Abstract 1658: 5N-substituted pyrrolo[3,2-d]pyrimidines: Tumor-targeted agents with first-in-class dual inhibition of serine hydroxymethyl transferase 2 and 5-amino-4-imidazolecarboxamide ribonucleotide formyl transferase enzymes

Author(s):  
Khushbu Shah ◽  
Aamod Dekhne ◽  
Zhanjun Hou ◽  
Larry Matherly ◽  
Aleem Gangjee
2010 ◽  
Vol 48 (08) ◽  
Author(s):  
M Moehler ◽  
M Sieben ◽  
S Roth ◽  
B Leuchs ◽  
C Dinsart ◽  
...  

2005 ◽  
Vol 6 (7) ◽  
pp. 835-846 ◽  
Author(s):  
M. Staehler ◽  
K. Rohrmann ◽  
N. Haseke ◽  
C. Stief ◽  
M. Siebels

2015 ◽  
Vol 15 (3) ◽  
pp. 196-204 ◽  
Author(s):  
Wei Li ◽  
Xiao-Le Zhao ◽  
Shi-Qiang Shang ◽  
Hong-Qiang Shen ◽  
Xi Chen
Keyword(s):  

2021 ◽  
Vol 187 ◽  
pp. 105020
Author(s):  
Cheng Liu ◽  
Sandro Boland ◽  
Michael D. Scholle ◽  
Dorothee Bardiot ◽  
Arnaud Marchand ◽  
...  

Molecules ◽  
2021 ◽  
Vol 26 (4) ◽  
pp. 989
Author(s):  
Martin Krátký ◽  
Katarína Svrčková ◽  
Quynh Anh Vu ◽  
Šárka Štěpánková ◽  
Jarmila Vinšová

Based on the broad spectrum of biological activity of hydrazide–hydrazones, trifluoromethyl compounds, and clinical usage of cholinesterase inhibitors, we investigated hydrazones obtained from 4-(trifluoromethyl)benzohydrazide and various benzaldehydes or aliphatic ketones as potential inhibitors of acetylcholinesterase (AChE) and butyrylcholinesterase (BuChE). They were evaluated using Ellman’s spectrophotometric method. The hydrazide–hydrazones produced a dual inhibition of both cholinesterase enzymes with IC50 values of 46.8–137.7 µM and 19.1–881.1 µM for AChE and BuChE, respectively. The majority of the compounds were stronger inhibitors of AChE; four of them (2-bromobenzaldehyde, 3-(trifluoromethyl)benzaldehyde, cyclohexanone, and camphor-based 2o, 2p, 3c, and 3d, respectively) produced a balanced inhibition of the enzymes and only 2-chloro/trifluoromethyl benzylidene derivatives 2d and 2q were found to be more potent inhibitors of BuChE. 4-(Trifluoromethyl)-N’-[4-(trifluoromethyl)benzylidene]benzohydrazide 2l produced the strongest inhibition of AChE via mixed-type inhibition determined experimentally. Structure–activity relationships were identified. The compounds fit physicochemical space for targeting central nervous systems with no apparent cytotoxicity for eukaryotic cell line together. The study provides new insights into this CF3-hydrazide–hydrazone scaffold.


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