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Biomacromolecules· 2026Q1

A FRET-Based Fluorometric Assay for Tracking the Enzymatic Degradation of Poly- l -Lactic Acid

Mahbub Ullah, Jordan A. Cannon, Todd B. Reynolds, Michael D. Best

Short summary

A novel Förster Resonance Energy Transfer (FRET)-based substrate enables real-time monitoring of poly-l-lactic acid (PLLA) degradation by enzymes.

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Key points

  • Developed a novel FRET-based substrate for real-time monitoring of PLLA degradation.
  • The substrate consists of an ACC dye, a quencher, and a tetrameric oligo-l-lactate chain.
  • Enzyme activity is detected by an increase in fluorescence as the oligo-l-lactate chain is hydrolyzed, disrupting the FRET system.
  • This assay provides a faster and more accurate method compared to conventional endpoint l-lactate assays.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract Protein engineering has recently emerged as a promising strategy for enhancing the enzymatic recycling of bio-based polymers with the aim of replacing non-degradable petroleum-based plastics with biodegradable ones like poly-l-lactic acid (PLLA). However, a significant challenge exists in the evaluation of the biodegradation efficiency of newly developed enzymes. The precise tracking and continuous rate monitoring of the enzyme-catalyzed hydrolysis remain difficult to achieve with a conventional l-lactate assay kit, which provides only endpoint measurements and is therefore decoupled from the real-time degradation process. To address this issue, we introduce a novel Förster Resonance Energy Transfer (FRET)-based PLLA substrate capable of monitoring real-time PLLA degradation. This was achieved by connecting a highly fluorescent amino carbamoyl coumarin (ACC) dye with a quencher (2,4-dinitrophenyl-l-lysine) via a tetrameric oligo-l-lactate chain. Several fluorescence studies demonstrate that this substrate can effectively detect PLLA-degrading enzyme activity by monitoring increased fluorescence due to enzyme-catalyzed hydrolysis of the oligolactate chain and disruption of the intramolecular FRET system. This substrate can be a potent replacement for the conventional l-lactate assay kit as it allows fast and accurate tracking of the enzyme activity toward PLLA.

The authors' abstract, as published at the source. Biomacromolecules, 2026 · DOI ↗

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Field: Biomaterials

BiomaterialsMaterials Science