1. Academic Validation
  2. A New Phenolic Alkaloid from Halocnemum strobilaceum Endophytes: Antimicrobial, Antioxidant and Biofilm Inhibitory Activities

A New Phenolic Alkaloid from Halocnemum strobilaceum Endophytes: Antimicrobial, Antioxidant and Biofilm Inhibitory Activities

  • Chem Biodivers. 2020 Oct;17(10):e2000496. doi: 10.1002/cbdv.202000496.
Mohamed M M Abdel Razek 1 Ashaimaa Y Moussa 2 Mohamed A El-Shanawany 1 Abdel Nasser B Singab 2 3
Affiliations

Affiliations

  • 1 Faculty of Pharmacy, Badr University, Cairo-Suez Road, 11829, Cairo, Egypt.
  • 2 Faculty of Pharmacy, Ain Shams University, African Union Street, Abbassia, 11566, Cairo, Egypt.
  • 3 Center for Drug Discovery Research and Development, Ain Shams University, African Union Street, Abbassia, 11566, Cairo, Egypt.
Abstract

Human infections caused by microbial biofilm formation represent a growing major health threat. A new alkaloid, 3-amino-5-(3-hydroxybutan-2-yl)-4-methylphenol, was isolated from the corn grit culture of the endophytic isolate Penicillium citrinum-314 associated with Halocnemum strobilaceum, a halophyte growing in the Egyptian marshes. The new alkaloid was identified by 1D, 2D-NMR and HR-ESI-MS-MS and given the trivial name halociline. The antioxidant, antimicrobial and antibiofilm activities were recorded. Furthermore, another known compound, 1,3,6-trihydroxy-7-methoxy-9H-xanthen-9-one, was obtained in smaller amounts and revealed a non-microbicidal 100 % reduction in biofilm formation, with an MBIC value of 62.5 μg/mL (228 μM) against Pseudomonas aeruginosa (Ferm-BAM), a FRAP value of 447.941±37.876 mM/L as well as a marked safety profile against three Cancer cell lines. Through in silico molecular docking study, in the binding sites of Pseudomonas Enzymes, key ligand Enzyme interactions were determined to support the in vitro results.

Keywords

Halocnemum strobilaceum.; biofilm formation; endophytes; molecular docking; phenolic alkaloid.

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