molecular hybridization
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2022 ◽  
Author(s):  
Yogesh Mahadu Khetmalis ◽  
Surendar Chitti ◽  
Anjani Umarani Wunnava ◽  
Banoth Karankumar ◽  
Muthyala Murali Krishna Kumar ◽  
...  

Based on the molecular hybridization strategy, thirty-four imidazo-[1,2-a]-pyridine amide (IPA) and imidazo-[1,2-a]-pyridine sulfonamide (IPS) were designed and synthesized. The structures of the target compounds were characterized using 1 HNMR, 13...


2021 ◽  
pp. 116579
Author(s):  
Menghan Zhang ◽  
Jianmin Liu ◽  
Yue Wang ◽  
Ping Wang ◽  
Susan Morris-Natschke ◽  
...  

2021 ◽  
pp. 120051
Author(s):  
Junhui Zhao ◽  
Xinda You ◽  
Guangzhe Wang ◽  
Jinqiu Yuan ◽  
Yafei Li ◽  
...  

2021 ◽  
pp. 105427
Author(s):  
Gehad Lotfy ◽  
Yasmine M. Abdel Aziz ◽  
Mohamed M. Said ◽  
El Sayed H. El Ashry ◽  
El Sayed H. El Tamany ◽  
...  

2021 ◽  
Author(s):  
Belgin Sever ◽  
Cüneyt Türkeş ◽  
Mehlika D. Altıntop ◽  
Yeliz Demir ◽  
Gülşen Akalın Çiftçi ◽  
...  

Author(s):  
Ruchika Goyal ◽  
Gaurav Jerath ◽  
Aneesh Chandrasekharan ◽  
Yvonne Christian ◽  
T. R. Santhosh Kumar ◽  
...  

Author(s):  
Ruchika Goyal ◽  
Gaurav Jerath ◽  
Aneesh Chandrasekharan ◽  
Yvonne Christian ◽  
T. R. Santhosh Kumar ◽  
...  

Molecules ◽  
2021 ◽  
Vol 26 (13) ◽  
pp. 4093
Author(s):  
Bonani Vinindwa ◽  
Godwin Akpeko Dziwornu ◽  
Wayiza Masamba

Molecular hybridization is a drug discovery strategy that involves the rational design of new chemical entities by the fusion (usually via a covalent linker) of two or more drugs, both active compounds and/or pharmacophoric units recognized and derived from known bioactive molecules. The expected outcome of this chemical modification is to produce a new hybrid compound with improved affinity and efficacy compared to the parent drugs. Additionally, this strategy can result in compounds presenting modified selectivity profiles, different and/or dual modes of action, reduced undesired side effects and ultimately lead to new therapies. In this study, molecular hybridization was used to generate new molecular hybrids which were tested against the chloroquine sensitive (NF54) strain of P. falciparum. To prepare the new molecular hybrids, the quinoline nucleus, one of the privileged scaffolds, was coupled with various chalcone derivatives via an appropriate linker to produce a total of twenty-two molecular hybrids in 11%–96% yield. The synthesized compounds displayed good antiplasmodial activity with IC50 values ranging at 0.10–4.45 μM.


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