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Query: UMLS:C0020473 (
hyperlipidemia
)
15,891
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
After enteral administration of 200 mg/kg alpha-hexachlorocyclohexane (alpha-HCH) female Wistar rats develop a
hyperlipemia
. 48 h after administration of alpha-
HCH
, serum triglycerides are increased by 300%, whereas both serum cholesterol and serum total phospholipids only increase by about 45%. Serum free fatty acids are not significantly altered. Fractionation of the serum lipoproteins by ultracentrifugation shows that the
hyperlipemia
is due to a fivefold increase in serum very low density lipoproteins. Hepatic triglyceride secretion, calculated after i.v. injection of Triton WR 1339, is increased in animals pretreated wtih alpha-
HCH
. Corresponding to this observation, drugs known to diminish the triglyceride secretion of the liver, such as actinomycin D, cycloheximide; glucagon, orotic acid, CFT 1201, and CFT 1042 reduce the alpha-
HCH
-induced
hyperlipemia
. We concluded from the results that hyperlipoproteinemia after alpha-
HCH
is due to an increased hepatic very low density lipoprotein secretion. At the same time, the blood sugar level was decreased in fasting animals after treatment with alpha-
HCH
. Earlier experiments suggest that this effect is due to a decreased gluconeogenesis in the liver.
...
PMID:Increase of serum very low density lipoproteins in rats after administration of alpha-hexachlorocyclohexane. 6 95
Dietary intake of beta- and gamma-hexachlorocyclohexane (beta- and gamma-
HCH
) by albino rats for two weeks (at 800 ppm level) resulted in impairment of lipid metabolism, viz.
hyperlipemia
and fatty metamorphosis of liver. Liver fat content was increased by both beta- and gamma-
HCH
. Significant increases were observed in triglyceride and phospholipid fractions of blood in these experimental animals. The incorporation of [14C]acetate and palmitate into liver and blood lipids was higher in
HCH
pretreated animals, suggesting a higher rate of fat synthesis in liver and of secretion as well.
...
PMID:Influence of dietary hexachlorocyclohexane isomers on lipid metabolism in albino rats. 247 78
AMPK (AMP-activated protein kinase) has been suggested to be a central player regulating FA (fatty acid) metabolism through its ability to regulate ACC (acetyl-CoA carboxylase) activity. Nevertheless, its involvement in insulin resistance- and
TD2
(Type 2 diabetes)-associated dyslipidaemia remains enigmatic. In the present study, we employed the Psammomys obesus gerbil, a well-established model of insulin resistance and
TD2
, in order to appreciate the contribution of the AMPK/ACC pathway to the abnormal hepatic lipid synthesis and increased lipid accumulation in the liver. Our investigation provided evidence that the development of insulin resistance/diabetic state in P. obesus is accompanied by (i) body weight gain and
hyperlipidaemia
; (ii) elevations of hepatic ACC-Ser79 phosphorylation and ACC protein levels; (iii) a rise in the gene expression of cytosolic ACC1 concomitant with invariable mitochondrial ACC2; (iv) an increase in hepatic AMPKalpha-Thr172 phosphorylation and protein expression without any modification in the calculated ratio of phospho-AMPKalpha to total AMPKalpha; (v) a stimulation in ACC activity despite increased AMPKalpha phosphorylation and protein expression; and (vi) a trend of increase in mRNA levels of key lipogenic enzymes [SCD-1 (stearoyl-CoA desaturase-1), mGPAT (mitochondrial isoform of glycerol-3-phosphate acyltransferase) and FAS (FA synthase)] and transcription factors [SREBP-1 (sterol-regulatory-element-binding protein-1) and ChREBP (carbohydrate responsive element-binding protein)]. Altogether, our findings suggest that up-regulation of the AMPK pathway seems to be a natural response in order to reduce lipid metabolism abnormalities, thus supporting the role of AMPK as a promising target for the treatment of
TD2
-associated dyslipidaemia.
...
PMID:Increased hepatic lipogenesis in insulin resistance and Type 2 diabetes is associated with AMPK signalling pathway up-regulation in Psammomys obesus. 1884 11