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Supplementation of hydroxypropyl methylcellulose into yeast leavened all-whole grain barley bread potentiates
Hyunsook Kim1, Maciej Turowski, W H Kerr Anderson
1Western Regional Research Center, Agricultural Research Service, U.S. Department of Agriculture, Albany, CA 94710, USA. hyskim@ucdavis.edu
Abstract:
We investigated in Syrian Golden hamsters the biological impact and its underlying mechanism of single whole grain breads supplemented with 2-3% hydroxypropyl methylcellulose (HPMC), a semisynthetic viscous soluble dietary fiber (SDF) as a substitute for gluten. Hamsters were fed high-fat diets supplemented with 48-65% (w/w) differently ground, freeze-dried single grain breads including whole grain wheat, barley, barley supplemented with HPMC, debranned oat, and oat supplemented with HPMC which were compared to a diet containing microcrystalline cellulose (control). All single grain breads significantly lowered plasma LDL-cholesterol concentrations compared to the control. Enrichment with HPMC further lowered plasma and hepatic cholesterol concentrations. Despite the reduced molecular weight of naturally occurring soluble (1--->3),(1--->4)-β-d-glucan (β-glucan) caused by the bread-making process, whole grain barley breads downregulated hepatic expression of CYP7A1 and HMG-CoAR genes that are responsible for bile acid and cholesterol synthesis, suggesting a possible role of bioactive compounds such as short-chain fatty acids and phenolic compounds from barley bread. Barley bread enriched with HPMC downregulated expression of ABCG5 gene. Taken together, it appears that distinctive modulation of synthesis and excretion of hepatic cholesterol and bile acid contributes to the cholesterol-lowering properties of whole grain barley breads and breads enriched with HPMC. These data suggests that alternative whole grain breads supplemented with HPMC may provide consumers with a staple food that can assist in cholesterol management.
Insights
Whole grain breads, including barley and oat, effectively lower LDL cholesterol. Supplementing breads with hydroxypropyl methylcellulose (HPMC) further enhances cholesterol reduction by modulating synthesis and excretion pathways.
Area of Science:
- Nutrition Science
- Dietary Fiber Research
- Cholesterol Metabolism
Background:
- High-fat diets contribute to elevated cholesterol levels.
- Soluble dietary fibers (SDF) like beta-glucan show cholesterol-lowering potential.
- Hydroxypropyl methylcellulose (HPMC) is a viscous soluble dietary fiber investigated as a gluten substitute.
Purpose of the Study:
- To investigate the biological impact and mechanism of whole grain breads supplemented with HPMC on cholesterol metabolism.
- To compare the effects of different whole grain breads (wheat, barley, oat) with and without HPMC enrichment.
Main Methods:
- Syrian Golden hamsters were fed high-fat diets containing various whole grain breads (wheat, barley, oat) with or without HPMC, compared to a control diet.
- Plasma and hepatic cholesterol concentrations were measured.
- Hepatic gene expression related to cholesterol synthesis and bile acid metabolism (CYP7A1, HMG-CoAR, ABCG5) was analyzed.
Main Results:
- All whole grain breads significantly reduced plasma LDL-cholesterol compared to the control.
- HPMC enrichment further decreased plasma and hepatic cholesterol levels.
- Barley breads downregulated hepatic CYP7A1 and HMG-CoAR gene expression, suggesting a role for bioactive compounds.
- HPMC-enriched barley bread downregulated ABCG5 gene expression.
Conclusions:
- Whole grain barley breads, with or without HPMC, modulate hepatic cholesterol and bile acid synthesis and excretion.
- HPMC-enriched whole grain breads offer a potential dietary strategy for cholesterol management.
- Alternative whole grain breads supplemented with HPMC can serve as functional foods for consumers aiming to manage cholesterol levels.
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