Abstract
Previous chemical heater designs for isothermal nucleic acid amplification have been based on solid-liquid phase transition, but using this approach, developers have identified design challenges en route to developing a low-cost, disposable device. Here, we demonstrate the feasibility of a new heater configuration suitable for isothermal amplification in which one reactant of an exothermic reaction is a liquid-gas phase-change material, thereby eliminating the need for a separate phase-change compartment. This design offers potentially enhanced performance and energy density compared to other chemical and electric heaters. Copyright:
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CITATION STYLE
Shah, K. G., Guelig, D., Diesburg, S., Buser, J., Burton, R., LaBarre, P., … Weigl, B. (2015). Design of a new type of compact chemical heater for isothermal nucleic acid amplification. PLoS ONE, 10(10). https://doi.org/10.1371/journal.pone.0139449
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