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Small-Molecules as Chemiluminescent Probes to Detect Lipase Activity.


ABSTRACT: The set-up of highly sensitive detection tools to evaluate lipase activity remains a central goal in different fields. In this context, we proposed new chemiluminescent 1,2-dioxetane luminophores, sharing an octanoyl triggerable group, to monitor lipase activity. We herein report the synthesis and both the evaluation of their luminescence emission profile and their enzyme-substrate specificity, generated by three different commercial lipases (Candida cylindracea, Pseudomonas fluorescens, and Mucor miehei) and one esterase (porcine liver esterase, PLE, as a literature control). Remarkably, the present study confirmed the applicability of these 1,2-dioxetane luminophores as (i) highly efficient, broad-range, chemiluminescent probes for the detection and the enzymatic activity evaluation of lipases and as (ii) promising candidates for the future development of both flash- and glow-type luminescence assays.

SUBMITTER: La Rocca P 

PROVIDER: S-EPMC9409280 | biostudies-literature | 2022 Aug

REPOSITORIES: biostudies-literature

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Small-Molecules as Chemiluminescent Probes to Detect Lipase Activity.

La Rocca Paolo P   Mingione Alessandra A   Casati Silvana S   Ottria Roberta R   Allevi Pietro P   Ciuffreda Pierangela P   Rota Paola P  

International journal of molecular sciences 20220812 16


The set-up of highly sensitive detection tools to evaluate lipase activity remains a central goal in different fields. In this context, we proposed new chemiluminescent 1,2-dioxetane luminophores, sharing an octanoyl triggerable group, to monitor lipase activity. We herein report the synthesis and both the evaluation of their luminescence emission profile and their enzyme-substrate specificity, generated by three different commercial lipases (<i>Candida cylindracea</i>, <i>Pseudomonas fluorescen  ...[more]

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