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    Flavonoids Derived from Abelmoschus esculentus Attenuates UV-B Induced Cell Damage in Human Dermal Fibroblasts Through Nrf2-ARE Pathway

    Juilee Patwardhan1, Purvi Bhatt1 Corresponding author

    1. 1Department of Biological Sciences, Sunandan Divatia School of Science, NMIMS (Deemed‑to‑be) University, Mumbai, Maharashtra, India.

    CORRESPONDENCE

    Purvi Bhatt

    Department of Biological Sciences, Sunandan Divatia School of Science, NMIMS (Deemed‑to‑be) University, Mumbai, Maharashtra, India.

    purvi.bhatt@nmims.edu

    Received: 27-11-2015; Revised: 01-02-2016.

    Volume 12, Issue 46s · pp. S129–S138 · PUBLISHED 11 May 2016 · DOI: 10.4103/0973-1296.182175

    View on Pharmacogn. Mag. original site ↗

    ABSTRACT

    Background: Ultraviolet‑B (UV‑B) radiation is a smaller fraction of the total radiation reaching the Earth but leads to extensive damage to the deoxyribonucleic acid (DNA) and other biomolecules through formation of free radicals altering redox homeostasis of the cell. Abelmoschus esculentus (okra) has been known in Ayurveda as antidiabetic, hypolipidemic, demulscent, antispasmodic, diuretic, purgative, etc. Objective: The aim of this study is to evaluate the protective effect of flavonoids from A. esculentus against UV‑B‑induced cell damage in human dermal fibroblasts. Materials and Methods: UV‑B protective activity of ethyl acetate (EA) fraction of okra was studied against UV‑B‑induced cytotoxicity, antioxidant regulation, oxidative DNA damage, intracellular reactive oxygen species (ROS) generation, apoptotic morphological changes, and regulation of heme oxygenase‑1 (HO‑1) gene through nuclear factor E2‑related factor 2‑antioxidant response element (Nrf2‑ARE) pathway. Results: Flavonoid‑rich EA fraction depicted a significant antioxidant potential also showing presence of rutin. Pretreatment of cells with EA fraction (10–30 µg/ml) prevented UV‑B‑induced cytotoxicity, depletion of endogenous enzymatic antioxidants, oxidative DNA damage, intracellular ROS production, apoptotic changes, and overexpression of Nrf2 and HO‑1. Conclusion: Our study demonstrated for the 1st time that EA fraction of okra may reduce oxidative stress through Nrf2‑ARE pathway as well as through endogenous enzymatic antioxidant system. These results suggested that flavonoids from okra may be considered as potential UV‑B protective agents and may also be formulated into herbal sunscreen for topical application.

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      Patwardhan, J., & Bhatt, P. (2016). Flavonoids Derived from Abelmoschus esculentus Attenuates UV-B Induced Cell Damage in Human Dermal Fibroblasts Through Nrf2-ARE Pathway. Pharmacognosy Magazine, 12(46s), S129–S138. https://doi.org/10.4103/0973-1296.182175