Author/Authors :
Rosario D. C. Hirata، نويسنده , , Mario H. Hirata، نويسنده , , Carlos H. Mesquita، نويسنده , , Thais B. Cesar، نويسنده , , Raul C. Maranh?o، نويسنده ,
DocumentNumber :
1601369
Title Of Article :
Effects of apolipoprotein B-100 on the metabolism of a lipid microemulsion model in rats
شماره ركورد :
11826
Latin Abstract :
In previous studies, it was shown that lipid microemulsions resembling LDL (LDE) but not containing protein, acquire apolipoprotein E when injected into the bloodstream and bind to LDL receptors (LDLR) using this protein as ligand. Aiming to evaluate the effects of apolipoprotein (apo) B-100 on the catabolism of these microemulsions, LDE with incorporated apo B-100 (LDE-apoB) and native LDL, all labeled with radioactive lipids were studied after intraarterial injection into Wistar rats. Plasma decay curves of the labels were determined in samples collected over 10 h and tissue uptake was assayed from organs excised from the animals sacrificed 24 h after injection. LDE-apo B had a fractional clearance rate (FCR) similar to native LDL (0.40 and 0.33, respectively) but both had FCR pronouncedly smaller than LDE (0.56, P<0.01). Liver was the main uptake site for LDE, LDE-apoB, and native LDL, but LDE-apoB and native LDL had lower hepatic uptake rates than LDE. Pre-treatment of the rats with 17α-ethinylestradiol, known to upregulate LDLR, accelerated the removal from plasma of both LDE and LDE-apoB, but the effect was greater upon LDE than LDE-apoB. These differences in metabolic behavior documented in vivo can be interpreted by the lower affinity of LDLR for apo B-100 than for apo E, demonstrated in in vitro studies. Therefore, our study shows in vivo that, in comparison with apo E, apo B is a less efficient ligand to remove lipid particles such as microemulsions or lipoproteins from the intravascular compartment.
From Page :
53
NaturalLanguageKeyword :
Plasma kinetics , estradiol , Microemulsion , Apolipoprotein B-100 , low density lipoprotein , metabolism
JournalTitle :
Studia Iranica
To Page :
62
To Page :
62
Link To Document :
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