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Functional Rice Enriched With Resistant Starch Ameliorates Metabolic Dysregulation in High-Fat Diet-Induced Obese Mice.

Functional Rice Enriched With Resistant Starch Ameliorates Metabolic Dysregulation in High-Fat Diet-Induced Obese Mice.

期刊: Journal of food science 日期: 2026-05-01 PMID: 42186153 DOI: 10.1111/1750-3841.71086 浏览: 25
作者: Im ST, Park HY, Kim HR, Son SJ, Ryu AR, Hong JS, Choi HD, Kang MC
ST, I., HY, P., HR, K., SJ, S., AR, R., JS, H., HD, C., & MC, K. (2026). Functional Rice Enriched With Resistant Starch Ameliorates Metabolic Dysregulation in High-Fat Diet-Induced Obese Mice.. Journal of food science. https://doi.org/10.1111/1750-3841.71086
ST I, HY P, HR K, SJ S, AR R, JS H, et al. Functional Rice Enriched With Resistant Starch Ameliorates Metabolic Dysregulation in High-Fat Diet-Induced Obese Mice.. Journal of food science. 2026; doi: 10.1111/1750-3841.71086
ST I, HY P, HR K, et al. Functional Rice Enriched With Resistant Starch Ameliorates Metabolic Dysregulation in High-Fat Diet-Induced Obese Mice.[J]. Journal of food science. 2026. DOI: 10.1111/1750-3841.71086.
@article{st2026,
  author = {Im ST and Park HY and Kim HR and Son SJ and Ryu AR and Hong JS and Choi HD and Kang MC},
  title = {Functional Rice Enriched With Resistant Starch Ameliorates Metabolic Dysregulation in High-Fat Diet-Induced Obese Mice.},
  journal = {Journal of food science},
  year = {2026},
  doi = {10.1111/1750-3841.71086},
  note = {PMID: 42186153},
}
TY  - JOUR
AU  - Im ST
AU  - Park HY
AU  - Kim HR
AU  - Son SJ
AU  - Ryu AR
AU  - Hong JS
AU  - Choi HD
AU  - Kang MC
TI  - Functional Rice Enriched With Resistant Starch Ameliorates Metabolic Dysregulation in High-Fat Diet-Induced Obese Mice.
T2  - Journal of food science
PY  - 2026
DO  - 10.1111/1750-3841.71086
AN  - PMID:42186153
ER  - 

摘要

Resistant starch (RS) is a non-digestible fraction of dietary starch that modulates glucose and lipid metabolism. In this study, a RS-enriched high-amylose rice (R-HAR) was developed using a mild citric acid-assisted thermal process to enhance RS content and evaluated for its potential to alleviate high-fat diet (HFD)-induced metabolic disorders in mice. The RS content of the diet increased proportionally with the inclusion of R-HAR. Long-term R-HAR supplementation significantly reduced body weight gain and adiposity compared with the HFD control. Serum biochemical analyses revealed that R-HAR improved dyslipidemia by lowering total cholesterol, LDL-cholesterol, ALT, and AST levels while elevating adiponectin concentration. Moreover, R-HAR administration markedly ameliorated fasting blood glucose, fasting insulin, and HOMA-IR values, indicating restored insulin sensitivity. Histological evaluation further confirmed that R-HAR reduced hepatic steatosis and adipocyte hypertrophy in a dose-dependent manner. These beneficial effects were more pronounced than those observed with untreated high-amylose rice (HAR), suggesting that the increase in RS fraction achieved through organic acid treatment contributed to improved metabolic balance. Overall, these findings demonstrate that R-HAR, as a food-based functional carbohydrate, effectively ameliorates HFD-induced glucolipid dysregulation and may serve as a practical dietary strategy to prevent obesity-related metabolic complications.

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