顺铂
生物
癌症研究
化疗
癌症
生物信息学
细胞凋亡
DNA修复
遗传学
基因
作者
Margaretha A. Skowron,Christoph Oing,Felix Bremmer,Philipp Ströbel,Matthew J. Murray,Nicholas Coleman,James F. Amatruda,Friedemann Honecker,Carsten Bokemeyer,Peter Albers,Daniel Nettersheim
出处
期刊:Cancer Letters
[Elsevier BV]
日期:2021-07-25
卷期号:519: 199-210
被引量:46
标识
DOI:10.1016/j.canlet.2021.07.037
摘要
Cisplatin-based chemotherapy has been used for more than four decades as a standard therapeutic option in several tumor entities. However, being a multifaceted and heterogeneous phenomenon, inherent or acquired resistance to cisplatin remains a major obstacle during the treatment of several solid malignancies and inevitably results in disease progression. Hence, we felt there was an urgent need to evaluate common mechanisms between multifarious cancer entities to identify patient-specific therapeutic strategies. We found joint molecular and (epi)genetic resistance mechanisms and specific cisplatin-induced mutational signatures that depended on the developmental origin (endo-, meso-, ectoderm) of the tumor tissue. Based on the findings of thirteen tumor entities, we identified three resistance groups, where Group 1 (endodermal origin) prominently indicates NRF2-pathway activation, Group 2 (mesodermal origin, primordial germ cells) shares elevated DNA repair mechanisms and decreased apoptosis induction, and Group 3 (ectodermal and paraxial mesodermal origin) commonly presents deregulated apoptosis induction and alternating pathways as the main cisplatin-induced resistance mechanisms. This review further proposes potential and novel therapeutic strategies to improve the outcome of cisplatin-based chemotherapy.
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