Stimuli‐Responsive Multifunctional Nanomedicine for Enhanced Glioblastoma Chemotherapy Augments Multistage Blood‐to‐Brain Trafficking and Tumor Targeting

Author:

Martins Cláudia123,Araújo Marco12,Malfanti Alessio4,Pacheco Catarina125,Smith Stuart J.6,Ucakar Bernard4,Rahman Ruman6,Aylott Jonathan W.7,Préat Véronique4,Sarmento Bruno125ORCID

Affiliation:

1. i3S ‐ Instituto de Investigação e Inovação em Saúde Universidade do Porto Rua Alfredo Allen 208 Porto 4200‐393 Portugal

2. INEB ‐ Instituto Nacional de Engenharia Biomédica Universidade do Porto Rua Alfredo Allen 208 Porto 4200‐393 Portugal

3. ICBAS – Instituto de Ciências Biomédicas Abel Salazar Universidade do Porto Rua de Jorge Viterbo Ferreira 228 Porto 4050‐313 Portugal

4. Advanced Drug Delivery and Biomaterials Louvain Drug Research Institute University of Louvain Brussels 1200 Belgium

5. CESPU ‐ Instituto de Investigação e Formação Avançada em Ciências e Tecnologias da Saúde Rua Central de Gandra 1317 Gandra 4585‐116 Portugal

6. School of Medicine University of Nottingham Biodiscovery Institute Children's Brain Tumour Research Centre University Park Nottingham NG7 2RD UK

7. School of Pharmacy Boots Science Building University of Nottingham Nottingham NG7 2RD UK

Abstract

AbstractMinimal therapeutic advances have been achieved over the past two decades for glioblastoma (GBM), which remains an unmet clinical need. Here, hypothesis‐driven stimuli‐responsive nanoparticles (NPs) for docetaxel (DTX) delivery to GBM are reported, with multifunctional features that circumvent insufficient blood‐brain barrier (BBB) trafficking and lack of GBM targeting—two major hurdles for anti‐GBM therapies. NPs are dual‐surface tailored with a i) brain‐targeted acid‐responsive Angiopep‐2 moiety that triggers NP structural rearrangement within BBB endosomal vesicles, and ii) L‐Histidine moiety that provides NP preferential accumulation into GBM cells post‐BBB crossing. In tumor invasive margin patient cells, the stimuli‐responsive multifunctional NPs target GBM cells, enhance cell uptake by 12‐fold, and induce three times higher cytotoxicity in 2D and 3D cell models. Moreover, the in vitro BBB permeability is increased by threefold. A biodistribution in vivo trial confirms a threefold enhancement of NP accumulation into the brain. Last, the in vivo antitumor efficacy is validated in GBM orthotopic models following intratumoral and intravenous administration. Median survival and number of long‐term survivors are increased by 50%. Altogether, a preclinical proof of concept supports these stimuli‐responsive multifunctional NPs as an effective anti‐GBM multistage chemotherapeutic strategy, with ability to respond to multiple fronts of the GBM microenvironment.

Funder

European Regional Development Fund

Fundação para a Ciência e a Tecnologia

European Cooperation in Science and Technology

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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