# Lactuca sativa L. losses and wastes as a source of biobased ingredients

**Authors:** Joana PB Rodrigues, Tayse FF da Silveira, Daniele B Rodrigues, Laura Domínguez, Patricia Morales, Tânia CSP Pires, Maria Beatriz PP Oliveira, Ângela Fernandes, Lillian Barros

PMC · DOI: 10.1002/jsfa.70450 · Journal of the Science of Food and Agriculture · 2026-01-12

## TL;DR

This paper explores how waste from different lettuce varieties contains valuable nutrients and bioactive compounds that could be used in food and pharmaceutical industries.

## Contribution

The study identifies specific lettuce waste varieties rich in bioactive compounds, offering new opportunities for sustainable utilization.

## Key findings

- Lollo Rossa lettuce waste contains high levels of beneficial compounds like organic acids, tocopherols, and phenolics.
- Little Gems waste is notable for its high content of nonessential amino acids such as glutamine and asparagine.
- Lollo Rossa extracts showed strong antioxidant activity, and some lettuce varieties displayed antimicrobial effects.

## Abstract

The growing global population and increasing consumer focus on healthy eating challenge the agricultural sector to ensure both sustainable food production and safety. Lettuce (Lactuca sativa Mill.), the most cultivated leafy vegetable worldwide, can lose up to 40% of its weight during processing. This study investigates the biochemical composition of waste from six lettuce varieties, Curly‐leafed, Iceberg, Little Gems, Romaine, Frisée and Lollo Rossa, collected from losses during cultivation, transport, storage and processing.

Lollo Rossa showed the highest levels of beneficial compounds, including organic acids (189 g kg−1 dry weight (dw)), tocopherols (292 mg kg−1 dw), folates (2.7 mg kg−1 dw), carotenoids (1.1 mg g−1 dw) and essential minerals. Little Gems waste stood out for its content of nonessential amino acids, particularly glutamine (63 mg g−1 dw), asparagine (17.4 mg g−1 dw) and glutamic acid (6.5 mg g−1 dw). Lollo Rossa also exhibited high levels of phenolic compounds (29.77 mg g−1 extract), including anthocyanins such as cyanidin‐O‐hexoside and cyanidin‐3‐(6″‐malonyl)glucoside. Decoction extracts from Lollo Rossa showed the strongest antioxidant activity, while hydroethanolic extracts from four varieties displayed antimicrobial activity against Yersinia enterocolitica.

These findings highlight the potential of lettuce waste as a source of valuable bioactive compounds, supporting sustainable practices and value‐added applications in the food and pharmaceutical industries. © 2026 The Author(s). Journal of the Science of Food and Agriculture published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

## Linked entities

- **Species:** Lactuca sativa (taxon 4236), Yersinia enterocolitica (taxon 630)

## Full-text entities

- **Chemicals:** carotenoids (MESH:D002338), glutamine (MESH:D005973), cyanidin-O-hexoside (-), amino acids (MESH:D000596), glutamic acid (MESH:D018698), tocopherols (MESH:D024505), anthocyanins (MESH:D000872), folates (MESH:D005492), asparagine (MESH:D001216), cyanidin-3-(6''-malonyl)glucoside (MESH:C526962)
- **Species:** Yersinia enterocolitica (species) [taxon 630], Lactuca sativa (cultivated lettuce, species) [taxon 4236]

## Full text

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## Figures

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## References

63 references — full list in the complete paper: https://tomesphere.com/paper/PMC12988707/full.md

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Source: https://tomesphere.com/paper/PMC12988707