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Development of Novel Triadin-Based Biosensor for the Quantification of H2O2 in the Cardiac Dyad Microdomain
Graduate Thesis/Dissertation

Development of Novel Triadin-Based Biosensor for the Quantification of H2O2 in the Cardiac Dyad Microdomain

Julia Jocelyn McLachlan
Bachelor of Biomedical Sciences with Honours - BBiomedSc (Hons), University of Otago
University of Otago
2016
Handle:
https://hdl.handle.net/10523/7011

Abstract

H2O2 hydrogen peroxide biosensor redox biosensor cardiac dyad reactive oxygen species ROS HyPer3 roGFP2-Orp1 triadin calcium-induced calcium release CICR SOICR store overload-induced calcium release RyR2 ryanodine receptor type 2 ryanodine receptor Fluo-4 CEPIA calcium redox homeostasis redox regulation redox quantification dyad microdomain cardiac dyad microdomain ROS biosensor H2O2 biosensor genetically encoded redox biosensor HEK 293 Ca2+ ROS quantification

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