4.8 Article

Enzyme-Free Electrochemical Immunosensor Based on Host-Guest Nanonets Catalyzing Amplification for Procalcitonin Detection

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 7, Issue 7, Pages 4127-4134

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/am508137t

Keywords

enzyme-free electrochemical immunosensor; poly(amidoamine) dendrimer-encapsulated Au nanoparticles (PAMAM-Au); procalcitonin (PCT); beta-cyclodextrin (beta-CD); N,N-bis(ferrocenoyl)diaminoethane (Fc-Fc)

Funding

  1. NNSF of China [21275119, 21105081, 51473136]
  2. Research Fund for the Doctoral Program of Higher Education (RFDP) [20110182120010]
  3. Ministry of Education of China [708073]
  4. Specialized Research Fund for the Doctoral Program of Higher Education [20100182110015]
  5. Natural Science Foundation Project of Chongqing City [CSTC-2011BA7003, CSTC-2014JCYJA20005]
  6. Fundamental Research Funds for the Central Universities, China [XDJK2013A027, XDJK2014A012]

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An enzyme-free electrochemical immunosensor based on the host-guest nanonets of N,N-bis(ferrocenoyl)-diaminoethane/beta-cyclodextrins/poly(amidoamine) dendrimer-encapsulated Au nanoparticles (Fc-Fc/beta-CD/PAMAM-Au) for procalcitonin (PCT) detection has been developed in this study. The signal probe was constructed as follows: amine-terminated beta-CD was adsorbed to PAMAM-Au first, and then the prepared Fc-Fc was recognized by the beta-CD to form stable host-guest nanonets. Next, secondary antibodies (Ab(2)) were attached into the formed netlike nanostructure of Fc-Fc/beta-CD/PAMAM-Au by chemical absorption between PAMAM-Au and -NH2 of beta-CD. Herein, the PAMAM-Au act not only as nanocarriers for anchoring large amounts of the beta-CD and Ab(2) but also as nanocatalysts to catalyze the oxidation of ascorbic acid (AA) for signal amplification. Moreover, the Fc-Fc could be stably immobilized by the hydrophobic inner cavity of beta-CD as well as improving solubility by the hydrophilic exterior of beta-CD. With the unique structure of two ferrocene units, Fc-Fc not only affords more electroactive groups to make the electrochemical response more sensitive but also plays a role of combining dispersive beta-CD-functionalized PAMAM-Au to form the netlike nanostructure. Furthermore, Fc-Fc exhibits good catalytic activity for AA oxidation. When the detection solution contained AA, the synergetic catalysis of PAMAM-Au and Fc-Fc to AA oxidation could be obtained, realizing enzyme-free signal amplification. The proposed immunosensor provided a linear range from 1.80 pg/mL to 500 ng/mL for PCT detection and a detection limit of 0.36 pg/mL under optimal experimental conditions. Moreover, the immunosensor has shown potential application in clinical detection of PCT.

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