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肿瘤靶向双功能细胞毒性纳米颗粒的设计与工程

Design and engineering of tumor-targeted, dual-acting cytotoxic nanoparticles.

作者信息

Voltà-Durán Eric, Serna Naroa, Sánchez-García Laura, Aviñó Anna, Sánchez Julieta M, López-Laguna Hèctor, Cano-Garrido Olivia, Casanova Isolda, Mangues Ramón, Eritja Ramon, Vázquez Esther, Villaverde Antonio, Unzueta Ugutz

机构信息

Institut de Biotecnologia i de Biomedicina, Universitat Autònoma de Barcelona, Bellaterra, 08193 Barcelona, Spain; Departament de Genètica i de Microbiologia, Universitat Autònoma de Barcelona, Bellaterra, 08193 Barcelona, Spain; CIBER de Bioingeniería, Biomateriales y Nanomedicina (CIBER-BBN), Bellaterra, 08193 Barcelona, Spain.

CIBER de Bioingeniería, Biomateriales y Nanomedicina (CIBER-BBN), Bellaterra, 08193 Barcelona, Spain; Institute for Advanced Chemistry of Catalonia (IQAC), CSIC, 08034 Barcelona, Spain.

出版信息

Acta Biomater. 2021 Jan 1;119:312-322. doi: 10.1016/j.actbio.2020.11.018. Epub 2020 Nov 12.

Abstract

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.

摘要

在单一药理实体中结合肿瘤靶向细胞毒性纳米颗粒和传统抗肿瘤药物的可能性,将为纳米医学肿瘤学带来广泛的机遇。本文通过使用基于两种强效微生物毒素(铜绿假单胞菌的外毒素A和白喉棒状杆菌的白喉毒素)的CXCR4靶向自组装蛋白纳米颗粒,探索了这一原理,寡氟尿苷和单甲基奥瑞他汀E分别与这两种毒素进行了化学偶联。所得的多功能杂化纳米缀合物,流体动力学尺寸约为50 nm,稳定且能内化靶细胞并产生生物学影响。尽管化学偶联使复合物中蛋白伴侣的细胞毒性活性最小化,但当考虑旨在提高疗效的多种药物治疗或面对对经典药物产生获得性耐药的癌症治疗时,本文提出的药物组合概念是完全可行且极具前景的。

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