Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “NICOTINIC ACID”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 703 records · Page 39Linked to original sources

[Statistical analysis of biological breakdown of nicotinic acid 7-14C in rat liver of various weight].

Statistical methods are considered for eliminating the errors caused by the individual fluctuations of the animals organs weight, different ratio of organs weight to the weight statistical processing the data on the dynamics of labelled nicotinic acid evacuation and determination of the acid half-life in the rat liver. The mean liver weight was estimated by means of Huxley's allometry formula. Dynamics of NA was approximated by using the formula kappa=ate-betat in the computer "MHP-2" and the least squares method.

Analysis of Variance↗

Effect of Huntington's and Alzheimer's diseases on the transport of nicotinic acid or nicotinamide across the human blood-brain barrier.

The cerebral uptake of 11C-nicotinic acid (11C-NAC) and 11C-nicotinamide (11C-NAM) was quantified by the use of PET. Based on the amount of activity injected, the PET images showed a low cerebral uptake of 11C-NAC, while 11C-NAM was clearly visualized in the cortical areas. This discrepancy was found to be the result of the binding of 11C-NAC to the red blood cells by a factor of 5 to 20 above that for 11C-NAM. 11C-NAM was better extracted by the cerebrum than 11C-NAC, as shown by the mean values of the cortical tissue/plasma ratio of 1.9 for 11C-NAC and 5 for 11C-NAM at 30 min. post-injection. An analysis of Patlak-Gjedde plot curves revealed a metabolic compartment for 11C-NAC and 11C-NAM with similar values of about 0.02 l/min for the accumulation constant K3. This was indicative of a slower transport rate for 11C-NAC. A significant finding of the study was the increasing ratio of activity concentrations in red blood cells versus the concentrations in plasma (over time). There were no significant differences between the data from normal volunteers and patients with Huntington's or Alzheimer's disease.

Alzheimer Disease↗

The effect of nicotinic acid and alcohol co-administration in Wistar rats.

The effects of co-administration of nicotinic acid (NA) and alcohol (Alc) on liver function in male Wistar rats were evaluated. The rats were randomized into five groups: (i) Olive oil (Oil), (ii) Alc+Oil, (iii) NA+Oil, (iv) NA+Alc+Oil, and (v) Controls (fed only normal rat chow). Alanine aminotransferase (ALT), aspartate aminotransferase (AST), alkaline phosphatase (AP), total cholesterol and triglycerides (TG) were measured. Liver histopathology was also assessed. The Alc+Oil group had higher TG levels compared with the NA+Alc+Oil group and all other groups, as well. NA+Oil group had higher levels of AP compared with Alc+Oil and Oil groups. The NA+Oil group had higher ALT levels compared with the Oil group. The Oil group had lower ALT levels compared with the control group. The Alc+Oil group had higher AST levels compared with the NA+Alc+Oil group, as well as with all other groups. Liver histopathology was within the normal range. A moderate amount of Alc daily together with NA is safe in rats. The NA and Alc co-administration reduces the TG and AST levels in rats, compared with the administration of Alc alone.

Animals↗

[Effect of nicotinic acid on chicken liver protein kinase activity and cAMP content].

The biosynthesis of fatty acids in the chicken liver was stimulated by feeding up chickens with high-carbon products. After fasting the cAMP content and protein kinase activity in chicken fall considerably as compared to the control. After administration of nicotinic acid to chicken under experiment the content of cAMP and the protein kinase activity in the liver tissue rise to the highest extent, returning to initial values by the end of the day. The maximal increase in the cAMP content and protein kinase activity coincides in time with the maximum of the acetyl-CoA-carboxylase activity decrease. An assumption is advanced that biosynthesis of fatty acids in the liver tissue of chickens is regulated by a change in the degree of acetyl-CoA-carboxylase phosphorylation with the participation of adenylate cyclase system.

Acetyl-CoA Carboxylase↗

Antiatherothrombotic effects of nicotinic acid.

Cardiovascular event reduction in hypercholesterolemic subjects appropriately emphasizes the prominent role of statin therapy; however, niacin (nicotinic acid) is also an effective lipid-altering agent that prevents atherosclerosis and reduces cardiovascular events. Niacin has multifarious lipoprotein and anti-atherothrombosis effects that improve endothelial function, reduce inflammation, increase plaque stability, and diminish thrombosis. Niacin reduces the atherogenicity of low-density lipoprotein (LDL) by changing the distribution of small LDL to large LDL subclass, and the susceptibility of LDL to oxidative modification. It is the most effective agent for increasing high-density lipoprotein cholesterol. Moreover, it favorably alters high-density lipoprotein composition, increasing apolipoprotein AI relative to apolipoprotein AII. Niacin reduces blood viscosity through a variety of mechanisms, thus improving blood flow and perfusion through stenotic segments of the vasculature. Finally, niacin has cardioprotective effects that may limit ischemia-reperfusion injury. By preserving glycolysis during periods of ischemia and improving subendocardial blood flow during reperfusion, niacin can improve the functional recovery of the myocardium.

Cholesterol, HDL↗

[Metabolic effects of succinic and nicotinic acids in emotional pain stress].

In experiments on rats it was shown that administration of succinic and nicotinic acids in doses of 30 and 4 mg/kg for 5 days elevated pyruvic acid level and changed catecholamine balance in tissues of the aorta and heart. The administration of the drugs to rats with current-induced stress partially eliminated unfavourable shifts in carbohydrate metabolism and catecholamine balance in the aortic and cardiac tissues. Succinic acid had more pronounced metabolic activity.

Adrenal Glands↗