Moscheni Claudia, Malucelli Emil, Castiglioni Sara, Procopio Alessandra, De Palma Clara, Sorrentino Andrea, Sartori Patrizia, Locatelli Laura, Pereiro Eva, Maier Jeanette A, Iotti Stefano
Department of Biomedical and Clinical Sciences "Luigi Sacco", Università degli Studi di Milano, 20157 Milano, Italy.
Department of Pharmacy and Biotechnology, University of Bologna, 40127 Bologna, Italy.
Cancers (Basel). 2019 Aug 27;11(9):1254. doi: 10.3390/cancers11091254.
Drug resistance remains a major obstacle in cancer treatment. Because mitochondria mediate metabolic reprogramming in cancer drug resistance, we focused on these organelles in doxorubicin sensitive and resistant colon carcinoma cells. We employed soft X-ray cryo nano-tomography to map three-dimensionally these cells at nanometer-resolution and investigate the correlation between mitochondrial morphology and drug resistance phenotype. We have identified significant structural differences in the morphology of mitochondria in the two strains of cancer cells, as well as lower amounts of Reactive oxygen species (ROS) in resistant than in sensitive cells. We speculate that these features could elicit an impaired mitochondrial communication in resistant cells, thus preventing the formation of the interconnected mitochondrial network as clearly detected in the sensitive cells. In fact, the qualitative and quantitative three-dimensional assessment of the mitochondrial morphology highlights a different structural organization in resistant cells, which reflects a metabolic cellular adaptation functional to survive to the offense exerted by the antineoplastic treatment.
耐药性仍然是癌症治疗中的一个主要障碍。由于线粒体介导癌症耐药中的代谢重编程,我们将重点放在阿霉素敏感和耐药的结肠癌细胞中的这些细胞器上。我们采用软X射线冷冻纳米断层扫描技术以纳米分辨率对这些细胞进行三维成像,并研究线粒体形态与耐药表型之间的相关性。我们已经确定了两种癌细胞株中线粒体形态的显著结构差异,以及耐药细胞中活性氧(ROS)的含量低于敏感细胞。我们推测这些特征可能导致耐药细胞中线粒体通讯受损,从而阻止了在敏感细胞中清晰检测到的相互连接的线粒体网络的形成。事实上,线粒体形态的定性和定量三维评估突出了耐药细胞中不同的结构组织,这反映了细胞代谢适应性,使其能够在抗肿瘤治疗的攻击下存活。