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Updated: May 28, 2026

A Practical Guide to Phage- and Robotics-Assisted Near-Continuous Evolution
Published on: January 12, 2024
Phage Therapy Beyond Static Pharmaceuticals: A Framework for Controlled Evolutionary Platforms
Hidetomo Iwano1, Jumpei Fujiki1, Tomohiro Nakamura1
1Laboratory of Veterinary Biochemistry, School of Veterinary Medicine, Rakuno Gakuen University, Ebetsu 069-8501, Japan.
Abstract:
Rising antimicrobial resistance has revived global interest in phage therapy, yet its transition to standard clinical practice remains slow. This challenge is not solely due to a lack of efficacy. Instead, we face a fundamental conceptual barrier caused by an "evaluation mismatch." Traditional regulations treat phages as static chemical molecules-like taking a "snapshot." However, biologically, phages are dynamic, evolving populations-more like a living "movie." In this review, we use Schrödinger's cat metaphor to explain this reality: phage variability is not a defect, but an essential feature. To bridge this gap, we propose a Controlled Evolutionary Platform. By distinguishing between a fixed "Safety Core" and a fluctuating "Adaptive Periphery," we can manage viral evolution rather than trying to stop it. Ultimately, to integrate phages into modern medicine, we must redefine "consistency": shifting our focus from preserving a fixed genetic sequence to ensuring the reliable performance of population dynamics.
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