Related Experiment Video
Updated: Jan 20, 2026

Asymmetrical Flow Field-Flow Fractionation for Sizing of Gold Nanoparticles in Suspension
Published on: September 11, 2020
Insights into the structure and retrogradation behavior of pullulanase modified potato starch using asymmetrical flow
Yao Huang1, Wenhui Zhang1, Siyu Wang1
1Key Laboratory of Pathogenesis Mechanism and Control of Inflammatory-Autoimmune Disease of Hebei Province, School of Basic Medical Sciences, Hebei University, Baoding, 071000, China.
Abstract:
The retrograded starch (RS3) possesses the functional properties of dietary fiber and has attracted increasing interest in the food industry. In this study, the effects of pullulanase treatment (i.e., pH, enzyme content, treatment time, and temperature) on the structure and conformation of potato starch (PS) were systematically investigated using asymmetrical flow field-flow fractionation coupled online with multiangle light scattering (MALS) and differential refractive index (dRI) detectors (AF4-MALS-dRI). The PS treated by pullulanase (EPS) was characterized by X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), and differential scanning calorimetry (DSC). Furthermore, the retrogradation of PS and EPS was monitored by AF4-MALS-dRI. The AF4 results indicated that the short chain amylose (AM) molecules were generated via debranching amylopectin molecules by pullulanase treatment, which was consistent with XRD, FTIR, and DSC results. Moreover, the AF4 results suggested that the AM molecules with a random coil conformation produced by pullulanase treatment could be conducive to PS retrogradation. AF4-MALS-dRI was proved to be a useful method for monitoring debranching and retrogradation of PS. The data obtained in this study could offer a guidance for developing PS-based food with a low glycemic index.
Related Concept Videos
09:33Asymmetrical Flow Field-Flow Fractionation for Sizing of Gold Nanoparticles in Suspension
14:25Determining 3D Flow Fields via Multi-camera Light Field Imaging
07:19Microfluidic Imaging Flow Cytometry by Asymmetric-detection Time-stretch Optical Microscopy (ATOM)
08:19Asymmetric Walkway: A Novel Behavioral Assay for Studying Asymmetric Locomotion
10:43Flow Cytometry Purification of Mouse Meiotic Cells
09:17Experimental Investigation of the Flow Structure over a Delta Wing Via Flow Visualization Methods

