Plasma delipidation process induces rapid regression of atherosclerosis and mobilisation of adipose tissue


Autoria(s): Cham, B. E.; Kostner, K. M.; Shafey, T. M.; Smith, J. L.; Colquhoun, D. M.
Contribuinte(s)

R. Weinstein

Data(s)

01/01/2005

Resumo

Cholesterol is a major component of atherosclerotic plaques. Cholesterol accumulation within the arterial intima and atherosclerotic plaques is determined by the difference of cellular cholesterol synthesis and/or influx from apo B-containing lipoproteins and cholesterol efflux. In humans, apo A-I Milano infusion has led to rapid regression of atherosclerosis in coronary arteries. We hypothesised that a multifunctional plasma delipidation process (PDP) would lead to rapid regression of experimental atherosclerosis and probably impact on adipose tissue lipids. In hyperlipidemic animals, the plasma concentrations of cholesterol, triglyceride and phospholipid were, respectively, 6-, 157-, and 18-fold higher than control animals, which consequently resulted in atherosclerosis. PDP consisted of delipidation of plasma with a mixture of butanol-diisopropyl ether (DIPE). PDP removed considerably more lipid from the hyperlipidemic animals than in normolipidemic animals. PDP treatment of hyperlipidemic animals markedly reduced intensity of lipid staining materials in the arterial wall and led to dramatic reduction of lipid in the adipose tissue. Five PDP treatments increased apolipoprotein A1 concentrations in all animals. Biochemical and hematological parameters were unaffected during PDP treatment. These results show that five PDP treatments led to marked reduction in avian atherosclerosis and removal of lipid from adipose tissue. PDP is a highly effective method for rapid regression of atherosclerosis.

Identificador

http://espace.library.uq.edu.au/view/UQ:77914

Idioma(s)

eng

Publicador

John Wiley & Sons Inc

Palavras-Chave #Hematology #Butanol #Cholesterol #Diisopropyl Ether #Hyperlipidemic #Reverse Cholesterol Transport #Roosters #Apolipoprotein-a-i #High-density-lipoprotein #Cholesterol-fed Rabbits #Quantitative-determination #Lipid Apheresis #Apoa-i #Sterol Synthesis #Transfer Protein #Hdl #Ester #C1 #321003 Cardiology (incl. Cardiovascular Diseases) #730106 Cardiovascular system and diseases
Tipo

Journal Article