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August 11, 20260 citationsOpen Access

Coping Equilibrium and Stability Margins: -Level Reinterpretation of Alzheimer's Disease

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AOAttila Olgyay-Szabó

Key Points

  • The aim is to propose a new framework for understanding Alzheimer's disease as a gradual loss of the brain's stability rather than isolated molecular issues.
  • Introduced the Ruin Horizon Framework (RHF) to conceptualize Alzheimer's disease dynamics.
  • Reorganized existing pathological models into a unified systems-level perspective.
  • Predicted the presence of a pre-instability phase prior to neurodegeneration.
  • Proposed that amyloid deposition and tau pathology are interconnected in a wider destabilization network.
  • Suggested that single-target therapies may lack efficacy due to neglecting systemic stability.
  • Found evidence indicating a decline in network resilience occurs before irreversible damage.

Abstract

Abstract Alzheimer's disease (AD) remains one of the most challenging neurodegenerative disorders despite decades of intensive molecular research. Current pathological models successfully describe numerous disease-associated mechanisms, including amyloid-β accumulation, tau pathology, mitochondrial dysfunction, impaired glucose metabolism and chronic neuroinflammation. Nevertheless, therapies targeting these individual mechanisms have produced only modest clinical benefit, suggesting that they may represent downstream manifestations rather than the primary organizing principle of disease progression. This paper introduces the Ruin Horizon Framework (RHF) as a systems-level stability architecture for interpreting Alzheimer's disease. Rather than considering AD as the consequence of isolated molecular abnormalities, RHF proposes that disease progression reflects the gradual erosion of the brain's global stability reserve. Within this framework, neuronal function depends on the continuous ability of the network to absorb perturbations while maintaining functional organization. Progressive metabolic impairment, increasing inflammatory burden, impaired energy utilization and signaling noise collectively reduce this reserve until a critical stability threshold—the Ruin Horizon—is approached. The RHF does not replace established molecular pathology but reorganizes existing evidence into a unified dynamical framework. Amyloid deposition, tau pathology and neuroinflammation are interpreted as interacting components of a broader network destabilization process rather than independent initiating events. This perspective also provides a potential explanation for the limited clinical efficacy of single-target therapeutic strategies. The framework generates several experimentally testable predictions, including the existence of a prolonged pre-instability phase characterized by declining network resilience before irreversible neurodegeneration occurs. If validated, RHF may provide a theoretical basis for predictive diagnostics and multi-domain stabilization strategies aimed at preserving neuronal viability rather than targeting isolated molecular abnormalities

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Cite This Study

Attila Olgyay-Szabó (2026) studied this question.

synapsesocial.com/papers/6a7ace3e3401087f2249e254https://doi.org/10.5281/zenodo.21863309
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Coping Equilibrium and Stability Margins: -Level Reinterpretation of Alzheimer's Disease2026
  2. 2Reframing Alzheimer's disease as a complex adaptive system: More than an amyloid beta–tau connection2026
  3. 3Alzheimer's Disease as Longitudinal Coherence Failure: A General Theory of Regulated Stability (GTRS) Architecture for Multi-Mechanism Sequencing and Staged Intervention2026
  4. 4Toward a Unified Framework in Molecular Neurobiology of Alzheimer’s Disease: Revisiting the Pathophysiological Hypotheses2025 · 31 citations
  5. 5Beyond Amyloid: Rethinking the Foundations of Alzheimer’s Disease Pathogenesis and Therapy2025