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Biomedical subjects

I Nitta

Publications and source records attributed to I Nitta.

26 records · Page 2Linked to original sources

Synthesis and evaluation of antiinflammatory activities of a series of corticosteroid 17 alpha-esters containing a functional group.

A series of 21-desoxy-21-chlorocorticosteroids that contain a functionalized ester group at 17 alpha has been prepared and examined to separate their systemic activity from topical antiinflammatory activity. Introduction of the functionalized ester group at 17 alpha was carried out by an acid-catalyzed formation of cyclic ortho esters with 17 alpha,21-hydroxyl groups of corticosteroids and subsequent acid-catalyzed hydrolysis. As for the functional group, chloro, methoxy, acetoxy, cyano, cyclopropyl, or alkoxycarbonyl group was introduced at the terminal carbon atom of the 17 alpha-alkanoate group. The topical antiinflammatory activity and systemic activity of these compounds were examined and found to be significantly dependent on the functionalities in the 17 alpha-esters. Among these derivatives, a series of 17 alpha-(alkoxycarbonyl)alkanoates (17 alpha-OCO(CH2)nCOOR) showed an excellent separation of the systemic activity from topical activity. The effects of the number of methylene groups (n) and of the alkyl groups of the ester (R) on either topical or systemic activity of the corticosteroid derivatives were also investigated.

Administration, Topical↗

Effects of MCI-727, a new antiulcer agent, on various gastric and duodenal lesions in experimental animals.

Effects of a new antiulcer drug, MCI-727, on gastric and duodenal lesions, gastric secretion and gastric motility were studied in comparison with cimetidine and teprenone. MCI-727 dose-dependently (3-100 mg/kg, p.o. or i.d.) inhibited the development of acute gastric or duodenal lesions such as pyrolus ligation-, water-immersion stress-, indomethacin-, HCl-, HCl-ethanol-induced gastric lesions and cysteamine-induced duodenal lesions in rats and histamine-induced duodenal lesions in guinea pigs. These antiulcer effects exceeded those of cimetidine or teprenone. Repeated administration of MCI-727 (0.3-3 mg/kg/day, p.o., for 10 days) significantly promoted the spontaneous healing of acetic acid-induced chronic gastric ulcers. Concerning gastric acid secretion, MCI-727 selectively inhibited tetragastrin-stimulated acid secretion without effecting basal acid secretion and acid secretion by other stimuli. Cimetidine and teprenone inhibited acid secretion in several cases. MCI-727 and teprenone had inhibitory effects on gastric motility, although cimetidine had no effect. These results suggest that MCI-727 has a wide spectrum of antiulcer activity, and its mode of antiulcer action is different from that of cimetidine or teprenone.

Animals↗

Highly potent and selective inhibition of human immunodeficiency virus type 1 by a novel series of 6-substituted acyclouridine derivatives.

In the search for novel derivatives of 1-[2-(hydroxyethoxy)methyl]-6-(phenylthio)thymine (HEPT), we have found that several 5-ethyl-6-(3,5-dimethylphenylthio)uracil and 5-ethyl-6-(3,5-dimethylbenzyl)uracil analogues are exquisitely potent and selective inhibitors of human immunodeficiency virus type 1 (HIV-1) replication in a variety of cell culture systems. Of this series, 5-ethyl-1-ethoxymethyl-6-(3,5-dimethylbenzyl)uracil (E-EBU-dM) emerged as the most active congener. Its 50% inhibitory concentration for HIV-1 (HTLV-IIIB) in MT-4 cells and peripheral blood lymphocytes is 2.2 and 0.45 nM, respectively. These concentrations are more than 10(5)-fold lower than the 50% cytotoxic concentrations of E-EBU-dM for the host cells. All compounds proved equally inhibitory to a number of clinical HIV-1 isolates, including a 3'-azido-2',3'-dideoxythymidine-resistant variant. However, as previously noted for HEPT, they do not inhibit human immunodeficiency virus type 2 replication. Reverse transcriptase assays have revealed that these HEPT derivatives act specifically on HIV-1 reverse transcriptase, according to a mechanism that is different from that of the dideoxynucleosides.

Antiviral Agents↗

Anti-human immunodeficiency virus type 1 activities and pharmacokinetics of novel 6-substituted acyclouridine derivatives.

The novel 6-substituted acyclouridine derivatives 1-[(2-hydroxyethoxy)methyl]-6-phenylthiothymine (HEPT), 1-[(2-hydroxyethoxy)methyl]-6-(3-methylphenylthio)thymine (HEPT-M), 6-cyclohexylthio-1-[(2-hydroxyethoxy) methyl]thymine (HEPT-H), and 1-[(2-hydroxyethoxy)methyl]-6-phenylthio-2- thiothymine (HEPT-S) have proved to be potent and selective inhibitors of human immunodeficiency virus type 1 (HIV-1) replication in a variety of cell systems, including peripheral blood lymphocytes. They are not inhibitory to the replication of HIV-2. HEPT-S emerged as the most active congener, with a 50% inhibitory concentration of 1.6 microM for HIV-1 (human T-cell lymphotropic virus type IIIB) in MT-4 cells. We also examined the pharmacokinetics of the compounds following oral administration to rats. The pharmacokinetic profile varied considerably from one compound to another. The highest concentration in plasma (7.4 micrograms/ml, or 22.8 microM) was achieved by HEPT-S within 30 min after administration of an oral dose of 20 mg/kg of body weight. HEPT-S can be considered a promising candidate for the treatment of HIV-1 infections.

Animals↗

Synthesis of novel 6-substituted acyclouridine derivatives and their anti-HIV-1 activity.

To improve the anti-HIV activity of 1-[(2-hydroxyethoxy)methyl]-6-(phenylthio)thymine (HEPT), a variety of its analogues were synthesized. Introduction of SR group to the C-6 position was carried out based on LDA lithiation followed by the reaction of aryl- or alkyl disulfide. An addition-elimination reaction of a 6-phenylsulfinyl derivative was used for synthesizing the analogues having OR or NHR group at the C-6 position. The C-5 modified derivatives were synthesized mainly based on LTMP lithiation of a 6-phenylthio derivative. Modification at the 2- or 4-position was also carried out. Some compounds prepared in the present study showed higher activity than HEPT.

Antiviral Agents↗