Department of Neuroimaging, Barrow Neurological Institute, St. Joseph's Hospital and Medical Center, Phoenix, AZ, USA.
Department of Neurobiology, Barrow Neurological Institute, St. Joseph's Hospital and Medical Center, Phoenix, AZ, USA.
Sci Rep. 2020 Oct 14;10(1):17324. doi: 10.1038/s41598-020-74459-1.
Many neurological diseases present with substantial genetic and phenotypic heterogeneity, making assessment of these diseases challenging. This has led to ineffective treatments, significant morbidity, and high mortality rates for patients with neurological diseases, including brain cancers and neurodegenerative disorders. Improved understanding of this heterogeneity is necessary if more effective treatments are to be developed. We describe a new method to measure phenotypic heterogeneity across the whole rodent brain at multiple spatial scales. The method involves co-registration and localized comparison of in vivo radiologic images (e.g. MRI, PET) with ex vivo optical reporter images (e.g. labeled cells, molecular targets, microvasculature) of optically cleared tissue slices. Ex vivo fluorescent images of optically cleared pathology slices are acquired with a preclinical in vivo optical imaging system across the entire rodent brain in under five minutes, making this methodology practical and feasible for most preclinical imaging labs. The methodology is applied in various examples demonstrating how it might be used to cross-validate and compare in vivo radiologic imaging with ex vivo optical imaging techniques for assessing hypoxia, microvasculature, and tumor growth.
许多神经疾病表现出显著的遗传和表型异质性,这使得这些疾病的评估具有挑战性。这导致了神经疾病患者(包括脑癌和神经退行性疾病)治疗效果不佳、发病率高和死亡率高。如果要开发更有效的治疗方法,就必须更好地了解这种异质性。我们描述了一种新的方法,可在多个空间尺度上测量整个啮齿动物大脑的表型异质性。该方法涉及将体内放射图像(例如 MRI、PET)与体外光学报告者图像(例如标记细胞、分子靶标、微血管)进行配准和局部比较,对经光学透明化处理的组织切片进行。通过临床前体内光学成像系统,可在不到五分钟的时间内获取经光学透明化处理的病变切片的体外荧光图像,这使得该方法在大多数临床前成像实验室中都具有实用性和可行性。该方法在各种示例中得到了应用,展示了如何将体内放射成像与体外光学成像技术交叉验证和比较,以评估缺氧、微血管和肿瘤生长。