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TRANSLATIONAL AND COMPUTATIONAL APPROACHES TO UNDERSTANDING AND MITIGATING AGE-RELATED CENTRAL NERVOUS SYSTEM DECLINE

dc.contributor.authorGrant, Randy Allyn , author
dc.contributor.authorLaRocca, Thomas J., advisor
dc.contributor.authorFling, Brett W., committee member
dc.contributor.authorHamilton, Karyn L., committee member
dc.contributor.authorMoreno, Julie A., committee member
dc.date.accessioned2026-08-24T10:40:18Z
dc.date.issued2026
dc.description.abstractBrain aging is a complex biological phenomenon characterized by the progressive dysregulation of multiple biological processes that lead to tissue dysfunction, cognitive decline, and neurodegeneration. Although the causes and effects of brain aging have been extensively studied, exactly how this multi-faceted process initiates and progresses is incompletely understood. Additionally, as brain aging predisposes individuals to multiple neurodegenerative diseases, understanding this complex process is an extremely important research priority. The studies detailed throughout this dissertation investigate: 1) mechanisms of aging that precede and contribute to neurodegeneration; and 2) novel therapeutics aimed at targeting and ameliorating brain aging. Guided by my mentoring team, I investigated these topics through various experimental models and datasets across three major studies. First, I examined transposable element dysregulation in the most active immune cell type in the aging brain (microglia). Second, I tested a naturally occurring bioactive compound (apigenin) for its protective effects against age-related functional declines, age-related neurodegeneration, and Alzheimer’s disease-relevant proteotoxicity while attempting to address the discrepancies in the literature regarding the biological mechanisms involved. Conversely, I also investigated fine particulate matter from wildfire smoke for its effects on age-related decline. Finally, I examined the impact of circulating systemic age-related proteins for their impact on blood-brain-barrier integrity. All of these studies focused on either emerging upstream causes of brain aging and neurodegeneration or novel therapeutics that could potentially target and mitigate age-related decline and improve resilience to disease. Collectively, this work may serve as a foundation for future studies examining mechanisms of brain aging, neurodegeneration, and disease.
dc.format.mediumborn digital
dc.format.mediumdoctoral dissertations
dc.identifierGrant_colostate_0053A_19772.pdf
dc.identifier.urihttps://hdl.handle.net/10217/245480
dc.identifier.urihttps://doi.org/10.25675/3.027494
dc.languageEnglish
dc.language.isoeng
dc.publisherColorado State University. Libraries
dc.relation.ispartof2020-
dc.rightsCopyright and other restrictions may apply. User is responsible for compliance with all applicable laws. For information about copyright law, please see https://libguides.colostate.edu/copyright.
dc.subjectBrain Aging
dc.subjectNeuroimmunology
dc.subjectBioinformatics
dc.subjectNeuroscience
dc.subjectInflammation
dc.titleTRANSLATIONAL AND COMPUTATIONAL APPROACHES TO UNDERSTANDING AND MITIGATING AGE-RELATED CENTRAL NERVOUS SYSTEM DECLINE
dc.typeText
dcterms.rights.dplaThis Item is protected by copyright and/or related rights (https://rightsstatements.org/vocab/InC/1.0/). You are free to use this Item in any way that is permitted by the copyright and related rights legislation that applies to your use. For other uses you need to obtain permission from the rights-holder(s).
thesis.degree.disciplineHealth and Exercise Science
thesis.degree.grantorColorado State University
thesis.degree.levelDoctoral
thesis.degree.nameDoctor of Philosophy (Ph.D.)

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