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通过用丁硫氨酸亚砜胺联合肿瘤坏死因子-α(TNF-α)和/或顺铂(cddp)处理,克服人卵巢癌细胞系(C30)对TNF-α和顺铂的耐药性。

Overcoming tnf-alpha and cddp resistance of a human ovarian-cancer cell-line (c30) by treatment with buthionine sulfoximine in combination with tnf-alpha and or cddp.

作者信息

Mizutani Y, Bonavida B

机构信息

UNIV CALIF LOS ANGELES,SCH MED,DEPT MICROBIOL & IMMUNOL,LOS ANGELES,CA 90024. KYOTO UNIV,FAC MED,DEPT UROL,KYOTO 606,JAPAN.

出版信息

Int J Oncol. 1993 Aug;3(2):229-35. doi: 10.3892/ijo.3.2.229.

Abstract

Previous studies have demonstrated that glutathione (GSH) plays an important role in a wide range of cellular functions including protection, detoxification, transport and metabolism. GSH has been implicated in tumor cell resistance to drugs and/or cytotoxic factors. Buthionine sulfoximine (BSO), a specific inhibitor of gamma-glutamylcysteine synthetase, depletes intracellular GSH and thus could reverse resistance. The present study investigated the effect of BSO used in combination with tumor necrosis factor-alpha (TNF-alpha) or cisdiamminedichloroplatinum (II) (CDDP) on cytotoxicity of a TNF-alpha and CDDP resistant human ovarian cancer cell line (C30). Cytotoxicity was monitored by the MTT assay. Treatment of C30 cells with BSO and CDDP or BSO and TNF-alpha resulted in overcoming resistance and a synergistic cytotoxic effect was obtained. Pretreatment of the tumor cells by either agent for 4 h and wash and followed by the addition of the second agent for 20 h resulted in the same cytotoxicity as observed in the presence of the two agents. Furthermore, combination treatment with BSO, CDDP and TNF-alpha further augmented the synergistic cytotoxic activity achieved by two agents against C30 cells. The protective effect of GSH was shown for TNF-alpha but not for CDDP as treatment of C30 cells with TNF-alpha in combination with GSH or N-acetyl-cysteine (NAC) reduced the cytotoxic effect of TNF-alpha. One mechanism of resistance to TNF-alpha in tumor cells is through the induction of TNF-alpha mRNA and/or protein. The C30 cells did not constitutively express TNF-alpha mRNA, however, treatment of C30 cells with TNF-alpha upregulated the expression of TNF-alpha mRNA. When BSO was used in combination with TNF-alpha, the level of TNF-alpha mRNA induced by TNF-alpha was markedly reduced. Further, incubation of C30 cells with TNF-alpha in conjunction with GSH or NAC also downregulated the expression of TNF-alpha mRNA induced by TNF-alpha. These findings demonstrate that treatment with BSO in combination with TNF-alpha or CDDP can overcome the resistance of C30 tumor cells to TNF-alpha and CDDP. The depletion of intracellular GSH and downregulation of TNF-alpha mRNA by BSO may play a role in the enhanced cytotoxicity seen with the combination of BSO and TNF-alpha. The synergistic effect obtained with a CDDP selected resistant ovarian cancer cell line suggests that treatment with BSO in conjunction with either TNF-alpha or CDDP, or TNF-alpha and CDDP may have a clinical application in the therapy of TNF-alpha and/or CDDP resistant ovarian tumors'

摘要

先前的研究表明,谷胱甘肽(GSH)在广泛的细胞功能中发挥着重要作用,包括保护、解毒、转运和代谢。GSH与肿瘤细胞对药物和/或细胞毒性因子的抗性有关。丁硫氨酸亚砜胺(BSO)是γ-谷氨酰半胱氨酸合成酶的特异性抑制剂,可消耗细胞内的GSH,从而逆转抗性。本研究调查了BSO与肿瘤坏死因子-α(TNF-α)或顺二氯二氨铂(II)(CDDP)联合使用对耐TNF-α和CDDP的人卵巢癌细胞系(C30)细胞毒性的影响。通过MTT法监测细胞毒性。用BSO和CDDP或BSO和TNF-α处理C30细胞可克服抗性,并获得协同细胞毒性作用。用任何一种药物预处理肿瘤细胞4小时,冲洗后再加入第二种药物20小时,产生的细胞毒性与两种药物同时存在时观察到的相同。此外,BSO、CDDP和TNF-α联合治疗进一步增强了两种药物对C30细胞的协同细胞毒性活性。GSH对TNF-α有保护作用,但对CDDP没有,因为用TNF-α与GSH或N-乙酰半胱氨酸(NAC)联合处理C30细胞可降低TNF-α的细胞毒性作用。肿瘤细胞对TNF-α抗性的一种机制是通过诱导TNF-α mRNA和/或蛋白质。C30细胞不组成性表达TNF-α mRNA,然而,用TNF-α处理C30细胞会上调TNF-α mRNA的表达。当BSO与TNF-α联合使用时,TNF-α诱导的TNF-α mRNA水平明显降低。此外,将C30细胞与TNF-α以及GSH或NAC一起孵育也下调了TNF-α诱导的TNF-α mRNA的表达。这些发现表明,用BSO与TNF-α或CDDP联合治疗可克服C30肿瘤细胞对TNF-α和CDDP的抗性。BSO导致的细胞内GSH消耗和TNF-α mRNA下调可能在BSO与TNF-α联合使用时增强的细胞毒性中起作用。在一个对CDDP耐药的卵巢癌细胞系中获得的协同效应表明,用BSO与TNF-α或CDDP,或TNF-α和CDDP联合治疗可能在治疗耐TNF-α和/或CDDP的卵巢肿瘤中有临床应用。

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