» Articles » PMID: 8760117

Effect of Endotoxin on Bile Acid Transport in Rat Liver: a Potential Model for Sepsis-associated Cholestasis

Overview
Journal Am J Physiol
Specialty Physiology
Date 1996 Jul 1
PMID 8760117
Citations 25
Authors
Affiliations
Soon will be listed here.
Abstract

Intrahepatic cholestasis in the setting of extrahepatic bacterial infection has been attributed to the effects of endotoxin and cytokines such as tumor necrosis factor-alpha (TNF-alpha) on bile acid transport. To define the mechanism of sepsis-associated cholestasis, taurocholate transport was examined in basolateral (bLPM) and canalicular (cLPM) rat liver plasma membrane vesicles derived from control and endotoxin [lipopolysaccharide (LPS)]-treated animals and in plasma membrane vesicles prepared after TNF-alpha treatment. Na(+)-dependent [3H]taurocholate uptake and both membrane-potential-dependent and ATP-dependent [3H]taurocholate transport were reduced in bLPM and cLPM vesicles, respectively, after LPS treatment. In membrane vesicles from TNF-alpha-treated animals, Na(+)-dependent [3H]taurocholate uptake was also reduced. Northern blot hybridization, using cDNA probes for the putative sinusoidal bile acid transporter (Ntcp) and canalicular ecto-adenosinetriphosphatase, demonstrated decreased mRNA levels after LPS and TNF-alpha treatment. Immunoblot analysis of membrane extracts from LPS-treated animals revealed decreased levels of these putative bile acid transporters. Impaired bile acid transport at the sinusoidal and canalicular membrane domains by these and other mediators of the inflammatory response may account for sepsis-associated cholestasis.

Citing Articles

Pathophysiology of sepsis-induced cholestasis: A review.

Ghenu M, Dragos D, Manea M, Ionescu D, Negreanu L JGH Open. 2022; 6(6):378-387.

PMID: 35774351 PMC: 9218521. DOI: 10.1002/jgh3.12771.


Nutritional support in sepsis: when less may be more.

van Niekerk G, Meaker C, Engelbrecht A Crit Care. 2020; 24(1):53.

PMID: 32059698 PMC: 7023788. DOI: 10.1186/s13054-020-2771-4.


Beneficial and Deleterious Effects of Female Sex Hormones, Oral Contraceptives, and Phytoestrogens by Immunomodulation on the Liver.

Soria-Jasso L, Carino-Cortes R, Munoz-Perez V, Perez-Hernandez E, Perez-Hernandez N, Fernandez-Martinez E Int J Mol Sci. 2019; 20(19).

PMID: 31546715 PMC: 6801544. DOI: 10.3390/ijms20194694.


FXR agonism protects against liver injury in a rat model of intestinal failure-associated liver disease.

Koelfat K, Visschers R, Hodin C, Rudi de Waart D, van Gemert W, Cleutjens J J Clin Transl Res. 2019; 3(3):318-327.

PMID: 30895273 PMC: 6426251.


ABC gene-ranking for prediction of drug-induced cholestasis in rats.

Cherkas Y, McMillian M, Amaratunga D, Raghavan N, Sasaki J Toxicol Rep. 2017; 3:252-261.

PMID: 28959545 PMC: 5615833. DOI: 10.1016/j.toxrep.2016.01.009.