Catechol-Conjugated Alginate Biopolymer for Eco-Friendly Synthesis of Gold Nanoparticles: A Promising Approach for Photothermal and Radiotherapy in Breast Cancer Treatment

Author:

Ghaffarlou Mohammadreza1,Rashidzadeh Hamid2,Mohammadi Ali2,Mousazadeh Navid2,Barsbay Murat1,Sharafi Ali2,Gharbavi Mahmoud2,Danafar Hossein2,Javani Siamak3

Affiliation:

1. Hacettepe University

2. Zanjan University of Medical Sciences

3. Golestan University of Medical Sciences

Abstract

Abstract Radiation therapy and phototherapy are commonly used treatments for cancer that offer advantages such as a low risk of adverse effects and the ability to target cancer cells while sparing healthy tissue. A promising strategy for cancer treatment involves using nanoparticles (NPs) in combination with radiation and photothermal therapy to target cancer cells and improve treatment efficacy. The synthesis of gold NPs (AuNPs) for use in biomedical applications has traditionally involved toxic reducing agents. Here we harnessed dopamine (DA)-conjugated alginate (Alg) for the facile and green synthesis of Au NPs (Au@Alg-DA NPs). Alg-DA conjugate reduced Au ions, simultaneously stabilized the resulting AuNPs and prevent aggregation, resulting in particles with a narrow size distribution and improved stability. Injectable Au@Alg-DA NPs significantly promoted ROS generation in 4T1 breast cancer cells when exposed to X-rays. In addition, their administration raised the temperature under a light excitation of 808 nm, thus helping to destroy cancer cells more effectively. Importantly, no substantial cytotoxicity was detected in our Au@Alg-DA NPs. Taken together, our work provides a promising route to obtain an injectable combined radioenhancer and photothermally active nanosystem for further potential clinic translation.

Publisher

Research Square Platform LLC

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