利用双光子显微镜观察斑马鱼中的中性粒细胞肌动蛋白对激光损伤的动态反应

IF 1 Q3 BIOLOGY
Ivanna Williantarra, Antonios Georgantzoglou, Milka Sarris
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引用次数: 0

摘要

细胞在发育、伤口愈合或免疫反应过程中需要沿化学物质梯度迁移(趋化作用)。中性粒细胞是典型的迁移细胞,它们会从血液中被迅速招募到受伤或受感染的组织中。中性粒细胞向这些炎症部位的趋化涉及细胞骨架动力学的变化,以对其中产生的化学物质梯度做出反应。对中性粒细胞趋化性的研究主要集中在体外,很少有实验能监测复杂活体组织中的梯度反应。在此,我们介绍了一种激光伤口试验,用于在斑马鱼幼体中产生局灶性损伤,并监测行为和细胞骨架动态的变化。第一步是与成鱼杂交,收集并饲养表达相关荧光报告物(例如标记动态肌动蛋白的 Lifeact-mRuby)的胚胎至幼虫早期。随后,在双光子显微镜下将幼虫装片并准备进行活体成像和伤口处理。最后,对所得数据进行处理,用于细胞分割和肌动蛋白动态量化。总之,这种检测方法能以高分辨率观察细胞对急性损伤的动态反应,并能与其他操作(如遗传或化学扰动)相结合。主要特点 - 本方案旨在利用双光子显微镜在斑马鱼幼体上触发激光伤口。- 在成像的同时进行伤口处理,可在梯度曝光后立即监测细胞的行为和肌动蛋白变化。- 该方案需要使用双光子显微镜才能获得最佳效果。与单光子激光损伤相比,这种损伤更精确,组织穿透性更好。- 伤口的病灶性质适合研究中性粒细胞的成群/聚集,并可进一步应用于感染性环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Visualising Neutrophil Actin Dynamics in Zebrafish in Response to Laser Wounding Using Two-Photon Microscopy.

Cells need to migrate along gradients of chemicals (chemotaxis) in the course of development, wound healing, or immune responses. Neutrophils are prototypical migratory cells that are rapidly recruited to injured or infected tissues from the bloodstream. Their chemotaxis to these inflammatory sites involves changes in cytoskeletal dynamics in response to gradients of chemicals produced therein. Neutrophil chemotaxis has been largely studied in vitro; few assays have been developed to monitor gradient responses in complex living tissues. Here, we describe a laser-wound assay to generate focal injury in zebrafish larvae and monitor changes in behaviour and cytoskeletal dynamics. The first step is to cross adult fish and collect and rear embryos expressing a relevant fluorescent reporter (for example, Lifeact-mRuby, which labels dynamic actin) to an early larval stage. Subsequently, larvae are mounted and prepared for live imaging and wounding under a two-photon microscope. Finally, the resulting data are processed and used for cell segmentation and quantification of actin dynamics. Altogether, this assay allows the visualisation of cellular dynamics in response to acute injury at high resolution and can be combined with other manipulations, such as genetic or chemical perturbations. Key features • This protocol is designed to trigger laser wound in zebrafish larvae using two-photon intravital microscopy. • The ability to wound while imaging makes it possible to monitor the behaviour and actin changes of the cells immediately after gradient exposure. • The protocol requires a two-photon microscope for best results. Compared with one-photon laser wounding, the injury is more precise and has better tissue penetration. • The focal nature of the wounds is suitable for studies of neutrophil swarming/aggregation and can be further adapted to infectious settings.

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