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1.
Anal Methods ; 8(14): 2880-2886, 2016 Apr 14.
Article in English | MEDLINE | ID: mdl-37457919

ABSTRACT

Sample preparation, including bacterial lysis, remains a hurdle in the realization of complete point-of-care tests for many pathogens. Here, we developed a sample preparation methodology for enzymatic lysis and sample heating for low-resource, point-of-care applications. We show an instrument-free chemical heater system for rapid lysis of a gram-positive bacterium (Staphylococcus aureus) and an RNA virus (human respiratory syncytial virus) using a dried lysis enzyme mixture (achromopeptidase) for S. aureus. After a lysis step (<1 minute), lysis enzymes are heat deactivated (<5 minutes) using a simple disposable chemical heater. We demonstrated that both DNA and RNA in the heat-treated sample could be directly amplified without purification, even in the presence of a clinically-obtained human nasal sample. This simple approach to dry enzyme storage and sample heating is adaptable to many applications where samples need to be lysed, including use in low-resource laboratories and in single-use or cartridge-based point-of-care diagnostic devices.

2.
Lab Chip ; 15(9): 1994-7, 2015 May 07.
Article in English | MEDLINE | ID: mdl-25797443

ABSTRACT

Audio sources are ubiquitously available on portable electronic devices, including cell phones. Here we demonstrate lysis of Mycobacterium marinum and Staphylococcus epidermidis bacteria utilizing a portable audio device coupled with a simple and inexpensive electromagnetic coil. The resulting alternating magnetic field rotates a magnet in a tube with the sample and glass beads, lysing the cells and enabling sample preparation for these bacteria anywhere there is a cell phone, mp3 player, laptop, or other device with a headphone jack.


Subject(s)
Analytic Sample Preparation Methods/instrumentation , MP3-Player , Mechanical Phenomena , Mycobacterium marinum/cytology , Point-of-Care Systems , Staphylococcus epidermidis/cytology , Analytic Sample Preparation Methods/economics , DNA, Bacterial/genetics , Electromagnetic Fields , Mycobacterium marinum/isolation & purification , Nucleic Acid Amplification Techniques , Staphylococcus epidermidis/isolation & purification
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