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March 29, 2026Scientific Reports1 citationsOpen Access

Utilizing Defatted Hulless Pumpkin Seed Meal for Bread Fortification: A Valorization Approach to Improve Techno-functional and Textural properties

SRSimran RainaTJTanya JoshiASArashdeep Singh

Key Points

  • The aim is to evaluate the effects of hulless defatted pumpkin seed powder on bread quality and functionality.
  • Prepared doughs with 0–10% HDPSP substitution for analysis.
  • Conducted farinograph analysis to assess dough mixing capabilities.
  • Evaluated physicochemical and sensory characteristics of the breads.
  • Analyzed antioxidant capacity, total phenols, and flavonoid content in the bread.
  • Performed multivariate analysis using PCA to examine relationships between variables.
  • Breads with HDPSP showed increased antioxidant capacity ranging from 2.00 to 8.94% RSA.
  • Total phenol content increased from 100.67 to 121.21 mg GAE/100 g with HDPSP substitution.
  • The optimal substitution level was found to be 5% HDPSP with an overall acceptability score of 8.45.
  • Bread hardness increased from 7.83 N to 8.55 N with 5% substitution, but gumminess improved overall texture perception.

Abstract

This study assessed the impact of substitution of hulless defatted pumpkin seed powder (HDPSP) on dough and bread properties. Doughs and bread with 0–10% HDPSP were prepared in order to evaluate their physicochemical and sensory characteristics. Farinograph analysis evaluated flour’s mixing capabilities of different HDPSP substituted doughs, while bread quality was assessed for physical and bioactive properties. HDPSP substituted breads showed enhanced antioxidant capacity (2.00 to 8.94% RSA), total phenols (100.67 to 121.21 mg GAE/100 g) and total flavonoid content (19.98 to 28.02 mg QE/100 g). A significant (p ≤ 0.05) lighter bread crust and darker crumb (lower L*) with increased redness level (a*) in crust was observed with a decline in crumb on increasing the levels of HDPSP in breads. The breads with 5% HDPSP substitution was chosen as best with overall acceptability score of 8.45 followed by control bread (8.37). However, the hardness increased from 7.83 N to 8.55 N with 5% substitution of HDPSP in bread while the gumminess was observed as 79.94 N and 157.33 N in control and 5% HDPSP substituted bread. The gumminess and hardness could have counterbalanced each, exhibiting better consumer texture perception. All the data were subjected to a multivariate analysis (PCA) for understanding relationships between different variables. The first principal component (PC1), accounts for 87.1% of the variance indicating effective separation of samples based on their overall performance and quality while second principal component (PC2) offered little additional separation with variance of 10.4%.

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Cite This Study

Raina et al. (2026) studied this question.

synapsesocial.com/papers/69c8c28cde0f0f753b39cea4https://doi.org/10.1038/s41598-026-45497-y
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Effect of Hull‐Less Pumpkin Seed Powder on Dough Farinograph Behavior, Bread Quality, and Antioxidant Properties: A Multivariate Analysis Approach2026
  2. 2Evaluation of the effects of Triticum spelta flour and Ahlat pear flour on the physical, chemical, textural, and sensory properties of bread2026
  3. 3Potential use of hazelnut (Corylus avellana L.) shell powder in muffin production by partial substitution of wheat flour: Color, bioactive, textural, and sensory properties2024 · 8 citations
  4. 4Effect of the pumpkin seed flour and pumpkin seed oil cake flour addition on quality of wheat bread2026
  5. 5Nutritional, Rheological, and Functional Assessment in the Development of Bread Using Chestnut and Rosehip-Fortified Wheat Flour2025