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MIC‐MAC: An automated pipeline for high‐throughput characterization and classification of three‐dimensional microglia morphologies in mouse and human postmortem brain samples

机译:MIC-MAC:用于对小鼠和人类尸体脑样本中的三维小胶质细胞形态进行高通量表征和分类的自动化管道

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摘要

The phenotypic changes of microglia in brain diseases are particularly diverse and their role in disease progression, beneficial, or detrimental, is still elusive. High‐throughput molecular approaches such as single‐cell RNA‐sequencing can now resolve the high heterogeneity in microglia population for a specific physiological condition, however, the relation between the different microglial signatures and their surrounding brain microenvironment is barely understood. Thus, better tools to characterize the phenotypic variations of microglia in situ are needed, particularly for human brain postmortem samples analysis. To address this challenge, we developed MIC‐MAC, a Microglia and Immune Cells Morphologies Analyser and Classifier pipeline that semiautomatically segments, extracts, and classifies all microglia and immune cells labeled in large three‐dimensional (3D) confocal image stacks of mouse and human brain samples. Our imaging‐based approach enables automatic 3D‐morphology characterization and classification of thousands of individual microglia in situ and revealed species‐ and disease‐specific morphological phenotypes in mouse aging, human Alzheimer's disease, and dementia with Lewy Bodie's samples. MIC‐MAC is a precision diagnostic tool that allows a rapid, unbiased, and large‐scale analysis of microglia morphological states in mouse models and patient brain samples.
机译:小胶质细胞在脑部疾病中的表型变化尤其多样,它们在疾病进展中(有益或有害)的作用仍然难以捉摸。高通量分子方法(例如单细胞RNA测序)现在可以解决特定生理条件下小胶质细胞种群的高度异质性,但是,人们几乎不了解不同小胶质细胞特征与其周围大脑微环境之间的关系。因此,需要更好的工具来表征小胶质细胞的表型变异,特别是对于人脑尸体样本分析。为了应对这一挑战,我们开发了MIC-MAC,小胶质细胞和免疫细胞形态分析仪和分类器管道,该管道可对小鼠和人类的大型三维(3D)共聚焦图像堆栈中标记的所有小胶质细胞和免疫细胞进行半自动分割,提取和分类。脑样本。我们基于成像的方法能够对3千个小胶质细胞进行原位自动3D形态学表征和分类,并通过Lewy Bodie的样本揭示了小鼠衰老,人类阿尔茨海默氏病和痴呆症中特定于物种和疾病的形态学表型。 MIC-MAC是一种精密诊断工具,可对小鼠模型和患者脑样本中的小胶质细胞形态状态进行快速,无偏且大规模的分析。

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