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肿瘤坏死因子-α与白喉毒素介导的细胞毒性在敏感和耐药人卵巢肿瘤细胞系中的协同作用。

Synergistic effect of tumor necrosis factor-alpha- and diphtheria toxin-mediated cytotoxicity in sensitive and resistant human ovarian tumor cell lines.

作者信息

Morimoto H, Safrit J T, Bonavida B

机构信息

Department of Microbiology and Immunology, UCLA School of Medicine, University of California 90024.

出版信息

J Immunol. 1991 Oct 15;147(8):2609-16.

PMID:1918981
Abstract

Recent studies have demonstrated that diphtheria toxin (DTX) also mediates target cell lysis, and the mechanism of cytotoxicity has many features similar to those of cytotoxicity mediated by TNF-alpha. Thus, we hypothesized that DTX and TNF-alpha, used in combination, may result in either additive or synergistic cytotoxic activity. This was examined on three human ovarian carcinoma cell lines chosen for their differing sensitivities to TNF-alpha and DTX, i.e., 222, which is sensitive to both TNF-alpha and DTX, 222TR, a TNF-alpha-resistant DTX-sensitive variant of 222, and SKOV-3, which is resistant to both DTX and TNF-alpha. The simultaneous use of DTX and TNF-alpha at suboptimal concentrations resulted in synergistic cytotoxic activity against all three lines tested, thus overcoming the TNF-alpha resistance of 222TR and the double resistance of SKOV-3. DNA fragmentation was observed in all three lines treated with DTX and TNF-alpha and occurred as early as 4 h after treatment. Cycloheximide, actinomycin D, or emetine, at concentrations causing greater than 90% protein synthesis inhibition, did not result in cytotoxicity alone or synergy with TNF-alpha, suggesting that synergy by DTX was not due to its ability to inhibit protein synthesis. The use of energy poisons and pH conditions that inhibit DTX-mediated cytotoxicity resulted in the abrogation of synergy. These findings show that the two cytotoxic agents TNF-alpha and DTX, when used at suboptimal concentrations, synergize in their cytotoxic activity against sensitive and resistant cell lines. Because the SKOV-3 cell line used here is also resistant to chemotherapeutic drugs, combination treatment with DTX and TNF-alpha may be beneficial in overcoming drug resistance.

摘要

最近的研究表明,白喉毒素(DTX)也介导靶细胞裂解,其细胞毒性机制具有许多与TNF-α介导的细胞毒性相似的特征。因此,我们推测,联合使用DTX和TNF-α可能会产生相加或协同的细胞毒性活性。我们选用了三种对TNF-α和DTX敏感性不同的人卵巢癌细胞系进行研究,即对TNF-α和DTX均敏感的222细胞系、222细胞系的TNF-α耐药而DTX敏感的变异株222TR细胞系,以及对DTX和TNF-α均耐药的SKOV-3细胞系。在次优浓度下同时使用DTX和TNF-α,对所有三种受试细胞系均产生协同细胞毒性活性,从而克服了222TR细胞系对TNF-α的耐药性以及SKOV-3细胞系的双重耐药性。在用DTX和TNF-α处理的所有三种细胞系中均观察到DNA片段化,且在处理后4小时就已出现。放线菌酮、放线菌素D或依米丁在浓度足以导致90%以上蛋白质合成抑制时,单独使用不会导致细胞毒性,与TNF-α联合使用也不会产生协同作用,这表明DTX产生的协同作用并非因其抑制蛋白质合成的能力。使用抑制DTX介导的细胞毒性的能量毒物和pH条件会导致协同作用消失。这些研究结果表明。两种细胞毒性药物TNF-α和DTX在次优浓度下联合使用时,对敏感和耐药细胞系的细胞毒性活性具有协同作用。由于这里使用的SKOV-3细胞系对化疗药物也具有耐药性,因此联合使用DTX和TNF-α进行治疗可能有助于克服耐药性。

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