Nitric Oxide Releasing Morpholine Derivatives as Hypolipidemic and Antioxidant Agents
摘要:
The synthesis and evaluation of activity of some nitric acid esters of substituted morpholines are presented. All compounds inhibit lipid peroxidation and reduce cholesterol (20-63%) and triglyceride (37-85%) plasma levels. The more potent NO donors 14 and 17 specifically reduce low-density lipoprotein (LDL). These data indicate that proper structural modifications to the hypolipidemic and antioxidant morpholines enabling NO production; besides preserving or enhancing the above activities, offer a remarkable reduction of LDL, considered advantageous for antiatheromatic agents.
Nitric Oxide Releasing Morpholine Derivatives as Hypolipidemic and Antioxidant Agents
作者:Michael C. Chrysselis、Eleni A. Rekka、Ioanna C. Siskou、Panos N. Kourounakis
DOI:10.1021/jm011062i
日期:2002.11.1
The synthesis and evaluation of activity of some nitric acid esters of substituted morpholines are presented. All compounds inhibit lipid peroxidation and reduce cholesterol (20-63%) and triglyceride (37-85%) plasma levels. The more potent NO donors 14 and 17 specifically reduce low-density lipoprotein (LDL). These data indicate that proper structural modifications to the hypolipidemic and antioxidant morpholines enabling NO production; besides preserving or enhancing the above activities, offer a remarkable reduction of LDL, considered advantageous for antiatheromatic agents.
Hypocholesterolemic and Hypolipidemic Activity of Some Novel Morpholine Derivatives with Antioxidant Activity
作者:Michael C. Chrysselis、Eleni A. Rekka、Panos N. Kourounakis
DOI:10.1021/jm991039l
日期:2000.2.1
this investigation, we study the synthesis and the evaluation of antioxidant and hypocholesterolemic activity of a number of 2-biphenylyl morpholine derivatives, which are structurally similar to some substituted morpholines possessing antioxidantactivity, as well as to hypocholesterolemic 3-biaryl-quinuclidines. The novel derivatives are found to inhibit the ferrous/ascorbate induced lipid peroxidation