Temperature-controlled steam explosion modulates structural and functional characteristics of Porphyra haitanensis dietary fiber.

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Auteurs principaux: Ou, Yujia, Zhou, Binhui, Wang, Yesong, Hong, Tao, Jiang, Zedong, Ni, Hui, Zheng, Mingjing
Format: Artículo científico
Langue:en
Publié: Food chemistry 2026
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author Ou, Yujia
Zhou, Binhui
Wang, Yesong
Hong, Tao
Jiang, Zedong
Ni, Hui
Zheng, Mingjing
author_facet Ou, Yujia
Zhou, Binhui
Wang, Yesong
Hong, Tao
Jiang, Zedong
Ni, Hui
Zheng, Mingjing
Ou, Yujia
Zhou, Binhui
Wang, Yesong
Hong, Tao
Jiang, Zedong
Ni, Hui
Zheng, Mingjing
collection PubMed - marine biology
contents Temperature-controlled steam explosion modulates structural and functional characteristics of Porphyra haitanensis dietary fiber. Ou, Yujia Zhou, Binhui Wang, Yesong Hong, Tao Jiang, Zedong Ni, Hui Zheng, Mingjing Porphyra Steam Dietary Fiber alpha-Amylases Temperature Seaweed Developing efficient modification methods for seaweed dietary fiber (DF) is hindered by its sulfated galactan backbone, which differs fundamentally from terrestrial lignocellulosic matrices. In this study, temperature-controlled steam explosion (SE) was employed to modulate the structural and functional characteristics of Porphyra haitanensis TDF. Moderate SE (140 °C) promoted an effective IDF-to-SDF conversion, evidenced by pronounced increases in SDF (127.67 %), galactose (37.71 %), and uronic acids (22.73 %-25.65 %), accompanied by reductions in IDF (17.95 %), acid-insoluble residue (28.54 %), and sulfate groups (47.40 %) (p
format Artículo científico
id pubmed_41401481
institution PubMed
language en
publishDate 2026
publisher Food chemistry
record_format pubmed
spellingShingle Temperature-controlled steam explosion modulates structural and functional characteristics of Porphyra haitanensis dietary fiber.
Ou, Yujia
Zhou, Binhui
Wang, Yesong
Hong, Tao
Jiang, Zedong
Ni, Hui
Zheng, Mingjing
Porphyra
Steam
Dietary Fiber
alpha-Amylases
Temperature
Seaweed
Temperature-controlled steam explosion modulates structural and functional characteristics of Porphyra haitanensis dietary fiber. Ou, Yujia Zhou, Binhui Wang, Yesong Hong, Tao Jiang, Zedong Ni, Hui Zheng, Mingjing Porphyra Steam Dietary Fiber alpha-Amylases Temperature Seaweed Developing efficient modification methods for seaweed dietary fiber (DF) is hindered by its sulfated galactan backbone, which differs fundamentally from terrestrial lignocellulosic matrices. In this study, temperature-controlled steam explosion (SE) was employed to modulate the structural and functional characteristics of Porphyra haitanensis TDF. Moderate SE (140 °C) promoted an effective IDF-to-SDF conversion, evidenced by pronounced increases in SDF (127.67 %), galactose (37.71 %), and uronic acids (22.73 %-25.65 %), accompanied by reductions in IDF (17.95 %), acid-insoluble residue (28.54 %), and sulfate groups (47.40 %) (p
title Temperature-controlled steam explosion modulates structural and functional characteristics of Porphyra haitanensis dietary fiber.
topic Porphyra
Steam
Dietary Fiber
alpha-Amylases
Temperature
Seaweed
url https://pubmed.ncbi.nlm.nih.gov/41401481/