Kadhim S A, Wang J Y, McLean B, Chin J L
Department of Surgery, University Hospital, University of Western Ontario, London, Canada.
Urol Res. 1991;19(1):63-8. doi: 10.1007/BF00294024.
Previously we reported sensitivity of MBT-2 murine bladder tumour to tumour necrosis factor (TNF) in vivo and in vitro [8]. We showed that with prolonged exposure of cultured MBT-2 tumour cells to TNF, a resistant MBT-2 "variant" tumour cell population emerged in vitro. This concurred with the finding of transient in vivo cytotoxic effect of TNF against MBT-2 tumour. Herein, we delineate phenotypic changes in MBT-2 cells associated with TNF resistance. Parent MBT-2 (MBT-2P) and the TNF-resistant "variant" MBT-2R cells were compared in terms of in vitro sensitivity to TNF, DNA profile, karyotype and in vitro growth kinetics. We conclude that acquisition of resistance to TNF may be due to cell cycle derangement and differences in in vitro growth characteristics. DNA indices and karyotype of "variant" MBT-2R cells were not altered, indicating the anti-tumour action of TNF is not-mutagenic.
此前我们报道了MBT-2小鼠膀胱肿瘤在体内和体外对肿瘤坏死因子(TNF)敏感[8]。我们发现,随着培养的MBT-2肿瘤细胞长时间暴露于TNF,体外出现了对TNF耐药的MBT-2“变异”肿瘤细胞群体。这与TNF对MBT-2肿瘤的体内短暂细胞毒性作用的发现一致。在此,我们描述了与TNF耐药相关的MBT-2细胞的表型变化。比较了亲代MBT-2(MBT-2P)和对TNF耐药的“变异”MBT-2R细胞在体外对TNF的敏感性、DNA谱、核型和体外生长动力学。我们得出结论,对TNF耐药性的获得可能是由于细胞周期紊乱和体外生长特性的差异。“变异”MBT-2R细胞的DNA指数和核型未改变,表明TNF的抗肿瘤作用不是致突变的。