Chemical profiling of volatile compounds of the essential oil of grey-leaved rockrose (Cistus albidus L.) and its antioxidant, anti-inflammatory, antibacterial, antifungal, and anticancer activity in vitro and in silico.
Title: | Chemical profiling of volatile compounds of the essential oil of grey-leaved rockrose (Cistus albidus L.) and its antioxidant, anti-inflammatory, antibacterial, antifungal, and anticancer activity in vitro and in silico. |
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Authors: | Elbouzidi, Amine, Taibi, Mohamed, Laaraj, Salah, Loukili, El Hassania, Haddou, Mounir, El Hachlafi, Naoufal, Mrabti, Hanae Naceiri, Baraich, Abdellah, Bellaouchi, Reda, Asehraou, Abdeslam, Bourhia, Mohammed, Nafidi, Hiba-Allah, Bin Jardan, Yousef A., Chaabane, Khalid, Addi, Mohamed |
Source: | Frontiers in Chemistry; 2024, p01-24, 24p |
Subject Terms: | VOLATILE organic compounds, ANALYTICAL chemistry, ANTIOXIDANTS, ANTI-inflammatory agents, ANTIFUNGAL agents, ANTINEOPLASTIC agents |
Abstract: | Cistus albidus: L., also known as Grey-leaved rockrose and locally addressed as šṭab or tûzzâla lbîḍa, is a plant species with a well-established reputation for its health-promoting properties and traditional use for the treatment of various diseases. This research delves into exploring the essential oil extracted from the aerial components of Cistus albidus (referred to as CAEO), aiming to comprehend its properties concerning antioxidation, anti-inflammation, antimicrobial efficacy, and cytotoxicity. Firstly, a comprehensive analysis of CAEO's chemical composition was performed through Gas Chromatography-Mass Spectrometry (GC-MS). Subsequently, four complementary assays were conducted to assess its antioxidant potential, including DPPH scavenging, β-carotene bleaching, ABTS scavenging, and total antioxidant capacity assays. The investigation delved into the anti-inflammatory properties via the 5-lipoxygenase assay and the antimicrobial effects of CAEO against various bacterial and fungal strains. Additionally, the research investigated the cytotoxic effects of CAEO on two human breast cancer subtypes, namely, MCF-7 and MDA-MB-231. Chemical analysis revealed camphene as the major compound, comprising 39.21% of the composition, followed by α-pinene (19.01%), bornyl acetate (18.32%), tricyclene (6.86%), and melonal (5.44%). Notably, CAEO exhibited robust antioxidant activity, as demonstrated by the low IC |
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Database: | Complementary Index |
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