Search PubMed⌕ Search

PubMed · 9867102

Prognostic value of progressive decrease in serum cholesterol in predicting survival in Child-Pugh C viral cirrhosis.

Abstract

BACKGROUND: The identification of cirrhotic patients with low life expectancy is an open clinical problem. Hypocholesterolemia is frequently found in severe chronic hepatic insufficiency because the liver is the most active site of cholesterol metabolism, but poor information is available on its precise prognostic value. We evaluated the prognostic role of hypocholesterolemia in patients with advanced liver cirrhosis. METHODS: Serial serum cholesterol concentrations of 34 patients with virus-induced cirrhosis, from the first appearance of Child-Pugh class C to death, were considered. To compare survival functions, we established three base-line cholesterol cut-off points (150, 125, and 100 mg/dl) and stratified patients into groups A and B, with base-line cholesterol levels lower and higher than each cut-off value, respectively. RESULTS: Cholesterolemia decreased progressively in all patients. At the 100 mg/dl cut-off point all group-A patients died within 17 months, whereas 75% of group-B patients were alive at 24 months (P < 0.0001). Moreover, cholesterolemia was significantly correlated with cholinesterase, indirect bilirubin, and total bilirubin at entry time and immediately before death. No correlation was observed between cholesterol and these variables when stratified for the Child-Pugh score. CONCLUSIONS: Base-line serum cholesterol levels lower than 100 mg/dl identify a subgroup of Child-C cirrhotic patients with high mortality risk within a 2-year follow-up. The prognostic importance of cholesterolemia may also be deduced by the significant correlation with other well-established indicators of survival.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

A D'Arienzo, F Manguso, G Scaglione, G Vicinanza, R Bennato, G Mazzacca. 1998. Prognostic value of progressive decrease in serum cholesterol in predicting survival in Child-Pugh C viral cirrhosis.. https://doi.org/10.1080/00365529850172593

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Novel high relaxivity colloidal particles based on the specific phase organisation of amphiphilic gadolinium chelates with cholesterol.

To obtain high T(1)-relaxivity colloidal particles with a simultaneously high loading of amphiphilic Gd-chelates, a novel drug dosage form based on the phase organisation of amphiphilic gadolinium chelates with cholesterol was developed. In order to find a formulation, which exhibit both high T(1)-relaxivity and gives small particles a D-optimal mixture design (experimental design) was applied. Gadolinium 1,4,7-tris(carboxymethyl)-10-(2-hydroxyhexadecyl)-1,4,7,10-tetraazacyclododecane (Gd-HHD-DO3A) and cholesterol at approximately equimolar ratio proved to form thermodynamic stable disc-like colloidal particles as seen by cryo-electron micrographs. T(1)-relaxivity of these particles was typically around 20mM(-1)s(-1) and the size below 100 nm (photon correlation spectroscopy (PCS)). The particles do most probably not interact with blood components as no change in T(1)-relaxivity was observed when the particles were mixed with whole blood. The particles were stable at room temperature for at least 6 months.

Cholesterol↗

Cholesterol dynamics in membranes of raft composition: a molecular point of view from 2H and 31P solid-state NMR.

Lipidic membrane systems that have been reported to be composed of sphingomyelin (SM)-cholesterol (Chol) microdomains or "rafts" by Dietrich et al. [palmitoyloleoyl-phosphatidylcholine(POPC)/SM/Chol, 1/1/1; Dietrich, C., Bagatolli, L. A., Volovyk, Z. N., Thompson, N. L., Levi, M., Jacobson, K., and Gratton, E. (2001) Biophys. J. 80, 1417-1428] and by Schroeder et al. [SCRL: Liver-PC/Liver-phosphatidylethanolamine/SM/Cerebrosides/Chol, 1/1/1/1/2; Schroeder, R., London, E., and Brown, D. (1994) Proc. Natl. Acad. Sci. U.S.A. 91, 12130-12134] were investigated under the form of fully hydrated liposomes by the noninvasive solid-state (31)P and (2)H NMR method. Liposomes of binary lipid composition POPC/Chol and SM/Chol were also studied as boundary/control systems. All systems are found to be in the liquid-ordered phase (Lo) at physiological temperatures. Use of deuterium-labeled cholesterol afforded finding both the position of the sterol motional axis and its molecular order parameter. The axis of anisotropic rotation of cholesterol is such that the molecule is, on average, quasiperpendicular to the membrane plane, in all of the four systems investigated. Cholesterol order parameters greater than 0.8 are observed, indicating that the sterol is in a very motionally restricted environment in the temperature range 0-60 degrees C. The binary mixtures present "boundary" situations with the lowest values for POPC/Chol and the highest for SM/Chol. The SCRL raft mixture has the same ordering as the SM/Chol, i.e., the highest order parameter values over the temperature range. It demonstrates that in the SCRL mixture cholesterol dynamics is as in the binary system SM/Chol, therefore, suggesting that it might be depleted from the rest of the membrane to form complexes as if it were alone with SM. On the other hand, the mixture POPC/SM/Chol exhibits an intermediate ordering situation between those of SM/Chol and POPC/Chol. This strongly suggests that cholesterol could be in fast exchange, at the NMR time scale (milli- to microseconds), between two or more membrane regions of different dynamics and questions the statement of "rigid domains" made of SM and cholesterol in the model "raft" system POPC/SM/Chol.

Cholesterol↗

Cholesterol modifies the gating of Kv1.3 in human T lymphocytes.

The Kv1.3 potassium channel that belongs to the Shaker family of voltage-gated K(+) channels plays a crucial role in the mitogenic response of T cells. Because it spans the cell membrane its function can be influenced by lipid-protein interactions. In order to study the effect of lipid-protein interactions on the functioning of Kv1.3 we manipulated the membrane cholesterol content in T cells mimicking various physiological conditions by means of the oligosaccharide methyl-beta-cyclodextrin (MbetaCD) and its cholesterol-saturated complex (MbetaCD/C). Fluorescence polarization anisotropy and peak current density were used to monitor the efficiency of cholesterol removal (MbetaCD) and loading (MbetaCD/C). Using whole-cell patch-clamp technique we determined the kinetic and steady-state parameters of activation and inactivation of the Kv1.3 currents under different treatment conditions. Upon elevation of cholesterol content by 1 or 1.5 mg/ml MbetaCD/C the rates of both activation and inactivation were slowed. Moreover, the increased cholesterol level in the membrane resulted in a biphasic activation curve. Cholesterol depletion with MbetaCD (0.95 and 1.425 mg/ml) caused no significant changes in the gating characteristics of Kv1.3. The equilibrium between the open and the closed states of the channels was affected by increased cholesterol content, but at the same time steady-state inactivation was unchanged. We argue that manipulation of membrane cholesterol changed both the kinetic properties of Kv1.3 and steady-state parameters of activation by modifying lipid-protein interactions.

Cholesterol↗