Technology, Research

MSPM Platform: Technical Overview of Molecule-Structured Protein Matrix for Targeted Cellular Restoration (v1.0)

This document provides a technical overview of the MSPM (Molecule-Structured Protein Matrix) platform, developed by Patented MT.

The technology focuses on the transition of protein architecture from globular configurations to a stable, filamentous matrix. This approach implements a “metabolic bypass” mechanism, designed to facilitate direct amino acid assimilation and reduce energy expenditure associated with enzymatic fermentation.

MONOGRAPH, Longevity, Research

Monograph: THERMODYNAMIC CORRIDOR OF BIOSYSTEM ADAPTIVE RESILIENCE: A System-Oriented Model of Energy, Information and Structural Optimisation for the Prevention of Biological Ageing

A Manifesto for the Prevention of Biological Ageing. This fundamental monograph represents the definitive synthesis of 13 years of systematic research, engineering design, and scientific innovation by Inventor Volodymyr Naumenko. The work provides a critical alternative to the modern deadlock of symptomatic medicine, introducing a comprehensive biocybernetic approach to actively slowing down and preventing the processes of biological ageing.

Metabolic Regulation

Human Metabolism as an Adaptive Cybernetic System: Theoretical Framework and Design Principles of the MSPM-NASP Platform

Abstract Is human metabolism merely a passive engine governed by calorie counting, or is it a sophisticated, information-driven network?

This paper challenges the traditional thermodynamic model of nutrition, reframing metabolic regulation through the lens of cybernetics and systems biology. It unveils the conceptual architecture of the MSPM-NASP platform—a novel bio-digital framework designed to orchestrate biological communication.

Technology, Metabolic Regulation

Cybernetic Regulation of Body Mass: Overcoming the Limitations of Restrictive Dieting Through the MSPM–NASP Framework

Why do 95% of restrictive diets fail in the long term? Because they fight human biology instead of regulating it.

This theoretical perspective challenges the conventional “calorie counting and starvation” paradigm of body mass management. From a systems biology standpoint, chronic weight issues are not a failure of willpower, but a consequence of a disrupted cybernetic system trapped in allostatic overload and physiological imbalance.

Technology

Molecularly Structured Protein Matrix–Derived Neuroacoustic Stimulation Protocol (MSPM–NASP)

This document outlines the conceptual framework for the Molecularly Structured Protein Matrix–derived Neuroacoustic Stimulation Protocol (MSPM–NASP). The protocol describes a non-pharmacological neuroacoustic model designed for systemic bio-regulation and metabolic stability through the informational transformation of structured amino acid systems into parameterised auditory signals.

Longevity, Research

BEYOND LINEAR AGING: Systemic Metabolic Regulation via MSPM and NASP Technological Architecture

Recent advances in longitudinal multi-omics profiling suggest that biological aging may not proceed as a strictly linear process. Findings published by Stanford Medicine and collaborators in Nature Aging (2024) demonstrated that many molecular markers associated with aging undergo nonlinear transitions, with significant clustering observed around the mid-40s and early 60s. These observations support the emerging view that aging may involve coordinated systemic transitions rather than exclusively gradual decline.

Research

Scientific and Technical Report: Immanent Therapy® System and Molecularly Structured Protein Matrix (MSPM) Technology

The report details a systemic approach to metabolic homeostasis, focusing on the regulation of biological aging, reduction of systemic inflammation (inflammaging), and cellular regeneration. It covers 13 years of research and development, providing a framework for non-invasive metabolic support suitable for high-performance longevity and space health applications.

Technology

Molecularly Structured Protein Matrix (MSPM) and Neuroacoustic Stimulation Protocol (NASP) — Integrated Bio-Regulatory System for Immune Stability in Extreme Environments

This paper presents a translational concept for modulating biological age through the interaction of gut microbiome regulation and neurophysiological modulation mechanisms. The proposed framework explores the role of Saccharomyces spp. in supporting intestinal barrier function and immune homeostasis, alongside a neuroacoustic model of systemic regulation via central nervous system pathways.

The concept is positioned as a space-health–relevant supportive system, with potential applicability both in extreme environments and terrestrial longevity-oriented technologies.

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