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1.
Biosens Bioelectron ; 195: 113656, 2022 Jan 01.
Artículo en Inglés | MEDLINE | ID: mdl-34600203

RESUMEN

Serological tests play an important role in the fight against Coronavirus Disease 2019 (COVID-19), including monitoring the dynamic immune response after vaccination, identifying past infection and determining community infection rate. Conventional methods for serological testing, such as enzyme-linked immunosorbent assays and chemiluminescence immunoassays, provide reliable and sensitive antibody detection but require sophisticated laboratory infrastructure and/or lengthy assay time. Conversely, lateral flow immunoassays are suitable for rapid point-of-care tests but have limited sensitivity. Here, we describe the development of a rapid and sensitive magnetofluidic immuno-PCR platform that can address the current gap in point-of-care serological testing for COVID-19. Our magnetofluidic immuno-PCR platform automates a magnetic bead-based, single-binding, and one-wash immuno-PCR assay in a palm-sized magnetofluidic device and delivers results in ∼30 min. In the device, a programmable magnetic arm attracts and transports magnetically-captured antibodies through assay reagents pre-loaded in a companion plastic cartridge, and a miniaturized thermocycler and a fluorescence detector perform immuno-PCR to detect the antibodies. We evaluated our magnetofluidic immuno-PCR with 108 clinical serum/plasma samples and achieved 93.8% (45/48) sensitivity and 98.3% (59/60) specificity, demonstrating its potential as a rapid and sensitive point-of-care serological test for COVID-19.


Asunto(s)
Técnicas Biosensibles , COVID-19 , Anticuerpos Antivirales , Prueba Serológica para COVID-19 , Prueba de COVID-19 , Humanos , Sistemas de Atención de Punto , Pruebas en el Punto de Atención , SARS-CoV-2 , Sensibilidad y Especificidad
2.
Acta Biomater ; 1(1): 115-23, 2005 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-16701785

RESUMEN

Polydioxanone (PDS) is a colorless, crystalline, bioabsorbable polymer that was first developed specifically for wound closure sutures. The compatibility, degradation rate, and mechanical properties (including shape memory) of PDS are of interest when considering the design of tissue engineering scaffolds. This research presents the electrospinning of PDS to fabricate unique nanofibrous structures for a variety of biomedical applications. Electrospinning is a polymer processing technique that utilizes an electric field to form fibers from a polymer solution or melt and allows the fabrication of nanofibrous non-woven structures. Results demonstrate the ability to control the fiber diameter of PDS as a function of solution concentrations and the fiber orientation with our prototype electrospinning apparatus. The results also show dependence between the fiber orientation and the elastic modulus, peak stress, and strain to failure of PDS in a uniaxial model.


Asunto(s)
Materiales Biocompatibles/química , Polidioxanona/química , Elasticidad , Ensayo de Materiales , Microscopía Electrónica de Rastreo , Soluciones , Suturas , Resistencia a la Tracción , Ingeniería de Tejidos , Viscosidad
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