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1.
ACS Sens ; 2(9): 1355-1358, 2017 Sep 22.
Article in English | MEDLINE | ID: mdl-28812345

ABSTRACT

A nanoporous poly(methyl methacrylate) (PMMA) wire was prepared by electrospinning under high humidity and attached between two prongs of a microfabricated quartz tuning fork (QTF). Exposure of the QTF to ethanol vapor caused a frequency shift due to a decrease in the modulus of the PMMA wire, and the frequency change increased as the concentration of ethanol vapor increased. The nanoporous wire-coated QTF exhibited higher sensitivity and faster response time than a plain wire-coated QTF, which was attributed to the high surface area and pore networks facilitating the transport of ethanol molecules inside the PMMA wire.

2.
Anal Chim Acta ; 952: 81-87, 2017 Feb 01.
Article in English | MEDLINE | ID: mdl-28010845

ABSTRACT

Zinc-doped magnetic nanoclusters (Zn-MNCs) were synthesized and used to detect pathogenic bacteria in milk. Hydrothermally synthesized Zn-MNCs exhibited stronger magnetic properties than pure MNCs, which facilitated the magnetic separation from the sample using a permanent magnet. The presence of accessible Zn sites allows the direct immobilization of half-fragmented antibodies over Zn-MNCs through strong ZnS bonds and prevents the tedious multiple steps of molecular functionalization or coating with costly noble metals prior to conjugation with an antibody. After the capture and magnetic separation of Salmonella in milk using the antibody-functionalized Zn-MNCs, the concentration of bacteria was determined with a portable ATP luminometer and the detection limit was found to be 10 CFU/mL.


Subject(s)
Antibodies, Immobilized/chemistry , Milk/microbiology , Nanoparticles , Salmonella/isolation & purification , Zinc , Animals , Food Contamination/analysis , Food Microbiology , Limit of Detection
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