Phytoglycogen-based Systems

Author:

Shi Yaning12,Chen Shilei1,Bai Hangyu1,Chen Long2,Miao Ming2

Affiliation:

1. College of Food Science and Technology Nanjing Agricultural University Nanjing Jiangsu 210095 P. R. China

2. State Key Laboratory of Food Science and Technology Jiangnan University, 1800 Lihu Avenue Wuxi Jiangsu 214122 P. R. China miaoming@jiangnan.edu.cn

Abstract

Phytoglycogen (PG) is a natural amylopectin-like dendritic nanoparticle primarily biosynthesized by sugary 1 (su1) mutant grains that lack debranching enzymes (DBEs). Purified PG is obtained from su1 grains with easy, low-cost, and straightforward methods. PG nanoparticles possess excellent physicochemical properties and remarkable features, including water solubility, low viscosity, and biodegradability. Due to their unique hyperbranched structure, PG nanoparticles can encapsulate numerous hydrophobic bioactive compounds to improve their solubility, physicochemical stability, bioavailability, and bioactivity. The interactions between PG nanoparticles and the encapsulated bioactive compounds have been well understood, which is beneficial for designing tailor-made PG-based colloidal systems. Hence, PG nanoparticles have great potential as nanocarriers in oral delivery systems. In this chapter, detailed information about biosynthesis, extraction approaches, molecular characteristics, physicochemical properties, surface modification, and applications of PG is presented, which provides some new insights into PG nanoparticles for use in food nutrition, cosmetic, and biopharmaceutical industries.

Publisher

The Royal Society of Chemistry

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