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The Potential of Curcumin-Capped Nanoparticle Synthesis in Cancer Therapy: A Green Synthesis Approach

期刊

NANOMATERIALS
卷 12, 期 18, 页码 -

出版社

MDPI
DOI: 10.3390/nano12183201

关键词

curcumin; green chemistry; cancer; nanoparticles; delivery systems

资金

  1. National Research Foundation of South Africa [120455]

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Cancer nanotherapeutics, using nanomaterials as a form of cancer therapy, is an important and promising field of research. Nanoparticles have unique properties that make them excellent vehicles for delivering therapeutic genes and drugs to tumors. However, there is also concern about the potential long-term side effects of nanoparticles on the environment and human health. Using curcumin-capped nanoparticles as a green and sustainable alternative shows potential for effective and targeted cancer treatment.
Cancer nanotherapeutics is an important field of research which utilizes nanomaterials as an approach to cancer therapy. Nano-mediated therapeutic delivery systems overcome the adverse side effects of traditional cancer treatment methods. Nanoparticles (NPs) are considered excellent tumor-targeting vehicles due to their compact and variable size, large surface area, ability to load several genes and drugs, and mediation of increased therapeutic payload uptake. Despite the rapid development of nanotechnology, there is growing concern regarding the possible long-term side effects of NPs on the environment and human health. Green chemistry using plant materials, such as curcumin, is a sustainable alternative to conventional reduction methods and confers dual reducing and capping properties. Curcumin is a bioactive compound isolated from the rhizome of the Curcuma longa plant, which exhibits various medicinal properties. Curcumin-capped NPs exhibit increased solubility, bioavailability, therapeutic indices, and antitumor properties. This review highlights the potential and antitumor properties of economical, simple, and eco-friendly curcumin-synthesized and capped NPs for the localized delivery of therapeutic genes and drugs to the cancer tumor microenvironment with fewer adverse side effects.

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