The Core Canon of the Sugar-Iron Bomb Framework: Foundational Mechanistic Architecture of Iron-Driven Oxidative Carcinogenesis

Fuente: Zenodo
Gespeichert in:
Bibliographische Detailangaben
1. Verfasser: Abuamra, Mohammed Fuad Yousef
Format: Recurso digital
Veröffentlicht: Zenodo 2026
Schlagworte:
Online-Zugang:
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1866901966334984192
author Abuamra, Mohammed Fuad Yousef
author_facet Abuamra, Mohammed Fuad Yousef
contents <p>The Sugar-Iron Bomb framework proposes a multi-layer mechanistic model linking metabolic dysfunction, hemolysis, macrophage iron dysregulation, and oxidative genomic instability to carcinogenesis.</p> <p>The framework centers on the hypothesis that chronic metabolic and inflammatory stress can destabilize erythrocyte integrity, producing sustained hemolysis and progressive exhaustion of systemic hemoglobin-buffering systems.</p> <p>Within macrophage-rich tissues and tumor microenvironments, excessive hemoglobin and heme processing may overload the CD163-HO-1 iron-handling axis, generating expansion of the labile iron pool and localized oxidative stress through Fenton chemistry.</p> <p>The framework proposes that this iron-driven oxidative microenvironment contributes to DNA damage, genomic instability, inflammatory amplification, and progressive tumor evolution.</p> <p>This document defines the Core Canon of the Sugar-Iron Bomb framework, the foundational mechanistic architecture considered central to the current model.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_20091295
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle The Core Canon of the Sugar-Iron Bomb Framework: Foundational Mechanistic Architecture of Iron-Driven Oxidative Carcinogenesis
Abuamra, Mohammed Fuad Yousef
Carcinogenesis, Oxidative stress, Hemolysis, Haptoglobin, CD163, HO-1, Macrophages, Tumor microenvironment, Fenton reaction, Iron dysregulation, Genomic instability, Sugar-Iron Bomb framework
<p>The Sugar-Iron Bomb framework proposes a multi-layer mechanistic model linking metabolic dysfunction, hemolysis, macrophage iron dysregulation, and oxidative genomic instability to carcinogenesis.</p> <p>The framework centers on the hypothesis that chronic metabolic and inflammatory stress can destabilize erythrocyte integrity, producing sustained hemolysis and progressive exhaustion of systemic hemoglobin-buffering systems.</p> <p>Within macrophage-rich tissues and tumor microenvironments, excessive hemoglobin and heme processing may overload the CD163-HO-1 iron-handling axis, generating expansion of the labile iron pool and localized oxidative stress through Fenton chemistry.</p> <p>The framework proposes that this iron-driven oxidative microenvironment contributes to DNA damage, genomic instability, inflammatory amplification, and progressive tumor evolution.</p> <p>This document defines the Core Canon of the Sugar-Iron Bomb framework, the foundational mechanistic architecture considered central to the current model.</p>
title The Core Canon of the Sugar-Iron Bomb Framework: Foundational Mechanistic Architecture of Iron-Driven Oxidative Carcinogenesis
topic Carcinogenesis, Oxidative stress, Hemolysis, Haptoglobin, CD163, HO-1, Macrophages, Tumor microenvironment, Fenton reaction, Iron dysregulation, Genomic instability, Sugar-Iron Bomb framework
url https://doi.org/10.5281/zenodo.20091295