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Silver Clusters of Five Atoms as Highly Selective Antitumoral Agents Through Irreversible Oxidation of Thiols.

Authors :
Porto, Vanesa
Buceta, David
Domínguez, Blanca
Carneiro, Carmen
Borrajo, Erea
Fraile, María
Davila‐Ferreira, Nerea
Arias, Iria R.
Blanco, José M.
Blanco, Maria C.
Devida, Juan M.
Giovanetti, Lisandro J.
Requejo, Félix G.
Hernández‐Garrido, Juan C.
Calvino, José J.
López‐Haro, Miguel
Barone, Giampaolo
James, Andrew M.
García‐Caballero, Tomás
González‐Castaño, Diego M.
Source :
Advanced Functional Materials. 7/18/2022, Vol. 32 Issue 29, p1-14. 14p.
Publication Year :
2022

Abstract

Low atomicity clusters present properties dependent on the size, due to the quantum confinement, with well‐defined electronic structures and high stability. Here it is shown that Ag5 clusters catalyze the complete oxidation of sulfur to S+6. Ag5 catalytic activity increases with different oxidant species in the order O2 ≪ H2O2 < OH•. Selective oxidation of thiols on the cysteine residues of glutathione and thioredoxin is the primary mechanism human cells have to maintain redox homeostasis. Contingent upon oxidant concentration, Ag5 catalyzes the irreversible oxidation of glutathione and thioredoxin, triggering apoptosis. Modification of the intracellular environment to a more oxidized state to mimic conditions within cancer cells through the expression of an activated oncogene (HRASG12V) or through ARID1A mutation, sensitizes cells to Ag5 mediated apoptosis. While cancers evolve to evade treatments designed to target pathways or genetic mutations that drive them, they cannot evade a treatment that takes advantage of aberrant redox homeostasis, which is essential for tumor progression and metastasis. Ag5 has antitumor activity in mice with orthotopic lung tumors reducing primary tumor size, and the burden of affected lymphatic nodes. The findings suggest the unique intracellular redox chemistry of Ag5 may lead to new redox‐based approaches to cancer therapy. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1616301X
Volume :
32
Issue :
29
Database :
Academic Search Index
Journal :
Advanced Functional Materials
Publication Type :
Academic Journal
Accession number :
158043163
Full Text :
https://doi.org/10.1002/adfm.202113028