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Rhizomucor miehei lipase immobilized on reinforced chitosan–chitin nanowhiskers support for synthesis of eugenyl benzoate

  • Fatin Myra Abdul Manan
  • , Nursyafreena Attan
  • , Nashi Widodo
  • , Hassan Y. Aboul-Enein
  • , Roswanira Abdul Wahab*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

An alternative environmentally benign support was prepared from chitosan–chitin nanowhiskers (CS/CNWs) for covalent immobilization of Rhizomucor miehei lipase (RML) to increase the operational stability and recyclability of RML in synthesizing eugenyl benzoate. The CS/CNWs support and RML-CS/CNWs were characterized using X-ray diffraction, fluorescent microscopy, and Fourier transform infrared spectroscopy. Efficiency of the RML-CS/CNWs was compared to the free RML to synthesize eugenyl benzoate for parameters: reaction temperature, stirring rate, reusability, and thermal stability. Under optimal experimental conditions (50°C, 250 rpm, catalyst loading 3 mg/mL), a twofold increase in yield of eugenyl benzoate was observed for RML-CS/CNWs as compared to free RML, with the former achieving maximum yield of the ester at 62.1% after 5 hr. Results demonstrated that the strategy adopted to prepare RML-CS/CNWs was useful, producing an improved and prospectively greener biocatalyst that supported a sustainable process to prepare eugenyl benzoate. Moreover, RML-CS/CNWs are biodegradable and perform esterification reactions under ambient conditions as compared to the less eco-friendly conventional acid catalyst. This research provides a facile and promising approach for improving activity of RML in which the resultant RML-CS/CNWs demonstrated good operational stability for up to eight successive esterification cycles to synthesize eugenyl benzoate.

Original languageEnglish
Pages (from-to)92-102
Number of pages11
JournalPreparative Biochemistry and Biotechnology
Volume48
Issue number1
DOIs
Publication statusPublished - 2 Jan 2018

Keywords

  • Chitin nanowhiskers
  • chitosan
  • eugenyl benzoate
  • immobilization
  • lipase
  • Rhizomucor miehei

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