a Pharmaceutical Technology Unit, National Institute of Laser Enhanced Sciences (NILES) , Cairo University , Cairo , Egypt.
b Photobiology and Cell Photosensitization Unit, National Institute of Laser Enhanced Sciences (NILES), Cairo University, Giza , Egypt.
Drug Dev Ind Pharm. 2019 Jun;45(6):937-945. doi: 10.1080/03639045.2019.1579828. Epub 2019 Feb 27.
This study introduces a simple method for one-step synthesis of highly stable nontoxic polymer-coated gold nanospheres for use in drug delivery, focuses on the ability of chloroauric acid (HAu ) to induce polyphenols polymerization, puts up an easy procedure for loading hydrophobic drugs onto gold nanoparticles with ultra-high loading efficiency and studies the cytotoxicity of free and gold nanoparticles-loaded resveratrol. Gold nanospheres were synthesized simply by direct reaction between resveratrol itself and HAu in aqueous medium. Synthesized gold nanospheres exhibited high stability in both aqueous and ethanolic solutions. UV-visible spectrum showed that the synthesized gold nanospheres have maximum absorption at 532 nm. TEM imaging, mass and FT-IR spectrometry revealed the presence of a distinct polymeric shell around each nanoparticle. Resveratrol, as a chemopreventive agent, was loaded onto the synthesized gold nanospheres with an ultra-high loading capacity (11.6% w/w). Free resveratrol, free gold nanospheres, and resveratrol-loaded gold nanospheres were examined for cytotoxicity on HepG2 cell line where cytotoxicity of loaded resveratrol was dramatically enhanced to reach about nine folds as that of free resveratrol at the same concentration.
本研究介绍了一种一步法合成用于药物输送的高稳定性无毒聚合物包覆金纳米球的简单方法,重点关注氯金酸(HAu )诱导多酚聚合的能力,提出了一种将疏水性药物高效负载到金纳米粒子上的简便方法,并研究了游离和负载金纳米粒子白藜芦醇的细胞毒性。金纳米球通过在水介质中直接将白藜芦醇本身与 HAu 反应合成。合成的金纳米球在水和乙醇溶液中均表现出高稳定性。紫外-可见光谱显示,合成的金纳米球在 532nm 处有最大吸收。TEM 成像、质量和 FT-IR 光谱表明,每个纳米粒子周围都存在明显的聚合壳。白藜芦醇作为一种化学预防剂,以超高负载量(11.6%w/w)负载到合成的金纳米球上。游离白藜芦醇、游离金纳米球和负载白藜芦醇的金纳米球被用于 HepG2 细胞系的细胞毒性研究,其中负载白藜芦醇的细胞毒性显著增强,在相同浓度下达到游离白藜芦醇的约 9 倍。