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Valorization of flaxseed Cyclolinopeptides from byproduct: Optimization of extraction and evaluation of cellular protective effects.

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Food chemistry. Molecular sciences 2026 Vol.12() p. 100377 OA Phytoestrogen effects and research
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PubMed DOI PMC OpenAlex Semantic 마지막 보강 2026-04-28
OpenAlex 토픽 · Phytoestrogen effects and research Protein Hydrolysis and Bioactive Peptides Polysaccharides and Plant Cell Walls

Xu J, Huang J, Xue Q, Xu H, Mi J, Zhang T, Guo Y, Liu R, Chang M

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Cyclolinopeptides (CLs), a class of cyclic peptides derived from flaxseed (.), exhibit significant bioactivities.

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APA Jing Xu, Jiefang Huang, et al. (2026). Valorization of flaxseed Cyclolinopeptides from byproduct: Optimization of extraction and evaluation of cellular protective effects.. Food chemistry. Molecular sciences, 12, 100377. https://doi.org/10.1016/j.fochms.2026.100377
MLA Jing Xu, et al.. "Valorization of flaxseed Cyclolinopeptides from byproduct: Optimization of extraction and evaluation of cellular protective effects.." Food chemistry. Molecular sciences, vol. 12, 2026, pp. 100377.
PMID 41859363 ↗

Abstract

Cyclolinopeptides (CLs), a class of cyclic peptides derived from flaxseed (.), exhibit significant bioactivities. However, over 98% of CLs are discarded during flaxseed oil refining. This study hypothesized that an optimized methanol-K₂HPO₄ aqueous two-phase extraction (ATPE) system could efficiently recover CLs from flaxseed meal, and that these peptides might exhibit significant cellular protective effects against oxidative stress, underscoring their valorization potential. The ATPE conditions were optimized (14% K₂HPO₄, 44% methanol, feed-to-liquid ratio 1,30 /w, pH 8.7), achieving a recovery rate of approximately 79%. Subsequently, the anti-senescence potential of CLs was systematically evaluated using an HO-induced senescence model in human dermal fibroblasts (HSFs). Results demonstrated that both the CL mixture (CLMIX, 120 μg/mL) and its predominant monomer CLA (20 μg/mL) significantly suppressed senescence-associated β-galactosidase (SA-β-gal) activity, inhibited excessive reactive oxygen species (ROS) generation, and attenuated apoptosis by upregulating BCL2 (B-cell lymphoma 2) and downregulating BAX (BCL2-associated X protein) expression. Furthermore, CLMIX and CLA mitigated collagen degradation via downregulation of MMP-1/MMP-3. Mechanistically, CLA counteracted oxidative stress-driven apoptosis by modulating the BCL2/BAX axis. These findings suggest that CLs, particularly CLA, could serve as functional food-grade ingredients with antioxidant and anti-senescence properties, enabling valorization of flaxseed processing waste.

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