4.8 Article

Cell stimulation with optically manipulated microsources

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NATURE METHODS
卷 6, 期 12, 页码 905-909

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NATURE PUBLISHING GROUP
DOI: 10.1038/nmeth.1400

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  1. German Academy of Sciences Leopoldina [BMBF-LPD 9901/8-162]
  2. US National Institutes of Health [1U54-RR0222332, RO1-GM084040]
  3. US National Science Foundation [CBET-0619674, DBI-0619674, CBET-0747577]

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Molecular gradients are important for various biological processes including the polarization of tissues and cells during embryogenesis and chemotaxis. Investigations of these phenomena require control over the chemical microenvironment of cells. We present a technique to set up molecular concentration patterns that are chemically, spatially and temporally flexible. Our strategy uses optically manipulated microsources, which steadily release molecules. Our technique enables the control of molecular concentrations over length scales down to about 1 mu m and timescales from fractions of a second to an hour. We demonstrate this technique by manipulating the motility of single human neutrophils. We induced directed cell polarization and migration with microsources loaded with the chemoattractant formylmethionine-leucine-phenylalanine. Furthermore, we triggered highly localized retraction of lamellipodia and redirection of polarization and migration with microsources releasing cytochalasin D, an inhibitor of actin polymerization.

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