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Biomedical subjects

S Shuto

Publications and source records attributed to S Shuto.

At least 19 recordsLinked to original sources

New neplanocin analogues. 6. Synthesis and potent antiviral activity of 6'-homoneplanocin A1.

The design, synthesis, and antiviral activities of 6'-homoneplanocin A (HNPA, 3) and its congeners having nucleobases other than adenine, such as 3-deazaadenine (4), guanine (5), thymine (6), and cytosine (7), were described. Starting from the known cyclopentenone derivative 8, the optically active (mesyloxy)cyclopentene derivative 15 was prepared, which was condensed with nucleobases then deprotected to give target compounds 3-7. Of these compounds, HNPA showed an antiviral activity spectrum that was comparable to, and an antiviral specificity that was higher than, that of neplanocin A. HNPA proved particularly active against human cytomegalovirus, vaccinia virus, parainfluenza virus, vesicular stomatitis virus, and arenaviruses, which is compatible with an antiviral action targeted at S-adenosylhomocysteine hydrolase. HNPA appears to be a promising candidate drug for the treatment of these viruses.

Adenosine

(+/-)-(Z)-2-(aminomethyl)-1-phenylcyclopropanecarboxamide derivatives as a new prototype of NMDA receptor antagonists.

(+/-)-(Z)-2-(Aminomethyl)-1-phenylcyclopropane-N,N-diethylcarbo xamide (milnacipran, 1), a clinically useful antidepressant, and its derivatives were prepared by an improved method and were evaluated as NMDA receptor antagonists. Of these, milnacipran (1), its N-methyl and N,N-dimethyl derivatives, 7 and 8, respectively, and its homologue 12 at the aminomethyl moiety had binding affinity for the receptor in vitro (IC50: 1, 6.3 +/- 0.3 microM; 7, 13 +/- 2.1 microM; 8, 88 +/- 1.4 microM; 12, 10 +/- 1.2 microM). These also protected mice from NMDA-induced lethality. These compounds would be important as anovel prototype for designing potent NMDA-receptor antagonists because of their characteristic structure, which clearly differentiated them from known competitive and noncompetitive antagonists to the receptor.

Animals

Nucleosides and nucleotides--CXXXVII. Antitumor phospholipids with 5-fluorouridine as a cytotoxic polar-head: synthesis of 5'-phosphatidyl-5-fluorouridines by phospholipase D-catalyzed transphosphatidylation.

5'-Phosphatidyl-5-fluorouridines, with the same backbone structure as that of natural phospholipids, in which a polar-head group of usual phospholipids is replaced by 5-fluorouridine, were designed to be potent antitumor agents. 5'-Phosphatidyl-5-fluorouridines with a variety of diacyl or dialkyl residues in the glycerol moiety, were synthesized by phospholipase D-catalyzed transphosphatidylation from the corresponding phosphatidylcholine and 5-fluorouridine. These new compounds were evaluated in mice with experimental tumors by ip and po administration. Dipalmitoyl and distearoyl derivatives 1b and 1c had the greatest antitumor activity against both P388 leukemia and Meth A fibrosarcoma in mice.

Animals

Therapeutic effect of reticuloendothelial system (RES)-avoiding liposomes containing a phospholipid analogue of 5-fluorouracil, dipalmitoylphosphatidylfluorouridine, in Meth A sarcoma-bearing mice.

Reticuloendothelial system (RES)-avoiding liposomes are known to accumulate in tumor tissues due to passive targeting. Dipalmitoylphosphatidylfluorouridine (DPPF), a potent antitumor agent readily incorporated into the lipid bilayer, was embedded in RES-avoiding liposomes modified with a uronic acid derivative, palmityl-D-glucuronide (PGlcUA). The therapeutic effect of DPPF in PGlcUA-liposomes was examined in tumor-bearing mice. Free or liposomal DPPF was injected intravenously into BALB/c mice bearing subcutaneously implanted Meth A sarcomas. The RES-avoiding liposomal formulation using PGlcUA was effective in reducing tumors, and prolonging survival time compared with free DPPF and also DPPF in conventional liposomes. Therefore, PGlcUA-liposomes might be of practical use as drug carriers for anticancer agents, especially their derivatives for embedding in liposomal membranes.

1,2-Dipalmitoylphosphatidylcholine

Deacylation-reacylation cycle: a possible absorption mechanism for the novel lymphotropic antitumor agent dipalmitoylphosphatidylfluorouridine in rats.

Dipalmitoylphosphatidylfluorouridine (DPPF) is a potent antitumor agent that selectively gains access to the lymphatic system. To determine whether DPPF enters the lymph in an unmodified form, we administered DPPF orally to rats and analyzed lymph collected from a cannula in the thoracic duct. Although lymph was found to contain only very low levels of DPPF, two congeners of DPPF were detected at high levels. Instrumental analysis demonstrated that these congeners are 1-palmitoyl-2-arachidonoylphosphatidylfluorouridine (PAPF) and 1-palmitoyl-2-linoleoyl-phosphatidylfluorouridine (PLPF). PAPF and PLPF levels in thoracic lymph were shown to be approximately 30 times higher than those in plasma. These results suggest that DPPF is absorbed from the intestinal tract via the deacylation-reacylation cycle for the uptake of phospholipids and is selectively delivered to the lymphatic route after oral administration. DPPF is a candidate drug for the treatment of tumor metastasis, especially in cases where metastasis has occurred via the lymphatic route.

Acylation

New neplanocin analogues. 1. Synthesis of 6'-modified neplanocin A derivatives as broad-spectrum antiviral agents.

Novel neplanocin A analogues modified at the 6'-position, i.e., 6'-deoxy analogues (2, 3, 6, 9, 20), 6'-O-methylneplanocin A (15), and 6'-C-methylneplanocin A's (22a and 22b) have been synthesized and evaluated for their antiviral activity in a wide variety of DNA and RNA virus systems. These compounds showed an activity spectrum that conforms to that of S-adenosylhomocysteine hydrolase inhibitors. They were particularly active against pox- (vaccinia), paramyxo-(parainfluenza, measles, respiratory syncytial), arena- (Junin, Tacaribe), rhabdo- (vesicular stomatitis), reo-, and cytomegalovirus. In order of (increasing) antiviral activity, the compounds ranked as follows: 3 less than 15 approximately 20 less than 6 less than 9 approximately 2 less than 22a. Of the two diastereomeric forms of 22, only 22a was active; 22a surpassed neplanocin A both in antiviral potency and selectivity. Compound 22a appears to be a promising candidate drug for the treatment of pox-, paramyxo-, arena-, rhabdo-, reo-, and cytomegalovirus infections.

Adenosine

[Effect of nizofenone on pyramidal response, electrocorticogram and regional cerebral blood flow following recirculation after complete global brain ischemia in cats].

Effect of nizofenone on pyramidal response (PR), electrocorticogram (ECoG) and regional cerebral blood flow (rCBF) following recirculation after complete global brain ischemia was compared with that of pentobarbital in gallamine-immobilized cats. The basilar artery and the branches of both carotid arteries (superior thyroid artery, dorsal muscular branch, internal carotid artery, occipital artery and ascending pharyngeal artery) were all ligated. The cats were subjected to complete brain ischemia by occluding both common carotid arteries for 45 min, followed by 180 min recirculation. rCBF of the cortex (suprasylvian gyrus) and the internal capsule was monitored by the hydrogen clearance method. Blood gases were regulated within a range determined previously in freely-moving cats throughout the experiment. Nizofenone (1 mg/kg, i.v.) facilitated the recovery of PR and ECoG, and it inhibited the phenomenon of secondary suppression evidenced by interruption and reversion of the recovery process. rCBF showed good recovery throughout the recirculation period. Pentobarbital (20 mg/kg, i.v.) facilitated the recovery of PR during the early period of recirculation, but secondary suppression of PR, associated with the decline of rCBF, was evident. These results suggest that the ameliorative effect of nizofenone on the recovery of neuronal functions is due to its ability to protect neurons against ischemic anoxia and to prevent interruption of postischemic circulation, and also the good recovery of rCBF is due to its ability to protect vasculature against ischemic anoxia.

Animals

Synthesis of carbon-bridged pyrimidine cyclonucleosides.

6,5'-Cyclo-5'-deoxyuridine 2',3'-cyclic phosphate and its derivatives were prepared as the conformationally fixed substrates of pancreatic ribonuclease. 6,6'-Cyclouridine, 6,3'-methylene-cyclo-2', 3'-dideoxyuridine, and 6,2'-ethylene-cyclo-2'-dexoyuridine were prepared as the new types of C-cyclopyrimidine nucleosides fixed in the anti conformation. The relationship between the sign and magnitude of CD Cotton bands and glycosylic torsion angles is discussed.

Animals

Antigen--antibody reaction investiaged with use of a chemically modified electrode.

The antigen-antibody reaction of human choriogenadotropin has been potentiometrically investigated by use of a cyanogen bromide-treated electrode coated with the corresponding anti-serum. The potential of the modified electrode shifts in the positive direction upon contact with a solution of choriogonadotropin. The rate of the reaction at the interface between the electrode and the solution is estimated from the potentiometric measurement to be of the order of 10(4) mol-1 s-1 in diethyl barbiturate buffer, depending to some extent on the rotation speed of the stirrer. The change in potential is almost proportional to choriogonadotropin concentration. It is also pH dependent, the maximum response being at pH 8.7. The technique, applied to samples of human urine, has shown a specific response to choriogonadotropin.

Antigen-Antibody Reactions