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Combination of Chemotherapy and Mild Hyperthermia Using Targeted Nanoparticles: A Potential Treatment Modality for Breast Cancer

Title: Combination of Chemotherapy and Mild Hyperthermia Using Targeted Nanoparticles: A Potential Treatment Modality for Breast Cancer
Authors: Ishdeep Kaur; Terence Tieu; Veerasikku G. Deepagan; Muhammad A. Ali; Fahad Alsunaydih; David Rudd; Maliheh A. Moghaddam; Laure Bourgeois; Timothy E. Adams; Kristofer J. Thurecht; Mehmet Yuce; Anna Cifuentes-Rius; Nicolas H. Voelcker
Source: Pharmaceutics, Vol 15, Iss 5, p 1389 (2023)
Publisher Information: MDPI AG
Publication Year: 2023
Collection: Directory of Open Access Journals: DOAJ Articles
Subject Terms: porous silicon nanoparticles; drug delivery; hyperthermia; breast cancer; combination therapy; Pharmacy and materia medica; RS1-441
Description: Despite the clinical benefits that chemotherapeutics has had on the treatment of breast cancer, drug resistance remains one of the main obstacles to curative cancer therapy. Nanomedicines allow therapeutics to be more targeted and effective, resulting in enhanced treatment success, reduced side effects, and the possibility of minimising drug resistance by the co-delivery of therapeutic agents. Porous silicon nanoparticles (pSiNPs) have been established as efficient vectors for drug delivery. Their high surface area makes them an ideal carrier for the administration of multiple therapeutics, providing the means to apply multiple attacks to the tumour. Moreover, immobilising targeting ligands on the pSiNP surface helps direct them selectively to cancer cells, thereby reducing harm to normal tissues. Here, we engineered breast cancer-targeted pSiNPs co-loaded with an anticancer drug and gold nanoclusters (AuNCs). AuNCs have the capacity to induce hyperthermia when exposed to a radiofrequency field. Using monolayer and 3D cell cultures, we demonstrate that the cell-killing efficacy of combined hyperthermia and chemotherapy via targeted pSiNPs is 1.5-fold higher than applying monotherapy and 3.5-fold higher compared to using a nontargeted system with combined therapeutics. The results not only demonstrate targeted pSiNPs as a successful nanocarrier for combination therapy but also confirm it as a versatile platform with the potential to be used for personalised medicine.
Document Type: article in journal/newspaper
Language: English
Relation: https://www.mdpi.com/1999-4923/15/5/1389; https://doaj.org/toc/1999-4923; https://doaj.org/article/a8c8f24e479e4aa4a3f09886fa4d3643
DOI: 10.3390/pharmaceutics15051389
Availability: https://doi.org/10.3390/pharmaceutics15051389; https://doaj.org/article/a8c8f24e479e4aa4a3f09886fa4d3643
Accession Number: edsbas.7BF1E8CC
Database: BASE