CLARITY 提高了长期存档人脑组织中荧光免疫染色的灵敏度和特异性。
CLARITY increases sensitivity and specificity of fluorescence immunostaining in long-term archived human brain tissue.
机构信息
Institute for Anatomy and Cell Biology, Ulm University, Albert-Einstein-Allee 11, 89081, Ulm, Germany.
International Graduate School in Molecular Medicine Ulm, IGradU, 89081, Ulm, Germany.
出版信息
BMC Biol. 2023 May 24;21(1):113. doi: 10.1186/s12915-023-01582-6.
BACKGROUND
Post mortem human brain tissue is an essential resource to study cell types, connectivity as well as subcellular structures down to the molecular setup of the central nervous system especially with respect to the plethora of brain diseases. A key method is immunostaining with fluorescent dyes, which allows high-resolution imaging in three dimensions of multiple structures simultaneously. Although there are large collections of formalin-fixed brains, research is often limited because several conditions arise that complicate the use of human brain tissue for high-resolution fluorescence microscopy.
RESULTS
In this study, we developed a clearing approach for immunofluorescence-based analysis of perfusion- and immersion-fixed post mortem human brain tissue, termed human Clear Lipid-exchanged Acrylamide-hybridized Rigid Imaging / Immunostaining / In situ hybridization-compatible Tissue-hYdrogel (hCLARITY). hCLARITY is optimized for specificity by reducing off-target labeling and yields very sensitive stainings in human brain sections allowing for super-resolution microscopy with unprecedented imaging of pre- and postsynaptic compartments. Moreover, hallmarks of Alzheimer's disease were preserved with hCLARITY, and importantly classical 3,3'-diaminobenzidine (DAB) or Nissl stainings are compatible with this protocol. hCLARITY is very versatile as demonstrated by the use of more than 30 well performing antibodies and allows for de- and subsequent re-staining of the same tissue section, which is important for multi-labeling approaches, e.g., in super-resolution microscopy.
CONCLUSIONS
Taken together, hCLARITY enables research of the human brain with high sensitivity and down to sub-diffraction resolution. It therefore has enormous potential for the investigation of local morphological changes, e.g., in neurodegenerative diseases.
背景
死后的人脑组织是研究细胞类型、连接以及亚细胞结构的重要资源,甚至可以深入到中枢神经系统的分子结构,尤其是在大量脑部疾病的情况下。一种关键的方法是使用荧光染料进行免疫染色,这允许对多个结构进行高分辨率的三维同时成像。尽管有大量的福尔马林固定的大脑,但由于出现了多种情况,使得使用人脑组织进行高分辨率荧光显微镜检查变得复杂,因此研究往往受到限制。
结果
在这项研究中,我们开发了一种用于灌注和浸泡固定的死后人脑组织的免疫荧光分析的透明化方法,称为人透明脂质交换丙烯酰胺杂交刚性成像/免疫染色/原位杂交兼容组织水凝胶(hCLARITY)。hCLARITY 通过减少非靶向标记来优化特异性,并在人脑切片中产生非常敏感的染色,允许使用超分辨率显微镜以前所未有的方式对前突触和后突触隔室进行成像。此外,hCLARITY 保留了阿尔茨海默病的特征,重要的是,经典的 3,3'-二氨基联苯胺(DAB)或尼氏染色与该方案兼容。hCLARITY 非常通用,如使用 30 多种性能良好的抗体所示,并允许对同一组织切片进行去染色和随后重新染色,这对于多标记方法很重要,例如在超分辨率显微镜检查中。
结论
总之,hCLARITY 使我们能够以高灵敏度和亚衍射分辨率研究人脑。因此,它在研究局部形态变化方面具有巨大的潜力,例如在神经退行性疾病中。