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March 10, 2026Journal of Applied Polymer Science0 citations

Polylactide, Polycaprolactone, and Rice Husk—Biocomposites for Biomedical and Packaging Applications

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AAAmal AminXLXabier LarrañagaAMAsmaa T. Mohamed

Key Points

  • The aim is to develop and assess the properties of biocomposites made from polylactide, polycaprolactone, and modified rice husk for biomedical and packaging uses.
  • Preparation of PLA and PCL biocomposites with modified rice husk treated with maleic anhydride.
  • Testing various formulations and mixing methods to determine optimal composition.
  • Assessment of the biocomposites for toxicity against cancer cells and effectiveness against bacterial biofilm formation.
  • Evaluation of water vapor and oxygen transmission rates (WVTR, OTR) for packaging applications.
  • Modified RH biocomposites showed cytotoxic effects on cancer cells.
  • Biocomposites inhibited biofilm formation in Staphylococcus aureus and Pseudomonas aeruginosa.
  • The optimal formulation achieved with 5% modified RH demonstrated low WVTR and OTR, indicating suitability for food packaging.

Abstract

ABSTRACT Polylactide (PLA) and polycaprolactone (PCL) biocomposites were prepared with modified rice husk (RH). In this context, RH was treated with maleic anhydride (MA) and maleated PLA (i.e., coupling agent CA) forming modified RH (i.e., RH‐MA and RH‐CA, respectively). Several formulations were tested from biocomposites of PLA and PCL with different percentages of modified RH where the best results were obtained when using 5% with respect to the used mixing method. Pure PLA and PCL‐ modified RH biocomposites were first obtained, then each of them was further involved in cross blends' formation with each other. Different characteristics were studied for the prepared modified RH polymeric biocomposites for future expected applications in biomedical fields and packaging. Accordingly, several PLA and PCL‐ modified RH biocomposites were toxic on proliferation of cancer cells with inhibitory effect against biofilm formation of bacterial cells in case of MSSA or Pseudomonas aeruginosa . Also, the prepared biocomposites recorded low water vapor and oxygen transmission rates (WVTR, OTR) which indicated their possible application as packaging materials for food at low moisture level or for dry food.

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Cite This Study

Amin et al. (2026) studied this question.

synapsesocial.com/papers/69af957570916d39fea4d1bahttps://doi.org/10.1002/app.70630
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