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May 3, 20260 citationsOpen Access

Technical Note V3.1 Addendum Fickian Escape Mechanics, Molecular Payload Architecture, and Open Engineering Constraints for MetaboJoint Wet-Lab Transition

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DFDon Feeney

Key Points

  • This addendum aims to translate theoretical frameworks into practical applications for eradicating Sickle Cell Disease.
  • Details mathematical proof for polymer mesh size expansion after enzymatic cleavage.
  • Restores biocompatible Path A and calibrates Path B for effective payload delivery.
  • Defines engineering constraints including a 48-hour circulatory stability assay.
  • Expands polymer mesh size to accommodate 9.0 nm Cas9 RNP payload with a calculated elution rate.
  • Establishes payload architecture for precise base editing at HBB c.20A>T.
  • Validates 70:30 mass ratio as essential for systemic bistability.

Abstract

This Version 3. 1 Addendum to the Cybernetic Hematopoiesis framework bridges the theoretical architecture of the MetaboJoint Vault with the exact macromolecular physics and bioinformatics required for in vivo wet-lab translation, aimed at the conditioning-free eradication of Sickle Cell Disease (SCD). Critically, this update resolves the "Steric Trap" by decoupling the bistable Duffing oscillator snap-through from the Lustig-Peppas diffusion phase, mathematically proving that post-enzymatic cleavage, the polymer mesh size expands (ξₑff ≈ 12. 0 nm) to physically accommodate the 9. 0 nm Cas9 RNP payload and ensure controlled Fickian elution (Dg/D₀ ≈ 0. 20). Furthermore, it optimizes payload bioinformatics by restoring Path A (Adenine Base Editing via ABE8e) for direct HBB c. 20A>T correction and geometrically calibrating Path B to guarantee a mathematically clean blast radius. To support physical synthesis, the addendum locks the RAFT polymerization stoichiometry to maintain the strict 70: 30 SBMA: CBMA mass ratio required for systemic bistability (terminating at a 37. 4 kDa final construct) and defines four critical translational engineering constraints, including a new 48-hour circulatory stability assay. Released into the public domain as prior art, this document transitions the MetaboJoint AND gate from a computational blueprint into a fully parameterized, falsifiable laboratory specification, serving as a direct call for collaboration within the stimuli-responsive biomaterials and targeted nanoparticle delivery communities.

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Cite This Study

Don Feeney (2026) studied this question.

synapsesocial.com/papers/69f6e6ab8071d4f1bdfc76dahttps://doi.org/10.5281/zenodo.19933324
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