Trial of Available Energy Evaluation of Highly Cross-linked Starch and Modified Cellulose Based on Breath H2 Excretion

Author:

Nakamura Sadako1ORCID,Tanabe Kenichi2ORCID,Yamate Misa3ORCID,Osada Sanae4ORCID,Oku Tsuneyuki1ORCID

Affiliation:

1. Institute of Food, Nutrition and Health, Jumonji University, 2-1-28 Sugasawa, Niiza, Saitama 352-8510, Japan

2. Department of Food Science and Nutrition, Nagoya Women's University, 3-40, Shioji, Mizuho, Nagoya 467-8610, Japan

3. Graduate School of Human Life Science, Jumonji University, 2-1-28 Sugasawa, Niiza, Saitama 352-8510, Japan

4. Junior College, Department of Food and Nutrition, Kagawa Education Institute of Nutrition, 3-24-3, Komagome, Toshima, Tokyo 170-0003, Japan

Abstract

Background: The energy value of a substance is essential in nutritional labeling. However, the available energy of newly developed highly cross-linked phosphate starch (HCPS-N) and modified cellulose (MC) are unknown. Objective: To evaluate the available energy of HCPS-N and MC, an indirect and simple method which was applied as an indicator of the fermentability based on the breath hydrogen excretion, was used. Methods: HCPS-N was made from tapioca starch by polymerization in the presence of 0.5% phosphoric acid. MC was made from microcrystalline cellulose, maltodextrin, and karaya gum to attain a highly stable suspension. The present study was carried out using a within-subject, repeatedmeasures design. Blood was collected at 30 min intervals for 3 h after the ingestion of 30 g of a test substance. The end-respiratory gas was collected for 14 h after ingestion of 5 g of a test substance to evaluate the available energy. Results and Discussion: Plasma glucose and insulin levels did not elevate after the ingestion of HCPS-N, although they increased significantly after glucose ingestion. In the experiments to evaluate the available energy, breath hydrogen excretion after ingesting HCPS-N did not increase distinctly during the experiment. Breath hydrogen excretion after preceding HCPS-P (0 kcal) ingestion was also markedly smaller compared with the peak value at 4 h after FOS ingestion. For the ingestion of MC, breath hydrogen excretion increased scarcely, and the basal level remained until the end of the experiment. Conclusion: The available energies were evaluated to be 0 kcal/g for HCPS-N and 1 kcal/g for MC in healthy humans.

Funder

Grant-in-Aid for Scientific Research

Publisher

Bentham Science Publishers Ltd.

Subject

Public Health, Environmental and Occupational Health,Nutrition and Dietetics,Food Science

Reference33 articles.

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2. Tachibe M.; Oga H.; Nishibata T.; Ebihara K.; Resistant starch type 4, cross-linked phosphate starch and hydroxypropyl distarch phosphate attenuate rapid glycemic response in men. Jpn Pharmacol Ther 2010,38,731-736

3. Nakamura S; Yamate M; Tanabe K; Osada S; Oku T.; highly crosslinked starch and modified cellulose as dietary fibers, and their acclimation effect on hydrogen excretion in rats. Curr Nutr Food Sci Epub ahead

4. Bozo Research Centre, Assessment of food safety for highly-crosslinked phosphate starch Number N-B852. 24th Dec2015

5. Expert Committees of Food Additives of Food Safety Commission of japan Results of the food risk assessment for modified starch, Oct2007

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