Platinum Group Metals Nanoparticles in Breast Cancer Therapy

Author:

Alven Sibusiso1ORCID,Gandidzanwa Sendibitiyosi1ORCID,Ngalo Basabele1,Poswayo Olwethu1ORCID,Madanhire Tatenda12ORCID,Aderibigbe Blessing A.3ORCID,Tshentu Zenixole1ORCID

Affiliation:

1. Department of Chemistry, Nelson Mandela University, Gqeberha 6001, South Africa

2. Department of Chemistry, University of South Africa, Johannesburg 1710, South Africa

3. Department of Chemistry, University of Fort Hare, Alice 5700, South Africa

Abstract

Despite various methods currently used in cancer therapy, breast cancer remains the leading cause of morbidity and mortality worldwide. Current therapeutics face limitations such as multidrug resistance, drug toxicity and off-target effects, poor drug bioavailability and biocompatibility, and inefficient drug delivery. Nanotechnology has emerged as a promising approach to cancer diagnosis, imaging, and therapy. Several preclinical studies have demonstrated that compounds and nanoparticles formulated from platinum group metals (PGMs) effectively treat breast cancer. PGMs are chemically stable, easy to functionalise, versatile, and tunable. They can target hypoxic microenvironments, catalyse the production of reactive oxygen species, and offer the potential for combination therapy. PGM nanoparticles can be incorporated with anticancer drugs to improve efficacy and can be attached to targeting moieties to enhance tumour-targeting efficiency. This review focuses on the therapeutic outcomes of platinum group metal nanoparticles (PGMNs) against various breast cancer cells and briefly discusses clinical trials of these nanoparticles in breast cancer treatment. It further illustrates the potential applications of PGMNs in breast cancer and presents opportunities for future PGM-based nanomaterial applications in combatting breast cancer.

Funder

National Research Foundation

South African Medical Research Council

Publisher

MDPI AG

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