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[Antineoplastic and curative antileukemic activity of 1,4-benzoquinone guanylhydrazone thiosemicarbazone and its hydrochloride on in vivo murine models].

By means of four murine models, the authors demonstrated in vivo that 1,4-benzoquinone guanylhydrazone thiosemicarbazone (1), which is known to be antimicrobially active, and its hydrochloride (2) exert an antineoplastic effect. In leukaemia P 388 and leukaemia L 1210 both compounds had a curative action already after four oral administrations. The "cured" animals were resistant or cross-resistant to further transmissions of leukaemia. The resistance was transmissible by splenocytes.

Animals↗

Characterization of mouse leukemia L1210 cells resistant to the ribonucleotide reductase inhibitor 4-methyl-5-amino-1-formylisoquinoline thiosemicarbazone.

Mouse leukemia L1210 cells were generated for resistance to 4-methyl-5-amino-1-formylisoquinoline thiosemicarbazone (MAIQ), a potent inhibitor of ribonucleotide reductase that is directed in the nonheme iron subunit (NHI) of the enzyme. The resistant cells, MQ-580, showed an 8-fold increase in IC50 toward MAIQ, a 4-fold increase in IC50 toward hydroxyurea, and also showed resistance to other ribonucleotide reductase inhibitors. In addition, the MQ-580 cell line was resistant to nonribonucleotide reductase inhibitors such as etoposide, daunomycin and vinblastine, but not to cisplatin. The mRNA for the NHI subunit was increased 7-fold in the MQ-580 cells with essentially no change in the mRNA level for the effector-binding subunit. The ribonucleotide reductase activity in the cell-free extracts prepared from the MQ-580 cells was only slightly elevated (30%). However, passage of the cell-free extract from the MQ-580 cells over Sephadex G-25 resulted in a 4.8-fold increase in specific activity over that of the wild-type cells. While the reductase activity in the cell-free extract from the MQ-580 cells did not show altered sensitivity to MAIQ, the reductase activity in the cell-free extract from the MQ-580 cells was much more sensitive to the effects of the iron-chelating agents Desferal and EDTA. The cell pellets from the MQ-580 cells were much darker in color than the pellets from the wild-type cells or hydroxyurea-resistant cells. The supernatant fraction from the MQ-580 cells after-SDS-PAGE showed the appearance of a strong Coomassie blue-staining band at 50 kDA that was not apparent in either the wild-type or hydroxyurea-resistant cells. This new resistant cell line offers an opportunity to explore differences in resistance mechanisms of drugs (e.g. MAIQ and hydroxyurea) that are directed at the same subunit of ribonucleotide reductase.

Animals↗

Altered efflux properties of mouse leukemia L1210 cells resistant to 4-methyl-5-amino-1-formylisoquinoline thiosemicarbazone.

A mouse leukemia L1210 cell line, denoted MQ-580, that was selected for resistance to the ribonucleotide reductase inhibitor, 4-methyl-5-amino-1-formylisoquinoline thiosemicarbazone (MAIQ), in addition to having altered properties at the ribonucleotide reductase site had other alterations that contributed to its resistant phenotype; these included the expression of p-glycoprotein and the multi-drug resistance associated protein (MRP). The efflux of rhodamine 123 (Rh-123) or daunomycin (Dau) was greatly increased in MQ-580 cells compared to parental wild-type (WT) cells. The effluxes of Rh-123 and Dau were ATP- and temperature-dependent. The p-glycoprotein inhibitors, verapamil, cyclosporin A and reserpine blocked the efflux of both Rh-123 and Dau. In contrast, the inhibitors of MRP, MK571, BSO-treatment, arsenite and genistein did not block the efflux of either Rh-123 or Dau from MQ-580 cells. These findings suggest that the p-glycoprotein is the major transporter involved in effluxing Rh-123 and Dau from MQ-580 cells.

Adenosine Triphosphate↗