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March 12, 2026Discover Applied Sciences0 citationsOpen Access

Thermodynamics of the entropic balance in living systems

NMNemanja Maletin

Key Points

  • This commentary aims to connect thermodynamics and information processing in living systems, focusing on entropy and organization.
  • Presented a thermodynamic-informational framework of living systems
  • Examined the relationship between entropy production and self-organization
  • Connected information-theoretic concepts to physical dissipation and nonequilibrium processes
  • Discussed aging in context of feedback erosion and stability
  • Highlighted the role of dissipation in maintaining biological organization
  • Outlined how information processing affects evolution and adaptive change
  • Described aging as a decline in stability linked to feedback capacities

Abstract

Living organisms are open nonequilibrium systems that sustain ordered structure by exchanging energy and matter with their environment. They do not evade the second law of thermodynamics; rather, they maintain local organization by continuously dissipating free energy while deploying regulatory architectures that store and process information to guide repair, renewal, and adaptive change. In this commentary, we outline a concise thermodynamic–informational framing of the living state, emphasizing (i) entropy production and self-organization in driven systems, (ii) how information-theoretic quantities can be connected to physical dissipation and nonequilibrium irreversibility, and (iii) aging as a progressive erosion of the feedback capacities that stabilize a nonequilibrium steady state. The aim is not a comprehensive review of a large literature, but a focused synthesis that clarifies how dissipation and information-processing constraints jointly shape biological organization, evolution, and decline.

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Cite This Study

Nemanja Maletin (2026) studied this question.

synapsesocial.com/papers/69b2584996eeacc4fcec7b5ahttps://doi.org/10.1007/s42452-026-08545-w
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Also Consider

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

  1. 1A Thermodynamic–Informational Framework for Self-Organizing Dissipative Systems: Pentacyclic Closure of Energy, Information, and Structure2026
  2. 2Non-Markovian Entropy Dynamics in Living Systems from the Keldysh Formalism2026
  3. 3Dissipative scaling of development and aging in multicellular organisms2024 · 8 citations
  4. 4Toward a thermodynamic theory of evolution: a theoretical perspective on information entropy reduction and the emergence of complexity2025 · 1 citations
  5. 5The Degradation and Aging of Biological Systems as a Process of Information Loss and Entropy Increase2023 · 15 citations