Wu, J. Y., Tso, R., Yong, Y. N., Lim, S. P. S., Wheeler, T., Nag, A., Cheng, L., Talukder, M. M. R., Huffman, L., Quek, S. Y., Leow, M. K. S. and Haldar, S., 2024. Effects of the consumption of algal biomass versus protein concentrate on postprandial satiety and metabolism. Future Foods, 10, 100436.
Full text available as:
|
PDF (OPEN ACCESS ARTICLE)
1-s2.0-S2666833524001424-main.pdf - Published Version Available under License Creative Commons Attribution. 3MB | |
Copyright to original material in this document is with the original owner(s). Access to this content through BURO is granted on condition that you use it only for research, scholarly or other non-commercial purposes. If you wish to use it for any other purposes, you must contact BU via BURO@bournemouth.ac.uk. Any third party copyright material in this document remains the property of its respective owner(s). BU grants no licence for further use of that third party material. |
DOI: 10.1016/j.fufo.2024.100436
Abstract
Algae are promising sources of nutritious and sustainable protein, but little is known about their metabolic health impact and acceptability as meal ingredients. This acute, randomized, controlled, five-way crossover trial compared whole algal biomasses and their corresponding protein concentrates to soy protein concentrate in terms of palatability, appetite, satiety, and metabolic response. Nineteen healthy Chinese males (21–50 years, 18.5–25.0 kg/m2) consumed noodle meals supplemented with 10 g of nori biomass/protein concentrate (NB/NC), Chlorella vulgaris biomass/protein concentrate (CB/CC) or soy protein concentrate control (CON) in randomized order. At regular intervals, blood samples were collected to measure biochemical markers, while gastrointestinal tolerance, palatability, and appetite were assessed using questionnaires and visual analog scales (VAS). Results indicated that algae-enriched meals were well-tolerated and comparable to soy in both visual appeal and smell, with NB and CC outperforming soy in aftertaste (p < 0.05). There were no significant differences between treatments in glucose, insulin, C-peptide, appetite/satiety, plasma ghrelin, and GLP-1. However, exploratory analysis of serum triglycerides revealed significant time × treatment effects (p < 0.004) and differences in incremental area under the curve (iAUC0–120 p = 0.0249). Our findings reveal that algal biomasses and protein concentrates are as comparable to soy protein concentrate in palatability, satiety, and metabolic outcomes, highlighting their potential as practical, sustainable, and nutritious ingredients.
Item Type: | Article |
---|---|
ISSN: | 2666-8335 |
Uncontrolled Keywords: | Algae; Algal protein concentrate; Alternative protein; Metabolic response; Satiety |
Group: | Faculty of Health & Social Sciences |
ID Code: | 40291 |
Deposited By: | Symplectic RT2 |
Deposited On: | 04 Sep 2024 11:02 |
Last Modified: | 04 Sep 2024 11:02 |
Downloads
Downloads per month over past year
Repository Staff Only - |