Jul 2026· Journal of Artificial Intelligence and Information· Vol 8, pp. 451-457· 0 citations· 47 references
TL;DR
Recognizing frailty and AD as interrelated manifestations of accelerated biological aging provides a critical paradigm shift and developing standardized, high-sensitivity screening tools and dual-target therapeutic strategies will be essential for advancing precision geriatric care and mitigating the global burden of neurodegenerative and functional decline.
Abstract
Background: Frailty and Alzheimer’s disease (AD) represent two of the most prevalent and debilitating conditions associated with human aging. Frailty is a dynamic, multidimensional syndrome characterized by a loss of physiological reserve and homeostatic resilience across multiple organ systems. Emerging epidemiological and clinical evidence demonstrates that physical frailty substantially accelerates cognitive decline and increases the incidence of AD in cognitively intact older adults. Conversely, neuropathological burden lowers the threshold for manifest physical frailty. Key Findings: This review systematically examines the intricate crosstalk between frailty and AD. We detail shared molecular pathophysiological mechanisms, including chronic low-grade systemic inflammation (“inflammaging”), oxidative stress, cellular senescence, mitochondrial decay, and neuroendocrine axis dysregulation. Furthermore, we evaluate common diagnostic landscapes and biomarker signatures, focusing on cerebrospinal fluid (CSF)Aβ42dynamics, plasma markers, blood-based metabolomics—notably the selective depletion of the dietary antioxidant ergothioneine (ERG)—and subcortical-frontal network alterations manifested through motoric cognitive risk (MCR) phenotypes. Finally, we analyze therapeutic implications, contrasting the potential adverse impacts of conventional anti-dementia pharmacotherapies on physical frailty with emerging multimodal lifestyle, nutritional (e.g., ERG supplementation), and targeted metabolic interventions. Conclusions: Recognizing frailty and AD as interrelated manifestations of accelerated biological aging provides a critical paradigm shift. Developing standardized, high-sensitivity screening tools and dual-target therapeutic strategies will be essential for advancing precision geriatric care and mitigating the global burden of neurodegenerative and functional decline.
Alzheimer’s disease (AD) is the leading cause of dementia and a heterogeneous neurodegenerative disorder characterized by amyloid-β (Aβ) and tau pathology, impaired proteostasis, neurovascular dysfunction, maladaptive glial and immune responses, and synaptic dysfunction. Human genetic evidence supports an upstream role...
Background: Frailty syndrome represents a profound state of increased physiological vulnerability driven by the multisystemic erosion of homeostatic resilience, distinct from mere chronological aging. As the global population ages, recognizing and managing this complex clinical entity has become a paramount challenge i...
Marcel Majewski, Bogumił Libura, Martyna Lazar et al.· Quality in Sport· 0 citations
This review addresses the biological mechanisms and contributions of frailty in multiple sclerosis (MS), a chronic disease of the central nervous system that causes physical and cognitive disability. The risk of frailty among persons with MS (pwMS) exceeds that of other chronic diseases, and the interactions between fr...
Taylor R Wicks, N. Bergsland, R. Zivadinov et al.· Multiple Sclerosis· 0 citations
Frailty is a geriatric syndrome of loss of reserves, characterized by multisystem dysregulations, limited capacity to maintain homeostasis, and increased vulnerability. This review is focused on the current knowledge on the main pathogenic mechanisms leading to frailty and on evidence-based improvements in its preventi...
Carlota Lema-Arranz, N. Fernández-Bertólez, L. Lorenzo-López et al.· Current Epidemiology Reports· 0 citations
Key takeaways from the Fall 2025 AARR meeting are presented, which brought together academic, clinical, and industry leaders to discuss and explore the current advances in the heterogeneity and co‐pathologies of AD and their implications for diagnosis, clinical trial design, and precision treatment strategies.
M. Tansey, S. Bozeat, Peter Ackerman et al.· Alzheimer's & Dementia· 0 citations
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