4.7 Article

LC-ESI/MS-Phytochemical Profiling with Antioxidant, Antibacterial, Antifungal, Antiviral and In Silico Pharmacological Properties of Algerian Asphodelus tenuifolius (Cav.) Organic Extracts

期刊

ANTIOXIDANTS
卷 10, 期 4, 页码 -

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MDPI
DOI: 10.3390/antiox10040628

关键词

Asphodelus tenuifolius; LC-ESI; MS; phenolic compounds; antioxidants; antibacterial; antifungal; antiviral; ADME

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  1. Algerian Ministry of Higher Education and Scientific Research (MESRS)

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The study revealed that the chloroform extract from Asphodelus tenuifolius showed high antioxidant and antibacterial activities, but weak antifungal activity and no antiviral activity. The chloroform extract exhibited moderate cytotoxicity on VERO cell line, while the butanol extract was non-toxic. In addition, the main compounds from the chloroform extract demonstrated promising pharmacokinetic and drug-likeness properties.
Asphodelus tenuifolius Cav. (A. tenuifolius) is a medicinal plant with a long history of traditional use to treat ailments. In this study, total phenolic and flavonoid content evaluation using LC-ESI/MS analysis and various biological activities (antioxidant, antibacterial, antifungal, antiviral and cytotoxicity) of organic extracts from the aerial parts of A. tenuifolius were analyzed. ADME tools were used to predict the potential of the identified compounds from the most potent extract as specific drugs. As shown, LC-ESI/MS results of chloroformic extract allowed the tentative identification of 12 compounds. Chloroformic extract was rich in polyphenols and flavonoids and exhibited the highest antioxidant activity given by DPPH (IC50 = 25 mu g/mL) as compared to the BHT standard (11.5 mu g/mL) and beta-carotene bleaching assays (IC50 = 95.692 mu g/mL). Antibacterial activity results showed that chloroformic extract has a highest activity against Gram-positive and -negative bacteria, especially against Salmonella Typhimurium DT104 (IZ = 19.3 mm, MIC = 18.75 mg/mL, MBC = 37.5 mg/mL). The MBC/MIC ratio was evaluated to interpret the activity that was bacteriostatic rather than bactericidal. Conversely, weaker antifungal activity was registered, and no antiviral activity was observed for all extracts against Herpes Simplex Virus type 2 and Coxsakievirus B-3 viruses. Cytotoxic activity on VERO cell line results revealed that butanol extract was not toxic, with CC50 value of 1430 mu g/mL, while chloroformic extract showed moderate cytotoxicity. Additionally, in silico studies performed proved promising pharmacokinetic and drug-likeness properties of the main compounds from the chloroformic extract. Taken together, this work highlights the potent bioactivity and acceptable drug-likeness of this plant, which supports its further preclinical development.

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