PMID
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Article Title
Organization
38
Discovery of a Highly Selective Tankyrase Inhibitor Displaying Growth Inhibition Effects against a Diverse Range of Tumor Derived Cell Lines.

Glaxosmithkline
7
Highly Potent and Isoform Selective Dual Site Binding Tankyrase/Wnt Signaling Inhibitors That Increase Cellular Glucose Uptake and Have Antiproliferative Activity.

University of Bath
10
Structural Basis for Potency and Promiscuity in Poly(ADP-ribose) Polymerase (PARP) and Tankyrase Inhibitors.

Health & Science University
36
Structure-activity relationships of 2-arylquinazolin-4-ones as highly selective and potent inhibitors of the tankyrases.

University of Bath
55
Discovery and Characterization of (8S,9R)-5-Fluoro-8-(4-fluorophenyl)-9-(1-methyl-1H-1,2,4-triazol-5-yl)-2,7,8,9-tetrahydro-3H-pyrido[4,3,2-de]phthalazin-3-one (BMN 673, Talazoparib), a Novel, Highly Potent, and Orally Efficacious Poly(ADP-ribose) Polymerase-1/2 Inhibitor, as an Anticancer Agent.

Biomarin Pharmaceutical
6
Development and structural analysis of adenosine site binding tankyrase inhibitors.

University of Oulu
61
Discovery of 2-[1-(4,4-Difluorocyclohexyl)piperidin-4-yl]-6-fluoro-3-oxo-2,3-dihydro-1H-isoindole-4-carboxamide (NMS-P118): A Potent, Orally Available, and Highly Selective PARP-1 Inhibitor for Cancer Therapy.

Nerviano Medical Sciences
33
Discovery of potent and selective nonplanar tankyrase inhibiting nicotinamide mimics.

University of Oulu
3
Design, synthesis, crystallographic studies, and preliminary biological appraisal of new substituted triazolo[4,3-b]pyridazin-8-amine derivatives as tankyrase inhibitors.

University of Perugia
2
Development of novel dual binders as potent, selective, and orally bioavailable tankyrase inhibitors.

Amgen
3
Structure-based design of 2-aminopyridine oxazolidinones as potent and selective tankyrase inhibitors.

Amgen
4
Discovery of tankyrase inhibiting flavones with increased potency and isoenzyme selectivity.

University of Oulu
7
Structure-efficiency relationship of [1,2,4]triazol-3-ylamines as novel nicotinamide isosteres that inhibit tankyrases.

Novartis Institutes For Biomedical Research
42
Identification of NVP-TNKS656: the use of structure-efficiency relationships to generate a highly potent, selective, and orally active tankyrase inhibitor.

Novartis Institutes For Biomedical Research
12
One-pot tandem Hurtley-retro-Claisen-cyclisation reactions in the synthesis of 3-substituted analogues of 5-aminoisoquinolin-1-one (5-AIQ), a water-soluble inhibitor of PARPs.

University of Bath
5
Discovery of novel, induced-pocket binding oxazolidinones as potent, selective, and orally bioavailable tankyrase inhibitors.

Amgen
2
Fragment-based ligand design of novel potent inhibitors of tankyrases.

Nanyang Technological University
4
Discovery of a class of novel tankyrase inhibitors that bind to both the nicotinamide pocket and the induced pocket.

Amgen
9
Structural basis of selective inhibition of human tankyrases.

Abo Akademi University
27
[1,2,4]triazol-3-ylsulfanylmethyl)-3-phenyl-[1,2,4]oxadiazoles: antagonists of the Wnt pathway that inhibit tankyrases 1 and 2 via novel adenosine pocket binding.

Novartis Institutes For Biomedical Research
23
5-Benzamidoisoquinolin-1-ones and 5-(κ-carboxyalkyl)isoquinolin-1-ones as isoform-selective inhibitors of poly(ADP-ribose) polymerase 2 (PARP-2).

University of Bath
27
Evolution of poly(ADP-ribose) polymerase-1 (PARP-1) inhibitors. From concept to clinic.

Johns Hopkins University Brain Science Institute
29
Discovery of 2-{4-[(3S)-piperidin-3-yl]phenyl}-2H-indazole-7-carboxamide (MK-4827): a novel oral poly(ADP-ribose)polymerase (PARP) inhibitor efficacious in BRCA-1 and -2 mutant tumors.

Irbm/Merck Research Laboratories
30
Optimization of phenyl-substituted benzimidazole carboxamide poly(ADP-ribose) polymerase inhibitors: identification of (S)-2-(2-fluoro-4-(pyrrolidin-2-yl)phenyl)-1H-benzimidazole-4-carboxamide (A-966492), a highly potent and efficacious inhibitor.

Abbott Laboratories
47
Discovery and SAR of novel, potent and selective hexahydrobenzonaphthyridinone inhibitors of poly(ADP-ribose)polymerase-1 (PARP-1).

Irbm-Merck Research Laboratories Rome
25
Identification of aminoethyl pyrrolo dihydroisoquinolinones as novel poly(ADP-ribose) polymerase-1 inhibitors.

Irbm-Merck Research Laboratories Rome
22
Design and Synthesis of PARP/CDK6 Dual-Target Inhibitors Modulating of Wnt/β-Catenin Signaling Pathway for the Treatment of BRCA Wild-Type TNBC.

China Pharmaceutical University
24
Discovery and Optimization of Potent and Highly Selective PARP14 Inhibitors for the Treatment of Atopic Dermatitis.

China Pharmaceutical University
54
Combination therapy and dual-target inhibitors based on cyclin-dependent kinases (CDKs): Emerging strategies for cancer therapy.

Southwest Jiaotong University
4
Discovery of PARP1-Sparing Inhibitors for Protein ADP-Ribosylation.

University of Southern California
36
An update on small molecule compounds targeting synthetic lethality for cancer therapy.

Sichuan University
4
Discovery of novel benzoxazole analogues as potential anticancer agent selectively targeting aromatase.

Commerce and Science College
15
Design, Synthesis, and Pharmacodynamic Evaluation of Highly Selective PARP1 Inhibitors with Brain Penetrance.

Sichuan University
13
The Potential of PARP Inhibitors as Antitumor Drugs and the Perspective of Molecular Design.

Qingdao University of Science and Technology
42
Discovery of Pyrazolo[1,5,4-de]quinoxalin-2(3H)-one Derivatives as Highly Potent and Selective PARP1 Inhibitors.

Haihe Biopharma Co., Ltd
25
Discovery of 6-Fluoro-5-{4-[(5-fluoro-2-methyl-3-oxo-3,4-dihydroquinoxalin-6-yl)methyl]piperazin-1-yl}-N-methylpyridine-2-carboxamide (AZD9574): A CNS-Penetrant, PARP1-Selective Inhibitor.

AstraZeneca
2
Carbamoylation at C-8 position of natural 3-arylcoumarin scaffold for the discovery of novel PARP-1 inhibitors with potent anticancer activity.

Sun Yat-sen University
14
Exploring the structural-activity relationship of hexahydropyrazino[1,2-d]pyrido[3,2-b][1,4]oxazine derivatives as potent and orally-bioavailable PARP7 inhibitors.

Guizhou University
7
Discovery of a novel dual-target inhibitor of CDK12 and PARP1 that induces synthetic lethality for treatment of triple-negative breast cancer.

Southwest Jiaotong University
46
Quinazolines annelated at the N(3)-C(4) bond: Synthesis and biological activity.

Ural Federal University
6
Dual-target inhibitors of colchicine binding site for cancer treatment.

Henan University
25
Poly (ADP-ribose) polymerase (PARP) inhibitors as anticancer agents: An outlook on clinical progress, synthetic strategies, biological activity, and structure-activity relationship.

Acharya & BM Reddy College of Pharmacy
4
Leveraging a rationally designed veliparib-based anilide eliciting anti-leukemic effects for the design of pH-responsive polymer nanoformulation.

Taipei Medical University
14
Discovery of tricyclic PARP7 inhibitors with high potency, selectivity, and oral bioavailability.

Hubei Polytechnic University
10
Discovery of Highly Selective PARP7 Inhibitors with a Novel Scaffold for Cancer Immunotherapy.

China Pharmaceutical University
36
Pyrrole-containing hybrids as potential anticancer agents: An insight into current developments and structure-activity relationships.

Jiangxi Science & Technology Normal University
22
Design, Synthesis, and Structure-Activity Relationship of Novel Pyridazinone-Based PARP7/HDACs Dual Inhibitors for Elucidating the Relationship between Antitumor Immunity and HDACs Inhibition.

Hangzhou Normal University
17
Discovery and Proof of Concept of Potent Dual Polθ/PARP Inhibitors for Efficient Treatment of Homologous Recombination-Deficient Tumors.

China Pharmaceutical University
41
Advancements in dual-target inhibitors of PI3K for tumor therapy: Clinical progress, development strategies, prospects.

Sichuan University
10
Design of Selective PARP-1 Inhibitors and Antitumor Studies.

Shandong University
7
Synthesis and clinical application of small-molecule drugs approved to treat prostatic cancer.

Zhengzhou Normal University
7
Advances in Development of Selective Antitumor Inhibitors That Target PARP-1.

Shandong University
45
Discovery of Quinazoline-2,4(1

Chinese Academy of Medical Sciences and Peking Union Medical College
3
Expanding the Role of Boron in New Drug Chemotypes: Properties, Chemistry, Pharmaceutical Potential of Hemiboronic Naphthoids.

University of Alberta
33
YCH1899, a Highly Effective Phthalazin-1(2

Shanghai Institute of Materia Medica
5
Discovery of novel benzamide derivatives bearing benzamidophenyl and phenylacetamidophenyl scaffolds as potential antitumor agents via targeting PARP-1.

Sun Yat-Sen University
34
A decade of approved first-in-class small molecule orphan drugs: Achievements, challenges and perspectives.

China Pharmaceutical University
54
Discovery, Synthesis, and Evaluation of Novel Dual Inhibitors of a Vascular Endothelial Growth Factor Receptor and Poly(ADP-Ribose) Polymerase for BRCA Wild-Type Breast Cancer Therapy.

Sichuan University
36
[1,2,4]Triazolo[3,4-

University of Oulu
13
Discovery of the Potent and Highly Selective PARP7 Inhibitor as a Novel Immunotherapeutic Agent for Tumors.

China Pharmaceutical University
14
An Update on Poly(ADP-ribose)polymerase-1 (PARP-1) Inhibitors: Opportunities and Challenges in Cancer Therapy.

Shanghai Institute of Materia Medica
13
Multi-therapies Based on PARP Inhibition: Potential Therapeutic Approaches for Cancer Treatment.

Shandong First Medical University and Shandong Academy of Medical Sciences
20
The ups and downs of Poly(ADP-ribose) Polymerase-1 inhibitors in cancer therapy-Current progress and future direction.

Central South University
24
Optimization of a Screening Hit toward M2912, an Oral Tankyrase Inhibitor with Antitumor Activity in Colorectal Cancer Models.

Merck
42
Fused-azepinones: Emerging scaffolds of medicinal importance.

National Institute of Pharmaceutical Education and Research (NIPER)
44
Small-Molecule Inhibitors Targeting the Canonical WNT Signaling Pathway for the Treatment of Cancer.

Ocean University of China
30
Small-Molecule Drug Discovery in Triple Negative Breast Cancer: Current Situation and Future Directions.

Sichuan University
25
Therapeutic progression of quinazolines as targeted chemotherapeutic agents.

Panjab University
6
Discovery of 4-Hydroxyquinazoline Derivatives as Small Molecular BET/PARP1 Inhibitors That Induce Defective Homologous Recombination and Lead to Synthetic Lethality for Triple-Negative Breast Cancer Therapy.

West China Hospital of Sichuan University
2
Selective degradation of PARP2 by PROTACs via recruiting DCAF16 for triple-negative breast cancer.

West China Hospital of Sichuan University
28
Synthesis and in vitro biological evaluation of 3-ethyl-1,5-naphthyridin-2(1H)-one derivatives as potent PARP-1 selective inhibitors and PARP-1 DNA trappers.

China Pharmaceutical University
25
Discovery of 5-{4-[(7-Ethyl-6-oxo-5,6-dihydro-1,5-naphthyridin-3-yl)methyl]piperazin-1-yl}-

AstraZeneca
11
Dual-target inhibitors of poly (ADP-ribose) polymerase-1 for cancer therapy: Advances, challenges, and opportunities.

West China Hospital
9
Structure-based design, synthesis, and evaluation of inhibitors with high selectivity for PARP-1 over PARP-2.

Shenyang Pharmaceutical University
56
Recent advances in DDR (DNA damage response) inhibitors for cancer therapy.

Hubei Polytechnic University
9
Small-molecule inhibitors of breast cancer-related targets: Potential therapeutic agents for breast cancer.

Shandong First Medical University & Shandong Academy of Medical Sciences
37
Medicinal Chemistry Perspective on Targeting Mono-ADP-Ribosylating PARPs with Small Molecules.

University of Perugia
8
Rational design, synthesis and biological evaluation of dual PARP-1/2 and TNKS1/2 inhibitors for cancer therapy.

Nanjing University
27
Potent 2,3-dihydrophthalazine-1,4-dione derivatives as dual inhibitors for mono-ADP-ribosyltransferases PARP10 and PARP15.

University of Perugia
18
Small-Molecule Inhibitors of Tankyrases as Prospective Therapeutics for Cancer.

University of South Australia
7
Rational design of selective inhibitors of PARP4.

Initial Therapeutics
8
Analogs of TIQ-A as inhibitors of human mono-ADP-ribosylating PARPs.

University of Oulu
19
Discovery of Potent and Novel Dual PARP/BRD4 Inhibitors for Efficient Treatment of Pancreatic Cancer.

China Pharmaceutical University
39
Discovery of Quinazoline-2,4(1

Peking Union Medical College
33
Development of a 1,2,4-Triazole-Based Lead Tankyrase Inhibitor: Part II.

Symeres
59
Discovery of Novel Apigenin-Piperazine Hybrids as Potent and Selective Poly (ADP-Ribose) Polymerase-1 (PARP-1) Inhibitors for the Treatment of Cancer.

China Pharmaceutical University
18
Discovery of novel and potent PARP/PI3K dual inhibitors for the treatment of cancer.

China Pharmaceutical University
5
Discovery of Novel Bromophenol-Thiosemicarbazone Hybrids as Potent Selective Inhibitors of Poly(ADP-ribose) Polymerase-1 (PARP-1) for Use in Cancer.

Chinese Academy of Sciences
4
Discovery of novel PARP/PI3K dual inhibitors with high efficiency against BRCA-proficient triple negative breast cancer.

China Pharmaceutical University
61
Discovery of Pamiparib (BGB-290), a Potent and Selective Poly (ADP-ribose) Polymerase (PARP) Inhibitor in Clinical Development.

TBA
29
Identification of 2-substituted pyrrolo[1,2-b]pyridazine derivatives as new PARP-1 inhibitors.

Central South University
17
Discovery of isoquinolinone and naphthyridinone-based inhibitors of poly(ADP-ribose) polymerase-1 (PARP1) as anticancer agents: Structure activity relationship and preclinical characterization.

Lupin
27
Preclinical Lead Optimization of a 1,2,4-Triazole Based Tankyrase Inhibitor.

University of Oslo
9
From PARP1 to TNKS2 Inhibition: A Structure-Based Approach.

University of Naples
18
Medicinal chemistry approaches of poly ADP-Ribose polymerase 1 (PARP1) inhibitors as anticancer agents - A recent update.

Nirma University
4
Discovery of Stereospecific PARP-1 Inhibitor Isoindolinone NMS-P515.

Nerviano Medical Sciences
17
Novel tricyclic poly (ADP-ribose) polymerase-1/2 inhibitors with potent anticancer chemopotentiating activity: Design, synthesis and biological evaluation.

China Pharmaceutical University
57
Discovery of Novel Spiroindoline Derivatives as Selective Tankyrase Inhibitors.

Riken
20
Discovery of Novel Dual Poly(ADP-ribose)polymerase and Phosphoinositide 3-Kinase Inhibitors as a Promising Strategy for Cancer Therapy.

TBA
30
Synthesis and biological activity of structurally diverse phthalazine derivatives: A systematic review.

Y. B. Chavan College of Pharmacy
36
Design and Discovery of an Orally Efficacious Spiroindolinone-Based Tankyrase Inhibitor for the Treatment of Colon Cancer.

Japanese Foundation For Cancer Research
28
Discovery and Optimization of 2-Arylquinazolin-4-ones into a Potent and Selective Tankyrase Inhibitor Modulating Wnt Pathway Activity.

Merck Healthcare
25
Rational Design of Cell-Active Inhibitors of PARP10.

Oregon Health and Science University
22
Discovery of AZ0108, an orally bioavailable phthalazinone PARP inhibitor that blocks centrosome clustering.

AstraZeneca
63
Design and Synthesis of Poly(ADP-ribose) Polymerase Inhibitors: Impact of Adenosine Pocket-Binding Motif Appendage to the 3-Oxo-2,3-dihydrobenzofuran-7-carboxamide on Potency and Selectivity.

St. John'S University
25
4-(Phenoxy) and 4-(benzyloxy)benzamides as potent and selective inhibitors of mono-ADP-ribosyltransferase PARP10/ARTD10.

University of Oulu
8
Targeting Wnt-driven cancers: Discovery of novel tankyrase inhibitors.

University of Perugia
34
Design and synthesis of 2-(4,5,6,7-tetrahydrothienopyridin-2-yl)-benzoimidazole carboxamides as novel orally efficacious Poly(ADP-ribose)polymerase (PARP) inhibitors.

Chinese Academy of Sciences
23
Design, synthesis and evaluation of potent and selective inhibitors of mono-(ADP-ribosyl)transferases PARP10 and PARP14.

Mcdaniel College
26
Discovery of novel quinazoline-2,4(1H,3H)-dione derivatives as potent PARP-2 selective inhibitors.

Peking Union Medical College
6
Olaparib hydroxamic acid derivatives as dual PARP and HDAC inhibitors for cancer therapy.

Tsinghua University
5
Discovery of a Novel Series of Tankyrase Inhibitors by a Hybridization Approach.

Leibniz-Forschungsinstitut F�R Molekulare Pharmakologie (Fmp)
59
Discovery of 2-substituted 1H-benzo[d]immidazole-4-carboxamide derivatives as novel poly(ADP-ribose)polymerase-1 inhibitors with in vivo anti-tumor activity.

Peking Union Medical College
101
DPP9 BINDING COMPOUNDS

Universiteit Antwerpen
108
SUBSTITUTED HETEROCYCLIC COMPOUND DERIVATIVES AND THEIR PHARMACEUTICAL USE

Avelos Therapeutics
29
HSD17B13 INHIBITORS

Boehringer Ingelheim International
114
GLP-1R MODULATING COMPOUNDS

Gilead Sciences
139
Substituted amino triazolopyrimidine and amino triazolopyrazine adenosine receptor antagonists, pharmaceutical compositions and their use

Merck Sharp & Dohme
70
Rho-associated protein kinase inhibitor, pharmaceutical composition comprising same, and use thereof

Beijing Tide Pharmaceutical
36
Pyridopyrimidinone derivatives for use as AXL inhibitors

Oscotec
136
METTL3 INHIBITOR COMPOUND, AND PHARMACEUTICAL COMPOSITION AND USE THEREOF

Global Health Drug Discovery Institute
10
COMPOUND AS KIF18A INHIBITOR

Hangzhou Innogate Pharma
5
Inhibitors of guanosine monophosphate synthetase as therapeutic agents

University of Southern California
7
Pyrrolopyrimidine derivative and use thereof

Wuhan Humanwell Innovative Drug Research and Development Center
2
SHP2 phosphatase allosteric inhibitor

Beijing Shenogen Pharma Group
29
HETEROBIVALENT AND HOMOBIVALENT AGENTS TARGETING FIBROBLAST ACTIVATION PROTEIN ALPHA AND/OR PROSTATE-SPECIFIC MEMBRANE ANTIGEN

The Johns Hopkins University
28
NEW PYRIDO DIAZEPINE DERIVATIVES AS GABA A GAMMA1 PAM

Hoffmann-La Roche
14
MODULATORS OF SORTILIN ACTIVITY

Insusense
92
Inhibtors of Raf kinases

Kinnate Biopharma
48
2-amino-N-(arylsulfinyl)-acetamide compounds as inhibitors of bacterial aminoacyl-tRNA synthetase

Oxford Drug Design
30
Substituted pyridines as PARP1 inhibitors

Xinthera
94
Inhibitors of VAP-1

Acucela
2
Solid forms of a plasma kallikrein inhibitor and salts thereof

Kalvista Pharmaceuticals
118
Mitogen-activated protein kinase inhibitors, methods of making, and methods of use thereof

Washington University
56
7-AZOLE SUBSTITUTED 2-AMINOQUINAZOLINE INHIBITORS OF HPK1

Merck Sharp &Amp
7
Tetrahydroquinoline-based bromodomain inhibitors

St. Jude Children'S Research Hospital
2
1,8-naphthyridinone compounds and uses thereof

Nuvation Bio
303
Isoquinolin-3-yl carboxamides and preparation and use thereof

Samumed
32
Pyrido[2,3-d]pyrimidin-4-one compounds as tankyrase inhibitors

Eli Lilly
207
Compounds and methods for kinase modulation, and indications therefor

Plexxikon
77
Kinase inhibitors

University of California
50
Quinoline derivatives as PDE10A enzyme inhibitors

H. Lundbeck
2
Morpholine derivative

Shanghai Pharmaceuticals Holding
6
Bivalent diazo bicyclic Smac mimetics and the uses thereof

University of Michigan
20
Discovery of HIV-1 integrase inhibitors: pharmacophore mapping, virtual screening, molecular docking, synthesis, and biological evaluation.

Nirma University
7
Solution-phase parallel synthesis of carbamates as gamma-secretase inhibitors.

Schering-Plough Research Institute
7
Design, synthesis, and biological evaluation of new 3-hydroxy-2-oxo-3-trifluoromethylindole as potential HIV-1 reverse transcriptase inhibitors

Instituto De Tecnologia Em Fa��Rmacos
9
Probing the active site of the deoxynucleotide N-hydrolase Rcl encoded by the rat gene c6orf108.

Institut Pasteur
4
Discovery of PDK1 kinase inhibitors with a novel mechanism of action by ultrahigh throughput screening.

Merck Research Laboratories
3
Preclinical profile of ciclesonide, a novel corticosteroid for the treatment of asthma.

Imperial College
2
The novel melatonin agonist agomelatine (S20098) is an antagonist at 5-hydroxytryptamine2C receptors, blockade of which enhances the activity of frontocortical dopaminergic and adrenergic pathways.

Institut De Recherches Servier
1
ABT-702 (4-amino-5-(3-bromophenyl)-7-(6-morpholinopyridin-3-yl)pyrido[2, 3-d]pyrimidine), a novel orally effective adenosine kinase inhibitor with analgesic and anti-inflammatory properties: I. In vitro characterization and acute antinociceptive effects in the mouse.

Abbott Laboratories
17
[125I][Tyr3]octreotide labels human somatostatin sst2 and sst5 receptors.

Novartis Pharma
16
Characterization of [3H]quinpirole binding to D2-like dopamine receptors in rat brain.

Dupont Pharmaceuticals
56
Discovery, structure-activity relationship, and pharmacological evaluation of (5-substituted-pyrrolidinyl-2-carbonyl)-2-cyanopyrrolidines as potent dipeptidyl peptidase IV inhibitors.

Abbott Laboratories