Page last updated: 2024-11-04

formic acid

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Description

Formic acid, also known as methanoic acid, is the simplest carboxylic acid. It is a colorless, pungent liquid that occurs naturally in some insects and plants. Formic acid is produced industrially by reacting carbon monoxide with methanol. It is also a byproduct of the production of other chemicals, such as acetic acid. Formic acid is used in various applications, including textile dyeing, leather tanning, and as a preservative. It is also a key ingredient in some pesticides and herbicides. Formic acid is corrosive and can cause skin and eye irritation. It is also a flammable liquid. Formic acid is studied extensively because of its diverse applications and its role in the environment. It is a significant contributor to acid rain and is involved in various chemical reactions that occur in the atmosphere. Understanding its properties and reactions is crucial for predicting its impact on the environment and for developing sustainable solutions. '

formic acid: RN given refers to parent cpd [Medical Subject Headings (MeSH), National Library of Medicine, extracted Dec-2023]

formic acid : The simplest carboxylic acid, containing a single carbon. Occurs naturally in various sources including the venom of bee and ant stings, and is a useful organic synthetic reagent. Principally used as a preservative and antibacterial agent in livestock feed. Induces severe metabolic acidosis and ocular injury in human subjects. [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]

Cross-References

ID SourceID
PubMed CID284
CHEMBL ID116736
CHEBI ID30751
CHEBI ID191874
CHEBI ID36036
MeSH IDM0096528

Synonyms (140)

Synonym
hcooh
h-cooh
methoic acid
bilorin
hydrogen carboxylic acid
ameisensaeure
hco2h
aminic acid
acide formique
CHEBI:30751 ,
formylic acid
kyselina mravenci [czech]
un1779
kwas metaniowy [polish]
mierenzuur [dutch]
hsdb 1646
einecs 200-579-1
rcra waste no. u123
acide formique [french]
ameisensaeure [german]
acido formico [italian]
inchi=1/ch2o2/c2-1-3/h1h,(h,2,3
formisoton
ameisensaure
ai3-24237
formic acid (natural)
rcra waste number u123
c1 acid
ccris 6039
methanoic acid monomer
myrmicyl
formira
add-f
collo-bueglatt
wonderbond hardener m 600l
epa pesticide chemical code 214900
fema no. 2487
sybest
collo-didax
C00058
methanoic acid
64-18-6
formic acid
formic acid, >=95%, fcc, fg
DB01942
formic acid, acs reagent, >=96.0%
F0654
F0513
AKOS000269044
formic acid [un1779] [corrosive]
BMSE000203
82069-14-5
e236
CHEMBL116736
FT-0668804
CHEBI:191874
A834666
NCGC00248718-01
kwas metaniowy
unii-0yiw783rg1
formicum acidum
kyselina mravenci
mierenzuur
acido formico
0yiw783rg1 ,
ec 200-579-1
FT-0626535
FT-0626533
FT-0626537
STL264243
BP-21436
formic acid [ep monograph]
formic acid [fcc]
formic acid [mart.]
formic acid [fhfi]
formic acid [ema epar veterinary]
formic acid [usp-rs]
formic acid [hsdb]
formicum acidum [hpus]
formic acid component of varromed
formic acid [vandf]
formic acid [mi]
formic acid [who-dd]
varromed component formic acid
formic acid [inci]
forrnic acid
amasil
un 1779
mfcd00003297
DTXSID2024115 ,
J-521387
F1908-0082
formic acid, acs reagent, >=96%
formic acid, puriss. p.a., acs reagent, reag. ph. eur., >=98%
formic acid, acs reagent, 88-91%
formic acid, jis special grade, >=98.0%
formic acid, united states pharmacopeia (usp) reference standard
formic acid, 95-97%
formic acid, puriss., meets analytical specifications of dac, fcc, 98.0-100%
formate standard for ic, 1.000 g/l in h2o, analytical standard
formic acid, purum, >=85%
formic acid, saj first grade, 88.0-89.5%
formic acid, reagent grade, >=95%
formic acid, natural
formic acid, technical grade, 85%
formic acid, p.a., 85%
formic acid, ar, >=90%
formic acid, ar, >=98%
formic acid, lr, >=98%
formic acid, p.a., acs reagent, 98.0-100.0%
formic acid, lr, >=85%
formic acid, vetec(tm) reagent grade, 95%
c20:3
CHEBI:36036
formic acid, acs grade
BCP23013
Q27110013
Q161233
AMY11055
formic acid, lc/ms grade
CCG-266004
formic acid ampoules (lcms grade)
formic acid 1000 microg/ml in acetonitrile
formic-d acid ( in h2o) >98.0 atom % d
Z104475998
dtxcid904115
provitahoofsure endurance
fema no 2487
formic acid (ep monograph)
formic acid (usp-rs)
usepa/opp pesticide code: 214900
provita hoofsure endurance xl
acidum formicum
provita konquest
formic acid (mart.)
formic acid (ema epar veterinary)
pleo form
provita hoofsure endurance express
SY078334
formic acid-d2, 95 wt% solution in d2o

Research Excerpts

Overview

Formic acid (FA) dimer is a model compound of double proton transfer systems, such as DNA base pairs. Formic acid is an important organic one-carbon source and widely used in industrial manufacturing of pesticides, leather, dyes, medicine and rubber.

ExcerptReferenceRelevance
"Formic acid is a representative small molecule acid in lignocellulosic hydrolysate that can inhibit the growth of Saccharomyces cerevisiae cells during alcohol fermentation. "( Transcriptomic analysis of formic acid stress response in Saccharomyces cerevisiae.
Cheng, Q; Feng, P; Huang, J; Long, X; Si, Z; Yi, Y; Zeng, L; Zhao, X, 2022
)
2.46
"Formic acid (FA) is a spinning solvent for regenerated"( Presence of β-Turn Structure in Recombinant Spider Silk Dissolved in Formic Acid Revealed with NMR.
Asakura, T; Higashi, T; Okamura, H; Sato, TK; Suzuki, Y; Yamamoto, T, 2022
)
1.68
"Formic acid is an attractive solvent for the fractionation of lignocellulose for the production of biomaterials and chemicals, while the operation conducted in a batch manner is not conducive to mass transfer in separation process. "( Flow-through strategy to fractionate lignin from eucalyptus with formic acid/hydrochloric solution under mild conditions.
Guo, TS; Li, MF; Ma, JF; Xu, YH, 2022
)
2.4
"Formic acid pretreatment is a promising approach for fractionating biomass, and it has the advantages of efficient recycling and removal of hemicellulose and lignin. "( In-depth investigation of formic acid pretreatment for various biomasses: Chemical properties, structural features, and enzymatic hydrolysis.
Han, M; Ma, Z; Ouyang, J; Qiao, H; Wang, Y; Zheng, Z, 2023
)
2.65
"The formic acid (FA) dimer is a model compound of double proton transfer systems, such as DNA base pairs."( Proton Transfer vs Complex Formation Channels in Ionized Formic Acid Dimer: A Direct
Tachikawa, H, 2020
)
1.28
"Formic acid is an important organic one-carbon source and widely used in industrial manufacturing of pesticides, leather, dyes, medicine and rubber."( [Progress in biological utilization of formic acid].
Deng, W; Gu, Y; Jiang, W; Xu, R, 2020
)
1.55
"Formic acid is a widely used commodity chemical. "( Towards Sustainable Production of Formic Acid.
Bulushev, DA; Ross, JRH, 2018
)
2.2
"Formic acid is a promising energy carrier for on-demand hydrogen generation. "( A prolific catalyst for dehydrogenation of neat formic acid.
Celaje, JJ; Kedzie, EA; Lo, JN; Lu, Z; Terrile, NJ; Williams, TJ, 2016
)
2.13
"Formic acid functions as a fragrance ingredient, preservative, and pH adjuster in cosmetic products, whereas sodium formate functions as a preservative. "( Safety Assessment of Formic Acid and Sodium Formate as Used in Cosmetics.
Andersen, FA; Belsito, DV; Bergfeld, WF; Heldreth, B; Hill, RA; Johnson, W; Klaassen, CD; Liebler, DC; Marks, JG; Shank, RC; Slaga, TJ; Snyder, PW, 2016
)
2.2
"Formic acid is a highly energetic electron donor but it has previously resulted in low power densities in microbial fuel cells (MFCs). "( Syntrophic interactions improve power production in formic acid fed MFCs operated with set anode potentials or fixed resistances.
Call, DF; Kiely, PD; Logan, BE; Sun, D; Wang, A, 2012
)
2.07
"Formic acid is a key ligand of catalase because of its ability to react with the ferric enzyme, giving a high-spin iron complex."( Structural studies of Proteus mirabilis catalase in its ground state, oxidized state and in complex with formic acid.
Andreoletti, P; Gouet, P; Jouve, HM; Pernoud, A; Sainz, G, 2003
)
1.25
"Formic acid is a substance produced by some ants for defense, trail marking, and recruitment. "( Repellent efficacy of formic acid and the abdominal secretion of carpenter ants (Hymenoptera: Formicidae) against Amblyomma ticks (Acari: Ixodidae).
De Resende, BD; Falótico, T; Izar, P; Labruna, MB; Ottoni, EB; Verderane, MP, 2007
)
2.1
"Formic acid is a highly fatal source of carbon monoxide poisoning when mixed with sulfuric acid. "( Formic acid: a rare but deadly source of carbon monoxide poisoning.
Ger, J; Li, CF; Yang, CC, 2008
)
3.23
"Formic acid is a constituent of ginger-bread, formed by the baking process, in concentrations up to 1 000 mg/kg."( [Formic acid in ginger bread--an adulterant?].
Ayuto, M; Rohns, G, 1984
)
2.62
"Formic acid was shown not to be a metabolite of trichloroethylene."( Formic acid excretion in rats exposed to trichloroethylene: a possible explanation for renal toxicity in long-term studies.
Dow, J; Foster, JR; Green, T; Hext, PM, 1998
)
2.46
"Formic acid is a weaker inhibitor than cyanide and hydrosulphide anions."( Methanol and formic acid toxicity: biochemical mechanisms.
Liesivuori, J; Savolainen, H, 1991
)
1.37

Effects

Formic acid (HCOOH) has great potential as an in situ source of hydrogen for fuel cells. It offers high energy density, is non-toxic and can be safely handled in aqueous solution. Formic acid has been shown to inhibit cytochrome oxidase.

ExcerptReferenceRelevance
"4. Formic acid has a pKa value (the negative logarithm of the dissociation constant) almost identical to that of lactic acid; thus, its injection decreased pHa to the same degree as did the injection of lactic acid."( Stimulation of pulmonary C fibres by lactic acid in rats: contributions of H+ and lactate ions.
Hong, JL; Kwong, K; Lee, LY, 1997
)
0.81
"Formic acid (FA) has emerged as a promising one-carbon feedstock for biorefinery. "( Discovery and remodeling of Vibrio natriegens as a microbial platform for efficient formic acid biorefinery.
Deng, W; Gu, Y; Jiang, W; Tian, J; Xu, J; Yang, G; Yang, S; Zhang, Z; Zhao, G, 2023
)
2.58
"Formic acid (FA) has been used for decades to control Varroa destructor, one of the most important parasites of the western honey bee, Apis mellifera. "( Comparative transcriptomics indicates endogenous differences in detoxification capacity after formic acid treatment between honey bees and varroa mites.
Buer, B; Einspanier, R; Genath, A; Nauen, R; Sharbati, S, 2020
)
2.22
"Formic acid has recently been detected in maternal blood and umbilical cord blood of infants born to alcohol abusing mothers. "( Adverse placental effect of formic acid on hCG secretion is mitigated by folic acid.
Eichhorst, J; Hackmon, R; Hutson, JR; Kapur, BM; Koren, G; Lubetsky, A,
)
1.87
"Formic acid removal has been investigated in a SBR fed with acetic and formic acids at equimolar concentrations."( Role of biomass adaptation in the removal of formic acid in sequencing batch reactors.
Beccari, M; Bellani, A; Dionisi, D; Majone, M; Viggi, CC, 2008
)
1.33
"Formic acid (HCOOH) has great potential as an in situ source of hydrogen for fuel cells, because it offers high energy density, is non-toxic and can be safely handled in aqueous solution. "( Hydrogen production from formic acid decomposition at room temperature using a Ag-Pd core-shell nanocatalyst.
Bagot, PA; Chan, CW; Jones, S; Li, T; Marquis, EA; Smith, GD; Tedsree, K; Tsang, SC; Yu, KM, 2011
)
2.12
"Formic acid has also been shown to inhibit cytochrome oxidase and is the prime cause of ocular toxicity, though acidosis can increase toxicity further by enabling greater diffusion of formic acid into cells."( American Academy of Clinical Toxicology practice guidelines on the treatment of methanol poisoning.
Barceloux, DG; Bond, GR; Cooper, H; Krenzelok, EP; Vale, JA, 2002
)
1.04
"4. Formic acid has a pKa value (the negative logarithm of the dissociation constant) almost identical to that of lactic acid; thus, its injection decreased pHa to the same degree as did the injection of lactic acid."( Stimulation of pulmonary C fibres by lactic acid in rats: contributions of H+ and lactate ions.
Hong, JL; Kwong, K; Lee, LY, 1997
)
0.81
"Formic acid has been used in various countries for the control of parasitic mites of honey bees (Apis mellifera), particularly the Varroa mite (Varroa jacobsoni) and the tracheal mite (Acarapis woodi). "( Development of a gel formulation of formic acid for control of parasitic mites of honey bees.
Kochansky, J; Shimanuki, H, 1999
)
2.02

Actions

Formic acid (FA) plays a key role in the preparation of silk fibroin (SF) scaffolds from cocoons of Bombyx mori. Formic acid may increase or decrease due to bacterial contamination.

ExcerptReferenceRelevance
"Formic acid (FA) plays a key role in the preparation of silk fibroin (SF) scaffolds from cocoons of Bombyx mori and is used for fibre distribution. "( Fine-tuning scaffolds for tissue regeneration: effects of formic acid processing on tissue reaction to silk fibroin.
Barbeck, M; Ghanaati, S; James Kirkpatrick, C; Migliaresi, C; Motta, A; Orth, C; Unger, RE; Webber, MJ, 2010
)
2.05
"Formic acid may increase or decrease due to bacterial contamination."( Increase and decrease in formic acid concentration in urine samples stored at room temperature.
Goebel, A; Schiwara, HW; Siegel, H, 1992
)
1.31

Treatment

Formic acid (FA) pre-treatment, which is generally used to enable efficient detection of Aβ with IHC, induces structural modifications within the Aβ, as well as in AAF. Formic acid pretreatment is considered to be effective in prion inactivation.

ExcerptReferenceRelevance
"Formic acid pretreatment is a promising approach for fractionating biomass, and it has the advantages of efficient recycling and removal of hemicellulose and lignin. "( In-depth investigation of formic acid pretreatment for various biomasses: Chemical properties, structural features, and enzymatic hydrolysis.
Han, M; Ma, Z; Ouyang, J; Qiao, H; Wang, Y; Zheng, Z, 2023
)
2.65
"Formic acid (FA) pre-treatment, which is generally used to enable efficient detection of Aβ with IHC, induces structural modifications within the Aβ, as well as in AAF."( Immunohistochemical characterization of novel monoclonal antibodies against the N-terminus of amyloid β-peptide.
Blankenstein, MA; Hoozemans, JJ; Korth, C; Prikulis, I; Rozemuller, AJ; Scheltens, P; Schenk, D; Twaalfhoven, HA; van Haastert, ES; van Royen, MR; Veerhuis, R; Verwey, NA; Wouters, D, 2013
)
1.11
"Formic acid treatment for the control of the ectoparasitic varroa mite, Varroa destructor Anderson & Trueman, infesting honey bee, Apis mellifera L., colonies is usually carried out as an in-hive outdoor treatment. "( Indoor winter fumigation of Apis mellifera (Hymenoptera: Apidae) colonies infested with Varroa destructor (Acari: Varroidae) with formic acid is a potential control alternative in northern climates.
Currie, RW; Underwood, RM, 2004
)
1.97
"Two formic acid autumnal treatments, gel packets (BeeVar formulation) and impregnated paperwick (Liebig-Dispenser), were tested in apiary to evaluate their effectiveness against Varroa destructor Anderson & Trueman and their residues in honey in a Mediterranean region (Sardinia, Italy). "( Formic acid-based treatments for control of Varroa destructor in a Mediterranean area.
Cabras, P; Eguaras, M; Floris, I; Garau, VL; Melis, M; Satta, A, 2005
)
2.33
"Formic acid pretreatment is considered to be effective in prion inactivation."( Tissue pretreatment with formic acid might lower HercepTest scores in breast cancer.
Boesl, A; Burkhardt, M; Dahl, E; Dankof, A; Dietel, M; Fritzsche, FR; Kristiansen, G; Pahl, S, 2006
)
1.36
"Formic acid treatment of outer membrane preparations and purified HMW-OMP produced a single band with an apparent molecular mass of 120 to 140 kDa."( Purification and characterization of a high-molecular-weight outer membrane protein of Moraxella (Branhamella) catarrhalis.
Klingman, KL; Murphy, TF, 1994
)
1.01
"This formic acid pretreatment enhanced immunoreactivity of the amyloid deposits which reacted positively with specific antiserum."( Formic acid pretreatment enhances immunostaining of cerebral and systemic amyloids.
Kitamoto, T; Ogomori, K; Prusiner, SB; Tateishi, J, 1987
)
2.17
"Formic acid pretreatment of sections resulted in markedly enhanced staining of senile plaque core and microvascular, especially capillary, amyloid, and some apparent staining of the neuritic component of senile plaques."( Immunohistochemical study of cerebral amyloid angiopathy. II. Enhancement of immunostaining using formic acid pretreatment of tissue sections.
Ishii, N; Pardridge, WM; Secor, DL; Vinters, HV, 1988
)
1.21
"Treatment with formic acid significantly (P ≤ 0.05) decreased the germination percentage."( Antimicrobial activities of organic acid vapors against Acidovorax citrulli, Salmonella enterica, Escherichia coli O157:H7, and Listeria monocytogenes on Cucurbitaceae seeds.
Beuchat, LR; Kim, H; Ryu, JH; Shin, HJ, 2020
)
0.9
"Pretreatment with formic acid degraded telopeptides and released the cross-links (pyrrole and pyridinoline), which made hen collagen more susceptible to papain hydrolysis."( Pretreatment with formic acid enhances the production of small peptides from highly cross-linked collagen of spent hens.
Bruce, HL; Chalamaiah, M; Hong, H; Roy, BC; Wu, J, 2018
)
1.14

Toxicity

Methanol is teratogenic in rodents and, although the exact toxic species is not known, teratogenesis may result from the enzymatic biotransformation of H3COH to formaldehyde. Retinal photoreceptors and retinal pigment epithelial (RPE) cells are among the cell types that are sensitive to poisoning with methanol and its toxic metabolite formic acid.

ExcerptReferenceRelevance
" Significantly diminished formate oxidation by cells exposed to either CR or TCE without acetylene compared with that with acetylene suggests that the solvents themselves were not toxic under the experimental conditions but their transformation products were."( Product toxicity and cometabolic competitive inhibition modeling of chloroform and trichloroethylene transformation by methanotrophic resting cells.
Alvarez-Cohen, L; McCarty, PL, 1991
)
0.28
" A nonprimate model of methanol-induced visual toxicity was developed using rats treated with subanesthetic concentrations of nitrous oxide to inhibit the oxidation of methanol's toxic metabolite, formic acid."( Methanol-induced visual toxicity in the rat.
Eells, JT, 1991
)
0.47
" LD50 that would be expected from a huge increase (greater than 10-fold) in the 24-h blood plasma formate level."( Acute toxicity of methanol in the folate-deficient acatalasemic mouse.
Smith, EN; Taylor, RT, 1982
)
0.26
" MeOH has been shown to be developmentally toxic in mice and rats both in vivo and in vitro, but rodents neither accumulate formate nor develop acidosis after MeOH exposure."( Developmental toxicity of formate and formic acid in whole embryo culture: a comparative study with mouse and rat embryos.
Andrews, JE; Ebron-McCoy, M; Kavlock, RJ; Rogers, JM, 1995
)
0.56
" The folate-reduced (FR) rat is an excellent animal model that mimics characteristic human methanol toxic responses."( Role of retinal metabolism in methanol-induced retinal toxicity.
Garner, CD; Lee, EW; Louis-Ferdinand, RT; Terzo, TS, 1995
)
0.29
"Primary dissociated mouse cerebrocortical cell cultures containing both neurons and glial cells were used as an experimental model to study the neurotoxic effects of formate, the putative toxic metabolite of methanol."( The toxic effects of formate in dissociated primary mouse neural cell cultures.
Bolon, B; Dorman, DC; Morgan, KT, 1993
)
0.29
"We attempted to develop a rodent model that exhibits characteristics of human methanol toxicities such as acidosis and visual dysfunction, which are correlated with an accumulation of formate, a toxic metabolite of methanol."( Animal model for the study of methanol toxicity: comparison of folate-reduced rat responses with published monkey data.
Garner, CD; Lee, EW; Terzo, TS, 1994
)
0.29
" The toxic syndrome in primates is characterized by formic acidemia, metabolic acidosis and blindness or serious visual impairment."( Development and characterization of a rodent model of methanol-induced retinal and optic nerve toxicity.
Eells, JT; Henry, MM; Lewandowski, MF; Murray, TG; Seme, MT, 2000
)
0.56
" Furthermore, formaldehyde was found to be toxic to acetoclastic methanogenesis in a dual character."( Conversion and toxicity characteristics of formaldehyde in acetoclastic methanogenic sludge.
Gonzalez-Gil, G; Kleerebezem, R; Lettinga, G, 2002
)
0.31
"Methanol intoxication produces toxic injury to the retina and optic nerve, resulting in blindness."( Therapeutic photobiomodulation for methanol-induced retinal toxicity.
Buchmann, EV; Eells, JT; Henry, MM; Kane, M; Summerfelt, P; Whelan, HT; Whelan, NT; Wong-Riley, MT, 2003
)
0.32
" Methanol is teratogenic in rodents and, although the exact toxic species is not known, teratogenesis may result from the enzymatic biotransformation of H3COH to formaldehyde (CH2O) and formic acid causing increased biological reactivity and toxicity."( Glutathione depletion modulates methanol, formaldehyde and formate toxicity in cultured rat conceptuses.
Dixon, M; Hansen, JM; Harris, C, 2004
)
0.51
"Retinal photoreceptors and retinal pigment epithelial (RPE) cells are among the cell types that are sensitive to poisoning with methanol and its toxic metabolite formic acid."( Antioxidants and ocular cell type differences in cytoprotection from formic acid toxicity in vitro.
Burke, JM; Eells, JT; Henry, MM; Skumatz, CM; Treichel, JL, 2004
)
0.75
" Here we have report that, although expression of Huntingtin derivatives with a pathological poly(Q) expansion are innocuous in yeast, deletion of the flanking proline-rich region alters the shape and number of poly(Q) inclusions and unmasks toxic properties."( Critical role of the proline-rich region in Huntingtin for aggregation and cytotoxicity in yeast.
Bertolotti, A; Dehay, B, 2006
)
0.33
" We found that the sequestering agent transthyretin is able to bind the toxic Aβ(1-42) species and attenuated the loss of neurons and memory deficits."( Neurotoxicity and memory deficits induced by soluble low-molecular-weight amyloid-β1-42 oligomers are revealed in vivo by using a novel animal model.
Alves-Pires, C; Benilova, I; Blum, D; Brouillette, J; Buée, L; Caillierez, R; De Strooper, B; Zommer, N, 2012
)
0.38
"In a contact toxicity bioassay, 24 h LD50 values of formic acid for workers ranged from 124."( Toxicity of formic acid to red imported fire ants, Solenopsis invicta Buren.
Chen, J; Feng, G; Rashid, T, 2012
)
1.01
"When applied topically, formic acid was significantly less toxic than bifenthrin to red imported fire ants."( Toxicity of formic acid to red imported fire ants, Solenopsis invicta Buren.
Chen, J; Feng, G; Rashid, T, 2012
)
1.06
"This paper presents a new analytical method for the simultaneous determination of baclofen and gabapentin in feeds based on two modified quick, easy, cheap, effective, rugged and safe (QuEChERS) sample preparation methods and liquid chromatography tandem mass spectrometry (LC-MS/MS)."( Evaluation of two modified quick, easy, cheap, effective, rugged and safe (QuEChERS) sample preparation methods for the analysis of baclofen and gabapentin in feeds by liquid chromatography tandem mass spectrometry.
Chen, RX; Hou, XL; Lv, Y; Wu, YL; Xu, XQ; Zhu, Y, 2014
)
0.4
"High-aspect-ratio nanomaterials (HARN) (typically, single-walled carbon nanotubes (SWCNT) or multiwalled carbon nanotubes (MWCNT)) impair airway barrier function and are toxic to macrophages."( Imogolite: an aluminosilicate nanotube endowed with low cytotoxicity and genotoxicity.
Bergamaschi, E; Bernardeschi, M; Bianchi, MG; Bonelli, B; Bussolati, O; Esposito, S; Frenzilli, G; Fubini, B; Guidi, P; Lucchesi, P; Nigro, M; Rotoli, BM; Scarcelli, V; Tomatis, M; Zanello, PP, 2014
)
0.4
" The results from this study suggest that the Fenton oxidation process could remove sulfadiazine, but also increase solution toxicity due to the presence of more toxic products."( Chemical oxidation of sulfadiazine by the Fenton process: kinetics, pathways, toxicity evaluation.
Li, WJ; Xiao, AG; Yang, JF; Ying, GG; Zhou, SB, 2014
)
0.4
" The Cosmetic Ingredient Review Expert Panel concluded that formic acid and sodium formate are safe in the present practices of use and concentration in cosmetics, when formulated to be nonirritating."( Safety Assessment of Formic Acid and Sodium Formate as Used in Cosmetics.
Andersen, FA; Belsito, DV; Bergfeld, WF; Heldreth, B; Hill, RA; Johnson, W; Klaassen, CD; Liebler, DC; Marks, JG; Shank, RC; Slaga, TJ; Snyder, PW, 2016
)
1
"Catalytic reduction of Cr(VI) to less toxic Cr(III) form using metal nanoparticles is one of the novel approaches adopted to deal with Cr toxicity."( Mitigation of Cr(VI) toxicity using Pd-nanoparticles immobilized catalytic reactor (Pd-NICaR) fabricated via plasma and gamma radiation.
Goel, NK; Kumar, V; Misra, N; Rawat, S; Shelkar, SA; Singhal, RK; Varshney, L, 2018
)
0.48
" In Experiment 2, intra-yolk-sac administration of toxic doses of FA (2 m m) concurrent with kinetin at 50, 100 or 200 µ m were evaluated on hatched embryos."( Assessment of the effect of kinetin against formic acid toxicity in chicken embryo model.
Allymehr, M; Amini, M; Zadeh-Hashem, E, 2023
)
1.17

Pharmacokinetics

ExcerptReferenceRelevance
" Monkeys were then reexposed to the highest exposure concentration, 900 ppm 14C-methanol, for a similar 2-hour period, and again the pharmacokinetic data described above were obtained."( Pharmacokinetics of methanol and formate in female cynomolgus monkeys exposed to methanol vapors.
Bond, JA; Dorman, DC; Everitt, JI; Janszen, DB; Medinsky, MA; Moss, OR, 1997
)
0.3
" The linear ranges correspond well with the serum concentrations of the analytes obtained in clinical pharmacokinetic studies."( High-performance liquid chromatography-mass spectrometric analysis of ramipril and its active metabolite ramiprilat in human serum: application to a pharmacokinetic study in the Chinese volunteers.
Liu, J; Lu, XY; Shen-Tu, JZ, 2006
)
0.33
" The method has been successfully applied to a pharmacokinetic study of rupatadine and its major metabolite after oral administration of 10, 20 and 40mg rupatadine tablets to healthy Chinese volunteers."( Simultaneous determination of rupatadine and its metabolite desloratadine in human plasma by a sensitive LC-MS/MS method: application to the pharmacokinetic study in healthy Chinese volunteers.
Fan, G; Hong, Z; Wei, H; Wen, J; Wu, Y, 2009
)
0.35
"A rapid, sensitive and selective high performance liquid chromatography-electrospray ionization-tandem mass spectrometry method (HPLC-ESI-MS/MS) was developed and validated for the determination and pharmacokinetic investigation of dexmedetomidine (DMED) in human plasma."( Determination of dexmedetomidine in human plasma using high performance liquid chromatography coupled with tandem mass spectrometric detection: application to a pharmacokinetic study.
Chen, Y; Feng, S; Li, W; Tian, Y; Wu, L; Zhang, Z, 2009
)
0.35
" The validated method was successfully applied to a preliminary pharmacokinetic study of loureirin B in rats."( A sensitive LC-MS/MS method to quantify loureirin B in rat plasma with application to preclinical pharmacokinetic studies.
Deng, Y; Li, Y; Xin, N; Yang, Z, 2009
)
0.35
" The validated method was successfully applied to determine the plasma concentrations of artemether and lumefantrine in healthy volunteers, in a one-dose pharmacokinetic study, over the course of 11 days."( Liquid chromatography-tandem mass spectrometry for the simultaneous quantitation of artemether and lumefantrine in human plasma: application for a pharmacokinetic study.
Bellorio, KB; César, IC; Chellini, PR; de Abreu, FC; Moreira, JM; Pianetti, GA; Ribeiro, JA; Teixeira, Lde S, 2011
)
0.37
" To support a clinical pharmacokinetic study, a simple, rapid and sensitive method to determine vinorelbine in human plasma was developed using reversed phase liquid chromatography (LC) coupled with electrospray ionization mass spectrometry/mass spectrometry (ESI-MS/MS)."( Rapid and sensitive determination of vinorelbine in human plasma by liquid chromatography-tandem mass spectrometry and its pharmacokinetic application.
Chang, J; Hu, X; Qian, J; Wang, J; Wang, Y; Zhang, J, 2011
)
0.37
" The practical utility of the aforementioned method was successfully confirmed in the pharmacokinetic evaluation of solamargine in Sprague-Dawley rats after intravenous administration."( Quantitative determination and pharmacokinetic study of solamargine in rat plasma by liquid chromatography-mass spectrometry.
Cao, L; Chen, J; Liang, Y; Wang, G; Xiao, W; Xie, L; Xu, L; Zhang, Y; Zhao, L; Zheng, X, 2011
)
0.37
" The validated assay was applied to a pharmacokinetic study in rats."( Validated LC-ESI-MS/MS method for simultaneous quantitation of felodipine and metoprolol in rat plasma: application to a pharmacokinetic study in rats.
Kallem, RR; Ramesh, M; Seshagirirao, JV, 2013
)
0.39
"A rapid and sensitive liquid chromatography-tandem mass spectrometry (LC-MS/MS) method for determination of Meserine ((-)-meptazinol phenylcarbamate), a novel potent inhibitor of acetylcholinesterase (AChE), was developed, validated, and applied to a pharmacokinetic study in mice brain."( Determination of Meserine, a new candidate for Alzheimer's disease in mice brain by liquid chromatography-tandem mass spectrometry and its application to a pharmacokinetic and tissue distribution study.
Chen, H; Lv, H; Qiu, Z; Tang, Y; Wang, H; Xie, Q; Xu, J; Zhao, H; Zheng, Z, 2014
)
0.4
" The method was successfully applied to a pharmacokinetic study of RT and its two metabolite DT and 3-OH-DT in healthy volunteers following single (10, 20, 40 mg) and multiple (10 mg) oral doses of rupatadine fumarate tablets."( Development of a highly sensitive LC-MS/MS method for simultaneous determination of rupatadine and its two active metabolites in human plasma: Application to a clinical pharmacokinetic study.
Ding, L; Gu, P; Li, Q; Liu, B; Pan, L; Sun, C; Wu, C; Zhang, J, 2015
)
0.42
" The method was successfully applied to a clinical pharmacokinetic study of febuxostat in humans after oral administration of a single dose of febuxostat at 40, 80 and 120 mg."( Simultaneous determination of febuxostat and its three active metabolites in human plasma by liquid chromatography-tandem mass spectrometry and its application to a pharmacokinetic study in Chinese healthy volunteers.
Di, X; Liu, Y; Mao, Z; Wang, X; Wu, Y, 2015
)
0.42
" The proposed method was successfully applied to evaluating the pharmacokinetic studies of periplocin and its metabolites (periplocymarin and periplogenin) in rats after a single oral administration of periplocin at 50 mg/kg."( A validated LC-MS/MS assay for the simultaneous determination of periplocin and its two metabolites, periplocymarin and periplogenin in rat plasma: Application to a pharmacokinetic study.
Azietaku, JT; Bo, F; Chang, Y; Dou, T; Gao, X; He, J; Liu, H; Ouyang, H; Tu, Y, 2015
)
0.42
" This novel method has been applied to a pharmacokinetic study in rats."( Highly Sensitive LC-MS-MS Method for the Determination of Tacrine in Rat Plasma: Application to Pharmacokinetic Studies in Rats.
Mullangi, R; Ponnayyan Sulochana, S; Ravichandiran, V; Sukumaran, SK, 2016
)
0.43
" The validated LC-MS/MS method has been successfully applied to a pharmacokinetic study of STS in Chinese healthy male volunteers."( Determination of Sodium Tanshinone IIA Sulfonate in human plasma by LC-MS/MS and its application to a clinical pharmacokinetic study.
Liu, H; Lu, X; Qi, W; Qin, W; Wang, B; Wang, L, 2016
)
0.43
" This analytical method was then successfully applied to a pharmacokinetic study of Gly-MCA following oral administration and intraperitoneal injection in mice."( An HPLC-MS/MS method for quantitation of Gly-MCA in mouse plasma: Application to a pharmacokinetic study.
Jiang, C; Lian, G; Liu, J; Ma, Y; Wang, T; Yin, Y; Zhou, J, 2017
)
0.46
" Furthermore, the validated method was successfully applied to determine the six components in plasma after oral administration of AM aqueous extract to beagle dogs and the pharmacokinetic parameters were obtained."( Simultaneous determination and pharmacokinetic study of six components in beagle dog plasma by UPLC-MS/MS after oral administration of Astragalus Membranaceus aqueous extract.
Cheng, W; Ji, C; Kang, C; Li, Y; Wang, Q; Wu, S; Xia, K; Yang, W; Yu, X; Yuan, Z, 2022
)
0.72
" This paper has compared the pharmacokinetic parameters with oral tablets (Aida®) in mini pigs and evaluated the uterine targeted effect and mucosal irritation of the ring."( A novel anastrozole intravaginal ring for endometriosis: Pharmacokinetic characteristics and mucosal irritation.
Dong, J; Ma, B; Ning, M; Wu, S; Yang, Z, 2023
)
0.91
" The method was applied to a pharmacokinetic study of Abrus cantoniensis Hance in rats."( Simultaneous determination of abrine, hypaphorine, schaftoside and soyasaponin Bb in rat plasma by UPLC-MS/MS and its application to a pharmacokinetic study after oral administration of Abrus cantoniensis Hance extract.
Bu, Q; Huang, B; Li, C; Liu, C; Lu, P; Zhang, C, 2023
)
0.91

Compound-Compound Interactions

ExcerptReferenceRelevance
"In this paper, a high-performance thin-layer chromatography (HPTLC) method combined with densitometry has been described."( Quantitative analysis of phenobarbital in dosage form by thin-layer chromatography combined with densitometry.
Kryska, M; Matysik, G; Skalska, A; Wójciak-Kosior, M,
)
0.13
" A broad spectrum of toxic organics in water was efficiently destroyed in the presence of dioxygen in combination with hydrazine hydrate at 150 °C."( Dioxygen in combination with hydrazine: a practical system for degradation of a broad spectrum of toxic organics in water.
Chu, C; Liang, X; Liao, N; Liu, R; Liu, Y; Lu, Q; Shen, J; Tao, J, 2011
)
0.37
"A method based on the QuEChERS (quick, easy, cheap, effective, rugged, and safe) purification combined with ultrahigh performance liquid chromatography tandem mass spectrometry (UPLC-MS/MS), was optimized for the simultaneous quantification of 25 mycotoxins in cereals."( QuEChERS Purification Combined with Ultrahigh-Performance Liquid Chromatography Tandem Mass Spectrometry for Simultaneous Quantification of 25 Mycotoxins in Cereals.
Hu, X; Li, W; Sun, J; Wang, B; Wu, L; Zhang, Y, 2016
)
0.43

Bioavailability

ExcerptReferenceRelevance
"Calcium formate is highly bioavailable and well-tolerated."( Ocular and systemic safety evaluation of calcium formate as a dietary supplement.
Altaweel, MM; Eells, J; Hanzlik, RP; Ver Hoeve, JN; Zhang, B, 2009
)
0.35
" The oral bioavailability (F) of HJA was estimated to be 36."( LC-ESI-MS/MS analysis and pharmacokinetics of 6'-hydroxy justicidin A, a potential antitumor active component isolated from Justicia procumbens, in rats.
Fu, S; Kong, W; Qiu, F; Yang, M; Yang, S; Zhou, S, 2012
)
0.38
" The nicotine form affects the bioavailability and delivery of nicotine from inhaled products."( Carboxylate Counteranions in Electronic Cigarette Liquids: Influence on Nicotine Emissions.
El-Hage, R; El-Hellani, A; Saliba, NA; Salman, R; Shihadeh, A; Talih, S, 2017
)
0.46
" The method was successfully used to investigate the pharmacokinetics and bioavailability in rat plasma and urine samples after intragastric and intraperitoneal administration of caulophine sodium salt."( Liquid chromatography coupled with hybrid ion trap time-of-flight mass spectrometry method for the determination of caulophine in rat bio-samples and its pharmacokinetic study after intragastric and intraperitoneal administration.
Li, C; Lu, D; Wang, S; Xu, X, 2018
)
0.48

Dosage Studied

We examined the effect of some known metabolites of TCE and examined the response in male Wistar rats to help understand its relevance to renal toxicity. The outcomes measured were the preservation of visual acuity, the resolution of metabolic acidosis, the inhibition of formic acid production, the achievment of therapeutic plasma concentrations of fomepizole with the dosing regimen.

ExcerptRelevanceReference
" CSb-FAD mice excreted much more formate and developed higher plasma formate concentrations (11-17 mM) than identically dosed CSa-FAD animals (6 mM)."( Acute toxicity of methanol in the folate-deficient acatalasemic mouse.
Smith, EN; Taylor, RT, 1982
)
0.26
" The dosage form of FK480 is a soft capsule containing a solution of FK480 in a mixture of polyethylene glycol 400 (PEG 400) and glycerol to improve its bioavailability."( Mechanism of optical isomerization of (S)-N-[1-(2-fluorophenyl)-3,4,6,7- tetrahydro-4-oxopyrrolo[3,2,1-jk] [1,4]-benzodiazepine-3-yl]-1H- indole-2-carboxamide (FK480) in soft capsules containing polyethylene glycol 400 and glycerol.
Fukuyama, S; Kihara, N; Koda, S; Morokoshi, N; Nakashima, K; Yasuda, T, 1994
)
0.29
" The outcomes measured were the preservation of visual acuity, the resolution of metabolic acidosis, the inhibition of formic acid production, the achievment of therapeutic plasma concentrations of fomepizole with the dosing regimen, residual illness or disability, and death."( Fomepizole for the treatment of methanol poisoning.
Aaron, C; Brent, J; Kulig, K; McMartin, K; Phillips, S, 2001
)
0.52
" This model can be used to quantitatively relate methanol or its metabolites in biological matrices to the absorbed dose and tissue burden at any point in time in rats, monkeys, and humans for different exposures, thus reducing uncertainties in the dose-response relationship, and animal-to-human and exposure scenario comparisons."( A biologically based dynamic model for predicting the disposition of methanol and its metabolites in animals and humans.
Bouchard, M; Brunet, RC; Carrier, G; Droz, PO, 2001
)
0.31
" In rats, formate excretion was dose and time dependant, being markedly elevated after four doses and remaining at that level after 3 weeks of dosing at 100 mg/kg/day BDCM, while at 50 mg/kg/day there was some suggestion of a decline after 3 weeks."( Formic acid excretion in rats and mice exposed to bromodichloromethane: a possible link to renal tubule cell proliferation in long-term studies.
Cottrell, L; Jacobsen, M; Lock, T; Soames, T; Williams, R, 2004
)
1.77
"Subjects received oral SAMe for 4 weeks; the dosage was titrated over 5 days to 1600 mg/day."( Bioavailability and lack of toxicity of S-adenosyl-L-methionine (SAMe) in humans.
Cohen, BM; Damico, KE; Gören, JL; Sarmiento, IA; Stoll, AL, 2004
)
0.32
" The pH rise due to sulfate reduction is balanced with dosage of the sulfate reducing substrates as acids."( Cultivation of high-rate sulfate reducing sludge by pH-based electron donor dosage.
Kleerebezem, R; Lens, PN; Lettinga, G; Paulo, PL, 2005
)
0.33
" The semi-batch ozonation experiments were proceeded under different reaction conditions to study the effects of ozone dosage and UV radiation on the oxidation of MMA."( Oxidation of methyl methacrylate from semiconductor wastewater by O3 and O3/UV processes.
Chang, CH; Chen, YH; Lee, CH; Lee, CW; Ma, HW; Shang, NC; Yu, YH, 2007
)
0.34
" The effect of t-butanol addition and ozone gas flow dosage on the degradation rate was evaluated."( Degradation of DMSO by ozone-based advanced oxidation processes.
Chen, SH; Muruganandham, M; Wu, JJ, 2007
)
0.34
"The patient was treated with the established dosing regimen for fomepizole and the measured S-fomepizole levels throughout the treatment were adequate; the S-methanol elimination also suggests that methanol metabolism was blocked."( Extremely slow formate elimination in severe methanol poisoning: a fatal case report.
Hovda, KE; Jacobsen, D; McMartin, K; Mundal, H; Urdal, P,
)
0.13
" Sulfate and formate were dosed using a pH-auxostat system while formate was converted into hydrogen, which was used for sulfate reduction."( Sulfate reduction at pH 5 in a high-rate membrane bioreactor: reactor performance and microbial community analyses.
Bijmans, MF; Buisman, CJ; Dopson, M; Lens, PN; Peeters, TW, 2009
)
0.35
" We have examined the dose-response relationship for formic aciduria in male and female Fischer 344 rats, the effect of some known metabolites of TCE and examined the response in male Wistar rats to help understand its relevance to renal toxicity."( Trichloroethylene-induced formic aciduria: effect of dose, sex and strain of rat.
Evans, AR; Lock, EA; Yaqoob, N, 2013
)
0.94
" This novel use of activated carbon in pharmaceutical packaging may be useful for enhancing the chemical stability of drug products or the dissolution stability of gelatin-containing dosage forms and may allow for the 1) extension of a drug product's shelf-life when the limiting attribute is a degradation product induced by a reactive impurity, 2) marketing of a drug product in hotter and more humid climatic zones than currently supported without the use of activated carbon, and 3) enhanced dissolution stability of products that are vulnerable to gelatin cross-linking."( Use of Activated Carbon in Packaging to Attenuate Formaldehyde-Induced and Formic Acid-Induced Degradation and Reduce Gelatin Cross-Linking in Solid Dosage Forms.
Carroll, SC; Chen, R; Colgan, ST; DeMatteo, VA; Hawkins, JM; Jensen, JF; Johnson, GM; Likar, MD; MacDonald, BC; Space, JS; Zelesky, TC, 2016
)
0.66
"Optimal dosing of antibiotics in critically ill patients is complicated by the development of resistant organisms requiring treatment with multiple antibiotics and alterations in systemic exposure due to diseases and extracorporeal drug removal."( Simultaneous assay of multiple antibiotics in human plasma by LC-MS/MS: importance of optimizing formic acid concentration.
Chen, F; Hu, ZY; Hudson, JQ; Laizure, SC, 2017
)
0.67
"53 at the dosage of 5%, and the lotions containing lignin submicrometer particles had good UV-blocking properties."( Preparation of organic acid lignin submicrometer particle as a natural broad-spectrum photo-protection agent.
Bian, J; Li, MF; Li, SX; Ma, MG; Peng, F; Wu, XF, 2019
)
0.51
" Besides, the impact of various additives on pretreated substrate enzymatic hydrolysis confirmed that Tween 80 was the best enzymatic additive, which could significantly improve the glucose produced from pretreated SCB and remarkably reduce the hydrolysis time (from 72 h to 48 h) and enzyme dosage (from 20 FPU/g pretreated solid to 10 FPU/g pretreated solid)."( Investigation of choline chloride-formic acid pretreatment and Tween 80 to enhance sugarcane bagasse enzymatic hydrolysis.
Jin, Y; Ling, R; Wei, W; Wu, W; Yuan, Y, 2021
)
0.9
" Finally, in the third and fourth steps, different concentrations of chitosan (CN) and constant dosage of Melilotus officinalis (MO) extract were added to the solution."( Step-by-step design of poly (ε-caprolactone) /chitosan/Melilotus officinalis extract electrospun nanofibers for wound dressing applications.
Haddadi-Asl, V; Shahrousvand, M, 2021
)
0.62
" The effects of CF dosage and curing time on dilatancy deformation, compressive strength and microstructure of CTB were investigated through mechanical compression, scanning electron microscope (SEM) and energy dispersive spectrometer (EDS) tests."( Effect of calcium formate as an accelerator on dilatancy deformation, strength and microstructure of cemented tailings backfill.
Pu, H; Wang, Y; Wu, J, 2022
)
0.72
" However, UPV measurement, in combination with the information of FA dosage, CF dosage and curing time, could be used to improve UCS prediction."( Coupled effects of fly ash and calcium formate on strength development of cemented tailings backfill.
Ma, D; Miao, X; Pu, H; Wang, Y; Wu, J, 2022
)
0.72
" Thus, in order to adjust the dosage of OXY for well-managed pain relief with less toxicity, we tried establishing and validating a system for measuring plasma concentrations of OXY using liquid chromatography-tandem mass spectrometry (LC-MS/MS)."( Establishment to measure oxycodone in plasma with liquid chromatography-tandem mass spectrometry.
Ito, S; Kitaichi, K; Matsuo, M; Mori, M; Oida, Y; Soda, M; Yamasaki, R, 2022
)
0.72
[information is derived through text-mining from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Occurs in Manufacturing (2 Items)

ItemProcessFrequency
Drink Mixcore-ingredient1
Beveragescore-ingredient1

Roles (5)

RoleDescription
antibacterial agentA substance (or active part thereof) that kills or slows the growth of bacteria.
protic solventA polar solvent that is capable of acting as a hydron (proton) donor.
metaboliteAny intermediate or product resulting from metabolism. The term 'metabolite' subsumes the classes commonly known as primary and secondary metabolites.
solventA liquid that can dissolve other substances (solutes) without any change in their chemical composition.
astringentA compound that causes the contraction of body tissues, typically used to reduce bleeding from minor abrasions.
[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 (1)

ClassDescription
monocarboxylic acidAn oxoacid containing a single carboxy group.
[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 (65)

PathwayProteinsCompounds
Histidine, lysine, phenylalanine, tyrosine, proline and tryptophan catabolism4485
formaldehyde oxidation VII (THF pathway)07
4-amino-2-methyl-5-diphosphomethylpyrimidine biosynthesis I011
formate oxidation to CO214
superpathway of Allium flavor precursors028
L-tryptophan degradation to 2-amino-3-carboxymuconate semialdehyde013
superpathway of thiamine diphosphate biosynthesis III (eukaryotes)324
nicotine biosynthesis221
L-methionine salvage cycle II (plants)829
L-methionine salvage cycle I (bacteria and plants)232
S-methyl-5-thio-u03B1-D-ribose 1-phosphate degradation I316
folate polyglutamylation59
propanethial S-oxide biosynthesis316
ergosterol biosynthesis II113
indole degradation to anthranil and anthranilate012
flavin biosynthesis I (bacteria and plants)521
formate assimilation into 5,10-methylenetetrahydrofolate19
pyruvate fermentation to ethanol I19
formaldehyde oxidation II (glutathione-dependent)29
pyrimidine deoxyribonucleotides de novo biosynthesis II017
NAD de novo biosynthesis II (from tryptophan)024
superpathway of nicotine biosynthesis229
superpathway of tetrahydrofolate biosynthesis1029
pyruvate fermentation to acetate IV29
tetrahydrofolate biosynthesis II1232
colchicine biosynthesis018
6-hydroxymethyl-dihydropterin diphosphate biosynthesis I417
3-methylthiopropanoate biosynthesis16
4-amino-2-methyl-5-diphosphomethylpyrimidine biosynthesis211
Alanine,Aspartic acid and Asparagine metabolism ( Alanine,Aspartic acid and Asparagine metabolism )2237
Tryptophan degradation ( Tryptophan degradation )6454
superpathway of fermentation (Chlamydomonas reinhardtii)717
superpathway of ergosterol biosynthesis II133
cholesterol biosynthesis I428
oxalate degradation VI214
cholesterol biosynthesis (plants)1417
phytosterol biosynthesis (plants)1531
zymosterol biosynthesis020
plant sterol biosynthesis II519
cholesterol biosynthesis (plants, early side-chain reductase)117
Renz2020 - GEM of Human alveolar macrophage with SARS-CoV-20490
Mycobacterium tuberculosis biological processes3962
Mycothiol metabolism828
Mycothiol-dependent detoxification210
superpathway of sterol biosynthesis050
respiration (anaerobic)026
folate polyglutamylation I013
folate metabolism022
NAD biosynthesis II (from tryptophan)024
tryptophan degradation I (via anthranilate)09
superpathway of threonine metabolism034
purine nucleotides de novo biosynthesis I039
superpathway of histidine, purine, and pyrimidine biosynthesis064
tetrahydrofolate biosynthesis I028
formylTHF biosynthesis II027
formylTHF biosynthesis I026
glycine degradation010
tryptophan degradation via kynurenine016
NAD biosynthesis (from tryptophan)020
superpathway of histidine, purine and pyrimidine biosynthesis031
riboflavin and FMN and FAD biosynthesis011
formaldehyde oxidation (glutathione-dependent)08
NAD biosynthesis II from tryptophan024
Methionine de novo and salvage pathway148
Urea cycle and metabolism of amino groups2116

Bioassays (7)

Assay IDTitleYearJournalArticle
AID498775Toxicity in po dosed mouse2009Nature chemical biology, Jul, Volume: 5, Issue:7
Identification of the toxic trigger in mushroom poisoning.
AID781325pKa (acid-base dissociation constant) as determined by Liao ref: J Chem Info Model 20092014Pharmaceutical research, Apr, Volume: 31, Issue:4
Comparison of the accuracy of experimental and predicted pKa values of basic and acidic compounds.
AID23443Partition coefficient (logP)1985Journal of medicinal chemistry, Mar, Volume: 28, Issue:3
Use of physicochemical parameters in distance geometry and related three-dimensional quantitative structure-activity relationships: a demonstration using Escherichia coli dihydrofolate reductase inhibitors.
AID1103916Disruption of mitochondria in insecticide-susceptible Drosophila melanogaster Hikone-R assessed as increase in cytochrome c release from mitochondria to cytosol at 1 mM by western blot analysis2009Pest management science, Jun, Volume: 65, Issue:6
Mitochondrial impacts of insecticidal formate esters in insecticide-resistant and insecticide-susceptible Drosophila melanogaster.
AID1103917Disruption of mitochondria in insecticide-susceptible Drosophila melanogaster Canton-S assessed as increase in cytochrome c release from mitochondria to cytosol at 1 mM by western blot analysis2009Pest management science, Jun, Volume: 65, Issue:6
Mitochondrial impacts of insecticidal formate esters in insecticide-resistant and insecticide-susceptible Drosophila melanogaster.
AID1103920Inhibition of cytochrome c oxidase in insecticide-resistance Drosophila melanogaster Hikone-R mitochondria at 10 mM using reduced cytochrome c as substrate by microplate spectrophotometer analysis2009Pest management science, Jun, Volume: 65, Issue:6
Mitochondrial impacts of insecticidal formate esters in insecticide-resistant and insecticide-susceptible Drosophila melanogaster.
AID1103921Inhibition of cytochrome c oxidase in insecticide-susceptible Drosophila melanogaster Canton-S mitochondria at 10 mM using reduced cytochrome c as substrate by microplate spectrophotometer analysis2009Pest management science, Jun, Volume: 65, Issue:6
Mitochondrial impacts of insecticidal formate esters in insecticide-resistant and insecticide-susceptible Drosophila melanogaster.
[information is prepared from bioassay data collected from National Library of Medicine (NLM), extracted Dec-2023]

Research

Studies (3,215)

TimeframeStudies, This Drug (%)All Drugs %
pre-1990507 (15.77)18.7374
1990's404 (12.57)18.2507
2000's785 (24.42)29.6817
2010's1185 (36.86)24.3611
2020's334 (10.39)2.80
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Market Indicators

Research Demand Index: 104.44

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 Index104.44 (24.57)
Research Supply Index8.12 (2.92)
Research Growth Index4.76 (4.65)
Search Engine Demand Index195.48 (26.88)
Search Engine Supply Index2.01 (0.95)

This Compound (104.44)

All Compounds (24.57)

Study Types

Publication TypeThis drug (%)All Drugs (%)
Trials37 (1.11%)5.53%
Reviews89 (2.67%)6.00%
Case Studies43 (1.29%)4.05%
Observational4 (0.12%)0.25%
Other3,164 (94.82%)84.16%
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]