Engineering Identity: First Principles for Programmable Biology is a position paper arguing that as biology becomes programmable, the limiting factor is no longer whether we can change biological state, but whether we can reason about, preserve, and govern identity across durable interventions. The paper introduces a first-principles framing of “identity” as a multi-scale stability problem spanning molecular state, cell fate, tissue architecture, organ function, organismal coherence, and (where relevant) neural continuity. It defines the core failure modes that emerge when long-lived perturbations (e.g., reprogramming, regeneration, gene- and cell-based interventions) interact with complex biological attractors, adaptive remodeling, and evolving control loops. This document is intended to: Establish a shared vocabulary for identity stability, drift, and durability in programmable biology. Provide a conceptual foundation for risk analysis prior to costly in vivo or clinical experimentation. Support the development of decision artifacts and evaluation frameworks (e.g., identity-stability risk assessment) that can be used by researchers, sponsors, investors, and regulators. This position paper is conceptual and does not present new experimental data; it is designed to clarify the problem landscape, motivate tractable assessment methods, and accelerate rigorous discussion at the intersection of systems biology, developmental biology, regenerative medicine, and bioengineering.
Will Blesch (Wed,) studied this question.