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1.
Bioorg Med Chem ; 25(1): 187-201, 2017 01 01.
Article in English | MEDLINE | ID: mdl-27810440

ABSTRACT

Vascular Adhesion Protein-1 (VAP-1) is a promising therapeutic target for the treatment of several inflammatory-related diseases including diabetic microvascular complication. We identified glycine amide derivative 3 as a novel structure with moderate VAP-1 inhibitory activity. Structure-activity relationship studies of glycine amide derivatives revealed that the tertiary amide moiety is important for stability in rat blood and that the position of substituents on the left phenyl ring plays an important role in VAP-1 inhibitory activity. We also found that low TPSA values and weak basicity are both important for high PAMPA values for glycine amide derivatives. These findings led to the identification of a series of orally active compounds with enhanced VAP-1 inhibitory activity. Of these compounds, 4g exhibited the most potent ex vivo efficacy, with plasma VAP-1 inhibitory activity of 60% after oral administration at 1mg/kg.


Subject(s)
Acetamides/pharmacology , Amine Oxidase (Copper-Containing)/antagonists & inhibitors , Cell Adhesion Molecules/antagonists & inhibitors , Glycine/analogs & derivatives , Glycine/pharmacology , Acetamides/chemical synthesis , Acetamides/pharmacokinetics , Animals , CHO Cells , Cricetulus , Drug Stability , Enzyme Assays , Glycine/chemical synthesis , Glycine/pharmacokinetics , Humans , Molecular Docking Simulation , Rats , Structure-Activity Relationship
2.
Bioorg Med Chem ; 13(4): 949-61, 2005 Feb 15.
Article in English | MEDLINE | ID: mdl-15670903

ABSTRACT

In a previous study, we described the structure-activity relationships (SARs) for a series of thiazolidenebenzenesulfonamide derivatives. These compounds were found to be highly potent inhibitors of the wild type (WT) and Y181C mutant reverse transcriptases (RTs) and modest inhibitors of K103N RT. These molecules are thus considered to be a novel class of non-nucleoside HIV-1 RT inhibitors (NNRTIs). In this paper, we have examined the effects of substituents on both the thiazolidene and benzenesulfonamide moieties. Introduction of a 2-cyanophenyl ring into these moieties significantly enhanced anti-HIV-1 activity, whereas a 2-hydroxyphenyl group endowed potent activity against RTs, including K103N and Y181C mutants. Among the series of molecules examined, 10l and 18b (YM-228855), combinations of 2-cyanophenyl and 4-methyl-5-isopropylthiazole moieties, showed extremely potent anti-HIV-1 activity. The EC50 values of 101 and 18b were 0.0017 and 0.0018 microM, respectively. These values were lower than that of efavirenz (3). Compound 11g (YM-215389), a combination of 2-hydroxyphenyl and 4-chloro-5-isopropylthiazole moieties, proved to be the most active against both K103N and Y181C RTs with IC50 values of 0.043 and 0.013 microM, respectively.


Subject(s)
Reverse Transcriptase Inhibitors/chemical synthesis , Reverse Transcriptase Inhibitors/pharmacology , Sulfonamides/chemical synthesis , Sulfonamides/pharmacology , Cell Line , HIV-1/drug effects , Humans , Magnetic Resonance Spectroscopy , Microbial Sensitivity Tests , Reverse Transcriptase Inhibitors/chemistry , Spectrometry, Mass, Fast Atom Bombardment , Structure-Activity Relationship , Sulfonamides/chemistry
3.
Bioorg Med Chem ; 12(23): 6171-82, 2004 Dec 01.
Article in English | MEDLINE | ID: mdl-15519161

ABSTRACT

A random high-throughput screening (HTS) program to discover novel nonnucleoside reverse transcriptase inhibitors (NNRTIs) has been carried out with MT-4 cells against a nevirapine-resistant virus, HIV-1(IIIB-R). The primary hit, a thiazolidenebenzenesulfonamide derivative, possessed good activity. A systematic modification program examining various substituents at the 3-, 4-, and 5-positions on the thiazole ring afforded compounds with enhanced anti-HIV-1 and reverse transcriptase (RT) inhibitory activities. These results confirm the important role of the substituents at these positions and the thiazolidenebenzenesulfonamide motif as a valuable lead series for the next generation NNRTIs.


Subject(s)
HIV Reverse Transcriptase/antagonists & inhibitors , Reverse Transcriptase Inhibitors/chemical synthesis , Sulfonamides/chemical synthesis , Benzenesulfonates , Binding Sites , Drug Resistance, Viral , HIV-1/drug effects , Molecular Structure , Nevirapine , Protein Binding , Reverse Transcriptase Inhibitors/pharmacology , Structure-Activity Relationship , Sulfonamides/pharmacology , Thiazoles , Virus Replication/drug effects
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