PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
June 1, 1996Hepatology134 citationsOpen Access

Thalidomide Inhibits Tumor Necrosis Factor α, Decreases Nitric Oxide Synthesis, and Ameliorates the Hyperdynamic Circulatory Syndrome in Portal–Hypertensive Rats

View Full Paper
JLJuan Carlos López-TalaveraGCGregory CadelinaJOJ Olchowski

Key Result

Thalidomide significantly increased mean arterial pressure and systemic vascular resistance, and decreased portal pressure, TNF plasma levels, and NO production in portal-hypertensive rats.

Structured PICO

Does thalidomide improve hyperdynamic circulation and decrease portal pressure in rats with portal hypertension?

P
Population
Rats with portal hypertension induced by partial ligation of the portal vein, treated for 15 days.
I
Intervention
Thalidomide (50 mg/kg/d) + water orally, daily for 2 days before and 13 days after PVL operation
C
Comparator
Water alone orally, daily for 2 days before and 13 days after PVL operation
O
Outcome
Systemic and portal hemodynamics (mean arterial pressure, systemic vascular resistance, portal pressure) and TNF plasma levels at 13 days post-operationsurrogate

Thalidomide ameliorates the hyperdynamic circulatory syndrome and decreases portal pressure in portal-hypertensive rats by inhibiting TNF and NO synthesis.

Abstract

A hyperdynamic circulatory state frequently is observed in portal hypertension with liver failure or extensive portal-systemic shunting. Tumor necrosis factor alpha (TNF) causes marked hypotension in mammals by inducing nitric oxide synthesis and has been shown to play a role in the development of the hemodynamic changes observed in portal hypertension. Thalidomide selectively inhibits TNF production by enhancing messenger RNA degradation. We investigated the systemic and portal hemodynamic effects of thalidomide in a prehepatic model of portal hypertension and evaluated whether suppressing TNF synthesis decreases NO production. Portal hypertension was induced by partial ligation of the portal vein (PVL). Animals received thalidomide (T) (50 mg/kg/d) + water or water alone (W), orally, daily for 2 days before and 13 days after PVL operation, at which time hemodynamic studies were performed and TNF plasma levels were obtained. Sham-operated animals were studied identically. In an additional group of PVL animals, 24-hour urinary excretion of NO2- and NO3- was measured during treatment. PVL animals receiving T presented with a significantly higher mean arterial pressure and systemic vascular resistance and significantly lower portal pressure, TNF plasma levels, and 24-hour urinary excretion of NO2- and NO3-, in comparison with rats receiving W. A significant correlation (r = -0.61) was observed between TNF plasma levels and mean arterial pressure among PVL animals. Thalidomide did not have any significant effects on sham rats. Thalidomide inhibits TNF synthesis and reduces NO production, blunts the development of the hyperdynamic circulation, and decreases portal pressure in PVL-operated rats.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

López-Talavera et al. (1996) studied Portal hypertension. Thalidomide vs. Water alone was evaluated on Systemic and portal hemodynamics, TNF plasma levels, and NO production. Thalidomide significantly increased mean arterial pressure and systemic vascular resistance, and decreased portal pressure, TNF plasma levels, and NO production in portal-hypertensive rats.

synapsesocial.com/papers/6a93b1732876724c7d56b5fchttps://doi.org/10.1002/hep.510230644
Ask AI
Helpful
Bookmark
Share
View Full Paper