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Critical discovery and synthesis of novel antibacterial and resistance-modifying agents inspired by plant phytochemical defense mechanisms
Faculty
Pharmacy
Year:
2020
Type of Publication:
ZU Hosted
Pages:
Authors:
Rania Hamdy Ahmed Badawi
Staff Zu Site
Abstract In Staff Site
Journal:
Chemico-Biological Interactions Elsevier
Volume:
Keywords :
Critical discovery , synthesis , novel antibacterial and resistance-modifying
Abstract:
Antimicrobial resistance is at increasing risk worldwide since it is threatening the ability to control common infectious diseases, resulting in prolonged illness, disability, and death. Herein, we inspired by the effective plant phytochemical mechanisms evolved to overcome microbial pathogenesis and evolved resistance. Cuminaldehyde is previously reported as the main antibacterial component in Calligonum comosum essential oil. The toxicity of cuminaldehyde limits its medical application for human use. On the other hand, compared to cuminaldehyde, the plant total extract showed similar antibacterial activities, while maintained lower toxicity, although it contains 22 times less cuminaldehyde. Thus, we assumed that other components in the plant extracts specifically affect bacteria but not mammalian cells. Bioassay-guided fractionations combined with comparative metabolomics analysis of different plant extracts were employed. The results revealed the presence of bacterial species-specific phytochemicals. Cinnamyl linoleate and linoleic acid enhanced the antibacterial activities of cuminaldehyde and ampicillin against S. aureus including MRSA, while decanal and cinnamyl linoleate enhanced the activities against E. coli. Computational modeling and enzyme inhibition assays indicated that cinnamyl linoleate selec tively bind to bacterial ribosomal RNA methyltransferase, an important enzyme involved in the virulence and resistance of multidrug resistant bacteria. The results obtained can be employed for the future preparation of pharmaceutical formula containing cinnamyl linoleate in order to overcome evolved multidrug resistance be haviors by microbes.
Author Related Publications
Rania Hamdy Ahmed Badawi, " Synthesis Of Novel 2-Sbstituted Quinaline -4-Carboxylic Acid Derivatives For Potential Biological Activity", لايوجد, 1900
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Rania Hamdy Ahmed Badawi, "Synthesis and evaluation of 5-(1H-indol-3-yl)-N-aryl-1,3,4-oxadiazol-2- amines as Bcl-2 inhibitory anticancer agents", www.elsevier.com/locate/bmcl, 2016
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Rania Hamdy Ahmed Badawi, "Avicennia marina a natural reservoir of phytopharmaceuticals: Curative power and platform of medicines", Elsevier, 2020
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Rania Hamdy Ahmed Badawi, "Lipid‐based therapies against SARS‐CoV‐2 infection", wiley, 2020
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Rania Hamdy Ahmed Badawi, "Design, synthesis, and computational validation of novel compounds selectively targeting HER2-expressing breast cancer", Elsevier, 2020
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Department Related Publications
Ehsan Mahmoud Abdelaziz Abozied, "The production and Biosynthesis of Medical Agents in Tissue Culture a Study", لايوجد, 1900
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Ehsan Mahmoud Abdelaziz Abozied, "8) Macro-and Micromorphology of the Leaf, Stem & Root of Amaranthus Chlorostachys Willed, Growing in Egypt", لايوجد, 1900
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Ehsan Mahmoud Abdelaziz Abozied, "Macro- and Micromorphology of the Leaf, Stem & Root of Gomphocarpus Sinaicus Boiss. Family Asclepiadaceae. Growing in Egypt", لايوجد, 1900
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Samyah Salah Mohamed Hafez, "The Pharmacognostical study of Launaea Nudicaulis ( L. ) Hook Family", لايوجد, 1900
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Samyah Salah Mohamed Hafez, " Phytochemical and Biological Studies of Lotus corniculatus var.", لايوجد, 1900
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