Lu Weiwen, Wang Lihua, Li Jiang, Zhao Yun, Zhou Ziang, Shi Jiye, Zuo Xiaolei, Pan Dun
Key Laboratory of Bio-Resources and Eco-Environment, Ministry of Education, College of Life Sciences, Sichuan University, Chengdu, Sichuan 610064, China.
Laboratory of Physical Biology, Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China.
Sci Rep. 2015 May 14;5:10158. doi: 10.1038/srep10158.
In recent years, poly adenine (polyA) DNA functionalized gold nanoparticles (AuNPs) free of modifications was fabricated with high density of DNA attachment and high hybridization ability similar to those of its thiolated counterpart. This nanoconjugate utilized poly adenine as an anchoring block for binding with the AuNPs surface thereby facilitated the appended recognition block a better upright conformation for hybridization, demonstrating its great potential to be a tunable plasmonic biosensor. It's one of the key points for any of the practical applications to maintaining stable conjugation between DNA oligonucleotides and gold nanoparticles under various experimental treatments. Thus, in this research, we designed a simple but sensitive fluorescence turn-on strategy to systematically investigate and quantified the dissociation of polyA DNA on gold nanoparticles in diverse experimental conditions. DNA desorbed spontaneously as a function of elevated temperature, ion strength, buffer pH, organic solvents and keeping time. What's more, evaluating this conjugate stability as affected by the length of its polyA anchor was another crucial aspect in our study. With the improved understanding from these results, we were able to control some of our experimental conditions to maintain a good stability of this kind of polyA DNA-AuNPs nanoconjugates.
近年来,制备了无修饰的聚腺嘌呤(polyA)DNA功能化金纳米颗粒(AuNPs),其具有高密度的DNA附着和与硫醇化对应物相似的高杂交能力。这种纳米共轭物利用聚腺嘌呤作为锚定基团与AuNPs表面结合,从而促进附加的识别基团形成更好的直立杂交构象,显示出其作为可调谐等离子体生物传感器的巨大潜力。在任何实际应用中,关键要点之一是在各种实验处理下保持DNA寡核苷酸与金纳米颗粒之间的稳定共轭。因此,在本研究中,我们设计了一种简单但灵敏的荧光开启策略,以系统地研究和量化在不同实验条件下polyA DNA在金纳米颗粒上的解离。DNA会随着温度升高、离子强度、缓冲液pH值、有机溶剂和保存时间而自发解吸。此外,评估这种共轭物的稳定性受其polyA锚定长度的影响是我们研究中的另一个关键方面。通过从这些结果中获得的更好理解,我们能够控制一些实验条件以保持这种polyA DNA-AuNPs纳米共轭物的良好稳定性。