German Center for Neurodegenerative Diseases (DZNE), 53127 Bonn, Germany.
Max-Planck Research Group Neuroimmunology and.
Mol Biol Cell. 2022 Sep 15;33(11):ar99. doi: 10.1091/mbc.E21-11-0585. Epub 2022 Jun 22.
Microglia are the primary resident innate immune cells of the CNS. They possess branched, motile cell processes that are important for their cellular functions. To study the pathways that control microglial morphology and motility under physiological and disease conditions, it is necessary to quantify microglial morphology and motility precisely and reliably. Several image analysis approaches are available for the quantification of microglial morphology and motility. However, they are either not automated, not freely accessible, and/or limited in the number of morphology and motility parameters that can be assessed. Thus, we have developed MotiQ, an open-source, freely accessible software for automated quantification of microglial motility and morphology. MotiQ allows quantification of a diverse set of cellular motility and morphology parameters, including the parameters that have become the gold standard in the microglia field. We demonstrate that MotiQ can be applied to in vivo, ex vivo and in vitro data from confocal, epifluorescence, or two-photon microscopy, and we compare its results to other analysis approaches. We suggest MotiQ as a versatile and customizable tool to study microglia.
小胶质细胞是中枢神经系统中主要的固有免疫细胞。它们具有分支的、可移动的细胞突起,这对于它们的细胞功能很重要。为了研究控制生理和疾病条件下小胶质细胞形态和运动的途径,有必要精确和可靠地量化小胶质细胞的形态和运动。有几种图像分析方法可用于量化小胶质细胞的形态和运动。然而,它们要么不是自动化的,要么不是免费的,并且/或者可以评估的形态和运动参数的数量有限。因此,我们开发了 MotiQ,这是一种用于自动量化小胶质细胞运动和形态的开源、免费的软件。MotiQ 允许量化一组多样化的细胞运动和形态参数,包括已经成为小胶质细胞领域黄金标准的参数。我们证明 MotiQ 可应用于来自共聚焦、荧光显微镜或双光子显微镜的体内、离体和体外数据,并且我们将其结果与其他分析方法进行了比较。我们建议将 MotiQ 作为一种通用且可定制的工具来研究小胶质细胞。