Access to new Schiff bases tethered with pyrazolopyrimidinone as antibacterial agents: design and synthesis, molecular docking and DFT analysis

2021 ◽  
pp. 131523
Author(s):  
Mabrouk Horchani ◽  
Hayet Edziri ◽  
Abdel Halim Harrath ◽  
Hichem Ben Jannet ◽  
Anis Romdhane
2020 ◽  
Vol 1199 ◽  
pp. 127007 ◽  
Author(s):  
Mabrouk Horchani ◽  
Amel Hajlaoui ◽  
Abdel Halim Harrath ◽  
Lamjed Mansour ◽  
Hichem Ben Jannet ◽  
...  

2010 ◽  
Vol 63 (22) ◽  
pp. 3981-3998 ◽  
Author(s):  
Zahid H. Chohan ◽  
Sajjad H. Sumrra ◽  
Moulay Hfid Youssoufi ◽  
Taibi Ben Hadda

2021 ◽  
pp. 131041
Author(s):  
Waleed M. Serag ◽  
Faten Zahran ◽  
Yasmin M. Abdelghany ◽  
Reda F.M. Elshaarawy ◽  
Moustafa S. Abdelhamid

2015 ◽  
Vol 42 (2) ◽  
pp. 1139-1163 ◽  
Author(s):  
Iram Batool ◽  
Aamer Saeed ◽  
Irfan Zia Qureshi ◽  
Saima Kalsoom ◽  
Ayesha Razzaq

Author(s):  
Nadia Ali Ahmed Elkanzi ◽  
Hajer Hrichi ◽  
Rania B. Bakr

Background: The 1,4-naphthoquinone ring has attracted prominent interest in the field of medicinal chemistry due to its potent pharmacological activity as antioxidant, antibacterial, antifungal, and anticancer. Objective: Herein, a series of new Schiff bases (4-6) and chalcones (8a-c & 9a-d) bearing 1,4-naphthoquinone moiety were synthesized in good yields and were subjected to in-vitro antimicrobial, antioxidant, and molecular docking testing. Methods: A facile protocol has been described in this study for the synthesis of new derivatives (4-7, 8a-c, and 9a-d) bearing 1,4-naphthoquinone moiety. The chemical structures of all the synthesized compounds were identified by 1H-NMR, 13C-NMR, MS, and elemental analyses. Moreover, these derivatives were assessed for their in-vitro antimicrobial activity against gram-positive, gram-negative bacteria, and fungal strains. Further studies were conducted to test their antioxidant activity using DPPH (2,2-diphenyl-1-picrylhydrazyl) scavenging assay. Molecular docking studies were realized to identify the most likely interactions of the novel compounds within the protein receptor. Results: The antimicrobial results showed that most of the compounds displayed good efficacy against both bacterial and fungal strains. The antioxidant study revealed that compounds 9d, 9a, 9b, 8c, and 6 exhibited the highest radical scavenging activity. Docking studies of the most active antimicrobial compounds within GLN- 6-P, recorded good scores with several binding interactions with the active sites. Conclusion: Based on the obtained results, it was found that compounds 8b, 9b, and 9c displayed the highest activity against both bacterial and fungal strains. The obtained findings from the DPPH radical scavenging method revealed that compounds 9d and 9a exhibited the strongest scavenging potential. The molecular docking studies proved that the most active antimicrobial compounds 8b, 9b and 9c displayed the highest energy binding scores within the glucosamine-6-phosphate synthase (GlcN-6-P) active site.


2018 ◽  
Vol 14 ◽  
pp. 2646-2650 ◽  
Author(s):  
Abed Tarapdar ◽  
James K S Norris ◽  
Oliver Sampson ◽  
Galina Mukamolova ◽  
James T Hodgkinson

Siderophore–antibiotic conjugates consist of an antibiotic covalently linked by a tether to a siderophore. Such conjugates can demonstrate enhanced uptake and internalisation to the bacterial cell resulting in significantly reduced MIC values and extended spectrum of activity. Phenothiazines are a class of small molecules that have been identified as a potential treatment for multidrug resistant tuberculosis and latent TB. Herein we report the design and synthesis of the first phenothiazine–siderophore conjugate. A convergent synthetic route was developed whereby the functionalised phenothiazine component was prepared in four steps and the siderophore component also prepared in four steps. In M. smegmatis the functionalised phenothiazine demonstrated an equipotent MIC value in direct comparison to the parent phenothiazine from which it was derived. The final conjugate was synthesised by amide bond formation between the two components and global deprotection of the PMB protecting groups to unmask the catechol iron chelating groups of the siderophore. The synthesis is readily amenable to the preparation of analogues whereby the siderophore component of the conjugate can be modified. The route will be used to prepare a library of siderophore–phenothiazine conjugates for full biological evaluation of much needed new antibacterial agents.


Heliyon ◽  
2020 ◽  
Vol 6 (10) ◽  
pp. e05290
Author(s):  
Vagish Channa Basappa ◽  
Vivek Hamse Kameshwar ◽  
Karthik Kumara ◽  
Dileep Kumar Achutha ◽  
Lokanath Neratur Krishnappagowda ◽  
...  

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