Preparation of starch‐based green nanofiber mats for probiotic encapsulation by electrospinning

Author:

Wang Yufei1,Lv Haowei1,Wang Chenxi1,He Deyun1,Zhao Haibo1,Xu Enbo2,Jin Zhengyu3,Wu Zhengzong14ORCID,Liu Pengfei1,Cui Bo1

Affiliation:

1. State Key Laboratory of Biobased Material and Green Papermaking, School of Food Science and Engineering Qilu University of Technology Shandong Academy of Sciences Jinan China

2. College of Biosystems Engineering and Food Science Zhejiang University Hangzhou China

3. State Key Laboratory of Food Science and Technology Jiangnan University Wuxi China

4. Shandong Qiaoqi Food Technology Co., LTD Dezhou China

Abstract

AbstractIn this study, starch‐based nanofiber mats were successfully prepared from aqueous solution by electrospinning and used for probiotic encapsulation for the first time. The physicochemical properties of the octenylsuccinated (OS) starch/poly(vinyl alcohol) (PVA) blend solutions were systematically investigated. Through Fourier transform infrared spectroscopy and X‐ray diffraction spectra analysis, it was found that miscibility and hydrogen bonding interactions exist between OS starch and PVA molecules. Thermogravimetric analysis and derivative thermogravimetric analysis revealed that the produced nanofibers possess satisfactory thermal stability. Scanning electron microscopy images and diameter distribution histograms showed that continuous and defect‐free nanofibers were obtained and along with the increase in the weight ratio of OS starch, the average diameter gradually decreased. In addition, it was confirmed that the probiotics were successfully encapsulated in nanofiber mats. The survival rates of Lactobacillus plantarum AB‐1 and Lactobacillus rhamnosus GG encapsulated in nanofibers were as high as 94.63% and 92.42%, respectively, significantly higher than those of traditional freeze‐drying. Moreover, compared to free cells, probiotics encapsulated in nanofiber mats retained better viability after 21 days of storage at 4 and 25°C, and showed remarkably higher survival rates after exposure to simulated gastric and intestinal fluid. This study showed that the developed nanofibers can be a promising encapsulation system for the protection of probiotics.

Funder

Key Technology Research and Development Program of Shandong Province

Natural Science Foundation of Shandong Province

Publisher

Wiley

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