Sforza Daniel M, Annese Jacopo, Liu Dahai, Levy Shawn, Toga Arthur W, Smith Desmond J
Department of Molecular and Medical Pharmacology, School of Medicine, University of California, Los Angeles, California 90095-1735, USA.
Neurochem Res. 2004 Jun;29(6):1299-306. doi: 10.1023/b:nere.0000023616.67996.00.
Voxelation allows high-throughput acquisition of three-dimensional gene expression patterns in the brain through analysis of spatially registered voxels (cubes). The method results in multiple volumetric maps of gene expression analogous to the images reconstructed in biomedical imaging techniques. An important issue for voxelation is the development of approaches to anchor correctly harvested voxels to the underlying anatomy. Here, we describe experiments to identify fixation and cryopreservation protocols for improved registration of harvested voxels with neuroanatomical structures. Paraformaldehyde fixation greatly reduced RNA recovery as judged by ribosomal RNA abundance. However, gene expression signals from paraformaldehyde-fixed samples were not appreciably diminished as judged by average signal-noise ratios from microarrays, highlighting the difficulties of accurate quantitation of cross-linked RNA. Additional use of cryoprotection helped to improve further RNA recovery and signal from fixed tissue. It appears that the best protocol to provide the necessary resolution of neuroanatomical information in voxelation entails a controlled dose of fixation and thorough cryoprotection, complemented by histological staining.
体素化通过对空间配准的体素(立方体)进行分析,实现大脑三维基因表达模式的高通量采集。该方法可生成多个基因表达的体积图,类似于生物医学成像技术中重建的图像。体素化的一个重要问题是开发将正确采集的体素锚定到基础解剖结构的方法。在此,我们描述了一些实验,以确定固定和冷冻保存方案,以改善采集的体素与神经解剖结构的配准。根据核糖体RNA丰度判断,多聚甲醛固定会大大降低RNA回收率。然而,根据微阵列的平均信噪比判断,多聚甲醛固定样本的基因表达信号并未明显减弱,这凸显了交联RNA准确定量的困难。额外使用冷冻保护有助于进一步提高固定组织的RNA回收率和信号。看来,在体素化中提供必要的神经解剖信息分辨率的最佳方案需要控制固定剂量和彻底的冷冻保护,并辅以组织学染色。