Development of Nutri Bar Enriched with Date Seed Powder and Psyllium Husk

Authors

P. L. A. Prasanna Priyah

Department of Food Processing and Preservation Technology, Avinashilingam Institute for Home Science and Higher Education for Women Coimbatore, Tamil Nadu (India)

Sarah Jenesis S.

Department of Food Processing and Preservation Technology, Avinashilingam Institute for Home Science and Higher Education for Women Coimbatore, Tamil Nadu (India)

Spandhana

Department of Food Processing and Preservation Technology, Avinashilingam Institute for Home Science and Higher Education for Women Coimbatore, Tamil Nadu (India)

Mrs. K. Pooja

Assistant Professor, Department of Food Processing and Preservation Technology, Avinashilingam Institute for Home Science and Higher Education for Women Coimbatore, Tamil Nadu (India)

Article Information

DOI: 10.51584/IJRIAS.2026.110400060

Subject Category: Food science

Volume/Issue: 11/4 | Page No: 926-948

Publication Timeline

Submitted: 2026-04-10

Accepted: 2026-04-16

Published: 2026-05-04

Abstract

The present study aimed to develop and evaluate a functional nutribar enriched with date seed powder and psyllium husk, focusing on enhancing dietary fiber content and promoting overall health benefits. Functional snack products have gained increasing attention due to their role in preventing lifestyle- related disorders such as obesity, diabetes, and cardiovascular diseases. In this context, the utilization of agro-industrial by-products like date seeds offers a sustainable and nutritionally valuable approach to product development. Date seed powder is recognized as a rich source of insoluble dietary fiber and phenolic compounds, contributing to antioxidant activity and improved gut health. Psyllium husk, derived from Plantago ovata, is a well-established soluble fiber known for its gel-forming ability and its role in regulating blood glucose levels, cholesterol reduction, and digestive health improvement (Sanlier & Ozler, 2026; Halász et al., 2024). The incorporation of psyllium into food systems has also been reported to enhance functional properties and act as a natural binding agent in fiber-enriched food products. The nutribar formulation consisted of foxtail millet, chia seeds, flax seeds, pumpkin seeds, cashews, and almonds, providing a balanced composition of macronutrients, essential fatty acids, and micronutrients. Peanut butter and date syrup were used as natural binders to improve cohesiveness and palatability without the addition of refined sugars. Response Surface Methodology (RSM) was employed to optimize ingredient proportions and to study their effect on physicochemical and sensory characteristics. Texture Profile Analysis (TPA) was conducted to evaluate hardness, cohesiveness, and chewiness of the developed nutribar. Previous studies have indicated that incorporation of high-fiber ingredients significantly influences texture due to the disruption of matrix structure and water-binding properties (Sucharitha et al., 2022). The developed nutribar showed improved nutritional quality, particularly in dietary fiber content, compared to conventional snack bars. The findings suggest that date seed powder and psyllium husk can be effectively utilized in functional food development to produce value-added, health-promoting snack products. Further shelf-life studies are required to evaluate product stability under storage conditions.

Keywords

Date seed powder; Psyllium husk; Functional nutribar

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References

1. Mohamed, H. F., Elsyiad, S. E., Eid, W. A.,Hassen, E. M., & Saleh, Y. M. (2024). Functional Dates Production Enriched with Low-Roasted Full Date Seed Powder: A Sustainable Approach to Dates By-Product Valorization. [Google Scholar] [Crossref]

2. Kamal, H., Habib, H. M., Ali, A., Show, P. L., Koyande, A. K., Kheadr, E., & Ibrahim,W. H. (2023). Food waste valorization potential: Fiber, sugar, and color profiles of 18 date seed varieties (Phoenix dactylifera, L.). Journal of the Saudi Society of Agricultural Sciences, 22(2), 133-138. [Google Scholar] [Crossref]

3. Jahan, E., Nupur, A. H., Majumder, S., Das,P. C., Aunsary, L., Aziz, M. G., ... & Mazumder, M. A. R. (2023). Physico- chemical, textural and sensory properties of breads enriched with date seed powder. Ranasinghe, M., Manikas, I., Maqsood, S., & Stathopoulos, C. (2022). Date components as promising plant-based materials to be incorporated into baked goods—A Review. Sustainability, 14(2), 605. [Google Scholar] [Crossref]

4. Younis, M., Ahmed, I. A. M., Özcan, M. M., Uslu, N., & Karrar, E. (2024). The effect of date (Phoenix dactylifera L.) varieties on bioactive compounds, phenolic constituents, fatty acids and element contents of date seed and oils. International Journal of Food Science and Technology, 59(8), 5606-5615. [Google Scholar] [Crossref]

5. abdel salam Bashir, M. M. (2025). Utilization of the date seed powder in food manufacturing. SustainableFood Technology. [Google Scholar] [Crossref]

6. Bouaziz, F., Ben Abdeddayem, A., Koubaa, M., Ellouz Ghorbel, R., & Ellouz Chaabouni, S. (2020). Date seeds as a natural source of dietary fibers to improve texture and sensory properties of wheat bread. Foods, 9(6), 737. [Google Scholar] [Crossref]

7. Kokani, R. C., Virkar, P. R., & Shinde, A. S. Studies on formulation and preparation of banana peel powder bar incorporated with psyllium husk. [Google Scholar] [Crossref]

8. Meera, K., & Thukral, B. (2025). Formulation and Evaluation of Nutri Bar Incorporating Millet. European Journal of Nutrition and Food Safety, 17(8), 89-96. [Google Scholar] [Crossref]

9. Prasad, G., Sarkar, S., & Sethi, L. N. (2024). Solar Drying Technology for Agricultural Products:A Review. Agricultural Reviews, 45(4). [Google Scholar] [Crossref]

10. Zhang, Y., Luo, Y., Gao, B., & Yu, L. (2025). Psyllium: A Nutraceutical and Functional Ingredient in Foods. Annual Review of Food Science and Technology, 16(1), 355-377. [Google Scholar] [Crossref]

11. Geremew Kassa, M., Alemu Teferi, D., Asemu, A. M., Belachew, M. T., Satheesh, N., Abera, B. D., & Erku, E. G. (2024). [Google Scholar] [Crossref]

12. Review on psyllium husk: nutritional, functional, health benefits, food industry applications, waste treatment, and potential negative effects. CyTA-Journal of Food, 22(1), 2409174. [Google Scholar] [Crossref]

13. Alkandari, S., Bhatti, M. E., Aldughpassi, A., Al-Hassawi, F., Al-Foudari, M., & Sidhu, J. S. (2021). Development of functional foods using psyllium husk and wheat bran fractions: Phytic acid contents. Saudi Journa [Google Scholar] [Crossref]

14. Squeo, G., Latrofa, V., Vurro, F., De Angelis, D., Caponio, F., Summo, C., & Pasqualone, A. (2023). Developing a clean labelled snack Bar rich in protein and fibre with dry-fractionated defatted durum wheat cake. Foods, 12(13), 2547. [Google Scholar] [Crossref]

15. Mekkara nikarthil Sudhakaran, S., & Bukkan, D. S. (2021). A review on nutritional composition, antinutritional components and health benefits of green gram (Vigna radiata (L.) Wilczek). JournalofFood Biochemistry, 45(6), e13743. [Google Scholar] [Crossref]

16. Kumar, M. P., Krishnamma, P. N., & Sreedevi, M. S. (2024). Process Technology for Development of Sprouted Green Gram Flakes. AGRICULTURE & FOOD E- NEWSLETTER. [Google Scholar] [Crossref]

17. Elwakeel, A. E., El-Mesery, H. S., Elbeltagi, A., Salem, A., Sabry, A., Saleh, D. I., ... & Elkot, W. F. (2025). [Google Scholar] [Crossref]

18. Development, drying characteristics, and environmental analysis of a PV operated automatic solar dryer for drying date. Frontiers in Sustainable Food Systems, 9, 1531601. [Google Scholar] [Crossref]

19. Seguí, L., & Barrera, C. (2025). Functional Ingredients from Food Waste and By-Products: Processing Technologies, Functional Characteristics and Value-Added Applications. Foods, 14(5), 847. [Google Scholar] [Crossref]

20. Mrabet, Abdessalem, Amel Hamdi, Rocío Rodríguez-Arcos, Rafael Guillén-Bejarano, and Ana Jiménez-Araujo. "Date seed by- products as source of bioactive ingredient for healthy cookies." Food Bioscience 61 (2024): 104543. [Google Scholar] [Crossref]

21. Barakat, H., & Alfheeaid, H. A. (2023). Date palm fruit (Phoenix dactylifera) and its promising potential in developing functional energy bars: Review of chemical, nutritional, functional, and sensory attributes. Nutrients, 15(9), 2134. [Google Scholar] [Crossref]

22. Zadeh, M. M., Dehghan, P., & Eslami, Z. (2023). Effect of date seed (Phoenix dactylifera) supplementation as functional food on cardiometabolic risk factors, metabolic endotoxaemia and mental health in patients with type 2 diabetes mellitus: a blinded randomised controlled trial protocol. BMJ open, 13(3), e066013. [Google Scholar] [Crossref]

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