Chemo-cryo combination therapy: An adjunctive model for the treatment of prostate cancer

被引:88
作者
Clarke, DM [1 ]
Baust, JM [1 ]
Van Buskirk, RG [1 ]
Baust, JG [1 ]
机构
[1] SUNY Binghamton, Inst Biomed Technol, Binghamton, NY 13902 USA
关键词
chemotherapy; cryotherapy; apoptosis; adjuvant therapy; cytotoxic agent; 5-FU; necrosis;
D O I
10.1006/cryo.2001.2333
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Despite continuing research and the development of alternate therapeutic options, prostate cancer remains problematic. Chemotherapy has played a minor role as a treatment option due to its lack Of efficacy. Whereas cryotherapy has received renewed attention as a treatment modality, it too fails to offer an absolute curative option. Previously, we reported on the utilization of a therapeutic model, which, in combination, increases cell death in a canine renal cell model. Based upon that study, we investigated a combination therapy model as an alternative for the treatment modality for prostate cancer. We hypothesized that the combination of chemotherapy and cryosurgery would result in enhanced cell death, thereby presenting a more effective treatment of prostate cancer. A human prostate cancer cell (PC-3) model was exposed to 5-fluorouracil (5-FU) for 2 and 4 days (prefreeze), freezing (-5 to -100 degreesC), or a combination of the two treatments, and each was assessed for effectiveness over a 2-week posttreatment period. Additionally, investigation into the mechanisms of cell death initiated by the respective therapies was performed through DNA cleavage analysis. For chemotherapy, cultures exposed to 5-FU (2-4 days) yielded a 15-25% loss in cell survival. For cryotherapy, cultures exposed to a temperature window of -5 to -20 degreesC yielded an initial 5-70% loss of viability but cells propagated over time. Cultures exposed to temperatures of -25 to -80 degreesC yielded a 90-99% (+/-4.5%) initial loss in viability with repopulation observed by 12 days postthaw. Cells frozen to -100 degreesC yielded 100% (+/-0.3%) loss of viability and exhibited no signs of propagation. For chemo-cryotherapy, combination treatment at milder temperatures (-5 to -25 degreesC) resulted in an enhanced loss of cell viability compared to that for either treatment alone. Combination treatment at lower temperatures (-40 to -80 degreesC) resulted in a complete loss of cell viability. DNA fragmentation analysis at 48 It posttreatment revealed that dead (detached) cells treated with 5-FU died primarily through apoptosis, whereas dead cells from freezing (-15 degreesC) alone died primarily through freeze-rupture and necrosis. Detached cell analysis front combination treatment at -15 degreesC revealed the presence of apoptotic, necrotic, and freeze-rupture cell death. Scanning electron micrographs of cells exposed to freezing contributing to cell death. These data demonstrate that the combination of 5-FU at sublethal doses and freezing temperatures improves human prostate cancer cell death efficacy. Further, we suggest that chemo-cryotherapy offers a potential alternative treatment for the control and eradication of prostate cancer. (C) 2001 Elsevier Science.
引用
收藏
页码:274 / 285
页数:12
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