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Biomedical subjects

T Colombo

Publications and source records attributed to T Colombo.

111 records · Page 7Linked to original sources

Antitumor activity of the novel nitrosourea S10036 in rodent tumors.

The activity of the novel anticancer agent diethyl 1-3-(chloroethyl)-3-nitrosoureido ethyl phosphonate (S10036) was investigated on several rodent tumors. S10036 showed a good efficacy, comparable to that of the anticancer agent BCNU, against i.p transplanted P388 and L1210 leukemias. S10036 was very effective against the primary tumor and metastases of i.m transplanted M5076 reticular cell sarcoma of the mouse and against subline A of the Walker carcinoma of the rat. It was inactive against rodent tumors resistant to BCNU such as L1210/BCNU, ICIG-Ci4 murine fibrosarcoma and the Walker carcinoma subline B in the rat.

Animals↗

Pharmacokinetics of hexamethylmelamine and pentamethylmelamine in mice.

Plasma pharmacokinetics of hexamethylmelamine (HMM) and pentamethylmelamine (PMM) were investigated after ip administration of doses of 50 or 100 mg/kg to M5076/73A ovarian tumor-bearing C57BL/6J female mice. The half-life of HMM was 44.5-49 mins; the half-life of PMM was 7.6-8.7 mins. The area under the concentration-versus-time curve (AUC) was also much higher for HMM than for PMM. The AUC for the metabolite N2,N2,N4,N6-tetramethylmelamine (TMM) was seven to ten times higher than that of the parent compounds. After incubation with mouse liver microsomes and cofactors, the rates of metabolism of HMM and PMM were essentially the same. Plasma protein binding was 94%, 71%, and 50% for HMM, PMM, and TMM, respectively.

Altretamine↗

Studies on the comparative distribution and biliary excretion of doxorubicin and 4'-epi-doxorubicin in mice and rats.

Serum and tissue distribution of doxorubicin (DX) and its stereoisomer, 4'-epidoxorubicin (4'-epiDX), after iv injection of 15 mg/kg was investigated in C57BL mice bearing 14-day intramuscular Lewis lung carcinoma. Total fluorescence was measured together with unchanged drugs, separated, and quantitated by means of thin-layer chromatography combined with a scanning fluorescence technique. In serum the disappearance of 4'-epiDX paralleled that of DX and both unchanged isomers represented < 50% of the total fluorescence measured as early as 30 minutes after drug injection. In tissues the fluorescence measured was almost completely accounted for by the native compounds, both DX and 4'-epiDX, indicating that these drugs are taken up as such by tissues. 4'-EpiDX levels were markedly lower than those of DX in tumor and spleen, whereas in heart, liver, and kidneys the concentrations of the two isomers were the same. Traces of doxorubicinol and possibly 4'-epidoxorubicinol were detected only in serum, liver, and kidneys. Comparative cumulative biliary excretion of DX and 4'-epiDX investigated in the rat indicated that a total of 40%-45% of the injected dose of both drugs was excreted either as unchanged compound or as reduced metabolite. However, the proportions were different and the presence of twice as much reduced metabolite and smaller amounts of native 4'-epiDX suggests that its metabolic rate is different from that of DX

Animals↗