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March 4, 2026Fermentation0 citationsOpen Access

Fermentation-Based Production and Whole-Cell Immobilization of β-Glucuronidase-Expressing Talaromyces pinophilus Li-93 for Efficient Bioconversion of Glycyrrhizin

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IKImdad KaleemARAamir RasoolCLChang Li

Key Points

  • The study aims to enhance the bioconversion of glycyrrhizin into valuable compounds using an immobilized β-glucuronidase from T. pinophilus Li-93.
  • Developed strategies for enzyme stabilization and reusability.
  • Evaluated three polymeric supports: polyurethane foam, loofah sponge, and polyvinyl chloride for enzyme immobilization.
  • Optimized conditions for enzyme activity and stability including temperature, pH, and support concentration.
  • The PUF support achieved a 67.10% immobilization efficiency after 72 hours.
  • Immobilized enzyme produced 3.90 g.L−1 of GAMG, outperforming free enzyme.
  • The immobilized enzyme retained 37.51% activity after 10 cycles, compared to 6.21% for free enzyme.

Abstract

Glycyrrhizic acid and its derivatives are a crucial class of glycoside terpenoids with significant pharmaceutical and food industry applications. The biotransformation of glycyrrhizin (GL) into glycyrrhetic acid 3-O-mono-β-D-glucuronide (GAMG) and glycyrrhetinic acid (GA) can enhance the production of these valuable compounds. This study aimed to develop strategies to improve the catalytic and operational stability of β-glucuronidase from wild-type Talaromyces pinophilus Li-93, previously known as Penicillium purpurogenum Li-3 (w-PGUS), for efficient GL hydrolysis. Whole cells of T. pinophilus Li-93 expressing w-PGUS were capable of directly converting GL into GAMG. To enhance enzyme stability and reusability, three polymeric supports including, polyurethane foam (PUF), loofah sponge (LS), and polyvinyl chloride (PVC), were evaluated for immobilization of w-PGUS from the fermentation medium. Among these, PUF was the most effective immobilization support, yielding higher immobilization efficiency, GAMG production, and biomass retention. Under optimized conditions (1% PUF, 1.5 g.L−1 w-PGUS inoculum, pH 5.0, 36 °C, 180 rpm), the immobilized w-PGUS produced a final GAMG yield of 3.90 g.L−1, achieving 67.10% immobilization efficiency within 72 h. The PUF-immobilized w-PGUS retained 37.51% of its initial activity after 10 repeated batch reactions, whereas free w-PGUS retained only 6.21%. Additionally, the storage stability of immobilized w-PGUS was significantly higher (40.22%) than that of free w-PGUS (14.74%) after 30 days. Immobilization slightly reduced the initial yield due to mass-transfer limits but enabled much higher cumulative GAMG production through improved stability and reusability.

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Cite This Study

Kaleem et al. (2026) studied this question.

synapsesocial.com/papers/69a7cd4fd48f933b5eed9758https://doi.org/10.3390/fermentation12030127
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