Page last updated: 2024-12-11

iniparib

Description Research Excerpts Clinical Trials Roles Classes Pathways Study Profile Bioassays Related Drugs Related Conditions Protein Interactions Research Growth Market Indicators

Cross-References

ID SourceID
PubMed CID9796068
CHEMBL ID1170047
CHEBI ID95067
SCHEMBL ID242006
SCHEMBL ID15427439
MeSH IDM0239671

Synonyms (63)

Synonym
HY-12015
c7h5in2o3
nsc-746045
bsi-201
niba
ind-71677
sar-240550
iniparib ,
ino2ba
160003-66-7
CHEMBL1170047
4-iodo-3-nitrobenzamide
iniparib (usan/inn)
D09913
benzamide, 4-iodo-3-nitro-
unii-2zwi7khk8f
2zwi7khk8f ,
iniparib [usan:inn]
sar240550
BCP9000455
4-iodo-3-nitro-benzamide;bsi-201
iniparib (bsi-201) ,
AM803278
FT-0670350
bsi201
bsi 201
BCPP000313
NCGC00263096-01
CS-0145
S1087
AKOS015853763
BRD-K11153516-001-01-4
4-iodo-5-nitro-benzamide
MDOJTZQKHMAPBK-UHFFFAOYSA-N
SCHEMBL242006
33e ,
smr004701226
MLS006010066
iniparib [usan]
iniparib [inn]
iniparib [who-dd]
iniparib [mi]
SCHEMBL15427439
gtpl8360
AC-26931
DTXSID30166784
4TKI
J-515558
mfcd11110639
GS-4311
CHEBI:95067
HMS3654K17
SW218112-2
AKOS032949733
DB13877
Q260286
BCP01784
HMS3426C05
CCG-264813
4-oxo-1,4-dihydro-quinoline-6-carboxylicacid
nsc752493
nsc-752493
SY109195

Research Excerpts

Overview

Iniparib (BSI-201) is an intravenously administered PARP1 inhibitor under development by BiPar Sciences Inc. It is a prodrug that converts to highly reactive cytotoxic metabolites intracellularly with activity in preclinical glioma models.

ExcerptReferenceRelevance
"Iniparib is a purported prodrug causing cell death through intracellular conversion to nitro radical ions. "( Phase II Study of Iniparib with Concurrent Chemoradiation in Patients with Newly Diagnosed Glioblastoma.
Ahluwalia, MS; Blakeley, JO; Chi, AS; Desideri, S; Eichler, A; Grossman, SA; Mikkelsen, T; Nabors, LB; Ribas, IG; Rosenfeld, MR; Ye, X, 2019
)
2.29
"Iniparib was purported to be a PARP inhibitor that showed promising results in randomized phase II trials in patients with triple-negative breast cancer."( Appraising iniparib, the PARP inhibitor that never was--what must we learn?
de Bono, JS; Gonzalez, MA; Mateo, J; Ong, M; Tan, DS, 2013
)
1.5
"Iniparib is a novel anticancer agent initially considered a poly (ADP-ribose) polymerase (PARP) inhibitor, but subsequently shown to act via non-selective protein modification through cysteine adducts. "( A phase II randomized study evaluating the addition of iniparib to gemcitabine plus cisplatin as first-line therapy for metastatic non-small-cell lung cancer.
Barlesi, F; Besse, B; Cappuzzo, F; Carcereny, E; Felip, E; Ferry, D; Garcia-Ribas, I; Mazieres, J; Novello, S; Reck, M; Santoro, A; Scagliotti, G; Soria, JC; von Pawel, J; Zalcman, G, 2014
)
2.09
"Iniparib is a prodrug that converts to highly reactive cytotoxic metabolites intracellularly with activity in preclinical glioma models. "( Phase I study of iniparib concurrent with monthly or continuous temozolomide dosing schedules in patients with newly diagnosed malignant gliomas.
Blakeley, JO; Chi, AS; Desideri, S; Emmons, G; Garcia Ribas, I; Grossman, SA; Mikkelsen, T; Nabors, LB; Peereboom, D; Rosenfeld, MR; Supko, JG; Ye, X, 2015
)
2.2
"Iniparib is an investigational agent with antitumor activity of controversial mechanism of action. "( SOLTI NeoPARP: a phase II randomized study of two schedules of iniparib plus paclitaxel versus paclitaxel alone as neoadjuvant therapy in patients with triple-negative breast cancer.
Amillano, K; Aura, C; Balmaña, J; Baselga, J; Bermejo, B; Bonnefoi, H; Casas, A; Charpentier, E; Delaloge, S; Di Cosimo, S; Garcia-Ribas, I; Gavilá, J; Gonzalez-Santiago, S; Harbeck, N; Llombart-Cussac, A; Manso, L; Morales, S; Radosevic-Robin, N; Roché, H; Sánchez-Rovira, P; Villanueva, C, 2015
)
2.1
"Iniparib (BSI-201) is an intravenously administered PARP1 inhibitor under development by BiPar Sciences Inc, a subsidiary of sanofi-aventis, under license from Octamer Inc, for the potential treatment of cancer."( Iniparib, a PARP1 inhibitor for the potential treatment of cancer, including triple-negative breast cancer.
Liang, H; Tan, AR, 2010
)
2.52
"Iniparib (BSI-201) is a targeted drug currently under investigation."( A review of iniparib in ovarian cancer.
Mutch, D; Wilkinson-Ryan, I, 2013
)
1.48

Pharmacokinetics

ExcerptReferenceRelevance
" Due to strong similarities in metabolism of iniparib between humans and dogs, a veterinary clinical trial in pet dogs with spontaneous cancers was designed to answer specific questions pertaining to pharmacokinetic exposures and tolerability of iniparib."( A Comparative Oncology Study of Iniparib Defines Its Pharmacokinetic Profile and Biological Activity in a Naturally-Occurring Canine Cancer Model.
Allstadt, S; Borgatti, A; Burgess, K; Burton, JH; Charles, B; Ehrhart, EJ; Gordon, I; Henry, C; Kent, M; Khanna, C; Kisseberth, W; Lana, S; Lawrence, J; LeBlanc, AK; Mazcko, C; Paoloni, M; Saba, C; Smith, A; Suter, S; Vail, D; Vrignaud, P; Wilson-Robles, H; Woods, P, 2016
)
0.98

Compound-Compound Interactions

ExcerptReferenceRelevance
"E-ras 20 tumorigenic malignant cells and CV-1 non-tumorigenic cells were treated with a drug combination of 4-iodo-3-nitrobenzamide (INO(2)BA) and buthionine sulfoximine (BSO)."( Anti-cancer action of 4-iodo-3-nitrobenzamide in combination with buthionine sulfoximine: inactivation of poly(ADP-ribose) polymerase and tumor glycolysis and the appearance of a poly(ADP-ribose) polymerase protease.
Bauer, PI; Buki, KG; Comstock, JA; Hakam, A; Kirsten, E; Kun, E; Mendeleyeva, J, 2002
)
0.31

Bioavailability

ExcerptReferenceRelevance
"The ATP-binding cassette transporter P-glycoprotein (P-gp) is known to limit both brain penetration and oral bioavailability of many chemotherapy drugs."( A High-Throughput Screen of a Library of Therapeutics Identifies Cytotoxic Substrates of P-glycoprotein.
Ambudkar, SV; Brimacombe, KR; Chen, L; Gottesman, MM; Guha, R; Hall, MD; Klumpp-Thomas, C; Lee, OW; Lee, TD; Lusvarghi, S; Robey, RW; Shen, M; Tebase, BG, 2019
)
0.51

Dosage Studied

ExcerptRelevanceReference
" We investigated the maximum tolerated dose (MTD) of iniparib with monthly (m) and continuous (c) temozolomide (TMZ) dosing schedules in patients with malignant gliomas (MG)."( Phase I study of iniparib concurrent with monthly or continuous temozolomide dosing schedules in patients with newly diagnosed malignant gliomas.
Blakeley, JO; Chi, AS; Desideri, S; Emmons, G; Garcia Ribas, I; Grossman, SA; Mikkelsen, T; Nabors, LB; Peereboom, D; Rosenfeld, MR; Supko, JG; Ye, X, 2015
)
1.01
" Dosing optimization (frequency and sequence) is needed prior to additional efficacy studies."( Phase II Study of Iniparib with Concurrent Chemoradiation in Patients with Newly Diagnosed Glioblastoma.
Ahluwalia, MS; Blakeley, JO; Chi, AS; Desideri, S; Eichler, A; Grossman, SA; Mikkelsen, T; Nabors, LB; Ribas, IG; Rosenfeld, MR; Ye, X, 2019
)
0.85
[information is derived through text-mining from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Drug Classes (2)

ClassDescription
carbonyl compoundAny compound containing the carbonyl group, C=O. The term is commonly used in the restricted sense of aldehydes and ketones, although it actually includes carboxylic acids and derivatives.
organohalogen compoundA compound containing at least one carbon-halogen bond (where X is a halogen atom).
[compound class information is derived from Chemical Entities of Biological Interest (ChEBI), Hastings J, Owen G, Dekker A, Ennis M, Kale N, Muthukrishnan V, Turner S, Swainston N, Mendes P, Steinbeck C. (2016). ChEBI in 2016: Improved services and an expanding collection of metabolites. Nucleic Acids Res]

Protein Targets (2)

Potency Measurements

ProteinTaxonomyMeasurementAverage (µ)Min (ref.)Avg (ref.)Max (ref.)Bioassay(s)
EWS/FLI fusion proteinHomo sapiens (human)Potency8.33280.001310.157742.8575AID1259252
tyrosine-protein kinase YesHomo sapiens (human)Potency43.43200.00005.018279.2586AID686947
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Bioassays (56)

Assay IDTitleYearJournalArticle
AID1347094qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for BT-37 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347098qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for SK-N-SH cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347093qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for SK-N-MC cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347092qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for A673 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1346987P-glycoprotein substrates identified in KB-8-5-11 adenocarcinoma cell line, qHTS therapeutic library screen2019Molecular pharmacology, 11, Volume: 96, Issue:5
A High-Throughput Screen of a Library of Therapeutics Identifies Cytotoxic Substrates of P-glycoprotein.
AID1347109qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for NB1643 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347104qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for RD cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347102qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for Rh18 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347124qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for RD cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347126qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for Rh30 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347128qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for OHS-50 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347107qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for Rh30 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347106qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for control Hh wild type fibroblast cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1296008Cytotoxic Profiling of Annotated Libraries Using Quantitative High-Throughput Screening2020SLAS discovery : advancing life sciences R & D, 01, Volume: 25, Issue:1
Cytotoxic Profiling of Annotated and Diverse Chemical Libraries Using Quantitative High-Throughput Screening.
AID1347112qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for BT-12 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347091qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for SJ-GBM2 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347097qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for Saos-2 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1508630Primary qHTS for small molecule stabilizers of the endoplasmic reticulum resident proteome: Secreted ER Calcium Modulated Protein (SERCaMP) assay2021Cell reports, 04-27, Volume: 35, Issue:4
A target-agnostic screen identifies approved drugs to stabilize the endoplasmic reticulum-resident proteome.
AID1347129qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for SK-N-SH cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347127qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for Saos-2 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347110qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for A673 cells)2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347082qHTS for Inhibitors of the Functional Ribonucleoprotein Complex (vRNP) of Lassa (LASV) Arenavirus: LASV Primary Screen - GLuc reporter signal2020Antiviral research, 01, Volume: 173A cell-based, infectious-free, platform to identify inhibitors of lassa virus ribonucleoprotein (vRNP) activity.
AID1347123qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for Rh41 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347095qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for NB-EBc1 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347105qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for MG 63 (6-TG R) cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347100qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for LAN-5 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID686947qHTS for small molecule inhibitors of Yes1 kinase: Primary Screen2013Bioorganic & medicinal chemistry letters, Aug-01, Volume: 23, Issue:15
Identification of potent Yes1 kinase inhibitors using a library screening approach.
AID1347119qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for MG 63 (6-TG R) cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347114qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for DAOY cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347090qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for DAOY cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347115qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for NB-EBc1 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347118qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for TC32 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1346986P-glycoprotein substrates identified in KB-3-1 adenocarcinoma cell line, qHTS therapeutic library screen2019Molecular pharmacology, 11, Volume: 96, Issue:5
A High-Throughput Screen of a Library of Therapeutics Identifies Cytotoxic Substrates of P-glycoprotein.
AID1347122qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for U-2 OS cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347083qHTS for Inhibitors of the Functional Ribonucleoprotein Complex (vRNP) of Lassa (LASV) Arenavirus: Viability assay - alamar blue signal for LASV Primary Screen2020Antiviral research, 01, Volume: 173A cell-based, infectious-free, platform to identify inhibitors of lassa virus ribonucleoprotein (vRNP) activity.
AID1745845Primary qHTS for Inhibitors of ATXN expression
AID1347154Primary screen GU AMC qHTS for Zika virus inhibitors2020Proceedings of the National Academy of Sciences of the United States of America, 12-08, Volume: 117, Issue:49
Therapeutic candidates for the Zika virus identified by a high-throughput screen for Zika protease inhibitors.
AID1347089qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for TC32 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347099qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for NB1643 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347113qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for LAN-5 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347103qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for OHS-50 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347117qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for BT-37 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347111qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for SK-N-MC cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347108qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for Rh41 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347125qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for Rh18 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347121qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for control Hh wild type fibroblast cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347096qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for U-2 OS cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347101qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Primary screen for BT-12 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347116qHTS of pediatric cancer cell lines to identify multiple opportunities for drug repurposing: Confirmatory screen for SJ-GBM2 cells2018Oncotarget, Jan-12, Volume: 9, Issue:4
Quantitative high-throughput phenotypic screening of pediatric cancer cell lines identifies multiple opportunities for drug repurposing.
AID1347086qHTS for Inhibitors of the Functional Ribonucleoprotein Complex (vRNP) of Lymphocytic Choriomeningitis Arenaviruses (LCMV): LCMV Primary Screen - GLuc reporter signal2020Antiviral research, 01, Volume: 173A cell-based, infectious-free, platform to identify inhibitors of lassa virus ribonucleoprotein (vRNP) activity.
AID1745854NCATS anti-infectives library activity on HEK293 viability as a counter-qHTS vs the C. elegans viability qHTS2023Disease models & mechanisms, 03-01, Volume: 16, Issue:3
In vivo quantitative high-throughput screening for drug discovery and comparative toxicology.
AID1347411qHTS to identify inhibitors of the type 1 interferon - major histocompatibility complex class I in skeletal muscle: primary screen against the NCATS Mechanism Interrogation Plate v5.0 (MIPE) Libary2020ACS chemical biology, 07-17, Volume: 15, Issue:7
High-Throughput Screening to Identify Inhibitors of the Type I Interferon-Major Histocompatibility Complex Class I Pathway in Skeletal Muscle.
AID1064828Inhibition of human 6xhis-tagged ARTD5 (1030 to 1317) expressed in Escherichia coli Rosetta2 (DE3) cells using NAD+ as substrate at 0.5 to 10 uM by fluorescence assay2014ACS medicinal chemistry letters, Jan-09, Volume: 5, Issue:1
Evaluation and Structural Basis for the Inhibition of Tankyrases by PARP Inhibitors.
AID492555Half life in human patient at 2.8 mg/kg, iv2010Journal of medicinal chemistry, Jun-24, Volume: 53, Issue:12
Evolution of poly(ADP-ribose) polymerase-1 (PARP-1) inhibitors. From concept to clinic.
AID492554In vivo inhibition of PARP1 in human patient at 2.5 mg/kg, iv2010Journal of medicinal chemistry, Jun-24, Volume: 53, Issue:12
Evolution of poly(ADP-ribose) polymerase-1 (PARP-1) inhibitors. From concept to clinic.
AID977608Experimentally measured binding affinity data (IC50) for protein-ligand complexes derived from PDB2014Acta crystallographica. Section D, Biological crystallography, Oct, Volume: 70, Issue:Pt 10
Insights into the binding of PARP inhibitors to the catalytic domain of human tankyrase-2.
[information is prepared from bioassay data collected from National Library of Medicine (NLM), extracted Dec-2023]

Research

Studies (70)

TimeframeStudies, This Drug (%)All Drugs %
pre-19900 (0.00)18.7374
1990's2 (2.86)18.2507
2000's2 (2.86)29.6817
2010's55 (78.57)24.3611
2020's11 (15.71)2.80
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Market Indicators

Research Demand Index: 29.60

According to the monthly volume, diversity, and competition of internet searches for this compound, as well the volume and growth of publications, there is estimated to be moderate demand-to-supply ratio for research on this compound.

MetricThis Compound (vs All)
Research Demand Index29.60 (24.57)
Research Supply Index4.44 (2.92)
Research Growth Index5.68 (4.65)
Search Engine Demand Index36.71 (26.88)
Search Engine Supply Index2.00 (0.95)

This Compound (29.60)

All Compounds (24.57)

Study Types

Publication TypeThis drug (%)All Drugs (%)
Trials13 (18.31%)5.53%
Reviews17 (23.94%)6.00%
Case Studies1 (1.41%)4.05%
Observational0 (0.00%)0.25%
Other40 (56.34%)84.16%
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Clinical Trials (21)

Trial Overview

TrialPhaseEnrollmentStudy TypeStart DateStatus
A Phase 2, Single Arm Study of BSI-201 in Patients With BRCA-1 or BRCA-2 Associated Advanced Epithelial Ovarian, Fallopian Tube, or Primary Peritoneal Cancer [NCT00677079]Phase 212 participants (Actual)Interventional2008-06-30Completed
An Open-label Study Investigating the Disposition and QT/QTc Interval Effects of 400 mg [14C]-Iniparib(3.7 MBq, 100 µCi) Administered at Cycle 1 as a 60-minute Intravenous Infusion to Patients With Advanced Solid Tumors Followed by Extended Treatment With [NCT01161836]Phase 17 participants (Actual)Interventional2010-07-31Completed
An Open-Label, Expanded Access Protocol of Iniparib in Combination With Gemcitabine/Carboplatin in Patients With ER-, PR-, and HER2-Negative Metastatic Breast Cancer [NCT01130259]0 participants Expanded AccessNo longer available
Randomized, Open-label, Phase 2 Study of the Efficacy and Safety of Weekly Paclitaxel Single-agent and Two Different Regimens of the PARP-1 Inhibitor SAR240550 (BSI-201) in Combination With Weekly Paclitaxel, as Neoadjuvant Therapy in Patients With Stage [NCT01204125]Phase 2141 participants (Actual)Interventional2010-09-30Completed
Randomized Phase 2 Study of Gemcitabine/Cisplatin With or Without SAR240550 (BSI-201), a PARP1 Inhibitor, in Patients With Stage IV Non-small Cell Lung Cancer [NCT01086254]Phase 2119 participants (Actual)Interventional2010-05-31Completed
A Phase II Evaluation of Paclitaxel (Taxol, NSC #673089), Carboplatin (Paraplatin, NSC #241240), and BSI-201 (NSC #746045, IND #71,677) in the Treatment of Advanced, Persistent, or Recurrent Uterine Carcinosarcoma [NCT00687687]Phase 222 participants (Actual)Interventional2008-05-31Completed
A Phase 2, Multi-center, Open-Label, Randomized Trial of Gemcitabine/ Carboplatin, With or Without BSI-201, in Patients With ER, PR and HER2-negative Metastatic Breast Cancer [NCT00540358]Phase 2123 participants (Actual)Interventional2007-10-31Completed
A Phase 2, Multi-Center, Single-Arm Study Evaluating Carboplatin/Gemcitabine in Combination With BSI-201 in Patients With Platinum-Resistant Recurrent Ovarian Cancer [NCT01033292]Phase 243 participants (Actual)Interventional2009-12-31Completed
[NCT00813956]Phase 280 participants (Actual)Interventional2008-12-31Completed
International, Multi-Center, Open-label, Treatment Extension Study of Iniparib as Monotherapy or in Combination Chemotherapeutic Regimens in Cancer Patients Who Have Derived Clinical Benefit From Iniparib Following Completion of a Phase 1, 2 or 3 Parental [NCT01593228]Phase 337 participants (Actual)Interventional2012-05-31Completed
A Phase 3, Multi-Center, Open-Label, Randomized Study of Gemcitabine/Carboplatin, With or Without BSI-201, in Patients With ER-, PR-, and Her2-Negative Metastatic Breast Cancer [NCT00938652]Phase 3519 participants (Actual)Interventional2009-07-31Completed
A Phase I Study Evaluating the Safety and Pharmacokinetics of SAR240550 Administered Twice Weekly in Patients With Advanced Solid Tumors. [NCT01213381]Phase 118 participants (Actual)Interventional2010-09-30Completed
A Phase 2, Multi-Center, Single-Arm Study Evaluating Carboplatin/Gemcitabine in Combination With BSI-201 in Patients With Platinum-Sensitive Recurrent Ovarian Cancer [NCT01033123]Phase 241 participants (Actual)Interventional2009-12-31Completed
A Phase 1/1b Dose Escalation Study Evaluating Iniparib (BSI201/SAR240550) as a Single Agent and in Combination With Chemotherapeutic Regimens in Patients With Solid Tumors [NCT01455532]Phase 159 participants (Actual)Interventional2011-11-30Completed
Multicenter, Randomized, Open Label Study Evaluating a Poly(ADP-ribose) Polymerase-1(PARP-1) Inhibitor, SAR240550 (BSI-201), Administered Twice Weekly or Weekly, in Combination With Gemcitabine/Carboplatin, in Patients With Metastatic Triple Negative Brea [NCT01045304]Phase 2163 participants (Actual)Interventional2010-02-28Completed
Randomized Phase 3 Trial of Gemcitabine/Carboplatin With or Without Iniparib (SAR240550) (a PARP1 Inhibitor) in Subjects With Previously Untreated Stage IV Squamous Non-Small-Cell Lung Cancer (NSCLC) [NCT01082549]Phase 3780 participants (Actual)Interventional2010-03-31Completed
A Phase 1B, Open-Label, Dose Escalation Study Evaluating the Safety of BSI-201 in Combination With Chemotherapeutic Regimens in Subjects With Advanced Solid Tumors [NCT00422682]Phase 1136 participants (Actual)Interventional2007-01-31Completed
A Phase 1/1b Dose Escalation Study Evaluating BSI-201 as a Single Agent and in Combination With Irinotecan in Subjects With Advanced Solid Tumors [NCT00298675]Phase 159 participants (Actual)Interventional2006-03-31Completed
A Phase I Trial Evaluating Concurrent Whole Brain Radiotherapy and Iniparib (BSI-201) in Multiple Non Operable Brain Metastases [NCT01551680]Phase 13 participants (Actual)Interventional2012-09-30Terminated(stopped due to end of study of this product)
Phase I/II Study of the Poly (ADP-ribose) Polymerase-1 (PARP-1) Inhibitor BSI-201 in Patients With Newly Diagnosed Malignant Glioma [NCT00687765]Phase 1/Phase 2126 participants (Actual)Interventional2008-07-31Completed
A Phase II Study of the PARP Inhibitor, INIPARIB (BSI-201), in Combination With Chemotherapy to Treat Triple Negative Breast Cancer Brain Metastasis [NCT01173497]Phase 244 participants (Actual)Interventional2010-07-31Completed
[information is prepared from clinicaltrials.gov, extracted Sep-2024]