Study on the mechanism of synergistic regulation of microglia phenotype in TBI rats by MSCs-EXO and LITUS
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Salamanders have the remarkable ability to functionally regenerate after spinal cord transection. In response to injury, GFAP+ glial cells in the axolotl spinal cord proliferate and migrate to replace
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Boldine increases functional recovery and response to physical rehabilitation in a mouse model of contusion spinal cord injury
Membrane channels such as connexins (Cx), pannexins and P2X7 receptors are permeable to calcium, ATP and other small molecules. Release of ATP and glutamate through these channels is a key mechanism d
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TRANSFER OF NERVE BRANCHES OF THE FLEXOR CARPI RADIALIS TO THE POSTERIOR INTEROSSEOUS NERVE
ABSTRACT Objective: The objective of this paper was to study the anatomical variations of the flexor carpi radialis muscle (FCR) and determine in cadaver limbs whether the FCR nervous branch can be co
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Microarray analysis to evaluate the role of USP18 in primary microglia and the microglia cell line BV-2. Mus musculus
Microglia are tissue macrophages of the central nervous system (CNS) that control tissue homeostasis, and as such they are crucially important for organ integrity. Microglia dysregulation is thought t
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List of primers.
Infantile amnesia, the inability to recall episodic memories formed during early childhood, is a hallmark of postnatal brain development. Yet the underlying mechanisms remain poorly understood. This w
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