Anal Sci Adv. 2026 May 26;7(1):e70091. doi: 10.1002/ansa.70091. eCollection 2026 Jun.
ABSTRACT
Carbon dioxide (CO2) sequestration is a key strategy for mitigating climate change, and biocatalytic approaches offer sustainable, cost-effective alternatives to chemical and physical methods. Carbonic anhydrases (CAs) efficiently catalyse the reversible hydration of CO2 to bicarbonate, yet their large-scale application is constrained by limited stability and the lack of robust analytical tools for activity and/or inhibition profiling. In this work, we synthesised and characterised a novel phenyl azo dye acetate to address these limitations. The substrate was optimised for spectrophotometric assays, enabling reliable kinetic and inhibition analyses of CAs. Compared with conventional substrates such as p-nitrophenyl acetate and indoxyl acetate, the new assay demonstrated more than 4.5-fold higher sensitivity, substantial thermal stability and wider applicability across tested hydrolases. These findings provide a more robust platform for evaluating CA activity, supporting the development of more efficient biocatalytic systems for CO2 sequestration.
PMID:42255016 | PMC:PMC13239852 | DOI:10.1002/ansa.70091