closedNEW ORLEANS, LA

Developing a Comparative Single-Cell Spatial Transciptomic Atlas of Brain Aging in Non-Human and Humans

National Institute on Aging

Description

Aging leads to an increased risk of neurodegenerative diseases such as Alzheimer's and Parkinson's that present significant public health challenges worldwide. Despite extensive research, the molecular mechanisms driving brain aging remain poorly understood, especially at the single-cell level within critical regions like the prefrontal cortex and hippocampus. Due to their close genetic and physiological similarities to humans, including comparable brain structure and aging processes, non-human primates (NHPs) like rhesus macaques are invaluable models for studying the intricacies of brain aging. This project aims to develop the first lifespan-matched, comparative single-cell spatial transcriptomic atlas of the prefrontal cortex and hippocampus in humans and rhesus macaques. Using the cutting-edge CosMx Spatial Molecular Imager (SMI), we will generate high-resolution, single-cell gene expression profiles across different life stages—young, adult, and aged—in both species. Our central hypothesis is that aging induces specific, identifiable spatial and cell-type-specific gene expression alterations conserved between humans and rhesus macaques, contributing to neurodegeneration. Under the guidance of expert mentors, the candidate will receive comprehensive training in NHP aging models, advanced spatial transcriptomics using the CosMx SMI platform, human neuropathology, data interpretation, and cross-species comparative analysis using integrative bioinformatics, leading to a deep understanding of the molecular mechanisms underlying brain aging. This project will fill a critical gap in our understanding of brain aging by providing the first lifespan-matched, comparative single-cell spatial transcriptomic atlases of key brain regions in humans and rhesus macaques. We anticipate that our findings will (i) advance our knowledge of age-associated molecular changes and (ii) identify conserved pathways contributing to neurodegeneration. Ultimately, this research has the potential to inform the development of therapeutic targets to mitigate neurodegenerative diseases, significantly impacting aging research and public health. Project Number: 1K18AG095816-01 | Fiscal Year: 2025 | NIH Institute/Center: National Institute on Aging (NIA) | Principal Investigator: Amir Ardeshir | Institution: TULANE UNIVERSITY OF LOUISIANA, NEW ORLEANS, LA | Award Amount: $209,148 | Activity Code: K18 | Study Section: Special Emphasis Panel[ZAG1 ZIJ-2 (M1)] View on NIH RePORTER: https://reporter.nih.gov/project-details/11224980

Interested in this grant?

Start a free 7-day trial to get match scores, save grants, and build your application with AI.

Start free trial

Grant Details

Funding Range

$209,148 - $209,148

Deadline

Not specified

Geographic Scope

NEW ORLEANS, LA

Status
closed

View the application link

Start a free 7-day trial to open the original listing and funder website, save this grant, and track its deadline. Cancel anytime.

Start free trial

Want to see how well this grant matches your organization?

Get Your Match Score

Get personalized grant matches

Start your free trial to save opportunities, get AI-powered match scores, and manage your applications in one place.

Start Free Trial