Optimization of pullulan production by Aureobasidium pullulans using semi-solid-state fermentation and artificial neural networks: Characterization and antibacterial activity of pullulan impregnated with Ag-TiO2 nanocomposite

被引:8
|
作者
Eldadamony, Noha M. [1 ]
Ghoniem, Abeer A. [2 ]
Al-Askar, Abdulaziz A. [3 ]
Attia, Attia A. [4 ]
El-Hersh, Mohammed S. [2 ]
Elattar, Khaled M. [5 ]
Alrdahi, Haifa [6 ]
Saber, WesamEldin I. A. [2 ]
机构
[1] Agr Res Ctr, Seed Pathol Dept, Plant Pathol Res Inst, Giza 12619, Egypt
[2] Agr Res Ctr, Microbial Act Unit, Dept Microbiol, Soils Water & Environm Res Inst, Giza 12619, Egypt
[3] King Saud Univ, Fac Sci, Dept Bot & Microbiol, Riyadh 11451, Saudi Arabia
[4] Benha Univ, Fac Sci, Dept Bot & Microbiol, Banha, Egypt
[5] Mansoura Univ, Fac Sci, Unit Genet Engn & Biotechnol, El Gomhoria St, Mansoura 35516, Egypt
[6] Univ Manchester, Fac Sci & Engn, Sch Comp Sci, Oxford Rd, Manchester M13 9PL, England
关键词
Pullulan bioproduction; ANNs; S-SSF; faba bean biomass; Optimization; Biopolymer characterization; Thermal stability; Amorphous structure; Fusarium oxysporum; Antibacterial activity; Antioxidant activity; Biorefining; Environmental remediation; EXOPOLYSACCHARIDE; NANOPARTICLES; BIOSYNTHESIS; DRUG;
D O I
10.1016/j.ijbiomac.2024.132109
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
This study presents a novel and efficient approach for pullulan production using artificial neural networks (ANNs) to optimize semi-solid-state fermentation (S-SSF) on faba bean biomass (FBB). This method achieved a record-breaking pullulan yield of 36.81 mg/g within 10.82 days, significantly exceeding previous results. Furthermore, the study goes beyond yield optimization by characterizing the purified pullulan, revealing its unique properties including thermal stability, amorphous structure, and antioxidant activity. Energy-dispersive X-ray spectroscopy and scanning electron microscopy confirmed its chemical composition and distinct morphology. This research introduces a groundbreaking combination of ANNs and comprehensive characterization, paving the way for sustainable and cost-effective pullulan production on FBB under S-SSF conditions. Additionally, the study demonstrates the successful integration of pullulan with Ag@TiO 2 nanoparticles during synthesis using Fusarium oxysporum . This novel approach significantly enhances the stability and efficacy of the nanoparticles by modifying their surface properties, leading to remarkably improved antibacterial activity against various human pathogens. These findings showcase the low-cost production medium, and extensive potential of pullulan not only for its intrinsic properties but also for its ability to significantly improve the performance of nanomaterials. This breakthrough opens doors to diverse applications in various fields.
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页数:18
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