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Biomedical subjects

E Hefter

Publications and source records attributed to E Hefter.

9 recordsLinked to original sources

On interactions of cytostatic benzylidine hydrazines with SH-groups.

The cytostatic and mutagenic compound N'-methyl-N'-cyano-(p-chloro)-benzaldehyde hydrazone (CyB4) has been found to be a strong SH-blocking agent since it reacts with the thiol groups of glutathione and of the cell membrane of Ehrlich ascites carcinoma cells (EAC). Furthermore, it decreases the intracellular, non-proteinogenic SH(NPSH)-level of tumor cells. CyB4 is not able to alkylate 4-(p-nitrobenzyl)-pyridine (NBP) by a nucleophilic substitution reaction, but it could be shown that the reactivity of CyB4 with thiol groups is due to a Michael-addition-type reaction of SH-groups with the cyano-group of CyB4. On the other hand, cytostatic beta-chloroethyl hydrazones showed a negligible reactivity against glutathione and led even to an increase of thiol groups, detectable by the 5,5'-dithiobis-2-nitrobenzoic acid (DTNB)-method, at the cell membrane of EAC when incubated in the presence of beta-chloroethyl hydrazones N-benzylidene-N'-methyl-N'-(2-chloroethyl) hydrazine (B1) and N-(4-dimethylaminobenzylidene)-N'-methyl-N'-(2-chloroethyl) hydrazine (B2). Therefore, it is concluded that the cytostatic efficiency of CyB4 is due to its SH-blocking while that of the beta-chloroethyl hydrazones is due to a rearrangement of the tumor cell membrane, as indicated by the increased level of reactive SH-groups.

Alkylating Agents

[Effect of N'-methyl-N'-beta-chlorethylbenzaldehyde hydrazone on aerobic glycolysis in Ehrlich ascites cells].

N'-Methyl-N'-beta-chloroethylhydrazones are potent inducers of aerobic glycolysis of Ehrlich ascites carcinoma (E.A.) cells without influencing directly the respiration which is reduced only after glycolysis is at its maximum. This induction of glycolysis is not influenced by simultaneous blocking of respiration by potassium cyanide. A primary attack on the cell membrane leading to an increased glucose influx is discussed because of the in vitro inhibition of these beta-chloroethylhydrazones of glyceraldehyde-3-phosphate oxidoreductase.

Animals

[On structure-activity relationships of N'methyl-N'-beta-chloroethyl-benzaldehyde hydrazones (author's transl)].

The inhibition of uridine and thymidine in Ehrlich ascites cells is a basic property of the methylhydrazone structure and is reinforced by introducing a beta-chloroethyl group. This was shown by variation of the substituents at the N'-nitrogen atom of N'-methyl-N'-beta-chloroethyl-benzaldehyde hydrazone. Probably this action is due to an ethylenimmonium intermediate. This is derived from the observation that substituents which increase the nucleophilic property of the N'-nitrogen atom show a greater inhibitory effect in vitro. The therapeutic effect, however, is not enhanced when tested on the solid Ehrlich ascites tumor of mice. A better therapeutic effect resulted from introduction of chlorine atoms in positions 3 and 4 of the ring which inhbiits as well a probable metabolic hydroxylation of the ring.

Animals