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◆ Advanced biotechnology2026-08-10

A safety-aware intake modeling framework for translating edible algal biomass into nutritional bioproducts.

Yu Wang, Garrett Roell, Rica Dela Cruz, Michaela Durďáková, Jessica Maruwan, Kexin Rong, Rachel Novotny, Monica Esquivel, Lynne Wilkens, Wei Wen Su, Tao Yan, Kacie Ho, Zhi-Yan Du

原始摘要(英文原文)· Original abstract
Edible algal biomass has emerged as a promising platform for nutritional bioproduct development, but its practical translation depends on compositional variability, intake feasibility, and safety constraints. Here, we integrated biochemical profiling, trace element screening, age-specific intake modeling, and community consumption context to evaluate commercially available and supplier-provided microalgal and seaweed products within realistic application boundaries. Selected products differed substantially in macronutrient composition, fatty acid profiles, pigments, polyphenols, and mineral composition, indicating product- and species-specific roles as nutritional biomass rather than interchangeable ingredients. Across species and age groups, approximately 0.7 to 3.1 g dry biomass provided 20% of age-specific alpha-linolenic acid intake, with approximately 1 g sufficient for several products. Multi-species allocations improved omega-3 representation while remaining within practical intake limits and trace element-based screening thresholds. Community consumption data from Pacific Island children showed low and episodic seaweed intake, highlighting a gap between biomass potential and routine dietary use. These findings support safety-aware modeling as a preliminary screening and decision-support strategy for evaluating edible algal biomass before further product-specific validation.
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A safety-aware intake modeling framework for translating edible algal biomass into nutritional bioproducts. — 科研速览 Science Skim