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Biomedical subjects

C Soranzo

Publications and source records attributed to C Soranzo.

33 records · Page 2Linked to original sources

Synthesis, DNA binding and antiviral activity of distamycin analogues containing different heterocyclic moieties.

A series of novel distamycin analogues possessing an additional benzene or heterocyclic ring have been synthesised and tested for selective DNA binding properties and antiviral activity. Inhibition of herpes virus in cell culture appears to be related to AT base pair specificity. Some of the new compounds are also more potent than the parent distamycin against Moloney sarcoma virus.

Animals↗

Single-strand DNA breaks induced by chromophore-modified anthracyclines in P388 leukemia cells.

Single-strand DNA breaks induced by chromophore-modified anthracyclines related to doxorubicin (including 11-deoxydaunorubicin, 4-demethoxydaunorubicin, 4-demethoxy-11-deoxy-4'-epi-daunorubicin, 4-demethyl-6-O-methyldoxorubicin) in cultured P388 leukemia cells were determined by the filter alkaline elution method. The tested analogues differed markedly in their cytotoxic potency. In the range of cytotoxic concentrations, 11-deoxydaunorubicin produced single-strand DNA break frequency of the same order of magnitude as that produced by doxorubicin, while other derivatives caused much more marked damage on DNA than doxorubicin. Since DNA breaks were found to be protein associated, the type of DNA damage produced by all tested derivatives presumably resulted by action of DNA topoisomerases II, as proposed for doxorubicin and other intercalating agents. Although the "potent" (with respect to DNA damage) derivatives, except 4-demethyl-6-O-methyldoxorubicin, showed an increased cellular drug accumulation as compared to doxorubicin, this did not account for the marked differences in ability to damage DNA. 4-Demethyl-6-O-methyldoxorubicin was the most efficient derivative, producing DNA breaks in a lower range of cellular drug content. A striking biphasic dose-response curve was observed for the 4-demethoxy derivatives, suggesting a complex mechanism of interaction among drug, DNA, and enzyme. A lack of correlation was noted among DNA binding affinity, induction of strand breaks, and cytotoxic activity of these chromophore-modified derivatives. From these observations, it is suggested that multiple actions of anthracyclines at the DNA level are responsible for their cytotoxic activity, which is not simply related to inhibition of a specific DNA-dependent enzyme and/or function.

Animals↗

New anthracycline glycosides from Micromonospora. II. isolation, characterization and biological properties.

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.

Animals↗

Effect of various substitutions in positions 1, 2, 3, and 4 of 4-demethoxydaunorubicin and 4-demethoxyadriamycin.

Previous studies on structure-activity relationships of anthracycline antitumor antibiotics have shown that removal of the methoxyl group at position 4 of the aglycone causes a marked increase in the potency of the compounds: 4-demethoxydaunorubicin and 4-demethoxyadriamycin had an antitumor effect similar to that of the parent compound at doses five to eight times lower, and they were active even when administered orally. This paper reports the effects of further substitutions at positions 1, 2, 3, and 4 of 4-demethoxy aglycone. The introduction of methyl groups at positions 2 and 3, or 1 and 4 resulted in decreased cytotoxicity and biological activity. The addition of a benzoyl ring at positions 2 and 3 decreased the activity further. 1,4-Dichloro-4-demethoxydaunorubicin and 2,3-dichloro-4-demethoxydaunorubicin were respectively as active and 2.5 times less active than was daunorubicin against HeLa cells in vitro while they were inactive against P388 and L1210 leukemias in vivo. 2,3-Dimethyl-4-demethoxyadriamycin showed an antitumor activity against mouse leukemias that was slightly higher than was that of adriamycin.

Animals↗

Preparation and biological evaluation of 4-O-demethyldaunorubicin (carminomycin I) and of its 13-dihydro derivative.

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.

Animals↗

Effect of pretreatment with immune serum on murine sarcoma virus (Moloney) tumour induction and growth.

Regressor serum from MSV-M-infected mice markedly reduced MSV-M oncogenesis when administered i.p. (0-1 ml/mouse) as much as 30 days before i.m. MSV-M infection in adult BALB/c mice. The regressor serum activity appeared to be directly dependent on the amount of IgG, as shown by: (1) inactivity of sera which have low virus-neutralizing antibody content; (2) high effectiveness only of the IgG serum fraction; (3) inactivity of regressor serum incubated with anti-mouse gamma-globulin serum. The regressor serum activity was specific and could not be ascribed to interferon or interferon-inducing factors, antigen-antibody complexes or free antigen. The activity was not suppressed by sublethal irradiation (380 rad) of recipient mice. These results suggest that the activity of regressor serum administered before MSV-M infection is mediated through sensitization of host cells which are not radiosensitive.

Animals↗

Synthesis and antitumor properties of new glycosides of daunomycinone and adriamycinone.

The synthesis of 4'-epi-daunorubicin and of 4'-epi-adriamycin was performed by condensation of 2,3,6-trideoxy-3-trifluoroacetamido-4-O-trifluoroacetyl-alpha-L-arabino-hexopyranosyl chloride with daunomycinone or the protected adriamycinone derivative 17, respectively. Both the alpha and beta anomers were obtained and characterized. All new compounds are biologically active in cultured cells and the alpha anomers display noticeable activity in experimental tumors in mice. Interestingly, 4'-epi-adriamycin (4) appears nontoxic to cultured heart cells up to a concentration of 5 mug/ml.

Aminoglycosides↗

A hyaluronic acid membrane delivery system for cultured keratinocytes: clinical "take" rates in the porcine kerato-dermal model.

The clinical take rates of cultured keratinocyte autografts are poor on a full-thickness wound unless a dermal bed is provided. Even under these circumstances two important problems are the time delay in growing autografts and the fragility of the grafts. A laser-perforated hyaluronic acid membrane delivery system allows grafting at early confluence without requiring dispase digestion to release grafts from their culture dishes. We designed this study to investigate the influence of this membrane on clinical take rates in an established porcine kerato-dermal grafting model. The study demonstrated a significant reduction in take as a result of halving the keratinocyte seeding density onto the membrane. The take rates, however, of grafts grown on the membrane at half or full conventional seeding density and transplanted to a dermal wound bed were comparable, if not better, than those of keratinocyte sheet grafts.

Animals↗

Malignant transformation of host cells by a human small cell lung cancer xenografted into nude mice.

Malignant transformation of mouse host cells by a human small cell lung cancer (SCLC) was demonstrated by short-term in vitro cultivation of the tumor cells from a xenograft at two different transplant generations. Isoenzyme (LDH) and chromosome analysis showed that out of the 3 cell lines established from this tumor, 1 retained a human karyotype similar to that of the xenograft and 2 were murine transformed cell lines. These murine cell lines produced fibro-sarcoma-like tumors when injected into nude mice. Because of the early in vitro emergence of murine transformed cell populations, it is likely that the transformation process had occurred in vivo. Since in our experience the induction of transformation of host murine cells, also observed directly in vivo, is more frequent with SCLC than other histotypes (lung and colorectal adenocarcinoma), it is suggested that the known production of growth factor by these tumors may contribute to this transformation.

Animals↗

A comparative study of the effects of anthracycline derivatives on a human adenocarcinoma cell line (LoVo) grown as a monolayer and as spheroids.

The cytotoxicity of doxorubicin (DX), 4'-O-methyl-DX (MET-DX), 4'-deoxy DX (DEO-DX), 4'-deoxy-4'-iodo-DX (IODO-DX), daunorubicin (DNR)and 4-demethoxy-DNR (DM-DNR) on LoVo cells cultured as a monolayer (in exponential and stationary phases of growth) and as spheroids, are evaluated following 1-h exposure to the drugs. All compounds were more cytotoxic than DX in both systems. A comparison of the ID50 values for cell survival of monolayer cells and of the inhibition of relative growth of individual spheroids indicated that MET-DX and DNR, like DX, were less cytotoxic on spheroids than on monolayer cells in both growth conditions; DEO-DX, IODO-DX and DM-DNR showed an activity on spheroids that was intermediate between that observed on monolayer cells in exponential and stationary phases of growth. This observation indicated that the different pattern of activity of these anthracyclines on a spheroids system is not only related to the presence of cells at different cell cycle phases, but presumably also depends on factors related to the 3-dimensional structure of spheroid cells. Indeed DEO-DX, IODO-DX and DM-DNR, more lipophilic than the other compounds, might penetrate more deeply into spheroids, thus improving the cytotoxic response in this experimental system.

Adenocarcinoma↗