Washington University School of Medicine, Department of Neurology, St. Louis, MO 63110, USA.
STAR Protoc. 2021 Jan 13;2(1):100268. doi: 10.1016/j.xpro.2020.100268. eCollection 2021 Mar 19.
Synapses are crucial to brain function and frequent disease targets, but current analysis methods cannot report on individual synaptic components or present barriers to widespread adoption. SEQUIN was developed to address this challenge. SEQUIN utilizes a widely available super-resolution platform in tandem with image processing and analysis to quantify synaptic loci over large regions of brain and characterize their molecular and nanostructural properties at the individual and population level. This protocol describes quantification of synaptic loci using SEQUIN. For additional details on the use and execution of this protocol, please refer to Sauerbeck et al. (2020).
突触对于大脑功能至关重要,也是常见疾病的靶点,但目前的分析方法无法报告单个突触成分,也无法广泛采用。SEQUIN 的开发就是为了解决这一挑战。SEQUIN 利用广泛可用的超分辨率平台,结合图像处理和分析,对大脑大片区域的突触位置进行定量,并在个体和群体水平上对其分子和纳米结构特性进行特征描述。本协议描述了使用 SEQUIN 对突触位置进行定量的方法。有关本协议的使用和执行的更多详细信息,请参阅 Sauerbeck 等人(2020 年)。