Moncharmont Coralie, Levy Antonin, Guy Jean-Baptiste, Falk Alexander T, Guilbert Matthieu, Trone Jane-Chloé, Alphonse Gersende, Gilormini Marion, Ardail Dominique, Toillon Robert-Alain, Rodriguez-Lafrasse Claire, Magné Nicolas
Laboratoire de Radiobiologie Cellulaire et Moléculaire, EMR3738, Faculté de Médecine Lyon Sud, 69921 Oullins, France; Department of Radiotherapy, Institut de Cancérologie de la Lucien Neuwirth, St Priest en Jarez, France.
Department of Radiotherapy, GustaveRoussy, Villejuif, France.
Crit Rev Oncol Hematol. 2014 Nov;92(2):133-42. doi: 10.1016/j.critrevonc.2014.05.006. Epub 2014 May 22.
Radiation therapy is a keystone treatment in cancer. Photon radiation has proved its benefits in overall survival in many clinical studies. However, some patients present local recurrences or metastases when cancer cells survive to treatment. Metastasis is a process which includes adhesion of the cell to the extracellular matrix, degradation of the matrix by proteases, cell motility, intravasation in blood or lymphatic vessels, extravasation in distant parenchyma and development of cell colonies. Several studies demonstrated that ionizing radiation might promote migration and invasion of tumor cells by intricate implications in the micro-environment, cell-cell junctions, extracellular matrix junctions, proteases secretion, and induction of epithelial-mesenchymal transition. This review reports various cellular pathways involved in the photon-enhanced cell invasion process for which potential therapeutic target may be employed for enhancing antitumor effectiveness. Understanding these mechanisms could lead to therapeutic strategies to counter the highly invasive cell lines via specific inhibitors or carbon-ion therapy.
放射治疗是癌症治疗的关键手段。在许多临床研究中,光子辐射已证明其对总生存期有益。然而,一些患者在癌细胞对治疗产生抗性时会出现局部复发或转移。转移是一个包括细胞与细胞外基质粘附、蛋白酶降解基质、细胞运动、进入血液或淋巴管、在远处实质组织中渗出以及细胞集落形成的过程。多项研究表明,电离辐射可能通过对微环境、细胞间连接、细胞外基质连接、蛋白酶分泌以及上皮-间质转化的复杂影响来促进肿瘤细胞的迁移和侵袭。本综述报告了光子增强细胞侵袭过程中涉及的各种细胞途径,针对这些途径可能采用潜在的治疗靶点来提高抗肿瘤效果。了解这些机制可能会带来通过特定抑制剂或碳离子疗法对抗高侵袭性细胞系的治疗策略。