Determine the Role of Microglia in Adult Circuit Remodeling in a Mouse Model of Whisker Denervation
NINDS - National Institute of Neurological Disorders and Stroke
About This Grant
Project Summary Denervation injuries lead to altered neural activity in sensory processing regions of the brain. Recovery from these injuries is achieved by learning new motor skills to perform tasks of daily living; this requires successful cortical remapping. This remapping is thought to be mediated in part by changes in thalamocortical (TC) connections from the thalamus to cortex. However, the reasons that some patients recover well while others do not is poorly understood. Microglia shape circuits during development by pruning synapses in an activity dependent manner. Neurons and other cells express “eat me” and “don’t eat me” signals that act through microglial receptors to guide removal of underused synaptic connections such as those arising from the denervated body part. Large scale activity changes in sensory circuits after denervation injury lead to altered signaling through these microglial receptors, altering the activity and function of synapse-associated microglia. However, it is poorly understood how microglia coordinate with neurons to direct adult cortical circuit reorganization after peripheral injury. The goals of this project are to determine the necessity of microglia for post-injury adult circuit reorganization, determine the impact of aberrant signaling from unpruned connections, and identify the molecular mechanisms microglia and neurons utilize to coordinate their activity with other cells in the brain. To understand how microglia mediate post-denervation circuit remodeling, we will use a mouse model of unilateral infraorbital nerve transection (IONX). IONX mimics many aspects of circuit remodeling that occurs after unilateral denervation injury. We hypothesize that IONX causes microglia-mediated TC remodeling in the deprived somatosensory cortex of adult mice. This remodeling is expected to cause behavioral adaptations, particularly related to orofacial sensory/motor function. We will address this hypothesis by 1) determining the necessity of microglia for TC synapse density changes after IONX. Using tissue collected from acute, subacute and chronic timepoints, we will quantify changes in thalamocortical input density within the deprived somatosensory cortex, and microglial association with and removal of TC synapses. We will then deplete microglia to establish if microglia are required for the changes in the deprived somatosensory cortex. We will assess orofacial function in sham and IONX mice to demonstrate the impact of microglial TC circuit reorganization on behavioral adaptations. We will also modulate the activity of TC connections in the deprived somatosensory cortex to establish that preserved, erroneous activity after IONX leads to orofacial dysfunction. 2) We will use gene expression to identify the mechanisms by which microglia and neurons influence adult circuit remodeling after injury, such as identification of inactive synapses and increased phagocytosis. The findings of this proposal will improve our mechanistic understanding of how cells in the adult brain adapt to peripheral denervation injury, and can be used to gain insight into healthy adult plasticity.
Grant Summary
Determine the Role of Microglia in Adult Circuit Remodeling in a Mouse Model of Whisker Denervation is a NINDS - National Institute of Neurological Disorders and Stroke grant providing up to $34K for university, nonprofit, healthcare org. Applications are due 2028-07-04 (open). Check eligibility and apply with FindGrants.
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Up to $34K
2028-07-04
- 1Confirm your organization is eligible for Determine the Role of Microglia in Adult Circuit Remodeling in a Mouse Model of Whisker Denervation from NINDS - National Institute of Neurological Disorders and Stroke, checking organization type, location, and any population or project requirements.
- 2Gather the required documents and information, including your organization details, project plan, and budget figures.
- 3Draft your application narrative and budget addressing the funder's priorities and review criteria. FindGrants can draft each section for you to review and edit.
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Determine the Role of Microglia in Adult Circuit Remodeling in a Mouse Model of Whisker Denervation: Frequently Asked Questions
Who is eligible for the Determine the Role of Microglia in Adult Circuit Remodeling in a Mouse Model of Whisker Denervation?
Determine the Role of Microglia in Adult Circuit Remodeling in a Mouse Model of Whisker Denervation is offered by NINDS - National Institute of Neurological Disorders and Stroke and is generally open to university, nonprofit, healthcare org. It is open to organizations nationwide unless the funder specifies otherwise. Review the specific eligibility terms before applying, since funders set their own requirements around organization type, location, and the population or project being served.
How much funding does the Determine the Role of Microglia in Adult Circuit Remodeling in a Mouse Model of Whisker Denervation provide?
Determine the Role of Microglia in Adult Circuit Remodeling in a Mouse Model of Whisker Denervation provides up to $34K per award from NINDS - National Institute of Neurological Disorders and Stroke. Actual award sizes depend on the scope of your project, available program funds, and the number of applicants, so build a budget that reflects realistic, allowable costs rather than the maximum figure.
When is the Determine the Role of Microglia in Adult Circuit Remodeling in a Mouse Model of Whisker Denervation deadline?
Applications for Determine the Role of Microglia in Adult Circuit Remodeling in a Mouse Model of Whisker Denervation are due 2028-07-04 (open). Because deadlines can change, verify the date with the funder, NINDS - National Institute of Neurological Disorders and Stroke, and give yourself enough time to prepare a complete, competitive application before the close date.
How do you apply for the Determine the Role of Microglia in Adult Circuit Remodeling in a Mouse Model of Whisker Denervation?
To apply for Determine the Role of Microglia in Adult Circuit Remodeling in a Mouse Model of Whisker Denervation, confirm your eligibility, gather the required documents, and prepare a narrative and budget that address the funder's priorities. FindGrants guides you step by step and can draft each section, then exports a submission-ready application pack for this grant from NINDS - National Institute of Neurological Disorders and Stroke.