A Hypothetical Physicochemical and Bioinformational Model of Potentization in Homoeopathy: From Nanostructures to Drug Memory Transmission
Abstract
Potentization is a fundamental process in homoeopathy involving sequential dilution and succussion, traditionally believed to enhance therapeutic efficacy. Despite extreme dilutions beyond Avogadro's number, clinical effects are widely reported, necessitating plausible scientific explanations. This paper proposes a hypothetical model wherein potentization transforms mass-based particles into dynamic nanostructures, including emulsions, microemulsions, and supermicroemulsions, ultimately leading to isotopic and electromagnetic information carriers described as “drug memory.” This drug memory is hypothesized to be transmitted via structured water networks and hydrogen bonding interactions, facilitating biological activity through vibrational resonance and bioinformational signaling pathways. The model integrates concepts from nanoscience, quantum coherence, and water structuring, offering a testable interdisciplinary framework
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