3
An AMPK activator as a therapeutic option for congenital nephrogenic diabetes insipidus.
JCI Insight. 2021 Apr 22;6(8):146419. doi: 10.1172/jci.insight.146419.
4
-Substituted benzenesulfonamide: a potent scaffold for the development of metallo-β-lactamase ImiS inhibitors.
RSC Med Chem. 2020 Jan 10;11(2):259-267. doi: 10.1039/c9md00455f. eCollection 2020 Feb 1.
5
Triamterene in lithium-induced nephrogenic diabetes insipidus: a case report.
CEN Case Rep. 2021 Feb;10(1):64-68. doi: 10.1007/s13730-020-00517-2. Epub 2020 Aug 9.
6
Potent Inhibition of Biphasic Tubular Reabsorption of Lithium by Acetazolamide and Foscarnet in Rats.
Physiol Res. 2020 Aug 31;69(4):645-651. doi: 10.33549/physiolres.934285. Epub 2020 Jun 25.
7
Nrf2 activation protects against lithium-induced nephrogenic diabetes insipidus.
JCI Insight. 2020 Jan 16;5(1):128578. doi: 10.1172/jci.insight.128578.
8
Identification of as a First Susceptibility Gene for Lithium-Induced Nephrogenic Diabetes Insipidus in Mice.
J Am Soc Nephrol. 2019 Dec;30(12):2322-2336. doi: 10.1681/ASN.2018050549. Epub 2019 Sep 26.
10
[Lithium chloride arrests HK-2 cell cycle in G2 phase through AKT/GSK-3β signal pathway].
Nan Fang Yi Ke Da Xue Xue Bao. 2018 May 20;38(5):541-546. doi: 10.3969/j.issn.1673-4254.2018.05.06.

本文引用的文献

1
Collecting duct intercalated cell function and regulation.
Clin J Am Soc Nephrol. 2015 Feb 6;10(2):305-24. doi: 10.2215/CJN.08880914. Epub 2015 Jan 28.
2
Dysregulation of Renal Cyclooxygenase-2 in Rats with Lithium-induced Nephrogenic Diabetes Insipidus.
Electrolyte Blood Press. 2007 Dec;5(2):68-74. doi: 10.5049/EBP.2007.5.2.68. Epub 2007 Dec 31.
3
Lithium causes G2 arrest of renal principal cells.
J Am Soc Nephrol. 2014 Mar;25(3):501-10. doi: 10.1681/ASN.2013090988. Epub 2014 Jan 9.
4
Hydrochlorothiazide attenuates lithium-induced nephrogenic diabetes insipidus independently of the sodium-chloride cotransporter.
Am J Physiol Renal Physiol. 2014 Mar 1;306(5):F525-33. doi: 10.1152/ajprenal.00617.2013. Epub 2013 Dec 18.
5
Renal β-intercalated cells maintain body fluid and electrolyte balance.
J Clin Invest. 2013 Oct;123(10):4219-31. doi: 10.1172/JCI63492. Epub 2013 Sep 24.
6
Evaluation of cellular plasticity in the collecting duct during recovery from lithium-induced nephrogenic diabetes insipidus.
Am J Physiol Renal Physiol. 2013 Sep 15;305(6):F919-29. doi: 10.1152/ajprenal.00152.2012. Epub 2013 Jul 3.
7
Overexpression of pendrin in intercalated cells produces chloride-sensitive hypertension.
J Am Soc Nephrol. 2013 Jun;24(7):1104-13. doi: 10.1681/ASN.2012080787. Epub 2013 Jun 13.
8
Is there a role for PGE2 in urinary concentration?
J Am Soc Nephrol. 2013 Feb;24(2):169-78. doi: 10.1681/ASN.2012020217. Epub 2012 Nov 15.
9
The effects of lithium on renal function in older adults--a systematic review.
J Geriatr Psychiatry Neurol. 2012 Mar;25(1):51-61. doi: 10.1177/0891988712436690.
10
Metabolic complications associated with use of diuretics.
Semin Nephrol. 2011 Nov;31(6):542-52. doi: 10.1016/j.semnephrol.2011.09.009.

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