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January 14, 2026Foods0 citationsOpen Access

From Forestry By-Product to Functional Food Ingredient Innovation: Antiproliferative, Antimetastatic and Antiplasmodial Activities of Norway Spruce Sawdust Extract

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JCJulia Carvalho Cardoso ConsentiniGFGabriela FurlanetoNBNathália Alves Bento

Key Points

  • Evaluate the bioactive properties of Norway spruce sawdust extract and its potential as a functional food ingredient.
  • Assessed antiproliferative and antimetastatic effects on A549 and HCT-8 cancer cell lines.
  • Measured cell adhesion reduction and clonogenic capacity of cancer cells.
  • Conducted genotoxicity assays using cisplatin to evaluate the extract's cytoprotective effects.
  • Evaluated antimalarial activity against two Plasmodium falciparum strains with IC50 analysis.
  • NSBE reduced cell adhesion by 33.96% in A549 cells and 40.15% in HCT-8 cells.
  • Clonogenic capacity suppression was recorded at up to 90% and 75% for A549 and HCT-8 cells, respectively.
  • The extract showed a cytoprotective effect at 10 µg GAE/mL, decreasing cisplatin-induced genotoxicity.
  • Potent antiplasmodial activity was observed with IC50 values below 3.5 µg GAE/mL for both Plasmodium strains.

Abstract

The Norway spruce (Picea abies) is a forest resource whose by-products contain bioactive compounds such as galactoglucomannan (GGM), catechin, and epicatechin, recognized for their antioxidant and chemopreventive potential. Within a food-related valorization context, we evaluated the antiproliferative, antimetastatic, genotoxic, and antimalarial activities of the Norway spruce by-product extract (NSBE). Considering its chemical composition and multifunctional bioactive profile, NSBE is investigated for its potential application as a functional food ingredient. NSBE exhibited concentration-dependent antiproliferative and antimetastatic effects two cancer cell lines (A549 and HCT-8), reducing cell adhesion by 33.96% in A549 cells and 40.15% in HCT-8 cells, and suppressing clonogenic capacity by up to 90% and 75%, respectively. The extract preserved basal chromosomal integrity and demonstrated a cytoprotective effect at 10 µg GAE/mL, reducing cisplatin-induced genotoxicity. Additionally, in antiplasmodial assays, NSBE showed potent inhibition of two Plasmodium falciparum strains: W2 (chloroquine-resistant) and 3D7 (chloroquine-sensitive) strains, with IC50 values below 3.5 µg GAE/mL. This activity was supported by a selectivity index (SI) of 13, exceeding the recommended threshold for natural antimalarial candidates. Altogether, these findings highlight the NSBE as a sustainable and multifunctional food ingredient with relevant antiproliferative and antiplasmodial properties, supporting its cytoprotective and chemopreventive potential within a functional food framework.

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Cite This Study

Consentini et al. (2026) studied this question.

synapsesocial.com/papers/6966f33b13bf7a6f02c0123ahttps://doi.org/10.3390/foods15020264
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