Semisynthetic aminoglycoside antibiotics. III. New deoxy derivatives of paromomycin.
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Biomedical subjects
Publications and source records attributed to F Arcamone.
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The authors summarize the early studies on the isolation, structure determination, biological effects, and mechanism of action of daunorubicin (DNR). In fact, the relationship between affinity for DNA and biological activity was first recorded for DNR and later confirmed on several DNA analogs, both biosynthetic and semisynthetic. A possible divergence was eventually observed with 4-methoxy-DNR. This compound is as active as DNR on the DNA synthesis but eight times more potent on different experimental tumor systems. In this context, it is worth noting that recent data on the N-acetyl derivatives of DNR and doxorubicin indicated the persistence of some activity on P388 leukemia in spite of their strongly reduced affinity for DNA and cytotoxic activity when compared with the parent compounds.
The preparation of two isomers of daunorubicin, one having a completely chelated dihydroxyanthraquinone chromophor (III) and one have having such a chromophor in a emichelated form (IV), is reported. The former is as active as daunorubicin, the latter shows a considerable activity, however at much higher doses.
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Four glycosides, designated A, B, C and D, are the main components of the anthracycline complex produced by cultures of Micromonospora sp. nov. They were extracted by solvent partition, separated by column chromatography and characterized by chemical and physical methods as 11-deoxy analogues of daunorubicin. Among these new anthracyclines, displaying antibacterial and cytotoxic activity in vitro, 11-deoxydaunorubicin and 11-deoxydoxorubicin are also active against P388 leukemia in mice.
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The synthesis and the antitumor activities of a group of 4-demethoxy-4-alkoxydaunorubicins (VIII) are reported. The new compounds were found to have an activity equal or superior to that of daunorubicin, at somewhat higher doses.
The synthesis and the antitumor activities of a group of doxorubicin (adriamycin) 14-ethers are reported. The new compounds were found to have an activity similar to that of daunorubicin, at somewhat higher doses, but inferior to that of doxorubicin.
Labelled 2-oxo-2H-1,3-benzoxazine-3(4H)-acetamide (caroxazone), has been synthesized by condensing N-(2-hydroxylbenzyl/glycinamide with 14C phosgene. Metabolic studies were performed administering the labelled drug to man and recovering metabolites from the urines. Beside the unchanged drug, five metabolites were identified and confirmed by synthesis, namely (3,4-dihydro-3-carboxamidomethyl-2-oxo-2H-1,3-benzoxazin-4-yl)urea (IX), N-carboxamidomethyl o-hydroxymethylphenyl carbamate (V), 4-methoxy-2-oxo-2H-1,3-benzoxazine-3(4H)acetamide (VIIIa), 2-oxo-2H-1,3-benzoxazine-3(4H)acetic acid (III) and 4-hydroxy-2-oxo-2H-1,3-benzoxazine-3(4H)acetamide (IV).
A new synthetic procedure for the preparation of daunorubicin and adriamycin analogues bearing different substituents on ring D, has been developed. The new compounds display outstanding efficacy against experimental tumours of mice.
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A mutant strain of Streptomyces peucetius produced an anthracycline antibiotic whose structure has been established to be 4-O-demethyl-13-dihydrodaunorubicin (4), by application of spectroscopic methods and chemical degradation. A new synthesis of 4-O-demethyl-daunorubicin (carminomycin I, 2) starting from daunomycinone, together with the comparison of the antitumor activity of the anthracycline glycosides 2 and 4 are also reported.
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Two new analogs of adriamycin have been obtained by chemical synthesis, 4-demethoxyadriamycin and 4-demethoxy-4' -epiadriamycin. Both compounds were highly effective against experimental mouse tumors at doses about ten times lower than those effective for adriamycin. At the optimal dose, 4-demethoxyadriamycin displayed antitumor activity similar to that of adriamycin in solid Sarcoma 180 (S180), L1210, P388, and Gross leukemias, and mammary carcinoma, while it did not markedly inhibit the growth of Moloney sarcoma virus-induced sarcoma in mice treated before the virus infection. At the optimal dose, 4-demethoxy-4' -epiadriamycin was as active as adriamycin against L1210, P388,and Gross leukemias, and less active against solid S180. The results show that anthracycline derivatives characterized by the absence of the methoxyl group at the C-4 position are markedly more potent than the parent compound, and may exhibit a differential antitumor effect on a number of mouse tumors.
The daunosaminyl analogue of the antibiotic puromycin and the nucleoside derivatives of daunosamine with adenine, thymine, and cytosine have been synthesised. The nucleoside derivatives of 6-dimethylaminopurine, thymine, and cytosine were prepared by melting the protected daunosamine with the protected base in vacuo. Daunosaminyladenine was obtained by condensing N-trifluoroacetyl-O-trifluoroacetyl-alpha-daunosaminyl chloride either with N6-benzoyl-9-chloromercuryadenine in boiling xylene or with N6-benzoyladenine in dichloromethane at room temperature in the presence of a molecular sieve. In each reaction, the beta-anomeric nucleoside was obtained, as shown by p.m.r. data. The protecting groups were removed with barium hydroxide or methanolic ammonia to give the free aminonucleosides in good yield. 9-beta-Daunosaminyl-6-dimethylaminopurine was coupled to N-benzylocyxcarbonyl-O-methyltyrosine, giving, after hydrogenolysis, the daunosaminyl analogue of puromycin.
The synthesis is described of 3-amino-2,3-dideoxy-L-arabino-hexose (10), methyl 2,3-dideoxy-alpha-L-lyxo-hexopyranoside(17), methyl 3-amino-2,3-dideoxy-alpha-L-ribo-hexopyranoside (21), methyl 2,3-dideoxy-3-trifluoroacetamido-alpha-L-xylo-hexopyranoside (26), and certain derivatives from methyl 4,6-O-benzylidene-2-deoxy-alpha-L-arabino-hexopyranoside (3). Conversion of 2-deoxy-L-arabino-hexose into 3 by modified, standard procedures, and on a large scale, gave a 75% yield.