4.7 Article

Chrysanthemum-like Au@Polydopamine synthesized using one-pot method and its advantage in immunochromatographic assay

期刊

SENSORS AND ACTUATORS B-CHEMICAL
卷 343, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.snb.2021.130097

关键词

Chrysanthemum-like gold nanoparticles; Flower-like gold nanoparticles; Polydopamine; Human chorionic gonadotropin; Immunochromatographic assay

资金

  1. State Key Laboratory of Food Science and Technology of Nanchang University [SKLF-ZZB-201913]
  2. National Key Research and Development Program of China [2019YFC1605502]

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The novel chrysanthemum-like Au@polydopamine (AuNC@PDA) prepared using one-pot method showed superior morphological and optical performance compared with conventional AuNF@polydopamine (AuNF@PDA) prepared using three-step method. The grayscale of AuNC@PDA was higher and the stability and coupling efficiency were also improved. In immunochromatographic assay, the LOD based on AuNC@PDA was significantly lower than that based on AuNF@PDA and AuNS, indicating its potential applications in practical ICA.
Flower-like gold nanoparticle (AuNF) is widely used as a probe. However, the performance of conventional AuNF is not satisfactory because of complex synthesis, insufficient uniformity, and ordinary optical performance. In this paper, a novel chrysanthemum-like Au@polydopamine (AuNC@PDA) prepared using one-pot method was compared with conventional AuNF@polydopamine (AuNF@PDA) prepared using three-step method. AuNC@PDA had more branch structures with more uniform petaloid shape and narrower particle size distribution compared with AuNF@PDA. The grayscale of AuNC@PDA both in aqueous solution and on nitrocellulose membrane was approximately threefold higher than that of AuNF@PDA. Because of PDA coating, the stability and coupling efficiency of AuNC@PDA were much higher than that of conventional nanoprobes - AuNF and AuNS (gold nanosphere). These results indicated that AuNC@PDA had superior morphological and optical performance. The AuNC@PDA was first utilized as a probe in immunochromatographic assay (ICA), and compared with conventional AuNF@PDA. The limits of detection (LOD) of ICA based on AuNC@PDA, AuNS, and AuNF@PDA were 1.59, 9.58, and 5.13 mIU/mL, respectively, when human chorionic gonadotropin was detected as the target. The LOD of ICA based on AuNC@PDA had 6.0-fold and 3.3-fold improvement compared with that based on AuNS and AuNF@PDA, respectively. Our results could be used as a basis for developing novel probes in practical ICA applications.

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