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On the antiviral activity of diffusomycin (oxazolomycin).

The effect of the beta-lactone antibiotic diffusomycin (oxazolomycin) was investigated against vaccinia (Lister), herpes simplex type 1 (Kupka), influenza A (WSN; H1N1), and Coxsackie A9 viruses. Diffusomycin reduced significantly the plaque formation of enveloped DNA and RNA viruses by more than 90% in the range of the maximally tolerated dose. As could be shown with vaccinia virus, the antiviral action was not caused by virucidal effect on virions or by interaction with virus adsorption and penetration. In one-step growth cycle assays diffusomycin prevented the replication of herpes simplex type 1, vaccinia and influenza A viruses in a dose-dependent manner. The replication of influenza A viruses was blocked immediately after addition of the compound during zero to six hr p.i. Partial reversibility of the antiviral action was established by washing off the antibiotic from chicken embryo cells (CEC) infected with influenza A virus. Finally, replication of Coxsackie A9 virus was not inhibited by diffusomycin. Electron-optical studies revealed a reduced synthesis of HSV-1 nucleocapsids in dependence on the concentration of the compound.

Animals

Analogues of the muscarinic agent 2'-methylspiro[1-azabicyclo[2.2.2]octane-3,4'-[1,3]dioxolane]: synthesis and pharmacology.

A number of tetrahydrofuran analogues of 2'-methylspiro[1-azabicyclo[2.2.2]octane-3,4'-[1,3]dioxolane] (1) have been prepared with the aim to obtain information about the relative importance of each of the oxygens in 1 for efficacy and for selectivity. In addition, the dimethyl and desmethyl analogues of 1 were prepared. The new compounds were compared to cis- and trans-1 with regard to their ability to displace (-)-[3H]-3-quinuclidinyl benzilate ((-)-[3H]QNB) from muscarinic receptors in cerebral cortex, heart, parotid gland, and urinary bladder from guinea pigs. Functional studies were made on isolated guinea pig bladder and ileum. The new compounds exhibited both lower affinity and efficacy than cis-1. A conformational study was performed, and the effects of steric and electronic factors on the biological activity of the compounds are discussed.

Animals

Inhibition of converting enzyme in the cerebrospinal fluid of rats after oral treatment with converting enzyme inhibitors.

Inhibition of brain converting enzyme (CE) has been implicated in the antihypertensive action of some CE inhibitors. However, it is still a matter of debate whether these drugs gain access to the central nervous system upon systemic administration. In this study in rats we investigated the ability of p.o. applied CE inhibitors to penetrate from blood into cerebrospinal fluid (CSF) by analyzing the inhibition of CE activity in the CSF after acute bolus and after 1 week overnight treatment with enalapril, ramipril and Hoe 288. Penetration into the CSF closely paralleled the lipid solubility of the drugs. The most lipophilic drug, Hoe 288 (10 mg/kg), inhibited CE activity in the CSF after acute (66%) and after chronic (30%) p.o. treatment. Ramipril (10 mg/kg), being less lipophilic than Hoe 288, was only effective after acute bolus administration (59% inhibition), whereas the most hydrophilic drug, enalapril (30 mg/kg), did not reduce CE activity in the CSF after either regimen. The CE inhibition in the CSF after acute p.o. treatment with ramipril and Hoe 288 was dose-dependent with threshold doses of 3 to 10 mg/kg (ramipril) and less than 1 mg/kg (Hoe 288). The presence of ramipril and Hoe 288 in the CSF was also demonstrated by the inhibitory effect of heat-inactivated CSF from CE inhibitor-treated rats on purified CE from rabbit lung. A comparison of the in vitro activities of the three prodrugs and their parent diacids against CE in plasma and in CSF and against purified CE revealed hydrolysis of the prodrugs to their parent diacids in plasma and CSF.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Oral

[Studies on antitumor drugs: the synthesis of N',N"-dispirotripiperaziniums].

In order to search for new antitumor drugs, sixteen N',N"-dispirotripiperazine derivatives were synthesized from N',N"-dispirotripiperazinium dichloride dihydrochloride by substitution, acylation and Mannich reaction. Six compounds were selected for preliminary pharmacological test. The result showed that five compounds possess inhibitory action against carcinoma S37 in rats. The inhibitory activity of compounds VI and X was 55.0% and 41.9% respectively.

Animals