Shukla Ravi, Nune Satish K, Chanda Nripen, Katti Kavita, Mekapothula Swapna, Kulkarni Rajesh R, Welshons Wade V, Kannan Raghuraman, Katti Kattesh V
Department of Radiology, University of Missouri-Columbia, MO 65212, USA.
Small. 2008 Sep;4(9):1425-36. doi: 10.1002/smll.200800525.
The present study demonstrates an unprecedented green process for the production of gold nanoparticles by simple treatment of gold salts with soybean extracts. Reduction capabilities of antioxidant phytochemicals present in soybean and their ability to reduce gold salts chemically to nanoparticles with subsequent coating of proteins and a host of other phytochemicals present in soybean on the freshly generated gold nanoparticles are discussed. The new genre of green nanoparticles exhibit remarkable in vitro stability in various buffers including saline, histidine, HSA, and cysteine solutions. MTT assays reveal that the green gold nanoparticles are nontoxic and thus provide excellent opportunities for their applications in nanomedicine for molecular imaging and therapy. The overall strategy described herein for the generation of gold nanoparticles meets all 12 principles of green chemistry, as no "man-made" chemicals, other than the gold salts, are used in the green nanotechnological process.
本研究展示了一种前所未有的绿色方法,通过用大豆提取物简单处理金盐来生产金纳米颗粒。讨论了大豆中存在的抗氧化植物化学物质的还原能力,以及它们将金盐化学还原为纳米颗粒的能力,随后在新生成的金纳米颗粒上包覆大豆中存在的蛋白质和许多其他植物化学物质。这种新型的绿色纳米颗粒在包括盐水、组氨酸、人血清白蛋白和半胱氨酸溶液在内的各种缓冲液中表现出显著的体外稳定性。MTT 分析表明,绿色金纳米颗粒无毒,因此为其在纳米医学中的分子成像和治疗应用提供了极好的机会。本文所述的金纳米颗粒生成的总体策略符合绿色化学的所有 12 条原则,因为在绿色纳米技术过程中,除了金盐之外,没有使用任何“人造”化学物质。