Developmental Activity and Function of Layer 5 Cortical Circuits Following Early Postnatal Reorganization
NINDS - National Institute of Neurological Disorders and Stroke
About This Grant
PROJECT SUMMARY The precise formation of circuits in the cerebral cortex, involving both excitatory pyramidal neurons (PNs) and inhibitory interneurons (INs), is crucial for proper brain function, with disruptions in this process being implicated in neurodevelopmental disorders such as autism, epilepsy, and schizophrenia. Recent work from the Fishell Lab has revealed that the connectivity of neurons in layer 5 (L5), a critical region for top-down information processing, follows a highly specific targeting pattern that arises during postnatal development. Specifically, in primary visual cortex (V1), L5 is comprised of two distinct excitatory populations—intratelencephalic (IT) and extratelencephalic (ET) neurons—both of which are modulated by inhibitory somatostatin-expressing cortical interneurons (SST cINs). Notably, specific subtypes of SST cINs, such as Chrna2 and Calb2, selectively target ET populations in adulthood. However, it remains unclear whether these targeting patterns are innate or develop over time. Preliminary findings suggest a novel hypothesis: SST cINs may initially target IT neurons and later shift their targeting specificity to ET neurons after eye-opening (P14) in mice, implying a dynamic developmental switch. This transition could be influenced by changes in excitatory drive, considering that retinotopic maps in V1 are shaped by spontaneous waves of activity both prior to and during eye-opening, while feedforward excitation from visual experience appears necessary for the proper maturation of visual responses. The goal of this proposal is to investigate the mechanisms driving this developmental switch and its functional implications. To do this, the study will (1) examine activity patterns of L5 SST cINs, IT, and ET populations across key developmental timepoints (P10, P15, P30) using 2-photon calcium imaging, (2) determine whether the switch in SST cIN targeting influences activity within L5 circuits or the ability of the animal to detect visual stimulus through use of targeted expression of Kir2.1 in SST cINs which prevents the switch in synaptic targeting, and (3) assess whether visual experience is necessary for the proper development of these circuits by rearing mice in darkness and analyzing the effects on L5 activity and circuit formation. By elucidating the activity-dependent processes that regulate the development and refinement of cortical circuits, this project aims to improve our understanding of how disruptions in these processes contribute to neurodevelopmental disorders.
Grant Summary
Developmental Activity and Function of Layer 5 Cortical Circuits Following Early Postnatal Reorganization is a NINDS - National Institute of Neurological Disorders and Stroke grant providing up to $76K for university, nonprofit, healthcare org. Applications are due 2029-02-28 (open). Check eligibility and apply with FindGrants.
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Up to $76K
2029-02-28
- 1Confirm your organization is eligible for Developmental Activity and Function of Layer 5 Cortical Circuits Following Early Postnatal Reorganization 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.
- 4Review every section against the requirements checklist, then export a submission-ready application pack and submit it to NINDS - National Institute of Neurological Disorders and Stroke before the deadline.
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Developmental Activity and Function of Layer 5 Cortical Circuits Following Early Postnatal Reorganization: Frequently Asked Questions
Who is eligible for the Developmental Activity and Function of Layer 5 Cortical Circuits Following Early Postnatal Reorganization?
Developmental Activity and Function of Layer 5 Cortical Circuits Following Early Postnatal Reorganization 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 Developmental Activity and Function of Layer 5 Cortical Circuits Following Early Postnatal Reorganization provide?
Developmental Activity and Function of Layer 5 Cortical Circuits Following Early Postnatal Reorganization provides up to $76K 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 Developmental Activity and Function of Layer 5 Cortical Circuits Following Early Postnatal Reorganization deadline?
Applications for Developmental Activity and Function of Layer 5 Cortical Circuits Following Early Postnatal Reorganization are due 2029-02-28 (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 Developmental Activity and Function of Layer 5 Cortical Circuits Following Early Postnatal Reorganization?
To apply for Developmental Activity and Function of Layer 5 Cortical Circuits Following Early Postnatal Reorganization, 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.