A Two-Pronged Delivery Strategy Disrupting Positive Feedback Loop of Neutrophil Extracellular Traps for Metastasis Suppression
ACS Nano 18(24): 15432-15451
Article 2024 English
Authors
JK
Jinxia Kong
YD
Yudi Deng
YX
Yiwen Xu
Abstract
1 min read
Neutrophil extracellular traps (NETs) severely affect tumor metastasis through a self-perpetuating feedback loop involving two key steps: (1) mitochondrial aerobic respiration-induced hypoxia promotes NET formation and (2) NETs enhance mitochondrial metabolism to exacerbate hypoxia. Herein, we propose a two-pronged approach with the activity of NET-degrading and mitochondrion-damaging by simultaneously targeting drugs to NETs and tumor mitochondria of this loop. In addition to specifically recognizing and eliminating extant NETs, the NET-targeting nanoparticle also reduces NET-induced mitochondrial biogenesis, thus inhibiting the initial step of the feedback loop and mitigating extant NETs' impact on tumor metastasis. Simultaneously, the mitochondrion-targeting system intercepts mitochondrial metabolism and alleviates tumor hypoxia, inhibiting neutrophil infiltration and subsequent NET formation, which reduces the source of NETs and disrupts another step of the self-amplifying feedback loop. Together, the combination significantly reduces the formation of NET–tumor cell clusters by disrupting the interaction between NETs and tumor mitochondria, thereby impeding the metastatic cascade including tumor invasion, hematogenous spread, and distant colonization. This work represents an innovative attempt to disrupt the feedback loop in tumor metastasis, offering a promising therapeutic approach restraining NET-assisted metastasis.
Gaëlle Munsch, Gaëlle Munsch, Carole Proust, Carole Proust, Sylvie Labrouche-Colomer, Sylvie Labrouche-Colomer, Dylan Aïssi, Dylan Aïssi, Anne Boland, Anne Boland, Pierre‐Emmanuel Morange, Pierre‐Emmanuel Morange, Anne Roche, Anne Roche, Luc de Chaisemartin, Luc de Chaisemartin, Annie Harroche, Annie Harroche, Robert Olaso, Robert Olaso, Jean‐François Deleuze, Jean‐François Deleuze, Chloé James, Chloé James, Joseph Emmerich, Joseph Emmerich, David M. Smadja, David M. Smadja, Hélène Jacqmin‐Gadda, Hélène Jacqmin‐Gadda, David‐Alexandre Trégouët, David‐Alexandre Trégouët
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