Carmona-Carmona Cristian Andres, Dalla Pozza Elisa, Ambrosini Giulia, Errico Andrea, Dando Ilaria
Department of Neurosciences, Biomedicine and Movement Sciences, University of Verona, 37134 Verona, Italy.
Cancers (Basel). 2022 Apr 26;14(9):2155. doi: 10.3390/cancers14092155.
Pancreatic ductal adenocarcinoma (PDAC) is one of the most aggressive tumors; it is often diagnosed at an advanced stage and is hardly treatable. These issues are strictly linked to the absence of early diagnostic markers and the low efficacy of treatment approaches. Recently, the study of the metabolic alterations in cancer cells has opened the way to important findings that can be exploited to generate new potential therapies. Within this scenario, mitochondria represent important organelles within which many essential functions are necessary for cell survival, including some key reactions involved in energy metabolism. These organelles remodel their shape by dividing or fusing themselves in response to cellular needs or stimuli. Interestingly, many authors have shown that mitochondrial dynamic equilibrium is altered in many different tumor types. However, up to now, it is not clear whether PDAC cells preferentially take advantage of fusion or fission processes since some studies reported a wide range of different results. This review described the role of both mitochondria arrangement processes, i.e., fusion and fission events, in PDAC, showing that a preference for mitochondria fragmentation could sustain tumor needs. In addition, we also highlight the importance of considering the metabolic arrangement and mitochondria assessment of cancer stem cells, which represent the most aggressive tumor cell type that has been shown to have distinctive metabolic features to that of differentiated tumor cells.
胰腺导管腺癌(PDAC)是最具侵袭性的肿瘤之一;它通常在晚期才被诊断出来,且难以治疗。这些问题与缺乏早期诊断标志物以及治疗方法的低效性密切相关。最近,对癌细胞代谢改变的研究为一些重要发现开辟了道路,这些发现可用于开发新的潜在疗法。在这种情况下,线粒体是重要的细胞器,其中许多基本功能对于细胞存活是必需的,包括能量代谢中涉及的一些关键反应。这些细胞器会根据细胞需求或刺激通过分裂或融合来重塑自身形状。有趣的是,许多作者表明,线粒体动态平衡在许多不同肿瘤类型中都会发生改变。然而,到目前为止,尚不清楚PDAC细胞是优先利用融合还是裂变过程,因为一些研究报告了广泛的不同结果。这篇综述描述了线粒体排列过程(即融合和裂变事件)在PDAC中的作用,表明对线粒体碎片化的偏好可能满足肿瘤需求。此外,我们还强调了考虑癌症干细胞的代谢排列和线粒体评估的重要性,癌症干细胞是最具侵袭性的肿瘤细胞类型,已被证明具有与分化肿瘤细胞不同的代谢特征。