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Two-photon Imaging of Cellular Dynamics in the Mouse Spinal Cord
Authors:Jason G. Weinger  Milton L. Greenberg  Melanie P. Matheu  Ian Parker  Craig M. Walsh  Thomas E. Lane  Michael D. Cahalan
Affiliation:1.Molecular Biology and Biochemistry, University of California, Irvine;2.Physiology and Biophysics, University of California, Irvine;3.Neurobiology and Behavior, University of California, Irvine;4.University of California San Francisco Diabetes Center, University of California, San Francisco;5.Pathology, University of Utah
Abstract:Two-photon (2P) microscopy is utilized to reveal cellular dynamics and interactions deep within living, intact tissues. Here, we present a method for live-cell imaging in the murine spinal cord. This technique is uniquely suited to analyze neural precursor cell (NPC) dynamics following transplantation into spinal cords undergoing neuroinflammatory demyelinating disorders. NPCs migrate to sites of axonal damage, proliferate, differentiate into oligodendrocytes, and participate in direct remyelination. NPCs are thereby a promising therapeutic treatment to ameliorate chronic demyelinating diseases. Because transplanted NPCs migrate to the damaged areas on the ventral side of the spinal cord, traditional intravital 2P imaging is impossible, and only information on static interactions was previously available using histochemical staining approaches. Although this method was generated to image transplanted NPCs in the ventral spinal cord, it can be applied to numerous studies of transplanted and endogenous cells throughout the entire spinal cord. In this article, we demonstrate the preparation and imaging of a spinal cord with enhanced yellow fluorescent protein-expressing axons and enhanced green fluorescent protein-expressing transplanted NPCs.
Keywords:Neuroscience   Issue 96   spinal cord   two-photon microscopy   ex vivo   transplantation   cellular dynamics   axons   neural precursor cells   remyelination   neuroinflammation
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