Voshart Daniëlle C, Wiedemann Julia, van Luijk Peter, Barazzuol Lara
Department of Radiation Oncology, University of Groningen, University Medical Center Groningen, 9700 RB Groningen, The Netherlands.
Department of Biomedical Sciences of Cells & Systems-Section Molecular Cell Biology, University of Groningen, University Medical Center Groningen, 9700 RB Groningen, The Netherlands.
Cancers (Basel). 2021 Jan 20;13(3):367. doi: 10.3390/cancers13030367.
Normal tissue side effects remain a major concern in radiotherapy. The improved precision of radiation dose delivery of recent technological developments in radiotherapy has the potential to reduce the radiation dose to organ regions that contribute the most to the development of side effects. This review discusses the contribution of regional variation in radiation responses in several organs. In the brain, various regions were found to contribute to radiation-induced neurocognitive dysfunction. In the parotid gland, the region containing the major ducts was found to be critical in hyposalivation. The heart and lung were each found to exhibit regional responses while also mutually affecting each other's response to radiation. Sub-structures critical for the development of side effects were identified in the pancreas and bladder. The presence of these regional responses is based on a non-uniform distribution of target cells or sub-structures critical for organ function. These characteristics are common to most organs in the body and we therefore hypothesize that regional responses in radiation-induced normal tissue damage may be a shared occurrence. Further investigations will offer new opportunities to reduce normal tissue side effects of radiotherapy using modern and high-precision technologies.
正常组织的副作用仍然是放射治疗中的一个主要问题。放射治疗中近期技术发展所带来的放射剂量递送精度的提高,有可能降低对副作用发展贡献最大的器官区域的辐射剂量。本综述讨论了几个器官中辐射反应的区域差异的作用。在大脑中,发现不同区域对辐射诱导的神经认知功能障碍有影响。在腮腺中,发现包含主导管的区域对唾液分泌减少至关重要。心脏和肺各自表现出区域反应,同时也相互影响对方对辐射的反应。在胰腺和膀胱中确定了对副作用发展至关重要的亚结构。这些区域反应的存在是基于对器官功能至关重要的靶细胞或亚结构的不均匀分布。这些特征在身体的大多数器官中都很常见,因此我们假设辐射诱导的正常组织损伤中的区域反应可能是一种共同现象。进一步的研究将为利用现代高精度技术减少放射治疗的正常组织副作用提供新的机会。