» Articles » PMID: 20145519

Inhibition of Inducible Nitric Oxide Synthase Prevents Mitochondrial Damage and Improves Survival of Steatotic Partial Liver Grafts

Overview
Journal Transplantation
Specialty General Surgery
Date 2010 Feb 11
PMID 20145519
Citations 10
Authors
Affiliations
Soon will be listed here.
Abstract

Background: Steatotic liver grafts are excluded for partial liver transplantation because of increased risk of primary nonfunction. Mechanisms underlying the failure of fatty partial liver grafts (FPG) remain unknown. This study investigated whether inducible nitric oxide synthase (iNOS) plays a role in failure of FPG.

Methods: Fatty livers were induced by feeding rats a high-fat high-fructose diet for 2 weeks. Hepatic triglyceride was approximately 9-fold higher in rats fed the high-fat high-fructose diet than those fed a low-fat low-fructose diet. Lean and fatty liver explants were reduced in size ex vivo to approximately one third, stored in the University of Wisconsin cold storage solution for 2 hr, and implanted.

Results: Posttransplantational hepatic iNOS expression and reactive nitrogen species (RNS) formation (nitrite and nitrate levels and 3-nitrotyrosine adducts) increased more profoundly in FPG than in lean partial grafts (LPG). Serum alanine aminotransferase and bilirubin were 2- and 5.5-fold higher after transplantation of FPG than LPG. 5-Bromo-2'-deoxyuridine incorporation was 25% in LPG but only 5% in FPG, and graft weight increased by 64% in LPG while remaining unchanged in FPG. All rats that received FPG died, whereas all those receiving LPG survived. N-(1-naphtyl)ethylendiamine dihydrochloride (5 microM), a specific iNOS inhibitor, largely blunted the production of RNS, prevented the increase of alanine aminotransferase and bilirubin, restored liver regeneration, and improved survival of FPG. Mitochondrial cytochrome c oxidase-IV, ATP synthase-beta, and NADH dehydrogenase-3 decreased markedly in FPG, and these effects were blocked by N-(1-naphtyl)ethylendiamine dihydrochloride.

Conclusion: Thus, hepatic steatosis causes failure of partial liver grafts, most likely by increasing RNS that leads to mitochondrial damage and dysfunction.

Citing Articles

Advanced Research on the Antioxidant Activity and Mechanism of Polyphenols from Species-A Review.

Ji M, Gong X, Li X, Wang C, Li M Molecules. 2020; 25(4).

PMID: 32092874 PMC: 7071004. DOI: 10.3390/molecules25040917.


Glutathione depleting drugs, antioxidants and intestinal calcium absorption.

Moine L, Rivoira M, Diaz de Barboza G, Perez A, Tolosa de Talamoni N World J Gastroenterol. 2018; 24(44):4979-4988.

PMID: 30510373 PMC: 6262252. DOI: 10.3748/wjg.v24.i44.4979.


8-pCPT-cGMP prevents mitochondrial depolarization and improves the outcome of steatotic partial liver transplantation.

Liu Q, Rehman H, Krishnasamy Y, Lemasters J, Zhong Z Int J Physiol Pathophysiol Pharmacol. 2017; 9(3):69-83.

PMID: 28694919 PMC: 5498880.


Pre-conditions for eliminating mitochondrial dysfunction and maintaining liver function after hepatic ischaemia reperfusion.

Hu C, Li L J Cell Mol Med. 2017; 21(9):1719-1731.

PMID: 28301072 PMC: 5571537. DOI: 10.1111/jcmm.13129.


Improvement of liver injury and survival by JNK2 and iNOS deficiency in liver transplants from cardiac death mice.

Liu Q, Rehman H, Krishnasamy Y, Schnellmann R, Lemasters J, Zhong Z J Hepatol. 2015; 63(1):68-74.

PMID: 25703084 PMC: 4475508. DOI: 10.1016/j.jhep.2015.02.017.


References
1.
Morioka D, Kubota T, Sekido H, Matsuo K, Saito S, Ichikawa Y . Prostaglandin E1 improved the function of transplanted fatty liver in a rat reduced-size-liver transplantation model under conditions of permissible cold preservation. Liver Transpl. 2003; 9(1):79-86. DOI: 10.1053/jlts.2003.36845. View

2.
Holohan C, Szegezdi E, Ritter T, OBrien T, Samali A . Cytokine-induced beta-cell apoptosis is NO-dependent, mitochondria-mediated and inhibited by BCL-XL. J Cell Mol Med. 2007; 12(2):591-606. PMC: 3822546. DOI: 10.1111/j.1582-4934.2007.00191.x. View

3.
Ren X, Li Y, Qi J, Niu T . Peroxynitrite-induced protein nitration contributes to liver mitochondrial damage in diabetic rats. J Diabetes Complications. 2008; 22(5):357-64. DOI: 10.1016/j.jdiacomp.2007.06.013. View

4.
Trotter J . Thin chance for fat people (to become living donors). Liver Transpl. 2001; 7(5):415-7. DOI: 10.1053/jlts.2001.24933. View

5.
Carnovale C, Scapini C, Alvarez M, Favre C, Monti J, Carrillo M . Nitric oxide release and enhancement of lipid peroxidation in regenerating rat liver. J Hepatol. 2000; 32(5):798-804. DOI: 10.1016/s0168-8278(00)80249-4. View