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1.
Nitric Oxide ; 119: 50-60, 2022 02 01.
Article in English | MEDLINE | ID: mdl-34958954

ABSTRACT

Organic nitrates are widely used to restore endogenous nitric oxide (NO) levels reduced by endothelial nitric oxide synthase dysfunction. However, these drugs are associated with undesirable side effects, including tolerance. This study aims to investigate the cardiovascular effects of the new organic nitrate 1,3-diisobutoxypropan-2-yl nitrate (NDIBP). Specifically, we assessed its effects on blood pressure, vascular reactivity, acute toxicity, and the ability to induce tolerance. In vitro and ex vivo techniques showed that NDIBP released NO both in a cell-free system and in isolated mesenteric arteries preparations through a process catalyzed by xanthine oxidoreductase. NDIBP also evoked endothelium-independent vasorelaxation, which was significantly attenuated by 2-phenyl-4,4,5,5,-tetramethylimidazoline-1-oxyl 3-oxide (PTIO, 300 µM), a nitric oxide scavenger; 1-H-[1,2,4] oxadiazolo-[4,3-a]quinoxalin-1-one (ODQ, 10 µM), a soluble guanylyl cyclase inhibitor; tetraethylammonium (TEA, 3 mM), a potassium channel blocker; febuxostat (500 nM), a xanthine oxidase inhibitor; and proadifen (10 µM), an inhibitor of cytochrome P450 enzyme. Furthermore, this organic nitrate did not induce tolerance in isolated vessels and presented low toxicity following acute oral administration. In vivo changes on cardiovascular parameters were assessed using normotensive and renovascular hypertensive rats. NDIBP evoked a reduction of blood pressure that was significantly higher in hypertensive animals. Our results suggest that NDIBP acts as a NO donor, inducing blood pressure reduction without having the undesirable effects of tolerance. Those effects seem to be mediated by activation of NO-sGC-cGMP pathway and positive modulation of K+ channels in vascular smooth muscle.


Subject(s)
Antihypertensive Agents/therapeutic use , Hypertension/drug therapy , Mesenteric Arteries/drug effects , Nitrates/therapeutic use , Nitric Oxide Donors/therapeutic use , Vasodilator Agents/therapeutic use , Animals , Antihypertensive Agents/metabolism , Cytochrome P-450 Enzyme System/metabolism , Female , Hypertension/metabolism , Male , Nitrates/metabolism , Nitric Oxide/metabolism , Nitric Oxide Donors/metabolism , Potassium Channels/metabolism , Rats, Wistar , Signal Transduction/drug effects , Soluble Guanylyl Cyclase/metabolism , Vasodilator Agents/metabolism , Xanthine Dehydrogenase/metabolism
2.
Molecules ; 20(1): 974-86, 2015 Jan 08.
Article in English | MEDLINE | ID: mdl-25580690

ABSTRACT

Imidazolidine derivatives, or hydantoins, are synthetic compounds with different therapeutic applications. Many imidazolidine derivatives have psychopharmacological properties, such as phenytoin, famous for its anticonvulsant efficacy, but also effective in the treatment of neuropathic pain. The hydantoin, 3-phenyl-5-(4-ethylphenyl)-imidazolidine-2,4-dione (IM-3), synthesized from the amino acid, glycine, was selected for psychopharmacological studies in mice on the basis of its chemical and structural similarity with phenytoin. The first step of this study was to define the LD50, which determined the doses of 50, 100 and 200 mg/kg for subsequent tests. The results obtained from the behavioral screening indicated that IM-3 produces decreased ambulation and analgesia in mice. Motor coordination and anxiety behavior were not affected by treatment with IM-3, as observed in the rotarod and elevated plus-maze tests, respectively. Regarding its antinociceptive properties, IM-3 showed efficacy in the acetic acid-induced writhing test by increasing the latency of the first writhe and reducing the number of writhes, as well as reducing the paw licking time in the second phase of the formalin test. The behavior of treated animals exposed to the hot plate test, however, did not differ from that of the control group. These data suggest that IM-3 has antinociceptive effects in mice, which is probably mediated by anti-inflammatory mechanisms.


Subject(s)
Analgesics/pharmacology , Hydantoins/pharmacology , Acetic Acid , Animals , Behavior, Animal , Formaldehyde , Hydantoins/chemistry , Male , Maze Learning/drug effects , Mice , Rotarod Performance Test , Toxicity Tests, Acute
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