TY - JOUR
T1 - Effect of C7 Modifications on Benzothiadiazine-1,1-dioxide Derivatives on Their Inhibitory Activity and Selectivity toward Aldose Reductase
AU - Zhang, Shuzhen
AU - Chen, Xin
AU - Parveen, Shagufta
AU - Hussain, Saghir
AU - Yang, Yanchun
AU - Jing, Chaojun
AU - Zhu, Changjin
PY - 2013/4
Y1 - 2013/4
N2 - The development and progression of chronic complications in diabetic patients, such as retinopathy, nephropathy, neuropathy, cataracts, and stroke, are related to the activation and/or overexpression of aldose reductase (ALR2), which is a member of the aldo-keto reductase superfamily. A structure-activity relationship study focused on the C7 position of 1,2,4-benzothiadiazine-1,1-dioxide derivatives was pursued in an attempt to discover ALR2 inhibitors with enhanced potency and selectivity. These studies led to a series of new C7-substituted compounds, which were evaluated for their inhibitory activity against ALR2; they exhibited IC50 values in the range of 2.80-45.13nM. Two compounds with a C7-dimethylcarbamoyl and a C7-diethylcarbamoyl substituent, respectively, were found to be the most active and presented excellent selectivity for ALR2 over aldehyde reductase (ALR1). The structure-activity relationship analyses and molecular modeling studies presented herein highlight the importance of hydrophobic and bulky groups at the C7 position for inhibitory activity and selectivity toward ALR2.
AB - The development and progression of chronic complications in diabetic patients, such as retinopathy, nephropathy, neuropathy, cataracts, and stroke, are related to the activation and/or overexpression of aldose reductase (ALR2), which is a member of the aldo-keto reductase superfamily. A structure-activity relationship study focused on the C7 position of 1,2,4-benzothiadiazine-1,1-dioxide derivatives was pursued in an attempt to discover ALR2 inhibitors with enhanced potency and selectivity. These studies led to a series of new C7-substituted compounds, which were evaluated for their inhibitory activity against ALR2; they exhibited IC50 values in the range of 2.80-45.13nM. Two compounds with a C7-dimethylcarbamoyl and a C7-diethylcarbamoyl substituent, respectively, were found to be the most active and presented excellent selectivity for ALR2 over aldehyde reductase (ALR1). The structure-activity relationship analyses and molecular modeling studies presented herein highlight the importance of hydrophobic and bulky groups at the C7 position for inhibitory activity and selectivity toward ALR2.
KW - Aldehyde reductase
KW - Aldose reductase
KW - Benzothiadiazines
KW - Inhibitors
KW - Structure-activity relationships
UR - http://www.scopus.com/inward/record.url?scp=84875624311&partnerID=8YFLogxK
U2 - 10.1002/cmdc.201200386
DO - 10.1002/cmdc.201200386
M3 - Article
C2 - 23136050
AN - SCOPUS:84875624311
SN - 1860-7179
VL - 8
SP - 603
EP - 613
JO - ChemMedChem
JF - ChemMedChem
IS - 4
ER -