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May 17, 2026Polymers0 citationsOpen Access

Enzyme Immobilisation on Cellulose via Bifunctional Reactive Dyes: A Simple Route to Textile-Based Biocatalysts

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GSGuigang ShiYLYuhui LiWLWeiwei Li

Key Points

  • The study aims to improve enzyme durability on cellulosic fibers through novel bifunctional dye application.
  • Used a cold pad–batch technique to integrate reactive dyeing with lysozyme anchoring.
  • Applied the bifunctional dye C.I. Reactive Red 195 as an interfacial mediator for enzyme attachment.
  • Employed a nine-run, four-factor/three-level orthogonal design for optimal processing conditions.
  • Achieved a releasable lysozyme level of 53.8 U/L under optimal conditions.
  • Fabric demonstrated 96.5% inhibition against Escherichia coli and >99.9% against Staphylococcus aureus.
  • Retained antibacterial functionality and textile properties after five laundering cycles.

Abstract

The durable enzyme functionalisation of cellulosic fibres is often limited by enzyme deactivation under alkaline processing and insufficient wash resistance. Here, a cold pad–batch (CPB)-compatible route integrates reactive dyeing and lysozyme anchoring by using the commercial bifunctional dye C.I. Reactive Red 195 (MCT/VS) as an interfacial mediator to build a cellulose–dye–lysozyme ternary layer. The dye is first fixed on cotton, and residual electrophilic motifs are proposed to facilitate subsequent coupling with nucleophilic residues in lysozyme. A nine-run, four-factor/three-level orthogonal design was used to identify a practical processing window; under the selected condition, an ELISA-equivalent releasable lysozyme level of 53.8 U/L was achieved together with moderate colour strength (K/S = 6.5). The treated fabrics exhibited 96.5% inhibition against Escherichia coli and >99.9% against Staphylococcus aureus and retained antibacterial functionality after five ISO 105-C06 laundering cycles. Textile-relevant properties were preserved, including colour fastness (Grade 4–5), tensile strength retention (~86%), and capillary wicking close to pristine cotton. This dye-mediated strategy offers a practical route to wash-resistant bioactive interfaces on cellulose fibres and is extendable to regenerated cellulose and wood-pulp-derived cellulosics.

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Cite This Study

Shi et al. (2026) studied this question.

synapsesocial.com/papers/6a095b8e7880e6d24efe15dbhttps://doi.org/10.3390/polym18101205
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