Meta-Oncology Framework: Adaptive Continuum Plasticity Elevated by UROA and STCT (ACPND-US)

The metastatic cascade remains the primary cause of cancer mortality, yet its governing principles evade classical genetic reductionism. This paper elevates the Adaptive Continuum Plasticity and Niche Dynamics (ACPND) framework by sublimating it into the Universal Rough Operator Algebra (UROA) and the Seonggil Theory of Composite Torsion (STCT).We demonstrate rigorously that the Epithelial-Mesenchymal Transition (EMT) is not a binary switch but a dynamic trajectory on a UROA-roughened epigenetic manifold. Hybrid E/M states are topologically protected by informational friction. Furthermore, the premetastatic niche is definitively redefined as an STCT geometric torsion field induced by the primary tumor, mathematically elevating the ”seed-and-soil” hypothesis to a theorem of macroscopic tensor-geometric resonance.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-10-05
DOI
https://doi.org/10.5281/zenodo.23156322
Primary Topic
Cancer Cells and Metastasis
Type
preprint
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preprint

Meta-Oncology Framework: Adaptive Continuum Plasticity Elevated by UROA and STCT (ACPND-US)

Seonggil Lee
Zenodo (CERN European Organization for Nuclear Research)
Cancer Cells and Metastasis
preprint

Meta-Oncology Framework: Adaptive Continuum Plasticity Elevated by UROA and STCT (ACPND-US)

Seonggil Lee
preprint en

Abstract

The metastatic cascade remains the primary cause of cancer mortality, yet its governing principles evade classical genetic reductionism. This paper elevates the Adaptive Continuum Plasticity and Niche Dynamics (ACPND) framework by sublimating it into the Universal Rough Operator Algebra (UROA) and the Seonggil Theory of Composite Torsion (STCT).We demonstrate rigorously that the Epithelial-Mesenchymal Transition (EMT) is not a binary switch but a dynamic trajectory on a UROA-roughened epigenetic manifold. Hybrid E/M states are topologically protected by informational friction. Furthermore, the premetastatic niche is definitively redefined as an STCT geometric torsion field induced by the primary tumor, mathematically elevating the ”seed-and-soil” hypothesis to a theorem of macroscopic tensor-geometric resonance.

Zenodo (CERN European Organization for Nuclear Research)
Cancer Cells and Metastasis
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