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Observing the cell in its native state: Imaging subcellular dynamicsin multicellular organisms

机译:观察细胞的原始状态:成像亚细胞动力学在多细胞生物中

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摘要

True physiological imaging of subcellular dynamics requires studying cells within their parent organisms, where all the environmental cues that drive gene expression, and hence the phenotypes that we actually observe, are present. A complete understanding also requires volumetric imaging of the cell and its surroundings at high spatiotemporal resolution, without inducing undue stress on either. We combined lattice light-sheet microscopy with adaptive optics to achieve, across large multicellular volumes, noninvasive aberration-free imaging of subcellular processes, including endocytosis, organelle remodeling during mitosis, and the migration of axons, immune cells, and metastatic cancer cells in vivo. The technology reveals the phenotypic diversity within cells across different organisms and developmental stages and may offer insights into how cells harness their intrinsic variability to adapt to different physiological environments.
机译:真正的亚细胞动力学生理成像需要研究其亲代生物内的细胞,在那里存在所有驱动基因表达的环境线索,因此也存在我们实际观察到的表型。全面了解还需要以高时空分辨率对细胞及其周围环境进行体积成像,而不会对两者造成过大的压力。我们将点阵光片显微镜与自适应光学器件相结合,以实现跨多细胞大体积的亚细胞过程的无创无畸变成像,包括内吞作用,有丝分裂期间的细胞器重塑以及轴突,免疫细胞和体内转移性癌细胞的迁移。该技术揭示了跨不同生物体和发育阶段的细胞内的表型多样性,并可能提供有关细胞如何利用其固有变异性适应不同生理环境的见解。

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