The possibility to conjugate tumor-targeted cytotoxic nanoparticles and conventional antitumoral drugs in single pharmacological entities would open a wide spectrum of opportunities in nanomedical oncology. This principle has been explored here by using CXCR4-targeted self-assembling protein nanoparticles based on two potent microbial toxins, the exotoxin A from Pseudomonas aeruginosa and the diphtheria toxin from Corynebacterium diphtheriae, to which oligo-floxuridine and monomethyl auristatin E respectively have been chemically coupled. The resulting multifunctional hybrid nanoconjugates, with a hydrodynamic size of around 50 nm, are stable and internalize target cells with a biological impact. Although the chemical conjugation minimizes the cytotoxic activity of the protein partner in the complexes, the concept of drug combination proposed here is fully feasible and highly promising when considering multiple drug treatments aimed to higher effectiveness or when facing the therapy of cancers with acquired resistance to classical drugs.
Article
English
Agencia Estatal de Investigación BIO2016-76063-R
Agencia Estatal de Investigación PID2019-105416RB-I00
Instituto de Salud Carlos III PI18/00650
Generalitat de Catalunya 2017/SGR-229
Generalitat de Catalunya 2017/SGR-865
Instituto de Salud Carlos III CP19/00028
Generalitat de Catalunya 2018/FI_B2_00051
Generalitat de Catalunya 2019/FI_B00352
Ministerio de Ciencia, Innovación y Universidades FPU18/04615
Acta Biomaterialia ; Vol. 119 (January 2021), p. 312-322
open access
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