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S Cros

Publications and source records attributed to S Cros.

53 records · Page 3Linked to original sources

[9-Nitro- and 9-amino-ellipticines and derivatives: synthesis and pharmacologic properties].

Preparation of 9-nitroellipticine starting from 1,4-dimethyl-6-nitrocarbazole and its reduction according to the Béchamp method followed by acetylation. The salts of 9-nitro-2-methyl- and 9-amino-2-methyl ellipticinium were tested for cytotoxic activity on different tumor strains for mutagenicity, for affinity for DNA and cytochrome P450 and for toxicity in the mouse. The results obtained were compared with those found under the same conditions with 9-hydroxyellipticine and its corresponding ellipticinium salt.

Alkaloids↗

Comparative cytotoxic and antitumoral effects of ellipticine derivatives on mouse L 1210 leukemia.

Twelve derivatives of the antitumoral alkaloid ellipticine (E) and ellipticinium were assayed in vitro on cultured L 1210 cells. These drugs possess varying abilities to decrease the cell growth rate in a 1--1000-fold range. Some of them have a highly cytotoxic effect in the 10(-8)--10(-6) M range. Non-specific intracellular damages are produced: multilobation of nuclei, occurrence of numerous lipid granules, diminution of the size and increase in the number of mitochondrial profiles and several modifications of the internal architecture of mitochondria. 2-Methyl-9-hydroxyellipticinium (2-CH3-9-OHE) was submitted to a bioassay; it inactivates the tumorigenic potency of the cells exposed to it, when they are grafted back into mice in the same dose range which reduces in vitro the growth rate of the cells. A fairly good correlation holds between the in vitro and in vivo (antitumor effect) assays, offering a possible prescreening test for a cheaper and rapid evaluation of chemotherapeutic activity of these compounds. The results stress again the importance of the 9-hydroxy substitution in these series for improving the anticancer efficiency. The nature of the biochemical target of E and derivatives is discussed according to our data.

Alkaloids↗

Some antitumor derivatives of ellipticine deprived of mutagenic properties.

Seven derivatives of the antitumor alkaloid ellipticine were assayed for activity against murine leukaemia L1210 and for mutagenicity in Ames' Salmonella-microsomes test. Not only did the results show a complete lack of correlation between these two properties, but it was possible to choose a highly efficient analog which was completely devoid of mutagenic and hence, probably, carcinogenic effect. The lack of interaction of this product (2-methyl-9-hydroxyellipticinium acetate) with Cytochrome P-450 of hepatic monooxygenases prevents the formation of reactive intermediates and their subsequent binding to DNA. These data are discussed in view of the currently admitted mode of action of ellipticines i.e., intercalation in DNA and their therapeutic use.

Alkaloids↗

Antitumor activity of 9-hydroxyellipticine (NSC 210717) ON L1210 mouse leukemia and the effect of route of injection.

The antitumor activity of a new derivative of ellipticine, 9-hydroxyellipticine (NSC 210717), was studied using L1210 mouse leukemia. Low doses of this drug have a high antileukemic activity, whereas high doses have less activity than expected because of a leveling off in the antitumor activity-dose relationship, as if a few cells were resistant to the treatment. The possible causes of this apparent resistance were investigated. It is suggested that this apparent resistance is related to the sequestration of a small number of cells in compartments inaccessible to the drug. A model was developed which takes into account the distribution of cells in various compartments and their drug sensitivity therein. It was predicted and observed that the activity of drugs acting on cells in the small compartments can be observed only in conjunction with the presence of drugs acting on the cells in the major compartment. The importance of this observation in the screening procedures of new drugs, the clinical trial of new chemotherapeutic agents, and the association of anticancer drugs are discussed within this context. 9-Hydroxyellipticine is of interest because it acts on leukemic cells in the brain.

Alkaloids↗

Inhibition of tumor cell growth in vitro and in vivo by 2-methyl 9-hydroxyellipticinium entrapped within phospholipid vesicles.

Encapsulation in liposomes of the antitumoral drug 2-methyl 9-hydroxyellipticinium and the consequences of its cytotoxicity in vitro on L1210 leukemia cells and on its antitumoral activity in vivo on leukemic mice inoculated with L1210 cells are described. Provided the drugs is dissolved in the buffer below its critical micelle concentration (10(-4) M), it can be encapsulated in lipid vesicles with a very good yield in the form of a very stable combination with the lipids. The in vitro experiments show that 2-CH3 9-OH-ellipticinium is less cytotoxic against L1210 cells when entrapped than when free in solution. The in vivo experiments on tumor-bearing mice show that encapsulation of the drug reduces its toxicity. Encapsulation maintains the antitumoral activity of the drug or increases it if the leukemia is delayed (10(4) cells injected per mouse instead of 10(5) cells per mouse).

Alkaloids↗

Taxol metabolism. Isolation and identification of three major metabolites of taxol in rat bile.

The elimination of nonradioactive taxol in bile and urine was investigated in the rat after administration via the caudal vein (10 mg/kg). As in humans, no metabolites of taxol were detected by HPLC in rat urine, and only 10% of the injected taxol was recovered in urine over a 24-hr period. In contrast, 11.5% and 29% of the injected taxol was recovered in rat bile as unchanged taxol and metabolites, respectively. Among the nine taxol metabolites detected by HPLC, the side chain at C13, which is required for pharmacological activity, had been removed in only one minor metabolite, baccatin III. The chemical structures of the two major hydroxylated metabolites were determined by mass spectrometry (fast atom bombardment and desorption chemical ionization) and 1H-NMR spectroscopy. One was a taxol derivative hydroxylated on the phenyl group at C3' of the side chain at C13, while the other corresponded to a taxol derivative hydroxylated in the m-position on the benzoate of the side chain at C2. Although these two major taxol metabolites were as active as taxol in preventing cold microtubule disassembly, they were, respectively, 9 and 39 times less cytotoxic as taxol on in vitro L1210 leukemia growth. These results show for the first time that there is a significant hepatic metabolism of taxol.

Alkaloids↗

The antitumor activity of some palladium(II) complexes with chelating ligands.

A range of palladium(II) complexes with chelating ligands were assayed for their antitumor activity against the tumors P388 and S180 in female mice. The complexes tested were [Pd(L)(ONO2)2] (L = 2,2'-bipyridyl,2-(aminoethyl)pyridine (aep), 2-(aminomethyl)pyridine (amp], [Pd(eth)Cl2] (eth = ethionine) and [Pd(dach)(Meorot)] (dach = trans-1,2-diaminocyclohexane, Meorot = dianion of 3-methylorotic acid). The complexes were administered in water except [Pd(dach)(Meorot)] which was a suspension in klucel. The LD0 values were greater than or equal to 100 mg/kg. None of the complexes were active against the P388 tumor. [Pd(L)ONO2)2] (L = aep, amp) showed marginal activity against S180, while [Pd(dach-)(Meorot)] had an optimal T/C of 267% at dose of 150 mg/kg with 2/10 survivors on day 60.

Animals↗

Cytochrome P-450-mediated O-demethylation of two ellipticine derivatives. Differential effect of the murine Ah locus phenotype.

The O-demethylation of two antitumor drugs (9-methoxyellipticine and a 1-polyalkylamino-substituted analog) was studied by incubation with liver microsomes from rats and mice. The former drug underwent a cytochrome P1-450-independent biotransformation in mice, as shown by an indiscriminate response from individuals genetically responsive or nonresponsive to induction by 3-methylcholanthrene. On the other hand, the second drug was O-demethylated only by genetically responsive mice after pretreatment by 3-methylcholanthrene. It was also O-demethylated predominantly in rats pretreated with either 3-methylcholanthrene or Aroclor 1254.

Alkaloids↗