Amylopectin chain length distribution shows limited explanatory power for cooked rice digestibility: A comparative
Jinqi Shen1, Lei Liu2, Wenwen Yu1
1Department of Food Science & Engineering, Jinan University, Huangpu West Avenue 601, Guangzhou City 510632, China.
Abstract:
In this study, 28 rice starches with varying amylose contents ranging between 0.64 % ∼ 41.19 % were analyzed using size-exclusion chromatography (SEC), fluorophore-assisted carbohydrate electrophoresis (FACE), and high-performance anion-exchange chromatography (HPAEC). All methods reproduced canonical multi-modal chain length distribution (CLD) but differed in reliability: SEC was limited by band broadening, HPAEC resolved medium chains but became noisy at very high degree of polymerization above ∼68. In contrast, FACE combined high resolution of short and long chains with mild processing, providing the most robust and reproducible profiles, which is further confirmed by the analysis of compact, short-chain-rich topologies in low-amylose starches. Importantly, no statistically significant correlations were detected between FACE-derived CLD parameters and the in vitro digestion parameters of freshly cooked rice under the present sample size, highlighting the need for integrated approaches to link starch molecular structure with functional properties.
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