PMID
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Data
Article Title
Organization
49
Structure-anticonvulsant activity studies in the group of (E)-N-cinnamoyl aminoalkanols derivatives monosubstituted in phenyl ring with 4-Cl, 4-CH

Jagiellonian University Medical College
5
Exploring new scaffolds for angiotensin II receptor antagonism.

National Hellenic Research Foundation
29
Mimicking of Arginine by Functionalized N(¿)-Carbamoylated Arginine As a New Broadly Applicable Approach to Labeled Bioactive Peptides: High Affinity Angiotensin, Neuropeptide Y, Neuropeptide FF, and Neurotensin Receptor Ligands As Examples.

University of Regensburg
47
Design, physico-chemical properties and biological evaluation of some new N-[(phenoxy)alkyl]- and N-{2-[2-(phenoxy)ethoxy]ethyl}aminoalkanols as anticonvulsant agents.

Jagiellonian University Medical College
4
Interconversion of Functional Activity by Minor Structural Alterations in Nonpeptide AT2 Receptor Ligands.

Uppsala University
4
Saralasin and Sarile Are AT2 Receptor Agonists.

University of Sherbrooke
28
Optimized protein kinase C¿ (PKC¿) inhibitors reveal only modest anti-inflammatory efficacy in a rodent model of arthritis.

Abbvie Bioresearch Center
20
Structure-activity relationship studies toward the discovery of selective apelin receptor agonists.

University of Strasburg
24
Design, synthesis, and evaluation of imidazo[4,5-c]pyridin-4-one derivatives with dual activity at angiotensin II type 1 receptor and peroxisome proliferator-activated receptor-¿.

Pfizer
3
NO-sartans: a new class of pharmacodynamic hybrids as cardiovascular drugs.

University of Pisa
12
The replacement of His(4) in angiotensin IV by conformationally constrained residues provides highly potent and selective analogues.

Vrije Universiteit Brussel
14
Angiotensin analogues palmitoylated in positions 1 and 4.

University of Sherbrooke
16
Substituted lactam biphenyltetrazoles as angiotensin II mediated antihypertensives

TBA
40
Synthesis and In Vitro evaluation of fused ring heterocyle-containing angiotensin II antagonists.

TBA
129
Synopsis of some recent tactical application of bioisosteres in drug design.

Bristol Myers Squibb
37
Chemokine receptor antagonists.

National Heart and Lung Institute
72
Discovery of 4-oxo-6-((pyrimidin-2-ylthio)methyl)-4H-pyran-3-yl 4-nitrobenzoate (ML221) as a functional antagonist of the apelin (APJ) receptor.

Sanford-Burnham Medical Research Institute
8
The discovery of new potent non-peptide Angiotensin II AT1 receptor blockers: a concise synthesis, molecular docking studies and biological evaluation of N-substituted 5-butylimidazole derivatives.

University of Patras
15
Design, synthesis and biological activity of 6-substituted carbamoyl benzimidazoles as new nonpeptidic angiotensin II AT1 receptor antagonists.

School of Chemical Engineering & The Environment
16
Synthesis and biological evaluation of 4'-[(benzimidazole-1-yl)methyl]biphenyl-2-sulfonamide derivatives as dual angiotensin II/endothelin A receptor antagonists.

China Pharmaceutical University
39
Discovery of {1-[4-(2-{hexahydropyrrolo[3,4-c]pyrrol-2(1H)-yl}-1H-benzimidazol-1-yl)piperidin-1-yl]cyclooctyl}methanol, systemically potent novel non-peptide agonist of nociceptin/orphanin FQ receptor as analgesic for the treatment of neuropathic pain: design, synthesis, and structure-activity rela

Pfizer
28
Selective angiotensin II AT(2) receptor agonists with reduced CYP 450 inhibition.

Uppsala University
36
Design, synthesis, and biological evaluation of AT1 angiotensin II receptor antagonists based on the pyrazolo[3,4-b]pyridine and related heteroaromatic bicyclic systems.

University of Siena
95
Designed multiple ligands. An emerging drug discovery paradigm.

Organon Laboratories
7
Angiotensin II AT1 receptor antagonists. Clinical implications of active metabolites.

Technische Universit£T Darmstadt
15
Quantized surface complementarity diversity (QSCD): a model based on small molecule-target complementarity.

Neogenesis
49
Nonpeptide angiotensin II receptor antagonists: the next generation in antihypertensive therapy.

Dupont Pharmaceuticals
10
Novel cyclic analogs of angiotensin II with cyclization between positions 5 and 7: conformational and biological implications.

Washington University
43
Nonpeptide angiotensin II receptor antagonists. Synthesis and biological activity of benzimidazolecarboxylic acids.

Takeda Chemical Industries
14
Excursions in drug discovery.

Merck Research Laboratories
18
L-161,638: A potent AT2selective quinazolinone angiotensin II binding inhibitor

TBA
17
(6-oxo-3-pyridazinyl)-benzimidazoles as potent angiotensin II receptor antagonists

TBA
28
Synthesis and antihypertensive activity of pyrimidin-4(3H)-one derivatives as losartan analogue for new angiotensin II receptor type 1 (AT1) antagonists.

Kyung Hee University
13
Design, synthesis and biological evaluation of 6-substituted aminocarbonyl benzimidazole derivatives as nonpeptidic angiotensin II AT1 receptor antagonists.

Beijing Institute of Technology
8
Application of Ullmann and Ullmann-Finkelstein reactions for the synthesis of N-aryl-N-(1H-pyrazol-3-yl) acetamide or N-(1-aryl-1H-pyrazol-3-yl) acetamide derivatives and pharmacological evaluation.

University of Lille
19
Discovery of a series of imidazo[4,5-b]pyridines with dual activity at angiotensin II type 1 receptor and peroxisome proliferator-activated receptor-¿.

Pfizer
64
Angiotensin II receptor type 1 (AT1) selective nonpeptidic antagonists--a perspective.

The M. S. University of Baroda
1
Spiroindolones, a potent compound class for the treatment of malaria.

Swiss Tropical and Public Health Institute
21
A new group of oxime carbamates as reversible inhibitors of fatty acid amide hydrolase.

Università
8
The amino-terminus of angiotensin II contacts several ectodomains of the angiotensin II receptor AT1.

Universite De Sherbrooke
13
Synthesis and biological activities of novel indole derivatives as potent and selective PPARgamma modulators.

Glaxosmithkline
12
The design, binding affinity prediction and synthesis of macrocyclic angiotensin II AT
1 and AT
2 receptor antagonists

TBA
5
L-162,389: a potent orally active angiotensin II receptor antagonist with balanced affinity to both AT
1 and AT
2 receptor subtypes

TBA
16
AT
1 selective angiotensin II antagonists with phenoxyphenylacetic acid as a biphenyl replacement part I

TBA
19
Uracil-based angiotensin II receptor antagonists

TBA
13
A new class of angiotensin II receptor antagonists with a novel acidic bioisostere

TBA
39
The SAR of 6-(N-alkyl-N-acyl)-2-propyl-3-[(2′-tetrazol-5-yl)biphen-4-yl)methyl]-quinazolinones as balanced affinity antagonists of the human AT
1 and AT
2 receptors

TBA
27
α-Phenoxyphenylacetic acid derived angiotensin II antagonists with low nanomolar AT
1/AT
2 receptor subtype affinity (Part II)

TBA
3
D and L-N-[(1-benzyl-1H-imidazol-5-yl)-alkyl]-amino acids as angiotensin II AT-1 antagonists

TBA
18
2,3,6-Substituted quinazolinones as angiotensin II receptor antagonists

TBA
4
Substituted 1,3-benzodioxole & 1,3-benzodithiole -2- carboxylates and their tetrazole analogs with potent binding affinity to the angiotensin II AT
1 receptor

TBA
18
Potent triazolinone-based angiotensin II receptor antagonists with equivalent affinity for both the AT
1 and AT
2 subtypes

TBA
13
The synthesis and biological activity of tetrahydroquinoline angiotensin II antagonists containing a substituted biphenyltetrazole group

TBA
23
Development of angiotensin II antagonists with equipotent affinity for human AT
1 and AT
2 receptor subtypes.

TBA
61
Balanced angiotensin II receptor antagonists. III. The effects of substitution at the imidazole 5-position.

TBA
34
Balanced angiotensin II receptor antagonists. II.
1,2 4-aminomethyl- and acylaminomethylimidazoles

TBA
28
6-Substituted Quinazolinone Angiotensin II Receptor Antagonists

TBA
4
Synthesis and biological evaluation of the potent isoxazolidinyl angiotensin II receptor antagonist CL332,877 and its enantiomers.

TBA
32
6-isoxazolinyl and isoxazolidinyl substituted quinazolinones as angiotensin II receptor antagonists

TBA
15
Imidazolinones as nonpeptide angiotensin II receptor antagonists

TBA
27
A new class of balanced AT
1/AT
2 angiotensin II antagonists: quinazolinone AII antagonists with acylsulfonamide and sulfonylcarbamate acidic functionalities

TBA
18
Quinazolinone Biphenyl Acylsulfonamides: A potent new class of angiotensin-II receptor antagonists

TBA
25
Potent imidazole angiotensinII antagonists: acyl sulfonamides and acyl sulfamides as tetrazole replacements

TBA
10
Evaluation of heterocyclic acid equivalents as tetrazole replacements in imidazopyridine-based nonpeptide angiotensin II receptor antagonists

TBA
8
A new class of diacidic nonpeptide angiotensin II receptor antagonists

TBA
11
Valsartan, a potent, orally active angiotensin II antagonist developed from the structurally new amino acid series

TBA
8
A potent long-acting imidazole-5-acrylic acid angiotensin II AT-1 receptor antagonist

TBA
4
Synthesis of new imidazo[1,2-
b]pyridazine isosteres of potent imidazo[4,5-
b]pyridine angiotensin II antagonists

TBA
12
Discovery and development of aryl-fused imidazole-based angiotensin II antagonists

TBA
22
Acidic phenols: a new class of potent nonpeptide angiotensin II receptor antagonists

TBA
12
Subtituted phenylthiophene benzoylsulfonamides with potent binding affinity to angiotensin II AT
1 and AT
2 receptors

TBA
13
Substituted 4H-pyrido[1,2-a]pyrimidin-4-one angiotensin II receptor antagonists.

TBA
13
Angiotensin II receptor antagonists: imidazoles and pyrroles bearing hydroxymethyl and carboxy substituents

TBA
21
Imidazo[4,5-b]pyridine-based AT
1 / AT
2 angiotensin II receptor antagonists

TBA
12
New non-peptide angiotensin II receptor antagonists. 2: structure - activity relationship of a series of annelated 2(1H)-pyridinones

TBA
12
Triazolinones as nonpeptide angiotensin II antagonists. 2. discovery of a potent and orally active triazolinone acylsulfonamide

TBA
5
Angiotensin II receptor antagonists containing a phenylpyridine element.

TBA
36
Quinazolinones 2: QSAR and in vivo characterization of AT1 selective AII antagonists

TBA
23
Quinazolinones 1: design and synthesis of potent quinazolinone- containing AT
1-selective angiotensin-II receptor antagonists

TBA
7
Substituted pyrrolidin-2-one biphenyltetrazoles as angiotensin II antagonists

TBA
28
Synthesis and structure-activity relationships of a novel series of non-peptide AT
2-selective angiotensin II receptor antagonists

TBA
17
Substituted piperidin-2-one biphenyltetrazoles as angiotensin II antagonists

TBA
5
Synthesis and biological activities of novel nonpeptide angiotensin II receptor antagonists based on benzimidazole derivatives bearing a heterocyclic ring.

Chinese Academy of Sciences
25
Selective angiotensin II AT2 receptor agonists: Benzamide structure-activity relationships.

Uppsala University
12
Identification of a Chemical Probe for BLT2 Activation by Scaffold Hopping.

Fraunhofer Institute for Translational Medicine and Pharmacology ITMP
2
The Discovery and Preclinical Profile of ALG-000184, a Prodrug of the Potent Hepatitis B Virus Capsid Assembly Modulator ALG-001075.

Aligos Belgium BV
9
Synthesis and Pharmacological Characterization of Fluorescent Ligands Targeting the Angiotensin II Receptors Derived from Agonists, β-Arrestin-Biased Agonists, and Antagonists.

Universite de Lorraine
22
Emerging opportunities to treat idiopathic pulmonary fibrosis: Design, discovery, and optimizations of small-molecule drugs targeting fibrogenic pathways.

Institute of Respiratory Health
19
N-(Heteroaryl)thiophene sulfonamides as angiotensin AT2 receptor ligands.

Uppsala University
13
Synthesis and biological activity of 2-alkylbenzimidazoles bearing a N-phenylpyrrole moiety as novel angiotensin II AT1 receptor antagonists.

China Pharmaceutical University
1
Synthesis and evaluation of imidazo[1,2-a]pyrazine derivatives as small molecule Gαq/11 inhibitors against uveal melanoma.

Sun Yat-Sen University
13
Design, synthesis and biological evaluation of novel indole-3-carboxylic acid derivatives with antihypertensive activity.

Lomonosov Moscow State University
6
Further studies on imidazo[4,5-b]pyridine AT1 angiotensin II receptor antagonists. Effects of the transformation of the 4-phenylquinoline backbone into 4-phenylisoquinolinone or 1-phenylindene scaffolds.

Università
17
Pyrazole-containing pharmaceuticals: target, pharmacological activity, and their SAR studies.

Tianjin University
23
2-Alkyl substituted benzimidazoles as a new class of selective AT2 receptor ligands.

Uppsala University
5
Quercetin derivatives: Drug design, development, and biological activities, a review.

Mazandaran University of Medical Sciences
31
Angiotensin II AT2 receptor ligands with phenylthiazole scaffolds.

Uppsala University
3
Selective Discovery of GPCR Ligands within DNA-Encoded Chemical Libraries Derived from Natural Products: A Case Study on Antagonists of Angiotensin II Type I Receptor.

Northwest University
14
Discovery of Irbesartan Derivatives as BLT2 Agonists by Virtual Screening.

Fraunhofer Institute For Translational Medicine and Phamacology Itmp
6
Recognition of privileged structures by G-protein coupled receptors.

Novo Nordisk
36
Pyrazole Agonist of the Apelin Receptor Improves Symptoms of Metabolic Syndrome in Mice.

Rti International
10
Using conformational constraints at position 6 of Angiotensin II to generate compounds with enhanced AT2R selectivity and proteolytic stability.

Vrije Universiteit Brussel
4
Comparison of 3D structures and AT(1) binding properties of pyrazolidine-3,5-diones and tetrahydropyridazine-3,6-diones with parent antihypertensive drug irbesartan.

Université
5
Discovery of N-isoxazolyl biphenylsulfonamides as potent dual angiotensin II and endothelin A receptor antagonists.

Bristol Myers Squibb
4
Novel human metabolites of the angiotensin-II antagonist tasosartan and their pharmacological effects.

Wyeth Research
12
N-(Methyloxycarbonyl)thiophene sulfonamides as high affinity AT2 receptor ligands.

Uppsala University
37
Identification of potent pyrazole based APELIN receptor (APJ) agonists.

Rti International
21
Synthesis and pharmacological evaluation of new pyrazolidine-3, 5-diones as AT(1) angiotensin II receptor antagonists.

Université
86
Biased Ligands of G Protein-Coupled Receptors (GPCRs): Structure-Functional Selectivity Relationships (SFSRs) and Therapeutic Potential.

Shanghaitech University
11
The Other Angiotensin II Receptor: AT

Centre Hospitalier Universitaire Vaudois (Chuv) and University of Lausanne (Unil
4
Multitarget PPARγ agonists as innovative modulators of the metabolic syndrome.

University of Chieti "G. D.Annunzio
24
Identification of BR101549 as a lead candidate of non-TZD PPARγ agonist for the treatment of type 2 diabetes: Proof-of-concept evaluation and SAR.

Boryung Pharmaceuticals
2
Hydroxyl Groups in Synthetic and Natural-Product-Derived Therapeutics: A Perspective on a Common Functional Group.

University of Basel
42
Discovery of TD-0212, an Orally Active Dual Pharmacology AT

Theravance Biopharma Us
36
Nonpeptide angiotensin II receptor antagonists: synthesis, biological activities, and structure-activity relationships of imidazole-5-carboxylic acids bearing alkyl, alkenyl, and hydroxyalkyl substituents at the 4-position and their related compounds.

Sankyo
3
Benzazaborinines as Novel Bioisosteric Replacements of Naphthalene: Propranolol as an Example.

Janssen Pharmaceutica
43
Discovery of novel, potent and low-toxicity angiotensin II receptor type 1 (AT1) blockers: Design, synthesis and biological evaluation of 6-substituted aminocarbonyl benzimidazoles with a chiral center.

Beijing Institute of Technology
98
Nonpeptide angiotensin II antagonists derived from 4H-1,2,4-triazoles and 3H-imidazo[1,2-b][1,2,4]triazoles.

Merck Research Laboratories
27
New nonpeptide angiotensin II receptor antagonists. 3. Synthesis, biological properties, and structure-activity relationships of 2-alkyl-4-(biphenylylmethoxy)pyridine derivatives.

Zeneca Pharmaceuticals
91
Triazolinones as nonpeptide angiotensin II antagonists. 1. Synthesis and evaluation of potent 2,4,5-trisubstituted triazolinones.

Merck Research Laboratories
29
Non-peptide angiotensin II receptor antagonists. 2. Design, synthesis, and biological activity of N-substituted (phenylamino)phenylacetic acids and acyl sulfonamides.

Merck Research Laboratories
29
Non-peptide angiotensin II receptor antagonists. 1. Design, synthesis, and biological activity of N-substituted indoles and dihydroindoles.

Merck Research Laboratories
13
(Dipropylphenoxy)phenylacetic acids: a new generation of nonpeptide angiotensin II receptor antagonists.

Merck Research Laboratories
57
Nonpeptide angiotensin II antagonists derived from 1H-pyrazole-5-carboxylates and 4-aryl-1H-imidazole-5-carboxylates.

Merck Research Laboratories
9
A potent, orally active, balanced affinity angiotensin II AT1 antagonist and AT2 binding inhibitor.

Merck Research Laboratories
1
Design, synthesis, and biological evaluation of 1,2,4-triazole bearing 5-substituted biphenyl-2-sulfonamide derivatives as potential antihypertensive candidates.

China Pharmaceutical University
101
Triazolinone biphenylsulfonamide derivatives as orally active angiotensin II antagonists with potent AT1 receptor affinity and enhanced AT2 affinity.

Merck Research Laboratories
19
Nonpeptidic angiotensin II AT₁ receptor antagonists derived from 6-substituted aminocarbonyl and acylamino benzimidazoles.

Beijing Institute of Technology
8
A highly potent, orally active imidazo[4,5-b]pyridine biphenylacylsulfonamide (MK-996; L-159,282): a new AT1-selective angiotensin II receptor antagonist.

Merck Research Laboratories
44
Triazolinone biphenylsulfonamides as angiotensin II receptor antagonists with high affinity for both the AT1 and AT2 subtypes.

Merck Research Laboratories
12
Rational design, efficient syntheses and biological evaluation of N,N'-symmetrically bis-substituted butylimidazole analogs as a new class of potent Angiotensin II receptor blockers.

University of Patras
19
Novel angiotensin II receptor antagonists. Design, synthesis, and in vitro evaluation of dibenzo[a,d]cycloheptene and dibenzo[b,f]oxepin derivatives. Searching for bioisosteres of biphenylyltetrazole using a three-dimensional search technique.

Shionogi
54
Potent and orally active angiotensin II receptor antagonists with equal affinity for human AT1 and AT2 subtypes.

Merck Research Laboratories
20
N-3-substituted pyrimidinones as potent, orally active, AT1 selective angiotensin II receptor antagonists.

Istituto Lusofarmaco
17
Beta-homo-amino acid scan of angiotensin IV.

Vrije Universiteit Brussel
11
Fibrogenic Disorders in Human Diseases: From Inflammation to Organ Dysfunction.

Universitaire Vaudois
13
Discovery of the bifunctional modulator of angiotensin II type 1 receptor (AT1R) and PPARγ derived from the AT1R antagonist, Fimasartan.

Boryung Pharmaceuticals
5
Integration of multi-scale molecular modeling approaches with experiments for the in silico guided design and discovery of novel hERG-Neutral antihypertensive oxazalone and imidazolone derivatives and analysis of their potential restrictive effects on cell proliferation.

Bahcesehir University (Bau)
49
Identification and biological evaluation of thiazole-based inverse agonists of RORγt.

Phenex Pharmaceuticals
35
New nonpeptide angiotensin II receptor antagonists. 2. Synthesis, biological properties, and structure-activity relationships of 2-alkyl-4-(biphenylylmethoxy)quinoline derivatives.

Ici Pharmaceuticals Group
29
GLUN2B-SUBUNIT SELECTIVE ANTAGONISTS OF THE N-METHYL-D-ASPARTATE RECEPTORS WITH ENHANCED POTENCY AT ACIDIC PH

Emory University
65
COMPOSITIONS AND METHODS FOR ANTIOXIDANT AND ANTI-INFLAMMATORY THERAPEUTICS

Avanti Biosciences
50
SELECTIVE ESTROGEN RECEPTOR DEGRADERS AND USES THEREOF

Inventisbio
83
Compound exhibiting enteropeptidase inhibitory activity

LG Chem
18
Methods of use of cyclopamine analogs

Infinity Pharmaceuticals
63
Heteroaromatic compounds as BTK inhibitors

Boehringer Ingelheim International
243
Compounds, compositions and methods

Denali Therapeutics
8
EP300/CBP inhibitor

Hinova Pharmaceuticals
16
Thermodynamics of hydrogen bond and hydrophobic interactions in cyclodextrin complexes.

Nih
24
Identification and structure-activity relationships of substituted pyridones as inhibitors of Pim-1 kinase.

Valeant Pharmaceuticals Research and Development
4
Asymmetric synthesis and biological evaluation of the enantiomeric isomers of the immunosuppressive FTY720-phosphate.

Mitsubishi Pharma