Could disrupted functional connectivity between the hippocampus and the prefrontal cortex be an early marker of vascular cognitive impairment in demen

MRC · United Kingdom government procurement

Closed February 29, 2028. GlobalGov surfaces government procurement from around the world, including the markets your competitors overlook.

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Opportunity Overview

The healthy blood-brain barrier (BBB) maintains selective permeability and controls cerebral blood flow to ensure efficient energy supply, prompt waste removal, and balance chemical composition in the interstitial fluid. By doing so, BBB maintains a homeostatic micro-environment in the brain which is essential for neuronal signalling and normal cognitive functions. BBB dysfunction is among the earliest changes in Alzheimer's disease and vascular dementia. Recent human evidence shows an age-dependent BBB breakdown in the hippocampus, a region involved in spatial memory which exhibits notable dysfunction early in AD. Furthermore, white matter deficit due to BBB breakdown is a key diagnostic indicator of vascular dementia. Encoding a spatial memory is hippocampus-dependent but its retrieval and consolidation require functional long-range connectivities across brain regions including the prefrontal cortex (PFC), where intact white matter is necessary to ensure neural activities are coordinated in a temporally precise manner. A question arises as to what aspect of such long-range neural circuitry is affected by BBB breakdown, and how such alterations ultimately result in cognitive impairment. Pericytes innervate capillaries in the brain and are critical for maintaining BBB integrity through regulation of endothelial cells and control of cerebral blood flow. The Gan lab has generated an inducible pericyte-deficient mouse line Atp13a5-CreER::iDTR mice, in which age and region-specific pericyte loss can be induced, causing BBB dysfunction and microvascular reductions in a spatiotemporally controlled manner. Therefore, the Atp13a5-CreER::iDTR mouse line is a valuable model to test the effects of region-specific BBB leakage and microcirculation deficiency on neural circuits that are critical in spatial memory which is affected early in dementia.

The aim of this project is to test whether disrupted cross-region functional connectivity between the hippocampus and the PFC can...

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Solicitation Details

Issuing agencyMRC
CountryUnited Kingdom
CategoryResearch Development
PublishedAugust 31, 2024
Procurement stageActive solicitation
ClosedFebruary 29, 2028
StatusClosed — no longer accepting responses
Official sourceView original notice
Last verifiedAugust 10, 2026

Source: UK Research and Innovation (UKRI) — Open Government Licence v3.0.

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