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March 12, 20260 citationsOpen Access

The Second Chance: Dissipative Structures and Thermodynamic Reversibility in Prebiotic Vesicles

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PMPeter Mikuláš

Key Points

  • To investigate thermodynamic properties of early life forms compared to modern cells, focusing on vesicle resilience.
  • Analysis of prebiotic fatty acid vesicles using thermodynamic principles.
  • Application of Ilya Prigogine's theory of non-equilibrium systems.
  • Exploration of structural reversibility under environmental stress conditions.
  • Identified a unique state of resilience in early vesicles allowing for spontaneous re-assembly.
  • Proposed the concept of 'memoryless' existence where matter survives independently of information.
  • Demonstrated how environmental stress impacts vesicle integrity and reformation.

Abstract

This article explores the fundamental thermodynamic differences between early life forms and modern cellular structures. Using Ilya Prigogine’s theory of non-equilibrium systems, we examine prebiotic fatty acid vesicles as simple dissipative structures. We propose the concept of the "Second Chance": a state where the lack of complex genetic information allowed for structural reversibility. When environmental stress leads to the dissociation of a vesicle, the constituent matter remains untainted, allowing for spontaneous re-assembly when conditions stabilize. This "memoryless" existence provided a unique form of resilience where the survival of matter preceded the survival of information.

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Cite This Study

Peter Mikuláš (2026) studied this question.

synapsesocial.com/papers/69b2583896eeacc4fcec7b33https://doi.org/10.5281/zenodo.18924612
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