Page last updated: 2024-12-04

parathion

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Cross-References

ID SourceID
PubMed CID991
CHEMBL ID261919
CHEBI ID27928
SCHEMBL ID26857
MeSH IDM0015926

Synonyms (267)

Synonym
BIDD:ER0538
CHEBI:27928 ,
phosphorothioic acid, o,o-diethyl o-(4-nitrophenyl) ester
o,o-diethyl o-p-nitrophenyl phosphorothioate
phosphorothioic acid,o-diethyl o-(4-nitrophenyl) ester
o,o-diethyl-o-p-nitrofenylester kyseliny thiofosforecne
o,o-diethyl o-(4-nitrophenyl) phosphorothioate
diethyl parathion
sulphos
diethyl p-nitrophenyl phosphorothionate
phosphorothioic acid,o-diethyl o-(p-nitrophenyl) ester
niuif 100
o,o-dietil-o-(4-nitro-fenil)-monotiofosfato
phenol, 0-ester with 0,0-diethyl phosphorothioate
nsc-8933
0,0-diethyl 0-(p-nitrophenyl) phosphorothioate
thiophosphate de o,o-diethyle et de o-(4-nitrophenyle)
folidol e-605
b 404
o,o-diethyl o-(4-nitrophenyl) thiophosphate
folidol e
tox 47
thiophos parathion 4 e.c.
o,o-diethyl o-(p-nitrophenyl) phosphorothioate
o,o-diethyl o-(p-nitrophenyl) thiophosphate
pacol
o,o-diethyl-o-(4-nitro-fenil)monothiofosfaat
ent 15,108
nsc8933
0,0-diethyl 0-(p-nitrophenyl) thiophosphate
parathion-ethyl
o,o-dietyl-o-p-nitrofenyltiofosfat
etylparation
nci-c00226
wln: wnr dops&o2&o2
o,o-diaethyl-o-(4-nitro-phenyl)-monothiophosphat
compound 3422
bay e-605
t-47
parathion, liquid
stabilized ethyl parathion
nitrostigmine
o,o-diethyl o-(p-nitrophenyl) thionophosphate
e 605
ac 3422
NCGC00090852-02
NCGC00090852-01
dietil tiofosfato de p-nitrofenila [portuguese]
sixty-three special e.c
parathion-aethyl [german]
folidol e & e 605
deoxynucleoside 5'-triphosphate
caswell no. 637
oms 19
phenol, p-nitro-, o-ester with o,o-diethyl phosphorothioate
o,o-dietil-o-(4-nitro-fenil)-monotiofosfato [italian]
o,o-diethyl-o-(4-nitrophenyl) phosphorothioate
etylparation [czech]
ekatin wf & wf ulv
p-nitrophenyl diethyl thiophosphate
na1967
parathion [bsi:iso]
hsdb 197
ekatox 20
o,o-diethyl-o-(4-nitro-fenil)-monothiofosfaat [dutch]
epa pesticide chemical code 057501
parathion 20 wp
o,o-diaethyl-o-(4-nitro-phenyl)-monothiophosphat [german]
o,o-dietyl-o-p-nitrofenyltiofosfat [czech]
rcra waste number p089
phenol, p-nitro-, o-ester with o,o-diethylphosphorothioate
einecs 200-271-7
o,o-diethyl o-4-nitrophenyl thiophosphate
thiophosphate de o,o-diethyle et de o-(4-nitrophenyle) [french]
nsc 8933
o,o-diethyl o-p-nitrophenyl thiophosphate
ccris 493
parathion ethyl
thiofos
brn 2059093
rcra waste no. p089
soprothion
o,o-diethyl o-p-nitrophenylphosphorothioate
ai3-15108
ethylparathion
e-605
phosphorothioic acid, o,o-diethyl o-(p-nitrophenyl) ester
nitrostigmin [german]
ecatox 20
sixty-three special ec insecticide
epa shaughnessy code: 057501
ethyl parathion 50 ec
niran e-4
o,o-diethyl-o-p-nitrofenylester kyseliny thiofosforecne [czech]
panthion
dntp
rhodiasol
o,o-diethyl-o-(p-nitrophenyl)thionophosphate
thiophos 3422
lethalaire g-54
ecatox
thionspray no.84
phoskil
bladen
super rodiatox
diethyl p-nitrophenyl thiophosphate
rhodiatox
paraphos
e 605 forte
thiophos
paramar
parthion
diethyl o-p-nitrophenyl phosphorothioate
diethyl p-nitrophenyl thionophosphate
phosphorothioic acid o,o-diethyl-o-(4-nitrophenyl) ester
pethion
folidol
paramar 50
fosfex
parathion ,
bayer e-605
folidol e605
oleoparaphene
gearphos
stathion
sulfos
etilon
orthophos
acc 3422
ethyl parathion (o,o-diethyl-o-p-nitrophenylthiophosphate)
oleoparathion
fostern
phosphenol
niran
corthione
ethlon
kolphos
vitrex
ekatox
aphamite
strathion
pestox plus
drexel parathion 8e
C06604
aqua 9-parathion
parawet
soprathion
tiofos
fosferno 50
parathene
alleron
american cyanamid 3422
parathion-e
foliclal
lirothion
penncap e
fosfermo
viran
diethyl-p-nitrophenyl monothiophosphate
rhodiatrox
phosphemol
thiomex
p-nitrophenol o-ester with o,o-diethylphosphorothioate
danthion
fosova
selephos
o,o-diethyl o-p-nitrophenyl phosphorothioate
fostox
oleofos 20
alkron
fosferno
genithion
fosfive
corothion
diethylparathion
diethyl para-nitrophenol thiophosphate
niuif-100
nitrostygmine
56-38-2
aatp
durathion
kypthion
paradust
diethyl 4-nitrophenyl phosphorothionate
vapophos
aralo
bladan f
murfos
phosphostigmine
nourithion
e 605 f
ethyl parathion
parathion, analytical standard
NCGC00090852-03
parathion, ethyl
MLS002174322
smr000778037
CHEMBL261919
NCGC00090852-05
NCGC00090852-04
dietil tiofosfato de p-nitrofenila
unii-61g466064d
nitrostigmin
parathion [na2783] [poison]
61g466064d ,
parathion-aethyl
4-06-00-01337 (beilstein handbook reference)
aat [pesticide]
o,o-diethyl-o-(4-nitro-fenil)-monothiofosfaat
dtxcid301100
dtxsid7021100 ,
NCGC00259554-01
NCGC00254571-01
tox21_202005
tox21_300663
cas-56-38-2
AKOS015903450
o,o-diethyl o-4-nitrophenyl phosphorothioate
parathion [mi]
phosphorothioic acid o,o-diethyl o-(4-nitrophenyl) ester
parathion [mart.]
parathion [hsdb]
parathion [iso]
parathion [who-dd]
parathion [iarc]
SCHEMBL26857
W-105522
phenphos
corthion
murphos
galpar
s.n.p.
diethyl 4-nitrophenyl phosphorothioate
parathion a
e 605f
oleoparathene
ent 15108
sixty-three special e.c. insecticide
epa shaughnessy code: 057701
ethyl 4-nitrophenyl ethoxy(sulfanylidene)phosphonite
parathion, pestanal(r), analytical standard
parathion 1000 microg/ml in methanol
parathion-ethyl 100 microg/ml in acetonitrile
parathion-ethyl 100 microg/ml in cyclohexane
parathion-ethyl 10 microg/ml in cyclohexane
parathion-ethyl 10 microg/ml in acetonitrile
diethyl o-p-nitrophenyl phosphorothioic acid
p-nitrophenol o-ester with o,o-diethylphosphorothioic acid
folidol e e 605
o,o-diethyl o-p-nitrophenyl phosphorothioic acid
Q412556
BCP09200
diethoxy-(4-nitrophenoxy)-sulfanylidene-lambda5-phosphane
parathion-ethyl 1000 microg/ml in ethyl acetate
o,o-diethyl o-(4-nitrophenyl)phosphorothioate
parathion-ethyl 100 microg/ml in acetone
parathion 1000 microg/ml in n-hexane
aat (pesticide)
parathion (iarc)
phosphorothioic acid, o,o-diethyl-o-p-nitrophenyl ester
epa pesticide code 057501
folicol e605
parathion (mart.)
o,o-diethyl-o-(4-nitrophenyl)phosphorothioate
phosphorothioic acid, o,o-diethyl-o-(p-nitrophenyl) ester
o,o-diethyl-o(p-nitrophenyl) phosphorothioate
paraflow

Research Excerpts

Overview

Parathion is an insecticide of a group of highly toxic organophosphorus compounds. Parathion (PA) is a phosphorotioate pesticide requiring P-450-mediated oxidations to become activated to paraoxon, or to be metabolised to its less toxic metabolites.

ExcerptReferenceRelevance
"Parathion is an insecticide of a group of highly toxic organophosphorous compounds. "( Modeling impact of parathion and its metabolite paraoxon on the nematode Caenorhabditis elegans in soil.
Amichot, M; Belzunces, L; Bruckler, L; Saffih-Hdadi, K, 2005
)
2.1
"Parathion is an insecticide of a group of highly toxic organophosphorus compounds. "( A model for linking the effects of parathion in soil to its degradation and bioavailability kinetics.
Barriuso, E; Bruckler, L; Lafolie, F; Saffih-Hdadi, K,
)
1.85
"Parathion is an organophosphorate pesticide amply used in agriculture. "( Testosterone production and spermatogenic damage induced by organophosphorate pesticides.
Bustos-Obregón, E; Contreras, HR; Del Valle, L; Paredes, V; Urquieta, B, 2006
)
1.78
"Parathion is a cholinesterase inhibitor that induces the hydrolysis of body choline esters, including acetylcholine at cholinergic synapses."( Gene expression signature of parathion-transformed human breast epithelial cells.
Calaf, GM; Roy, D, 2007
)
1.35
"Parathion (PA) is a phosphorotioate pesticide requiring P-450-mediated oxidations to become activated to paraoxon, or to be metabolised to its less toxic metabolites. "( Effects of arsenite pretreatment on the acute toxicity of parathion.
Albores, A; Cebrián, ME; Quintanilla-Vega, B; Siller, FR, 1997
)
1.98
"Parathion is a widely used organophosphoric pesticide which has also been reported to interfere with mouse spermatogenesis. "( The effect of parathion on mouse testicular and epididymal development cultured in chicken allantochorion.
Bustos-Obregón, E; Contreras, H; Martínez-García, F; Regadera, J; Rojas, M, 1998
)
2.1

Effects

Parathion toxicity has been attributed to its metabolic product paraoxon. Parathion hydrolases have been previously described for an American isolate of Pseudomonas diminuta and a Philippine isolate of Flavobacterium sp.

ExcerptReferenceRelevance
"Parathion hydrolases have been previously described for an American isolate of Pseudomonas diminuta and a Philippine isolate of Flavobacterium sp. "( Identification of a plasmid-borne parathion hydrolase gene from Flavobacterium sp. by southern hybridization with opd from Pseudomonas diminuta.
Karns, JS; Kearney, PC; McDaniel, CS; Mulbry, WW; Nelson, JO; Wild, JR, 1986
)
1.99
"Parathion toxicity has been attributed to its metabolic product paraoxon which is formed in the mammal liver through the multiple oxidase enzymes. "( Cimetidine enhances and phenobarbital decreases parathion toxicity.
Amezcua, JL; Girón, E; Martinez-Tabche, L; Mourelle, M, 1986
)
1.97

Actions

ExcerptReferenceRelevance
"Parathion did not increase the number of eosinophils in airways or the number of eosinophils associated with airway nerves nor did it alter eosinophil activation as assessed by major basic protein deposition."( Antigen sensitization influences organophosphorus pesticide-induced airway hyperreactivity.
Blensly, KC; Bruun, DA; Fryer, AD; Jacoby, DB; Lein, PJ; Lorton, JK; Proskocil, BJ, 2008
)
1.07

Treatment

Parathion treatment of alveolar macrophages ex vivo did not significantly increase IL-1β and TNF-α mRNA. Parathion treated animals were growth inhibited but, growth retardation induced by undernutrition did not alter receptor density or affinity for muscarinic receptors.

ExcerptReferenceRelevance
"Parathion treatment of alveolar macrophages ex vivo did not significantly increase IL-1β and TNF-α mRNA but did significantly increase TNF-α protein release."( Macrophage TNF-α mediates parathion-induced airway hyperreactivity in guinea pigs.
Bruun, DA; Fryer, AD; Jacoby, DB; Lein, PJ; Proskocil, BJ; van Rooijen, N, 2013
)
1.41
"With parathion pretreatment, A-esterases still detoxified chlorpyrifos oxon while liver from chlorpyrifos pretreated rats had little apparent effect on paraoxon."( Interactive toxicity of chlorpyrifos and parathion in neonatal rats: role of esterases in exposure sequence-dependent toxicity.
Baireddy, P; Kacham, R; Karanth, S; Liu, J; Pope, C, 2006
)
1.05
"Parathion-treated animals had a peak resistance increase of 330 +/- 104% (mean +/- SE), while the control vehicle animals' increase was 165 +/- 48%."( Ozone inhibition of tissue cholinesterase in guinea pigs.
Amdur, MO; Gordon, T; Taylor, BF,
)
0.85
"Parathion treated animals were growth inhibited but, growth retardation induced by undernutrition did not alter receptor density or affinity of QNB for muscarinic receptors."( Muscarinic cholinergic receptor regulation and acetylcholinesterase inhibition in response to insecticide exposure during development.
Dvergsten, C; Meeker, RB, 1994
)
1.01
"In parathion-treated pups, sampled at day 12, hippocampal AChE was depressed 73% and [3H] quinuclidinyl benzilate (QNB) binding was depressed by 36%."( The neurotoxicity of parathion-induced acetylcholinesterase inhibition in neonatal rats.
Pope, C; Veronesi, B, 1990
)
1.11
"In parathion-treated pups, sampled at day 12, hippocampal AChE was depressed 73% and [3H] quinuclidiny benzilate (QNB) binding was depressed by 36%."( The neurotoxicity of parathion-induced acetylcholinesterase inhibition in neonatal rats.
Pope, C; Veronesi, B, 1990
)
1.11

Toxicity

Methyl parathion was much more toxic than 2,4-D, in all cases. Normal laboratory light conditions had no effect on the mutagenicity tests. The lowest concentration of parathions tested (1 microg/ml) was toxic.

ExcerptReferenceRelevance
" Haemoglobin concentration of blood and organ weights were not affected under the toxic conditions."( Studies on L-ascorbic acid metabolism in rats under chronic toxicity due to organophosphorus insecticides: effects of supplementation of L-ascorbic acid in high doses.
Bhattacharyya, A; Chakraborty, D; Chatterjee, GC; Chatterjee, K; Chatterjee, S; Majumdar, K; Sen, A, 1978
)
0.26
" Prenatal toxic action of the pesticides used today may be detrimental to human and animal health."( [Studies on the prenatally toxic effect of parathionemethyl in Wistar rats compared to cyclophosphamide and trypan blue].
Fuchs, V; Golbs, S; Kühnert, M; Osswald, F, 1976
)
0.52
" Parathion was much more toxic than 2,4-D, in all cases."( Chronic toxicity of ethyl parathion and isobutoxyethanol ester of 2,4-dichlorophenoxyacetic acid to estuarine juvenile and adult crabs.
Amín, OA; Monserrat, JM; Rodríguez, EM, 1992
)
1.49
"375 mg/kg body weight, equivalent to 1/2 LD50, 1/4 LD50, 1/8 LD50 and 1/16 LD50, administered to female mice, elicited positive responses in bone marrow and peripheral blood micronuclei tests."( In vivo genotoxic effects in mice of Metacid 50, an organophosphorus insecticide.
Mathew, G; Rahiman, MA; Vijayalaxmi, KK, 1990
)
0.28
"Mouse livers perfused in situ with the pesticide methyl parathion (O,O-dimethyl O-P-nitrophenyl phosphorothioate) resulted in the appearance of the toxic metabolite, methyl paraoxon (O,O-dimethyl-O-P-nitrophenyl phosphate), in the effluent perfusate."( The role of the liver in mediating the acute toxicity of the pesticide methyl parathion in the mouse.
Sultatos, LG,
)
0.61
" Larvae 24 h, 48 h and 72 h old, heterozygous for various recessive genetic markers on the first and third chromosomes, were exposed to the LD50 and half of this dose for different periods of time."( Genotoxicity of metacid established through the somatic and germ line mosaic assays and the sex-linked recessive lethal test in Drosophila.
Das, CC; Dey, L; Majhi, B; Tripathy, NK, 1987
)
0.27
" Reports of neurotoxic agents causing adverse effects on the male reproductive system initiated the present study which was designed to examine the effects of TOCP on the rooster."( Testicular toxicity following oral administration of tri-o-cresyl phosphate (TOCP) in roosters.
Abou-Donia, MB; Chapin, RE; Lamb, JC; Lapadula, DM; Somkuti, SG, 1987
)
0.27
" We assessed the effects of these drugs on the acute toxicity of parathion in rats by measuring the rate of survival at 24 h after the administration of the oral LD50 of parathion to four groups of rats: control and pretreated with the aforementioned drugs."( Cimetidine enhances and phenobarbital decreases parathion toxicity.
Amezcua, JL; Girón, E; Martinez-Tabche, L; Mourelle, M, 1986
)
0.76
"The studies reviewed in this paper were undertaken at the request of the World Health Organization to obtain information on pesticides that would be least toxic for use in countries where the diet is deficient in protein."( Dietary protein and pesticide toxicity in male weanling rats.
Boyd, EM, 1969
)
0.25
" Normal laboratory light conditions had no effect on the mutagenicity tests, however, exposure of methyl parathion in the petri dish containing the tester strain TA100 and rat liver microsomal and cytosolic enzymes reduced the mutagenic activity and increased the toxic effects of methyl parathion."( Genotoxicity of methyl parathion in short-term bacterial test systems.
Mumma, RO; Rashid, KA, 1984
)
0.79
" These results agree with the general hypothesis that delayed neurotoxicity is a special toxic effect of some but not all of the organophosphorus esters."( Is delayed neurotoxicity a property of all organophosphorus compounds? A study with a model compound: parathion.
Curley, A; Farmer, J; Soliman, SA, 1982
)
0.48
" These results indicate that (1) MeISP has obvious toxicity to isolated rat hepatocytes and isolated hepatocytes provide a suitable system to examine the toxic effects of xenobiotics at the cellular level and (2) MeISP is metabolized mainly by microsomal enzymes."( Toxicity and toxicokinetics of MeISP in isolated rat hepatocytes.
Liu, YG; Zhu, S, 1994
)
0.29
"The influence of the vehicle on the toxicity of parathion was evaluated by determining the oral and dermal LD50 in rats."( Evaluation of the role of formulation on parathion toxicity.
Puga, FR; Rodrigues, MA, 1996
)
0.82
"Parathion (PA) is a phosphorotioate pesticide requiring P-450-mediated oxidations to become activated to paraoxon, or to be metabolised to its less toxic metabolites."( Effects of arsenite pretreatment on the acute toxicity of parathion.
Albores, A; Cebrián, ME; Quintanilla-Vega, B; Siller, FR, 1997
)
1.98
" Chlorpyrifos was the most toxic chemical tested, followed by m-parathion and then pentachlorobenzene."( Effects of temperature on the toxicity of m-parathion, chlorpyrifos, and pentachlorobenzene to Chironomus tentans.
Belden, JB; Lydy, MJ; Ternes, MA, 1999
)
0.8
" The lowest concentration of parathion tested (1 microg/ml) was toxic and there was no significant difference in cytotoxic effects among the three assays."( In vitro cytotoxicity of the organophosphorus pesticide parathion to FG-9307 cells.
Li, H; Zhang, S, 2001
)
0.85
" While multiple exposure is widely acknowledged, arguments are raised that adverse combined effects might not be evoked by mixtures of substances with dissimilar modes of action and being present at only low concentrations."( Mixture toxicity of priority pollutants at no observed effect concentrations (NOECs).
Altenburger, R; Consolaro, F; Gramatica, P; Scholze, M; Walter, H, 2002
)
0.31
" In the present study we evaluated the toxic effect of different concentrations of paraoxon (POX) and parathion (PAT) in murine EL4 T lymphocytes."( Influence of paraoxon (POX) and parathion (PAT) on apoptosis: a possible mechanism for toxicity in low-dose exposure.
Fernandez-Cabezudo, M; Petroianu, G; Saleh, AM; Taleb, M; Vijayasarathy, C,
)
0.63
" The study was performed using three toxicity indices: additive index, sum of toxic units, and similarity parameter lambda."( Joint toxicity of similarly and dissimilarly acting chemicals to Daphnia magna at different response levels.
Christensen, ER; Kusk, KO; Merino-García, D, 2003
)
0.32
" To address the question of the difference in toxicity between parathion and chlorpyrifos, the toxic effects of their leaving groups, p-nitrophenol and trichloropyridinol, were studied in mixed-cell aggregates."( Involvement of glial cells in the neurotoxicity of parathion and chlorpyrifos.
Costa, LG; Honegger, P; Monnet-Tschudi, F; Schilter, B; Zurich, MG, 2004
)
0.81
"We previously reported that sequence of exposure to chlorpyrifos and parathion in adult rats can markedly influence toxic outcome."( Interactive toxicity of chlorpyrifos and parathion in neonatal rats: role of esterases in exposure sequence-dependent toxicity.
Baireddy, P; Kacham, R; Karanth, S; Liu, J; Pope, C, 2006
)
0.83
" Evidence is therefore presented to suggest that nitric oxide may play both toxic and protective roles in cholinergic toxicity, and its precise contribution to modulation by glucose feeding requires further investigation."( Modulation of parathion toxicity by glucose feeding: Is nitric oxide involved?
Goad, JT; Gupta, RC; Karanth, S; Liu, J; Pope, C, 2007
)
0.7
" The results of these tests on the samples collected during the thermal decomposition of the two studied species indicate that in the case of ethyl parathion the decomposition process gives rise to a mixture of compounds which are more toxic than the parent species."( Toxicity of unwanted intermediates and products formed during accidental thermal decomposition of chemicals.
Andreozzi, R; Di Somma, I; Pinto, G; Pollio, A; Sanchirico, R, 2008
)
0.55
" Many recently published studies have indicated that human exposure to OPI may be associated with neurologic, hematopoietic, cardiovascular, and reproductive adverse effects."( Involvement of oxidative stress in methyl parathion and parathion-induced toxicity and genotoxicity to human liver carcinoma (HepG₂) cells.
Edwards, FL; Tchounwou, PB; Yedjou, CG, 2013
)
0.65
" Immunotoxicology focuses on the evaluation of the potential adverse effects of xenobiotics on immune mechanisms that can lead to harmful changes in host responses such as: increased susceptibility to infectious diseases and tumorigenesis; the induction of hypersensitivity reactions; or an increased incidence of autoimmune disease."( Immunotoxicity in mice induced by short-term exposure to methoxychlor, parathion, or piperonyl butoxide.
Fukuyama, T; Harada, T; Hayashi, K; Kosaka, T; Miyashita, L; Nishino, R; Tajima, Y; Ueda, H; Wada, K,
)
0.36
"Prevention of the penetration of toxic agents through the skin is crucial for both military troops and civilian populations."( Dermostyx (IB1) - High efficacy and safe topical skin protectant against percutaneous toxic agents.
Amir, A; Barness, I; Dachir, S; Eisenkraft, A; Fishbine, E; Kadar, T; Meshulam, J; Sahar, R, 2017
)
0.46
" Next, three days post fertilization (dpf) zebrafish eleuthero embryos were exposed to the metabolic mix diluted in Danieau's medium for 48 h at 28 °C, followed by a stereomicroscopic examination of the adverse effects induced, if any."( Safety Assessment of Compounds after In Vitro Metabolic Conversion Using Zebrafish Eleuthero Embryos.
Annaert, P; Cabooter, D; De Croze, N; de Witte, P; Giusti, A; Kislyuk, S; Léonard, M; Mignot, M; Nguyen, XB; Nicolaï, J; Ny, A; Oorts, M; Ranieri, C; Wu, X, 2019
)
0.51
" In addition, unlike constitutively toxic OPs, which are highly toxic when inhaled, these results are consistent with the idea that phosphorothioate insecticides appear to be more intoxicating following oral than inhalation exposure."( The impact of solvents on the toxicity of the banned parathion insecticide.
Diener, J; Donahue, S; Garcia, K; Gerk, W; Jiang, X; Lees, J; Mao, L; Rosenberg, YJ; Sullivan, D; Urban, LA, 2023
)
1.16

Pharmacokinetics

The study describes a physiologically based pharmacokinetic (PBPK) model developed to simulate the absorption of organophosphate pesticides. Parathion was not significantly different after pretreatment with other enzyme inducers compared with respective control rats.

ExcerptReferenceRelevance
" A 4-compartment pharmacokinetic model was utilized to model their absorption profile."( Percutaneous absorption, dermatopharmacokinetics and related bio-transformation studies of carbaryl, lindane, malathion, and parathion in isolated perfused porcine skin.
Chang, SK; Dauterman, WC; Riviere, JE; Williams, PL, 1994
)
0.49
" To quantify disposition of parathion (PA) and its major metabolites in a widely accepted animal model for human dermal risk assessment, a comprehensive pharmacokinetic model was formulated following [ring-UL-14C]PA topical (occluded and non-occluded dose of 300 micrograms, 40 micrograms/cm2 on the abdomen and back) and intravenous (300 micrograms) administration in vivo in female weanling pigs."( Percutaneous absorption, biotransformation, and systemic disposition of parathion in vivo in swine. I. Comprehensive pharmacokinetic model.
Qiao, GL; Riviere, JE; Williams, PL,
)
0.66
" However, the pharmacokinetic parameters of parathion were not significantly different after pretreatment with other enzyme inducers compared with respective control rats."( Effects of enzyme inducers or inhibitors on the pharmacokinetics of intravenous parathion in rats.
Hurh, E; Kim, S; Kim, Y; Lee, A; Lee, E; Lee, M, 2000
)
0.8
" Pharmacokinetic analysis showed that parathion increased the blood cyclosporine concentration twofold as evidenced by AUC (area under the curve), half life (t 1/2) and peak plasma concentration (Cmax)."( Effects of subchronic parathion exposure on cyclosporine pharmacokinetics in rats.
Eminoglu, O; Gelal, A; Gumustekin, M; Guven, H; Kalkan, S, 2001
)
0.9
" The pharmacokinetic changes of parathion and paraoxon were investigated after intravenous administration of parathion, 3 mg/kg, to control Sprague-Dawley rats, and the rats pretreated with physostigmine (100 microg/kg, intraperitoneal injection 30 min before parathion administration)."( Effects of physostigmine on the pharmacokinetics of intravenous parathion in rats.
Hurh, E; Kim, SH; Kim, SY; Kim, YC; Kim, YG; Lee, EJ; Lee, MG, 2000
)
0.83
" The pharmacokinetic changes of parathion and its active metabolite, paraoxon, were investigated after intravenous administration of parathion, 3 mg/kg, to control Sprague-Dawley rats and the rats pretreated with neostigmine (200 microg/kg, intraperitoneal injection 30 min before parathion administration)."( Effects of neostigmine on the pharmacokinetics of intravenous parathion in rats.
Hurh, E; Kim, SH; Kim, SY; Kim, YC; Kim, YG; Lee, EJ; Lee, MG, 2000
)
0.83
" This study describes a physiologically based pharmacokinetic (PBPK) model developed to simulate the absorption of organophosphate pesticides, such as parathion, fenthion, and methyl parathion through porcine skin with flow-through cells."( A physiologically based pharmacokinetic model of organophosphate dermal absorption.
Baynes, RE; Brooks, JD; Gehring, R; Monteiro-Riviere, NA; Riviere, JE; van der Merwe, D, 2006
)
0.53
" However, pharmacokinetic data have not been obtained."( Pharmacokinetics of OpdA, an organophosphorus hydrolase, in the African green monkey.
Bird, SB; Carville, A; Jackson, CJ; Mansfield, K; Ollis, DL; Scott, C, 2010
)
0.36

Compound-Compound Interactions

ExcerptReferenceRelevance
" The SPME-HNTs-TiO2 combined with NCD-IMS was successfully applied for the determination of parathion in apple, strawberry, celery and water samples."( Halloysite nanotubes-titanium dioxide as a solid-phase microextraction coating combined with negative corona discharge-ion mobility spectrometry for the determination of parathion.
Jafari, MT; Mossaddegh, M; Saraji, M, 2016
)
0.85

Bioavailability

ExcerptReferenceRelevance
" For both substances a low bioavailability after oral administration was found."( Toxicokinetics of methyl parathion and parathion in the dog after intravenous and oral administration.
Audenaert, F; Belpaire, FM; Bogaert, MG; Braeckman, RA; Willems, JL, 1983
)
0.57
") as 'pour-ons' in a crossover design in order to determine the dermal bioavailability of the OPs."( Percutaneous absorption of organophosphorus insecticides in pigs--the influence of different vehicles.
Brimer, L; Gyrd-Hansen, N; Rasmussen, F, 1993
)
0.29
" The presence of MNA in both vehicles blunted the absorption rate curves without significantly changing total absorption."( The use of mechanistically defined chemical mixtures (MDCM) to assess component effects on the percutaneous absorption and cutaneous disposition of topically exposed chemicals. I. Studies with parathion mixtures in isolated perfused porcine skin.
Baynes, RE; Brooks, JD; Monteiro-Riviere, NA; Qiao, GL; Riviere, JE; Williams, PL, 1996
)
0.48
" In particular, excipient nanoemulsions can enhance the bioavailability of nutraceuticals in fruit- and vegetable-containing products consumed with them."( Impact of Pesticide Type and Emulsion Fat Content on the Bioaccessibility of Pesticides in Natural Products.
Li, R; Lv, S; McClements, DJ; Tan, Y; Zhang, R; Zhang, Z, 2020
)
0.56

Dosage Studied

parathion has no effect on survival rate when this compound is used in a do. Diethyldithiocarbamate (DDC) known to inhibit mixed-function oxidase activity.

ExcerptRelevanceReference
" Because of the relationship between dosage (quantity of application) and time of effectiveness of a compound, we are able to design a specific curve of time-efficacy of each insecticide at graded intervals (= increasing dilutions)."( [Studies of the time of effectiveness and the characterization of compounds in insecticide tests with Aedes aegypti].
Seidel, E, 1977
)
0.26
" The amount of parathion passing through cigarettes as a potential for inhalation exposure ranged up to 28% of dosing levels."( Potential exposure from smoking parathion-contaminated cigarettes.
Comer, SW; Robbins, AL; Staiff, DC, 1977
)
0.89
" Birds fed clean feed and those fed morsodren-treated feed were orally dosed with 2, 4, 6, 8,and 10 mg/kg parathion, and their 48-h survival times compared."( Studies on combined effects of organophosphates and heavy metals in birds. I. Plasma and brain cholinesterase in coturnix quail fed methyl mercury and orally dosed with parathion.
Dieter, MP; Ludke, JL, 1975
)
0.66
" In any case the main object of this research was to set up a method of identification and dosage of the pesticides and to show its validity."( [Preliminary research on the chlorate insecticides and phosphoric esters content in some italian boneys. (author's transl)].
Grandi, A,
)
0.13
" The lesion produced at 24 h after dosing is a periacinar hydropic degeneration which appears identical to that caused by carbon disulphide (CS2) in similarly pretreated rats."( The hepatotoxicity of O,O-diethyl, O-phenyl phosphorothionate (SV1) for the rat.
DeMatteis, F; Hrdlicka, J; Seawright, AA, 1976
)
0.26
" Each pretreatment produced a statistically significant increase in cocaine lethality throughout the dose-response curve."( Decreased plasma cholinesterase activity enhances cocaine toxicity in mice.
Goldfrank, LR; Henry, GC; Hoffman, RS; Howland, MA; Wax, PM; Weisman, RS, 1992
)
0.28
" Experimental conditions should be strictly controlled and dose-response studies need to be conducted when evaluating transdermal studies."( Percutaneous absorption of parathion in vitro in porcine skin: effects of dose, temperature, humidity, and perfusate composition on absorptive flux.
Chang, SK; Riviere, JE, 1991
)
0.58
" A comparison of results from dose-response curves with isoboles showed good agreement."( Evaluation of experimental combined toxicity by use of dose-frequency curves: comparison with theoretical additivity as well as independence.
Dittrich, P; Lenk, W; Pöch, G; Reiffenstein, RJ; Schuster, A, 1990
)
0.28
"The biochemical and morphological effects of postnatal acetylcholinesterase (AChE) inhibition were examined in rat pups dosed with parathion, at time points critical to hippocampal neurogenesis and synaptogenesis (i."( The neurotoxicity of parathion-induced acetylcholinesterase inhibition in neonatal rats.
Pope, C; Veronesi, B, 1990
)
0.8
"The biochemical and morphological effects of postnatal acetylcholinesterase (AChE) inhibition were examined in rat pups dosed with paration, at time points critical to hippocampal neurogenesis and synaptogenesis (i."( The neurotoxicity of parathion-induced acetylcholinesterase inhibition in neonatal rats.
Pope, C; Veronesi, B, 1990
)
0.6
" Diethyldithiocarbamate (DDC), known to inhibit mixed-function oxidase activity, has no effect on survival rate when this compound is used in a dosage of 300 mg/kg 45 min before or 10 min after parathion intoxication."( Parathion-provoked lethality in rats is reduced by diethyldithiocarbamate.
Homann, J; Matthes, KJ; Schneider, S, 1985
)
1.9
" The enhanced penetration was observed without any associated evidence of metabolic change and with both dosing methods."( Effect of serum-parathion interactions on cutaneous penetration of parathion in vitro.
Kemppainen, BW; Riley, RT, 1985
)
0.62
" Based on dosage mortality curves obtained with increasing amounts of atrazine, mortalities of 50 percent of the insect populations would have been achieved with 23, 40, 6, and 10 micrograms of atrazine added to the abovementioned dosages of carbofuran, DDT, parathion, and diazinon, respectively."( Synergism of insecticides by herbicides.
Anderegg, BN; Liang, TT; Lichtenstein, EP, 1973
)
0.43
" Erythrocytes from rabbits orally dosed with parathion also exhibited marked depression of oxygen consumption."( Effect of paraoxon on erythrocyte metabolism as measured by oxygen uptake in vitro.
Santolucito, JA; Whitcomb, E, 1971
)
0.51
" Suppression occurred after a dosage which produced cholinergic effects but was absent after a lower dosage which did not produce cholinergic signs."( The effects of organophosphate-induced cholinergic stimulation on the antibody response to sheep erythrocytes in inbred mice.
Casale, GP; Cohen, SD; DiCapua, RA, 1983
)
0.27
"Changes in the electrophysiologic activity of the rat sciatic nerve were examined after repeated dosing with either of two organophosphate insecticides, parathion, and trichlorfon."( Electrophysiologic changes associated with chronic administration of organophosphates.
Anderson, RJ; Averbook, BJ, 1983
)
0.46
"One member of each pair of incubating laughing gulls at 9 nests was trapped, orally dosed with either 6 mg/kg parathion in corn oil or corn oil alone, and marked about the neck with red dye."( Parathion alters incubation behavior of laughing gulls.
Hill, EF; Mitchell, CA; White, DH, 1983
)
1.92
"A recently reported hypothesis of other investigators that the induction of delayed neurotoxicity is a property of all organophosphorus compounds including parathion was evaluated in light of the inability of parathion to induce in our laboratory any clinical, histological, or biochemical signs of delayed neurotoxicity in hens following a very intensive dosing regimen."( Is delayed neurotoxicity a property of all organophosphorus compounds? A study with a model compound: parathion.
Curley, A; Farmer, J; Soliman, SA, 1982
)
0.68
" With T alone, rats of the postnatal group were dosed daily with 6 mg/kg for 21 days, while in the perinatal study females received 6 mg/kg daily from Day 7 of pregnancy until parturition."( Behavioral effects of methyl parathion and toxaphene exposure in rats.
Crowder, LA; Lanzaro, GC; Whitson, RS, 1980
)
0.55
" Many of the studies that are available were done during the early period of immunotoxicology and many reports do not state whether or not any other toxic signs were observed and the dose-response relationships were not generally examined."( The immunotoxicity of pesticides in rodents.
Rodgers, K, 1995
)
0.29
"Increasing attention has been paid to the variables of application site and dosing method in quantitation of chemical percutaneous absorption."( Significant effects of application site and occlusion on the pharmacokinetics of cutaneous penetration and biotransformation of parathion in vivo in swine.
Qiao, GL; Riviere, JE, 1995
)
0.5
"Comparing dose-response curves (DRCs) of a compound A in the absence and presence of a fixed dose of an antagonist B is standard in pharmacology and toxicology."( Calculating slope and ED50 of additive dose-response curves, and application of these tabulated parameter values.
Pancheva, SN; Pöch, G, 1995
)
0.29
" Total 14C as well as HPLC-separated PA, paraoxon (PO), PNP, and p-nitrophenyl-beta-D-glucuronide (PNP-G) profiles in plasma and urine, and 14C in blood, stratum corneum, dosed tissues, dosing device, and evaporative loss were determined."( Percutaneous absorption, biotransformation, and systemic disposition of parathion in vivo in swine. I. Comprehensive pharmacokinetic model.
Qiao, GL; Riviere, JE; Williams, PL,
)
0.36
" Good dose-response data were obtained for all three OPs tested, although the instability of phosmet required special precautions concerning the analysis of the agar."( Evaluation of an in vitro method for acaricidal effect. Activity of parathion, phosmet and phoxim against Sarcoptes scabiei.
Brimer, L; Gyrd-Hansen, N; Henriksen, SA; Rasmussen, F, 1993
)
0.52
"The effects of anatomical site and occlusion on the percutaneous absorption and residue pattern of total 14C were investigated following topical application of 2,6-[ring-14C]parathion onto four skin sites (300 micrograms/10 microCi; 40 micrograms/cm2) in weanling swine using occluded and nonoccluded dosing systems."( Effects of anatomical site and occlusion on the percutaneous absorption and residue pattern of 2,6-[ring-14C]parathion in vivo in pigs.
Chang, SK; Qiao, GL; Riviere, JE, 1993
)
0.69
" The acute effects of two carbamates (carbaryl, aldicarb) and five organophosphates (OP) (chlorpyrifos, diazinon, parathion, fenthion, and diisopropyl fluorophosphate, or DFP) were evaluated on the day of dosing at the time of peak effect, at 1 and 3 days, and 1 week after dosing (oral gavage, in corn oil)."( Comparisons of the acute effects of cholinesterase inhibitors using a neurobehavioral screening battery in rats.
Moser, VC,
)
0.34
" Using acetone or dimethylsulfoxide (DMSO) (80% in water) as a vehicle, percutaneous absorption and cutaneous disposition of parathion (PA) were studied following PA (40 microg/cm2) dosing on isolated perfused porcine skin as mechanistically defined chemical mixtures (MDCM) consisting of the surfactant sodium lauryl sulfate (SLS), the rubefacient methyl nicotinate (MNA), and the reducing agent stannous chloride (SnCl2)."( The use of mechanistically defined chemical mixtures (MDCM) to assess component effects on the percutaneous absorption and cutaneous disposition of topically exposed chemicals. I. Studies with parathion mixtures in isolated perfused porcine skin.
Baynes, RE; Brooks, JD; Monteiro-Riviere, NA; Qiao, GL; Riviere, JE; Williams, PL, 1996
)
0.69
" The ratio of paraoxon concentration to tissue amount used in in vitro assays of this study was equivalent to dosing a rat with toxicologically relevant dosages."( Detoxication of paraoxon by rat liver homogenate and serum carboxylesterases and A-esterases.
Chambers, JE; Tang, J, 1999
)
0.3
" Dose-response studies estimated the acute oral LD1 values for the two OPs (CPF = 80 mg/kg po; PS = 4 mg/kg po) and these dosages or relative proportions were used to evaluate interactive toxicity."( In vivo interaction between chlorpyrifos and parathion in adult rats: sequence of administration can markedly influence toxic outcome.
Karanth, S; Liu, J; Olivier, K; Pope, C, 2001
)
0.57
"Full toxicologic profiles of chemical mixtures, including dose-response extrapolations to realistic exposures, is a prohibitive analytical problem, even for a restricted class of chemicals."( Protein binding of isofluorophate in vivo after coexposure to multiple chemicals.
Buchholz, BA; Keating, GA; Vogel, JS, 2002
)
0.31
" Repeated dosage with chlorpromazine and atropine, or promazine and atropine, after administration of parathion at the same rate, resulted in a slightly higher mortality in female rats than did atropine or no treatment."( Poisoning by organic phosphorus pesticides potentiated by phenothiazine derivatives.
GAINES, TB, 1962
)
0.46
" The concurrently-exposed group showed more cumulative lethality (15/24) than either of the sequential dosing groups."( Interactive toxicity of chlorpyrifos and parathion in neonatal rats: role of esterases in exposure sequence-dependent toxicity.
Baireddy, P; Kacham, R; Karanth, S; Liu, J; Pope, C, 2006
)
0.6
" When parathion dosage is set below the water solubility, washing performance is stable for surfactant concentrations above critical micelle concentration (cmc) and it is observed that more than 90% of parathion can be washed out when dosage is five times lower than the solubility limit."( The partitioning and modelling of pesticide parathion in a surfactant-assisted soil-washing system.
Chan, KH; Choy, WK; Chu, W, 2006
)
1.08
" The model is likelihood based and allows for separate dose-response models for each outcome while accounting for the bivariate correlation."( A simulation study of quantitative risk assessment for bivariate continuous outcomes.
Catalano, PJ; Catzlano, PJ; Yu, ZF, 2008
)
0.35
" Superimposed on this general pattern, the cerebrocortical effects showed a nonmonotonic dose-response relationship, with regression of the defects at the higher parathion dose; this relationship has been seen also after comparable treatments with chlorpyrifos and diazinon and likely represents the involvement of cholinesterase-related actions that mask or offset the effects of lower doses."( Exposure of neonatal rats to parathion elicits sex-selective impairment of acetylcholine systems in brain regions during adolescence and adulthood.
Bodwell, BE; Levin, ED; Ryde, IT; Seidler, FJ; Slotkin, TA, 2008
)
0.83
" The Ab-PA complexes were generated by conjugating the two antibodies with an excessive dosage of PA."( Specific antibody for pesticide residue determination produced by antibody-pesticide complex.
Chen, J; Guo, YR; Liang, X; Liu, YH; Wang, CM; Zhu, GN, 2010
)
0.36
" This is accomplished through linking a multi-species water quality model and a statistical dose-response model."( Optimal sensor placement for detecting organophosphate intrusions into water distribution systems.
Lahav, O; Ohar, Z; Ostfeld, A, 2015
)
0.42
[information is derived through text-mining from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Roles (6)

RoleDescription
EC 3.1.1.7 (acetylcholinesterase) inhibitorAn EC 3.1.1.* (carboxylic ester hydrolase) inhibitor that interferes with the action of enzyme acetylcholinesterase (EC 3.1.1.7), which helps breaking down of acetylcholine into choline and acetic acid.
EC 3.1.1.8 (cholinesterase) inhibitorAn EC 3.1.1.* (carboxylic ester hydrolase) inhibitor that interferes with the action of cholinesterase (EC 3.1.1.8).
acaricideA substance used to destroy pests of the subclass Acari (mites and ticks).
agrochemicalAn agrochemical is a substance that is used in agriculture or horticulture.
avicideA substance used to destroy bird pests (class Aves).
mouse metaboliteAny mammalian metabolite produced during a metabolic reaction in a mouse (Mus musculus).
[role 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]

Drug Classes (3)

ClassDescription
organothiophosphate insecticide
organic thiophosphate
C-nitro compoundA nitro compound having the nitro group (-NO2) attached to a carbon 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]

Pathways (2)

PathwayProteinsCompounds
parathion degradation213
superpathway of parathion degradation08

Protein Targets (37)

Potency Measurements

ProteinTaxonomyMeasurementAverage (µ)Min (ref.)Avg (ref.)Max (ref.)Bioassay(s)
Chain A, HADH2 proteinHomo sapiens (human)Potency29.88160.025120.237639.8107AID886
Chain B, HADH2 proteinHomo sapiens (human)Potency29.88160.025120.237639.8107AID886
acetylcholinesteraseHomo sapiens (human)Potency35.22700.002541.796015,848.9004AID1347395; AID1347397; AID1347398; AID1347399
pregnane X receptorRattus norvegicus (Norway rat)Potency64.99240.025127.9203501.1870AID651751
SMAD family member 2Homo sapiens (human)Potency10.66910.173734.304761.8120AID1346859
SMAD family member 3Homo sapiens (human)Potency10.66910.173734.304761.8120AID1346859
AR proteinHomo sapiens (human)Potency5.37680.000221.22318,912.5098AID1259243; AID1259247; AID588515
aldehyde dehydrogenase 1 family, member A1Homo sapiens (human)Potency19.11800.011212.4002100.0000AID1030
thyroid stimulating hormone receptorHomo sapiens (human)Potency5.79250.001318.074339.8107AID926; AID938
nuclear receptor subfamily 1, group I, member 3Homo sapiens (human)Potency14.39140.001022.650876.6163AID1224838; AID1224839; AID1224893
progesterone receptorHomo sapiens (human)Potency1.45550.000417.946075.1148AID1346795
retinoid X nuclear receptor alphaHomo sapiens (human)Potency19.74690.000817.505159.3239AID1159531
pregnane X nuclear receptorHomo sapiens (human)Potency35.64790.005428.02631,258.9301AID1346982; AID720659
estrogen nuclear receptor alphaHomo sapiens (human)Potency60.67630.000229.305416,493.5996AID743075; AID743077
peroxisome proliferator-activated receptor deltaHomo sapiens (human)Potency22.38720.001024.504861.6448AID588535
peroxisome proliferator activated receptor gammaHomo sapiens (human)Potency14.12540.001019.414170.9645AID588536
aryl hydrocarbon receptorHomo sapiens (human)Potency28.09100.000723.06741,258.9301AID651777; AID743085; AID743122
thyroid hormone receptor beta isoform aHomo sapiens (human)Potency1.12200.010039.53711,122.0200AID588545
potassium voltage-gated channel subfamily H member 2 isoform dHomo sapiens (human)Potency42.80000.01789.637444.6684AID588834
mitogen-activated protein kinase 1Homo sapiens (human)Potency0.00200.039816.784239.8107AID995
cytochrome P450 3A4 isoform 1Homo sapiens (human)Potency7.50590.031610.279239.8107AID884; AID885
Gamma-aminobutyric acid receptor subunit piRattus norvegicus (Norway rat)Potency7.50591.000012.224831.6228AID885
Gamma-aminobutyric acid receptor subunit beta-1Rattus norvegicus (Norway rat)Potency7.50591.000012.224831.6228AID885
Gamma-aminobutyric acid receptor subunit deltaRattus norvegicus (Norway rat)Potency7.50591.000012.224831.6228AID885
Gamma-aminobutyric acid receptor subunit gamma-2Rattus norvegicus (Norway rat)Potency7.50591.000012.224831.6228AID885
Gamma-aminobutyric acid receptor subunit alpha-5Rattus norvegicus (Norway rat)Potency7.50591.000012.224831.6228AID885
Gamma-aminobutyric acid receptor subunit alpha-3Rattus norvegicus (Norway rat)Potency7.50591.000012.224831.6228AID885
Gamma-aminobutyric acid receptor subunit gamma-1Rattus norvegicus (Norway rat)Potency7.50591.000012.224831.6228AID885
Gamma-aminobutyric acid receptor subunit alpha-2Rattus norvegicus (Norway rat)Potency7.50591.000012.224831.6228AID885
Gamma-aminobutyric acid receptor subunit alpha-4Rattus norvegicus (Norway rat)Potency7.50591.000012.224831.6228AID885
Gamma-aminobutyric acid receptor subunit gamma-3Rattus norvegicus (Norway rat)Potency7.50591.000012.224831.6228AID885
Gamma-aminobutyric acid receptor subunit alpha-6Rattus norvegicus (Norway rat)Potency7.50591.000012.224831.6228AID885
Gamma-aminobutyric acid receptor subunit alpha-1Rattus norvegicus (Norway rat)Potency7.50591.000012.224831.6228AID885
Gamma-aminobutyric acid receptor subunit beta-3Rattus norvegicus (Norway rat)Potency7.50591.000012.224831.6228AID885
Gamma-aminobutyric acid receptor subunit beta-2Rattus norvegicus (Norway rat)Potency7.50591.000012.224831.6228AID885
GABA theta subunitRattus norvegicus (Norway rat)Potency7.50591.000012.224831.6228AID885
Gamma-aminobutyric acid receptor subunit epsilonRattus norvegicus (Norway rat)Potency7.50591.000012.224831.6228AID885
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Ceullar Components (1)

Processvia Protein(s)Taxonomy
plasma membraneGamma-aminobutyric acid receptor subunit gamma-2Rattus norvegicus (Norway rat)
plasma membraneGamma-aminobutyric acid receptor subunit alpha-1Rattus norvegicus (Norway rat)
plasma membraneGamma-aminobutyric acid receptor subunit beta-2Rattus norvegicus (Norway rat)
[Information is prepared from geneontology information from the June-17-2024 release]

Bioassays (15)

Assay IDTitleYearJournalArticle
AID1880635Tanol-water partition coefficient, logP of compound by shake flask method based 31P-NMR analysis2022Journal of medicinal chemistry, 06-23, Volume: 65, Issue:12
Studying Lipophilicity Trends of Phosphorus Compounds by
AID1101802Insecticidal activity against fifth-instar larvae of Pieris rapae fed on compound treated cabbage leaf assessed as mortality at 250 ppm dipped for 3 secs measured after 5 days (Rvb = 0%)2002Chemical & pharmaceutical bulletin, Mar, Volume: 50, Issue:3
Synthesis and insecticidal activity of novel 4beta-halogenated benzoylamino podophyllotoxins against Pieris rapae Linnaeus.
AID1101169Resistance index, ratio of LC50 for organophosphate-resistant clone of Schizaphis graminum OR1 adult or last-instar nymphs to LC50 for organophosphate-susceptible clone of Schizaphis graminum OSS adult or last-instar nymphs2000Journal of agricultural and food chemistry, Oct, Volume: 48, Issue:10
Comparative toxicity of selected organophosphate insecticides against resistant and susceptible clones of the greenbug, Schizaphis graminum (Homoptera: aphididae).
AID589143Mechanism based inhibition of human cytochrome P450 3A4 measured by testosterone 6-beta hydroxylation2005Current drug metabolism, Oct, Volume: 6, Issue:5
Cytochrome p450 enzymes mechanism based inhibitors: common sub-structures and reactivity.
AID409954Inhibition of mouse brain MAOA2008Journal of medicinal chemistry, Nov-13, Volume: 51, Issue:21
Quantitative structure-activity relationship and complex network approach to monoamine oxidase A and B inhibitors.
AID409953Inhibition of mouse liver MAOA2008Journal of medicinal chemistry, Nov-13, Volume: 51, Issue:21
Quantitative structure-activity relationship and complex network approach to monoamine oxidase A and B inhibitors.
AID1101171Insecticidal activity against organophosphate-resistant clone of Schizaphis graminum OR1 adult or last-instar nymphs assessed as insect mortality after 8 hr2000Journal of agricultural and food chemistry, Oct, Volume: 48, Issue:10
Comparative toxicity of selected organophosphate insecticides against resistant and susceptible clones of the greenbug, Schizaphis graminum (Homoptera: aphididae).
AID344083Insecticidal activity against houseflies2008Journal of medicinal chemistry, Jul-24, Volume: 51, Issue:14
Potency and selectivity of trifluoroacetylimino and pyrazinoylimino nicotinic insecticides and their fit at a unique binding site niche.
AID680509TP_TRANSPORTER: inhibition of Doxorubicin efflux (Doxorubicin: 50 uM, Parathion: 250 uM) in MDR1-expressing B16/F10 cells1996Toxicology and applied pharmacology, Nov, Volume: 141, Issue:1
Interaction of structurally diverse pesticides with the human MDR1 gene product P-glycoprotein.
AID1101172Insecticidal activity against organophosphate-susceptible clone of Schizaphis graminum OSS adult or last-instar nymphs assessed as insect mortality after 8 hr2000Journal of agricultural and food chemistry, Oct, Volume: 48, Issue:10
Comparative toxicity of selected organophosphate insecticides against resistant and susceptible clones of the greenbug, Schizaphis graminum (Homoptera: aphididae).
AID589088Mechanism based inhibition of human cytochrome P450 2C9 measured by Tolbutamide methyl hydroxylation2005Current drug metabolism, Oct, Volume: 6, Issue:5
Cytochrome p450 enzymes mechanism based inhibitors: common sub-structures and reactivity.
AID1101170Insecticidal activity against organophosphate-resistant clone of Schizaphis graminum OR2 adult or last-instar nymphs assessed as insect mortality after 8 hr2000Journal of agricultural and food chemistry, Oct, Volume: 48, Issue:10
Comparative toxicity of selected organophosphate insecticides against resistant and susceptible clones of the greenbug, Schizaphis graminum (Homoptera: aphididae).
AID589211Mechanism based inhibition of human cytochrome P450 1A2 measured by 7-ethoxyresorufin O-deethylation (EROD)2005Current drug metabolism, Oct, Volume: 6, Issue:5
Cytochrome p450 enzymes mechanism based inhibitors: common sub-structures and reactivity.
AID23272Partition coefficient (logP)1984Journal of medicinal chemistry, May, Volume: 27, Issue:5
Phosphorus analogues of gamma-aminobutyric acid, a new class of anticonvulsants.
AID1101168Resistance index, ratio of LC50 for organophosphate-resistant clone of Schizaphis graminum OR2 adult or last-instar nymphs to LC50 for organophosphate-susceptible clone of Schizaphis graminum OSS adult or last-instar nymphs2000Journal of agricultural and food chemistry, Oct, Volume: 48, Issue:10
Comparative toxicity of selected organophosphate insecticides against resistant and susceptible clones of the greenbug, Schizaphis graminum (Homoptera: aphididae).
[information is prepared from bioassay data collected from National Library of Medicine (NLM), extracted Dec-2023]

Research

Studies (2,057)

TimeframeStudies, This Drug (%)All Drugs %
pre-19901562 (75.94)18.7374
1990's178 (8.65)18.2507
2000's168 (8.17)29.6817
2010's115 (5.59)24.3611
2020's34 (1.65)2.80
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Market Indicators

Research Demand Index: 56.17

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 very strong demand-to-supply ratio for research on this compound.

MetricThis Compound (vs All)
Research Demand Index56.17 (24.57)
Research Supply Index7.73 (2.92)
Research Growth Index4.31 (4.65)
Search Engine Demand Index105.18 (26.88)
Search Engine Supply Index2.16 (0.95)

This Compound (56.17)

All Compounds (24.57)

Study Types

Publication TypeThis drug (%)All Drugs (%)
Trials1 (0.04%)5.53%
Reviews55 (2.41%)6.00%
Case Studies112 (4.90%)4.05%
Observational0 (0.00%)0.25%
Other2,116 (92.64%)84.16%
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]