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Volodymyr Naumenko

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#diffusion models Open access Sep 2026

The Biological Signalling Basis of NASP: From Physical Information to Endogenous Biological Reactivation

What if living systems do not need to be "fixed" with external chemical agents, but simply need to be reminded of their own functional potential? This conceptual work challenges the conventional biomedical paradigm of direct intervention—which relies on replacing, suppressing, or artificially imposing biological outcomes. Instead, we propose a communication-based model of regenerative biology centered around the core principle: Do not add what biology already possesses; provide the information that enables biology to reactivate it. Exploring the Biological Signalling Basis of NASP (Non-Invasive Acoustic Signalling Platform), this paper investigates whether deliberately structured physical information can interact with endogenous regulatory mechanisms to trigger self-restoration, homeostasis, and systemic resilience. By viewing the biosystem as an intelligent, self-regulating network rather than a biochemical machine, we shift the focus from biological manipulation to biological communication—aiming to decode the "language of the biosystem." This article serves as a direct conceptual and mechanistic extension of the MSPM–NASP framework presented in the foundational monograph "Thermodynamic Corridor of Biosystem Adaptive Resilience" (DOI: 10.5281/zenodo.20794111). For further research, technical insights, and platform documentation, visit our corporate portal: https://pmtstructure.com/ ----------------------------------- Figure 1 / MSPM_NASP_Conceptual_Trajectory_and_Falsifiability_Scheme Graphical Abstract: From Self-Organisation to Informational Regulation: Conceptual Trajectory and Experimental Framework. Top: Evolution from Turing reaction-diffusion morphogenesis and biological self-organisation to the MSPM-NASP signalling model. Panel A: The hypothesis of functional correspondence across distinct physical carriers (material protein substrate MSPM vs. signal platform NASP). Panel B: Comparative experimental protocol demonstrating empirical falsifiability by contrasting NASP-specific physiological responses against acoustically matched controls.

Volodymyr Naumenko · 0 citations
#protein folding Open access Aug 2026

Thermodynamic Optimisation of Protein Bioavailability via Mechanical Globule-to-Filament Restructuring and Saccharomyces spp. Matrix Carrier: In Vivo Validation Under Extreme Alimentary Deprivation (Patent UA 141234

Can the fundamental thermodynamic constraints of digestion and metabolic senescence be bypassed through pre-emptive molecular engineering? Under acute physiological exhaustion and severe nutrient starvation, standard enzymatic digestion collapses because breaking down tightly folded native globular proteins demands substantial metabolic and thermodynamic activation energy that compromised organisms simply do not possess. This empirical study presents the in vivo validation of BiomEnforcer® (Patent UA 141234) — a breakthrough bio-complex combining mechanically restructured filamentous protein matrices (MSPM) and a functional Saccharomyces spp. biological carrier. By uncoiling protein globules into linear filaments prior to ingestion, the substrate eliminates steric barriers, bypassing conventional digestive bottlenecks and acting as an immediate, low-activation-energy thermodynamic shunt directly into cellular anabolism. Key Empirical Findings: Ultra-Low Dose Bio-Regulation: Micro-dose supplementation at just 0.1% (1.0 kg/t of feed) under acute dietary protein deprivation (11.43% crude protein; 23–28% below standard requirements) and elevated chemical/toxic stress. Reversing Biological Senescence: Reactivated intensive oviposition in geriatric flocks aged 150–175 weeks (surging from near-zero baseline to sustained peaks of 80–100%) alongside active medullary bone calcium mobilisation. Systemic Somatic Anabolism: Reversed severe somatic wasting, driving significant body mass gains of +14.0% to +14.56% across stressed cohorts. The convergence of bottom-up substrate structuring (MSPM) and top-down physiological signaling (NASP) provides concrete proof-of-concept for non-invasive metabolic rescue and adaptive capacity restoration. Corporate Scientific Research & Technology Framework: https://pmtstructure.com https://omaridin.com

Volodymyr Naumenko · 0 citations
#protein folding Open access Aug 2026

Thermodynamic Optimisation of Protein Bioavailability via Mechanical Globule-to-Filament Restructuring and Saccharomyces spp. Matrix Carrier: In Vivo Validation Under Extreme Alimentary Deprivation (Patent UA 141234

Can the fundamental thermodynamic constraints of digestion and metabolic senescence be bypassed through pre-emptive molecular engineering? Under acute physiological exhaustion and severe nutrient starvation, standard enzymatic digestion collapses because breaking down tightly folded native globular proteins demands substantial metabolic and thermodynamic activation energy that compromised organisms simply do not possess. This empirical study presents the in vivo validation of BiomEnforcer® (Patent UA 141234) — a breakthrough bio-complex combining mechanically restructured filamentous protein matrices (MSPM) and a functional Saccharomyces spp. biological carrier. By uncoiling protein globules into linear filaments prior to ingestion, the substrate eliminates steric barriers, bypassing conventional digestive bottlenecks and acting as an immediate, low-activation-energy thermodynamic shunt directly into cellular anabolism. Key Empirical Findings: Ultra-Low Dose Bio-Regulation: Micro-dose supplementation at just 0.1% (1.0 kg/t of feed) under acute dietary protein deprivation (11.43% crude protein; 23–28% below standard requirements) and elevated chemical/toxic stress. Reversing Biological Senescence: Reactivated intensive oviposition in geriatric flocks aged 150–175 weeks (surging from near-zero baseline to sustained peaks of 80–100%) alongside active medullary bone calcium mobilisation. Systemic Somatic Anabolism: Reversed severe somatic wasting, driving significant body mass gains of +14.0% to +14.56% across stressed cohorts. The convergence of bottom-up substrate structuring (MSPM) and top-down physiological signaling (NASP) provides concrete proof-of-concept for non-invasive metabolic rescue and adaptive capacity restoration. Corporate Scientific Research & Technology Framework: https://pmtstructure.com https://omaridin.com

Volodymyr Naumenko · 0 citations

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