Pomegranate fruit extract modulates oxidative stress and lifespan in Caenorhabditis elegans: chemical profiling, reproducible survival effects, and DAF-16/SKN-1 involvement

Aging is closely associated with chronic oxidative stress, motivating interest in plant-derived antioxidant products. Previous studies have already shown that pomegranate preparations can extend Caenorhabditis elegans lifespan and engage DAF-16/SKN-1-related stress responses. Here, we chemically characterized the specific crude pomegranate fruit extract (PFE) used in our assays and examined whether a defined 24-h exposure beginning at the L4 stage produced biological effects that persisted after PFE withdrawal. Gas chromatography-mass spectrometry (GC-MS/MS) quantified 15 carbohydrate-related constituents, while UPLC-Q Exactive Orbitrap-MS provided putative annotations for 18 phenolic and related constituents. Three independent wild-type lifespan experiments showed reproducible survival extension after the 24-h pulse. PFE also reduced reactive oxygen species and lipofuscin, increased antioxidant-enzyme activities, promoted DAF-16 and SKN-1 nuclear localization, and altered expression of daf-2 , daf-16 , sod-3 , gst-4 , skn-1 , and gcs-1 . PFE did not increase mean lifespan in daf-16 (mgDf50) or skn-1 (zu67) single mutants. In an additional IIS genetic assay, 100 mg/L PFE did not further extend the lifespan of the long-lived daf-2 (e1370) mutant, consistent with a non-additive effect and convergence on reduced DAF-2/IIS signaling. RNA-seq identified 941 differentially expressed genes enriched in spliceosome-, mTOR-, neuroactive ligand-, and longevity-related categories. Network pharmacology identified candidate compound-target associations involving aging- and oxidative-stress-related signaling pathways, while molecular docking yielded binding energies ranging from −2.60 to −5.19 kcal/mol, indicating modest predicted interactions between selected PFE-derived compounds and DAF-16, SKN-1, or AKT-1. Together, the data support a reproducible antioxidant and lifespan-associated response to PFE involving DAF-2/IIS, DAF-16, and SKN-1.

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Journal
Industrial Crops and Products
Published
2026-09-30
DOI
https://doi.org/10.1016/j.indcrop.2026.124463
Primary Topic
Genetics, Aging, and Longevity in Model Organisms
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article
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article

Pomegranate fruit extract modulates oxidative stress and lifespan in Caenorhabditis elegans: chemical profiling, reproducible survival effects, and DAF-16/SKN-1 involvement

Jiayan Shi, 谭德水, Kang Qiao, Haixia Tang et al.
Industrial Crops and Products
Genetics, Aging, and Longevity in Model Organisms
article

Pomegranate fruit extract modulates oxidative stress and lifespan in Caenorhabditis elegans: chemical profiling, reproducible survival effects, and DAF-16/SKN-1 involvement

Jiayan Shi, 谭德水, Kang Qiao, Haixia Tang, Yanlei Yin
article en

Abstract

Aging is closely associated with chronic oxidative stress, motivating interest in plant-derived antioxidant products. Previous studies have already shown that pomegranate preparations can extend Caenorhabditis elegans lifespan and engage DAF-16/SKN-1-related stress responses. Here, we chemically characterized the specific crude pomegranate fruit extract (PFE) used in our assays and examined whether a defined 24-h exposure beginning at the L4 stage produced biological effects that persisted after PFE withdrawal. Gas chromatography-mass spectrometry (GC-MS/MS) quantified 15 carbohydrate-related constituents, while UPLC-Q Exactive Orbitrap-MS provided putative annotations for 18 phenolic and related constituents. Three independent wild-type lifespan experiments showed reproducible survival extension after the 24-h pulse. PFE also reduced reactive oxygen species and lipofuscin, increased antioxidant-enzyme activities, promoted DAF-16 and SKN-1 nuclear localization, and altered expression of daf-2 , daf-16 , sod-3 , gst-4 , skn-1 , and gcs-1 . PFE did not increase mean lifespan in daf-16 (mgDf50) or skn-1 (zu67) single mutants. In an additional IIS genetic assay, 100 mg/L PFE did not further extend the lifespan of the long-lived daf-2 (e1370) mutant, consistent with a non-additive effect and convergence on reduced DAF-2/IIS signaling. RNA-seq identified 941 differentially expressed genes enriched in spliceosome-, mTOR-, neuroactive ligand-, and longevity-related categories. Network pharmacology identified candidate compound-target associations involving aging- and oxidative-stress-related signaling pathways, while molecular docking yielded binding energies ranging from −2.60 to −5.19 kcal/mol, indicating modest predicted interactions between selected PFE-derived compounds and DAF-16, SKN-1, or AKT-1. Together, the data support a reproducible antioxidant and lifespan-associated response to PFE involving DAF-2/IIS, DAF-16, and SKN-1.

Industrial Crops and ProductsVol. 252
Shandong Academy of Agricultural Sciences (CN), Shandong Agricultural University (CN)
Openalex Percentile: Top 16%
Genetics, Aging, and Longevity in Model Organisms
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