L-Cysteine as a reducing/capping/gel-forming agent for the preparation of silver nanoparticle composites with anticancer properties.
basic_science · Level V
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- Record sourced from PubMed, PMID 35355035.
- Also identified by DOI 10.1039/d2sm00042c.
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Abstract
The present article reports the <i>in situ</i> preparation of silver nanoparticles (AgNPs) homogeneously distributed in the gel matrix formed using only L-cysteine (CYS) as a bio-reducing agent. The physicochemical methods of analysis confirmed the formation of a gel-network from aggregates consisting of spherical/elliptical cystine-stabilized AgNPs (core) and cysteine/Ag<sup>+</sup> complexes (shell) regardless of the used silver salt - AgNO<sub>3</sub>, AgNO<sub>2</sub> or AgOOCCH<sub>3</sub>. CYS/AgNO<sub>3</sub> and CYS/AgOOCCH<sub>3</sub> aqueous solution systems needed the addition of electrolytes (Cl<sup>-</sup> and SO<sub>4</sub><sup>2-</sup>) for the gelation process, but the gel-formation in CYS/AgNO<sub>2</sub> occurred in one stage without any additional components. The AgNP sizes were about 1-5 nm in diameter for CYS/AgNO<sub>3</sub>, 5-10 nm for CYS/AgOOCCH<sub>3</sub> and 20-40 nm for CYS/AgNO<sub>2</sub> systems. The zeta-potential values varied from +60 mV for CYS/AgNO<sub>3</sub> to +25 mV for the CYS/AgNO<sub>2</sub> system. The MTT-test showed that the obtained composites suppressed the MCF-7 breast cancer cells and the CYS/AgNO<sub>3</sub> system possessed the highest activity. Flow cytofluorimetry confirmed that the cell death occurred by apoptosis and this effect was the strongest for the CYS/AgNO<sub>3</sub> system. All systems were non-toxic to fibroblast cells. The novel simplest "green chemistry" approach, combining the knowledge of organic, inorganic, physical and supramolecular chemistry could open possibilities for the creation of the newest soft gel materials used in various fields of our life.
Medical subject headings
- Metal Nanoparticles
- Silver