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Modulation of adriamycin toxicity by tissue-specific induction of metallothionein synthesis in mice

机译:通过组织特异性诱导金属硫蛋白合成对小鼠阿霉素毒性的调节

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The effect of tissue specific induction of metallothionein (MT) by preadministration of metal compounds on the antitumor activity and adverse effects of adriamycin (ADR) was examined using mice bearing colon 38 adenocarcinoma. Significant increase in MT concentration was observed in the heart and bone marrow but not in the tumor tissue of the mice given bismuth (Bi) compound. Copper (Cu) increased MT in the tumor tissue but did not induce MT either in bone marrow or in the heart, whereas zinc (Zn) increased MT level in the heart and bone marrow as well as in the tumor tissue. ADR exerted cardiotoxicity, indicated by increase in lipid peroxidation in the heart, bone marrow toxicity, indicated by decrease in number of peripheral leukocytes, and antitumor activity, assessed by reduction of tumor weight, in tumor-bearing mice untreated with MT inducing metal compounds. Preadministration of Bi significantly reduced the cardiotoxicity and bone marrow toxicity without compromising the antitumor activity of ADR. Cu pretreatment did not affect the extent of cardiotoxicity and bone marrow toxicity but significantly suppressed the antitumor effect. Pretreatment with Zn markedly reduced not only the adverse side effects but also the antitumor activity. The results described above suggest that ADR toxicity can be attenuated in the tissues in which the MT level was elevated and that the: tissue specific induction of MT synthesis may provide a promising regimen for cancer chemotherapy. (C) 2000 Elsevier Science Inc. All rights reserved. [References: 26]
机译:使用带有结肠38腺癌的小鼠检查了预先施用金属化合物对金属硫蛋白(MT)的组织特异性诱导对抗肿瘤活性和阿霉素(ADR)不利影响的作用。在使用铋(Bi)化合物的小鼠的心脏和骨髓中观察到MT浓度显着增加,但在肿瘤组织中未观察到。铜(Cu)增加了肿瘤组织中的MT,但在骨髓或心脏中均未诱导MT,而锌(Zn)增加了心脏,骨髓以及肿瘤组织中的MT水平。在未经MT诱导金属化合物治疗的荷瘤小鼠中,ADR表现出心脏毒性,其表现为心脏脂质过氧化反应的增加,心脏表现为骨髓毒性,其表现为外周血白细胞数量减少,抗肿瘤活性通过降低肿瘤重量来评估。 Bi的预先给药可显着降低心脏毒性和骨髓毒性,而不会损害ADR的抗肿瘤活性。铜预处理不影响心脏毒性和骨髓毒性的程度,但显着抑制了抗肿瘤作用。锌预处理不仅显着降低了不良副作用,而且还显着降低了抗肿瘤活性。以上所述的结果表明,在MT水平升高的组织中,ADR毒性可以被减轻,并且:MT合成的组织特异性诱导可以为癌症化学疗法提供有希望的方案。 (C)2000 Elsevier Science Inc.保留所有权利。 [参考:26]

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