School of Psychology, University of Ottawa, 156 Jean-Jacques Lussier, Ottawa, ON, K1N 6N5, Canada.
Department of Medical Physics, Division of Radiation Oncology, University of Ottawa, Ottawa, Canada.
Sci Rep. 2024 Aug 29;14(1):20143. doi: 10.1038/s41598-024-71038-6.
Radiation therapy and stereotactic radiosurgery are common treatments for brain malignancies. However, the impact of radiation on underlying neuronal circuits is poorly understood. In the prefrontal cortex (PFC), neurons communicate via action potentials that control cognitive processes, thus it is important to understand the impact of radiation on these circuits. Here we present a novel protocol to investigate the effect of radiation on the activity and survival of PFC networks in vitro. Escalating doses of radiation were applied to PFC slices using a robotic radiosurgery platform at a standard dose rate of 10 Gy/min. High-density multielectrode array recordings of radiated slices were collected to capture extracellular activity across 4,096 channels. Radiated slices showed an increase in firing rate, functional connectivity, and complexity. Graph-theoretic measures of functional connectivity were altered following radiation. These results were compared to pharmacologically induced epileptic slices where neural complexity was markedly elevated, and functional connections were strong but remained spatially focused. Finally, propidium iodide staining revealed a dose-dependent effect of radiation on apoptosis. These findings provide a novel assay to investigate the impacts of clinically relevant doses of radiation on brain circuits and highlight the acute effects of escalating radiation doses on PFC neurons.
放射治疗和立体定向放射外科是治疗脑恶性肿瘤的常用方法。然而,辐射对潜在神经元回路的影响还知之甚少。在大脑前额叶皮层(PFC)中,神经元通过动作电位进行通讯,这些动作电位控制着认知过程,因此了解辐射对这些回路的影响很重要。在这里,我们提出了一种新的方案,以研究辐射对体外 PFC 网络活性和存活的影响。使用机器人放射外科平台以 10 Gy/min 的标准剂量率将递增剂量的辐射应用于 PFC 切片。对辐射切片进行高密度多电极阵列记录,以在 4096 个通道上捕获细胞外活动。辐射后的切片显示出放电率、功能连接和复杂性的增加。功能连接的图论度量在辐射后发生了改变。这些结果与癫痫发作的药理学诱导切片进行了比较,其中神经复杂性明显升高,功能连接虽然很强但仍保持空间集中。最后,碘化丙啶染色显示辐射对细胞凋亡有剂量依赖性的影响。这些发现提供了一种新的方法来研究与临床相关剂量的辐射对大脑回路的影响,并强调了递增辐射剂量对 PFC 神经元的急性影响。