State Key Lab of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, PR China.
Bioelectrochemistry. 2012 Apr;84:32-7. doi: 10.1016/j.bioelechem.2011.10.007. Epub 2011 Nov 4.
Gold nanoparticle-assembled capsules (GNACs) with controllable size and tunable morphology were fabricated through a simple two-step mixing procedure. Cationic polyelectrolyte was first induced to self-assemble into spherical aggregates in the presence of multivalent anions. Then, the aggregates served as an effective template for the self-assembly of gold nanoparticles to form size-controllable capsules. By adjusting the quantity of gold nanoparticles, capsules with various morphologies could be obtained. Because of their unique nanoporous features, the capsules with intact shells were further used to load hemoglobin (Hb) for the fabrication of a novel H(2)O(2) biosensor. The results of UV-vis spectroscopy and cyclic voltammetry indicated that the capsules provided a suitable matrix for the immobilization of Hb. Additionally, the resulting biosensor showed a high affinity and good catalytic activity to H(2)O(2). With the advantages of the large surface area, good conductivity and biocompatibility, the GNACs can offer a promising platform for the development of biosensors. Moreover, on the basis of the capsule structure, this material may also be expected to apply in some fields such as drug delivery, medical diagnostics and bio-encapsulation.
通过简单的两步混合程序,制备了具有可控尺寸和可调形态的金纳米粒子组装胶囊(GNACs)。首先,在多价阴离子存在下,阳离子聚电解质诱导自组装成球形聚集体。然后,这些聚集体作为金纳米粒子自组装形成尺寸可控胶囊的有效模板。通过调整金纳米粒子的数量,可以获得具有各种形态的胶囊。由于其独特的纳米多孔特征,完整壳的胶囊进一步用于负载血红蛋白(Hb)以制造新型 H 2 O 2 生物传感器。紫外-可见光谱和循环伏安法的结果表明,胶囊为 Hb 的固定化提供了合适的基质。此外,所得生物传感器对 H 2 O 2 表现出高亲和力和好的催化活性。由于具有大的表面积、良好的导电性和生物相容性,GNACs 可为生物传感器的发展提供有前途的平台。此外,基于胶囊结构,这种材料还可能应用于药物输送、医学诊断和生物封装等领域。