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One Health Cyber-Biotechnology for Nano-Plastic Intelligence Systems and Logic Integration
Summary
Tiny plastic particles (nanoplastics) don't just sit in our water, soil, and air—they act more like disruptive signals that ripple through ecosystems and eventually into our bodies, affecting health in ways that simple contamination testing might miss. This paper proposes a new framework that uses digital modeling and computer analysis to track how these plastic particles move and interfere with biological systems, aiming to create earlier warning systems for health risks. It's a conceptual, big-picture proposal rather than a study with new experimental results, but it highlights why understanding nanoplastics as part of a connected environmental and health system—rather than
This chapter per the authors develops a One Health cyber-biotechnology framework for interpreting nanoplastic exposure as a multiscale environmental signaling system rather than an isolated contaminant phenomenon. It integrates digital nanoplastic science (DNPS), plasto-signaling interference (PSI), transductive signal load (TSL), Polybiome Interfacial Signaling Cascade (PISC), and systemic risk scoring (SRS) to structure exposure propagation, interface-level perturbation, and biological signaling disruption within a unified analytical architecture. Environmental matrices including water, soil, and air are conceptualized as dynamic signal-generating interfaces transmitting disturbances across interconnected ecological and physiological networks under uncertainty regimes. The chapter critiques conventional compartment-based risk assessment and advances multiomics integration, digital twin modeling, and cyber-biotechnological analytics for early-warning systems, exposure intelligence, and One Health–driven environmental decision support.