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March 10, 2026AIChE Journal0 citations

Biocatalyst discovery and design for plastics deconstruction: A multi‐scale perspective

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RKRoss R. KlauerYCYongmin ChenXDXueming Dong

Key Points

  • To develop effective biocatalysts for the molecular deconstruction of diverse synthetic polymers to mitigate plastic waste.
  • Develop a multi-scale framework for materials characterization and optimization.
  • Enhance plastic-biomolecular interfacial interactions to improve access for biocatalysts.
  • Utilize principles from reaction kinetics and enzyme engineering to address barriers in plastic degradation.
  • Proposed systematic approach to accelerate the discovery of plastic-deconstructing biocatalysts.
  • Illustrated potential for sustainable biological recycling and upcycling of plastic waste.

Abstract

Abstract Plastic waste accumulation poses significant environmental challenges due to a lack of economical solutions for the molecular deconstruction of diverse synthetic polymers. Biological‐based degradation offers promise but is hindered by the crystallinity, hydrophobicity, and additive complexity of plastics, which restrict biocatalyst access and activity. To address these barriers, we propose a multi‐scale framework that combines detailed materials characterization, optimization of plastic‐biomolecular interfacial interactions, and enhancement of biocatalytic kinetics to develop effective plastic‐deconstructing enzymes. This approach leverages principles from reaction kinetics, transport and interfacial phenomena, and enzyme engineering to systematically address barriers across diverse plastic types. Our framework aims to accelerate the discovery and optimization of biocatalysts capable of scalable, selective, and efficient deconstruction of plastic waste. These advances hold potential to enable sustainable biological recycling and upcycling pathways, contributing to global efforts in mitigating plastic pollution and promoting circular material economies.

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Cite This Study

Klauer et al. (2026) studied this question.

synapsesocial.com/papers/69af952b70916d39fea4c69ahttps://doi.org/10.1002/aic.70293
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