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1 ed from denaturing solutions (water/methanol/acetic acid).
2 )phenyl]methyl}-1,4,7-triazacyclononan-1 -yl]acetic acid).
3 robiome (e.g., CMPF, phenylsulfate, indole-3-acetic acid).
4  in BM frequency and urinary 5-hydroxyindole acetic acid.
5 y attracted to a blend of benzyl nitrile and acetic acid.
6 quid extraction of AsA by 80 muL oxalic acid-acetic acid.
7 ns, such as isoprene, methanol, acetone, and acetic acid.
8  attracted to a blend of 2-phenylethanol and acetic acid.
9 nd RS formation, followed by lactic acid and acetic acid.
10 he method is developed using a case study of acetic acid.
11 ximately 30days at 32 degrees C to obtain 5% acetic acid.
12 wly degrades metaldehyde to acetaldehyde and acetic acid.
13  marinated in a brine consisting of salt and acetic acid.
14 ith a rise in the proportion of propionic to acetic acid.
15 NQ) in the presence of hydrogen peroxide and acetic acid.
16 e bacterially-produced phytohormone indole-3-acetic acid.
17 eacted with methane gas to selectively yield acetic acid.
18 d products were derived from one molecule of acetic acid.
19 ic acid, 1-(13)C-sodium lactate, and 1-(13)C-acetic acid.
20  phenolic compounds, reducing the content of acetic acid.
21 )9 > Ag(NP_)13 > Ag(NP_)70 in both water and acetic acid.
22 acetate acetonitrile, acetone, methanol, and acetic acid.
23 e of the apx6 mutants to ABA and to indole-3-acetic acid.
24  alpha-functionalization and is catalyzed by acetic acid.
25 lamines catalyzed by N-hydroxyphthalimide in acetic acid.
26 18)O-labelled catechols using (18)O-labelled acetic acid.
27 ion metabolite bromo-(1,2-dibromocyclohexyl)-acetic acid.
28 C, 10/10min, 54.5/54.2% ethanol, and 5/0.03% acetic acid.
29 ed the commonality of this drug with that of acetic acid.
30 in preparations by coacervation from glacial acetic acid.
31 to determine how different concentrations of acetic acid (0, 500, 1000, 10,000 mg/kg) can affect func
32  protocol, each sample had been collected in acetic acid (0.5%; mean final concentration).
33 n was performed with acidified acetonitrile (acetic acid 1% (v/v)), and additional clean-up steps wer
34 ERS technique in acetonitrile acidified with acetic acid (1%, v/v) and citrate-buffered salts followe
35 o-3,4-dihydro-1H-pyrido[4,3-b]indol-5(2H)-yl)acetic acid (1, Setipiprant/ACT-129968) were synthesized
36 SO2) = (3.3 +/- 0.9) x 10(-11) and k(CH2OO + acetic acid) = (1.25 +/- 0.30) x 10(-10) cm(3) molecule(
37  3-Mercapto-5H-1,2,4-triazino[5,6-b]indole-5-acetic acid (13) was the most promising inhibitor, with
38 ects of two common organic acids; lactic and acetic acids (150 mg/kg) on physicochemical properties o
39 sor for the detection of 2,4-Dichlorophenoxy Acetic Acid (2,4-D) herbicide either in standard solutio
40 cturally similar acids ((2,4-dichlorophenoxy)acetic acid (2,4-D), 4-chloro-2-15 methylphenoxy)acetic
41 g using food simulants ethanol (50% v/v) and acetic acid (3% w/v) and measured migration using tandem
42 ination of melphalan (mel) using 3-thiophene acetic acid (3-TAA) as functional monomer was fabricated
43 -(pentafluorosulfanyl)-2,5-dihydrofuran-2-yl)acetic acid [3-(pentafluorosulfanyl)muconolactone] and s
44 l of the chlorinated auxin, 4-chloroindole-3-acetic acid (4-Cl-IAA), greatly exceeds that of IAA.
45 -acetic acid (PEO-IAA), and 5-fluoroindole-3-acetic acid (5-F-IAA) to discriminate between ABP1- and
46 evels of the 5-HT metabolite 5-hydroxyindole acetic acid (5-HIAA).
47 acetylfuran, 3-methyl-1,2-cyclopentanedione, acetic acid, 5-methyl-2-furfural, 4-(2-propenyl)-2-metho
48 adiazine was eluted using 180muL of methanol/acetic acid (6:4) and quantified by fiber optic linear a
49   (NODAGA is 1,4,7-triazacyclononane-1,4-bis[acetic acid]-7-[2-glutaric acid] and RGD is arginine-gly
50                                              Acetic acid (70%) provided lower conductivity than 0.25%
51 ethyl)-oxolan-2-yl]-1-methylcarbamim idamido}acetic acid), a novel molecule identified in this study,
52                                              Acetic acid (AA) was selected as a reference compound fo
53 t these mutants show reduced auxin (indole-3-acetic acid) accumulation and auxin responses compared w
54  uniquely released seven compounds including acetic acid, acetic anhydride, benzyl alcohol, benzyl ni
55 tion between any [Ni(II)(X)(L)](-) and NaOCl/acetic acid (AcOH) or cerium ammonium nitrate ((NH4)2[Ce
56 orite as terminal oxidant in the presence of acetic acid (AcOH).
57                   Elevated amounts of indole acetic acid, active cytokinins, active gibberellin, and
58 Of the acids tested, 2.5 mL of 2500 mequiv/L acetic acid added after every urination event was able t
59 e recovery via struvite precipitation in the acetic acid addition synthetic urine than the synthetic
60                                              Acetic acid addition was used in nonwater urinals to inh
61 d fish meat (5 g) in acetonitrile (15 mL, 1% acetic acid) after three-phase partitioning with hexane
62  alpha-TOS and alpha-tocopheryl ether linked acetic acid (alpha-TEA) have been developed.
63  Selective inhibition of GOT1 with (aminooxy)acetic acid ameliorated experimental autoimmune encephal
64  capable of reducing CO2, CO, and water into acetic acid, an essential industrial reagent.
65  ionization mode were achieved by using 0.1% acetic acid and 0.1% formic acid in negative ionization
66 1.0, 0.7 and 18.3 mg L(-1) for copper, zinc, acetic acid and 2-phenylethanol respectively, were in ag
67 n of 3-chloro-5-(trifluoromethyl) pyridine-2-acetic acid and 3-chloro-5-(trifluoromethyl) picolinic a
68                   Stopping the reaction with acetic acid and a centrifugation/filtration step to decr
69 mental conditions, most of acetate exists as acetic acid and adsorbs to biotite surface Si and Al sit
70             Bacterial production of indole-3-acetic acid and attachment to algae are significantly in
71 ssion, and resistance of enteric bacteria to acetic acid and bile salts.
72 olatile fatty acids (VFAs) were produced and acetic acid and butyric acid were the key components.
73  characterized by the presence of a hydroxyl acetic acid and five amino acids including a rare 4,5-di
74 ion of peracetic acid, easily generated from acetic acid and hydrogen peroxide, dramatically increase
75 nally, it was found that the auxins indole-3-acetic acid and indole-3-acetamide, which were produced
76 ther the naturally occurring auxins indole-3-acetic acid and indole-3-butyric acid, nor the synthetic
77  1,4,7-triazacyclononane,1-glutaric acid-4,7-acetic acid and JR11 = Cpa-c(dCys-Aph(Hor)-dAph(Cbm)-Lys
78  1,4,7-triazacyclononane,1-glutaric acid-4,7-acetic acid and JR11 = Cpa-c(dCys-Aph(Hor)-dAph(Cbm)-Lys
79 he direct conversion of methane to methanol, acetic acid and other useful chemicals.
80 le for weakly bound toxins, namely, indole-3-acetic acid and p-cresyl glucuronide, an increase in blo
81    Strategies such as visual inspection with acetic acid and testing for oncogenic HPV types could ma
82  including methylperfluorobutane sulfonamide acetic acid and the n:2 and n:3 fluorotelomer carboxylat
83                                     Indole-3-acetic acid and tryptophan serve as signalling molecules
84 ls, in the presence of controlled amounts of acetic acid and under pressure, show a remarkable proces
85 ty of the system was tested with halogenated acetic acids and halogenated aromatic compounds.
86 e co-solvents (water, 2-methyl-2-butanol and acetic acid) and polyvinylalcohol 2000 (PVA2000) can dis
87   Final content of reducing sugars, ethanol, acetic acid, and amino nitrogen did not differ significa
88 icotinic acid, valproic acid, theophylline-7-acetic acid, and choline, were synthesized and evaluated
89 lage, the anolyte was concentrated to 14 g/L acetic acid, and converted at 2.64 g (acetate) L(-1) h(-
90  be involved in the biosynthesis of indole-3-acetic acid, and Cytochrome P450 (CYP) 71B6 were found t
91 ll substrates including the natural indole-3-acetic acid, and the synthetic auxin 2,4-dichlorophenoxy
92 to the production of the formic, fumaric and acetic acids; and an increase of succinic and lactic aci
93 ofenac [2-(2-(2,6-dichlorophenylamino)phenyl)acetic acid] and the related experimental drug BL-1249 [
94 g Cl/kg of starch, and then acetylated using acetic acid anhydride.
95          Dissolving the prolamins in glacial acetic acid apparently enabled protonation and complete
96  4-chloro-6-(2,3-xylidino)-2-pyrimidinylthio acetic acid ( approximately 10-fold) treatment, or the a
97 e ions of sea water in oil recovery by using acetic acid as a model compound of crude oil molecules.
98 silica nanoparticles in aqueous solutions of acetic acid as a route to sense acetylcholinesterase-cat
99 um hypochlorite in aqueous acetonitrile with acetic acid as activator.
100 oteomic CE-MS data (5% ( approximately 0.8M) acetic acid as background electrolyte).
101 crumb, with acetoin, phenylethyl alcohol and acetic acid as highly abundant compounds, which are cons
102 e at pH 8.2 for CZE-MS/MS analysis using 1 M acetic acid as the background electrolyte.
103 nitored by (1)H NMR spectroscopy show benign acetic acid as the only significant product.
104 camethylferrocene (Fc*) as the reductant and acetic acid as the proton source.
105 od in which the mobile phase was water (0.1% acetic acid) as solvent A and acetonitrile (0.1% acetic
106 ic acid) as solvent A and acetonitrile (0.1% acetic acid) as solvent B.
107 d increases in the conjugated forms indole-3-acetic acid aspartic acid (IAA-Asp) and indole-3-acetic
108 %) was studied in a reference solution of 4% acetic acid at 22, 40, and 70 degrees C at early and adv
109                       We showed that NAC and acetic acid at pH < pKa can penetrate the matrix and eve
110  a blend of two of these, benzyl nitrile and acetic acid, attracted a large number of conspecific mal
111 dopsis (Arabidopsis thaliana) Auxin/indole-3-acetic acid (Aux/IAA) family member.
112          BIF1 and BIF4 encode AUXIN/INDOLE-3-ACETIC ACID (Aux/IAA) proteins, which are key components
113 n the interaction between the AUXIN/INDOLE-3-ACETIC ACID (Aux/IAA) repressor proteins and the AUXIN R
114  activators and the interacting auxin/indole acetic acid (Aux/IAA) repressors.
115 el revealed the centrality of auxin/indole-3-acetic acid (Aux/IAA) transcriptional corepressors in co
116 virus (TMV) and phloem-specific auxin/indole acetic acid (Aux/IAA) transcriptional regulators was fou
117 tating proteolytic removal of auxin/indole-3-acetic acid (AUX/IAA)-inducible repressors, which direct
118 pha-(2,4-dimethylphenylethyl-2-oxo)-indole-3-acetic acid (auxinole), alpha-(phenylethyl-2-oxo)-indole
119 ne (Pinus flexilis) and potential N2 -fixing acetic acid bacteria (AAB) indicates that native foliar
120 e using three strains belonging to different acetic acid bacteria species (one of Gluconobacter japon
121 k of specificity of the potassium dichromate/acetic acid-based method used.
122 o oxygenates was approximately 50-60 %, with acetic acid being the major component at 40.2 % selectiv
123 oughput screening campaign, we identified an acetic acid benzodiazepine (BDAA) compound, which potent
124 r ethyl propionate, diacetyl, cis-3-hexenol, acetic acid, benzyl alcohol, and m-cresol, while the add
125                                              Acetic acid, butyric acid and cyclohexanol with vinegar,
126  reaction of tryptamine and (2-oxocyclohexyl)acetic acid can be catalyzed by 3,3'-bis(triphenylsilyl)
127 nerated from sodium azide, hypochlorite, and acetic acid can be explosive if isolation is attempted.
128 bited overt nociception induced by formalin, acetic acid, capsaicin, and cinnamaldehyde.
129 h patchy areas of normal myocardium, whereas acetic acid caused homogeneous circumscribed lesions of
130 ally by the observation of doubly deuterated acetic acid (CH2DCOOD), when D2O is introduced in the fe
131 st carboxylic acids, formic acid (HCOOH) and acetic acid (CH3 COOH), employing two complementary tech
132 1-82% higher than the control samples, while acetic acid concentration was about 0.5-1-fold higher re
133 oration of one (18)O atom (from (18)O2) into acetic acid, consonant with proposals for a ferric perox
134 f bromide and bromate ions in a medium of 2% acetic acid containing 3000 mug/mL NH4Cl.
135  l-lactic acid content, glucose+fructose and acetic acid content.
136 s well as an increase in lactic, citric, and acetic acid contents.
137 ented biological system selectively produced acetic acid continuously over several days of light-dark
138 aise the question as to whether the indole-3-acetic acid degradation pathway is present in human gut
139 aqueous lactate, plus notable enhancement of acetic acid, demonstrating broader applicability for sma
140 synthesis of the trifluorinated alpha-phenyl acetic acid derivative required for the commercial synth
141  chemical behavior of the simplest thiolated acetic acid derivatives, TAA and methylthioacetate (MTA)
142  synthon for highly fluorinated alpha-phenyl acetic acid derivatives, which provide straightforward a
143 NG-dependent ligand 5,6-dimethyl xanthnone-4-acetic acid (DMXAA).
144                         A harsh wash with 3% acetic acid eluted the strongly bound ligands and the re
145      Real-time MRI-guided chemoablation with acetic acid enabled the intended arrhythmic substrate, w
146 reodivergent allylic substitutions with aryl acetic acid esters catalyzed synergistically by a metall
147 c alpha-allylation of readily available aryl acetic acid esters.
148       Bread aroma profile showed ethanol and acetic acid, followed by hexanol, 3-methyl-1-butanol, 2-
149                              With increasing acetic acid following changes occurred for both samples;
150                     Various OVOCs, including acetic acid, formic acid, acetaldehyde, and acetone were
151 resulted in the identification of a biphenyl acetic acid fragment 3, which bound in the palm subdomai
152 ic insights and implicate the elimination of acetic acid from an ammonium nitronate intermediate as t
153 anoparticles, enabling the photosynthesis of acetic acid from carbon dioxide.
154 nterestingly, the direct plasma synthesis of acetic acid from CH4 and CO2 is an ideal reaction with 1
155 tion enzymes as in the synthesis of indole-3-acetic acid from indole-3-butyric acid.
156 roduct was justified through dissociation of acetic acid from the palladium(IV) intermediate precedin
157 -methyl-1-butanol, 1-pentanol, 1-octen-3-ol, acetic acid, furfural, benzaldehyde, (E)-2-nonenal, phen
158             Kafirin was dissolved in glacial acetic acid (GAA) and simple coacervation was performed
159 ed natural compounds and identified gossypol acetic acid (GAA) as a potent inhibitor of oxidative str
160 y, automated cytology processing and glacial acetic acid (GAA) treatment, may occur prior to the arri
161 efficiency of this system for photosynthetic acetic acid generation also increased with increasing H2
162 ic acid aspartic acid (IAA-Asp) and indole-3-acetic acid glutamic acid (IAA-Glu) of 438- and 240-fold
163 val agent, and it proceeds in acetic acid or acetic acid/hexafluoroisopropanol solvent.
164          In reactions conducted in refluxing acetic acid, however, the 3-(chloromethyl)coumarin deriv
165 ne linked promoiety containing hydroxyphenyl acetic acid (HPA) derived ester and phosphate functional
166 her decarbonylation (DCO) selectivity during acetic acid hydrodeoxygenation (HDO) reactions, and the
167                   The plant hormone indole-3-acetic acid (IAA or auxin) mediates the elongation growt
168 ith the control group and decreased indole-3-acetic acid (IAA) and abscisic acid (ABA) concentrations
169 properties of indoxyl sulfate (IS), indole-3-acetic acid (IAA) and hippuric acid (HIPA) and their bin
170 e for the naturally occurring auxin indole 3-acetic acid (IAA) and is important for coordinating grow
171 Hagen 3.5 (AtGH3.5) conjugates both indole-3-acetic acid (IAA) and salicylic acid (SA) to modulate au
172 he expression of genes encoding the indole-3-acetic acid (IAA) biosynthesis enzyme TRYPTOPHAN AMINOTR
173 a, cotyledons and leaves synthesize indole-3-acetic acid (IAA) from tryptophan through indole-3-pyruv
174      To date, the role of the auxin indole-3-acetic acid (IAA) in this context is not well understood
175 S/MS analysis showed that levels of indole-3-acetic acid (IAA) increased and levels of abscisic acid
176                             Whereas indole-3-acetic acid (IAA) levels were elevated in young phyB see
177 estigated whether the uremic solute indole-3 acetic acid (IAA) predicts clinical outcomes in patients
178 tates ubiquitination of auxin (aux)/indole-3-acetic acid (IAA) repressor proteins in the presence of
179  of indole-3-pyruvic acid (IPyA) to indole-3-acetic acid (IAA), acting downstream of CKRC1/TAA1 in th
180  the major form of auxin in plants, indole-3-acetic acid (IAA), remains unclear.
181 n auxin metabolism, mediated by the indole-3-acetic acid (IAA)-amido synthetase Gretchen Hagen 3 (GH3
182 rimordia; decreased auxin maxima in indole-3-acetic acid (IAA)-treated root apical meristems; hypergr
183 es high concentrations of the auxin indole-3-acetic acid (IAA).
184 e, usually occurring in the form of indole-3-acetic acid (IAA).
185 esponses like the endogenous auxin, indole-3-acetic acid (IAA).
186 pathway and increases in the auxin [indole-3-acetic acid (IAA)] biosynthesis pathway.
187 gulation of the phytohormone auxin [indole-3-acetic acid (IAA)] is essential to plant growth.
188 ial regulation of the plant hormone indole-3-acetic acid (IAA, or auxin) is essential for plant devel
189 thesis of the main auxin in plants (indole-3-acetic acid [IAA]) has been elucidated recently and is t
190             The phytohormone auxin (indole-3-acetic acid, IAA) is a small organic molecule that coord
191                 We showed that auxin (indole acetic acid, IAA) repressed the expression of key TIA pa
192  90 mg; eluent solvent volume = 2.6 mL of 3% acetic acid in acetonitrile), extraction recoveries for
193 erference by glucose, fructose, ethanol, and acetic acid in glycerol detection was studied.
194 al the origin of the catalytic efficiency of acetic acid in these transformations.
195  for their in vivo antinociceptive activity (acetic acid-induced writhing and hot plate assays), lead
196 in response factors (ARF) and auxin/indole 3-acetic acid inducible proteins regulate transcriptional
197 ues and others through signaling of INDOLE-3-ACETIC ACID INDUCIBLE28 (IAA28), CRANE (IAA18), WOODEN L
198 In this work, the conversion of methane into acetic acid is demonstrated using Cu-MOR by coupling oxi
199 ing to the classic model, the auxin indole-3-acetic acid is produced in the shoot tip and transported
200 from fermentation, 2,3-butanedione, acetoin, acetic acid, isobutyric acid and ethyl octanoate, were t
201 0% acetonitrile aqueous solution and glacial acetic acid, liquid-liquid partitioning with addition of
202 ty than conventional 7-methoxy-coumarin-4-yl acetic acid (MCA)/Lys(DNP) substrates; thus, substantial
203 ic acid (2,4-D), 4-chloro-2-15 methylphenoxy)acetic acid (MCPA), 4-(2,4-dichlorophenoxy)butanoic16 ac
204 response1/auxin-related f-box-auxin/indole-3-acetic acid-mediated auxin-signaling machinery to regula
205 he increased NAP in AASK-N is an artifact of acetic acid-mediated degradation of albumin.
206 for labeling in anhydrous dimethyl sulfoxide-acetic acid medium.
207 his study, liquid fuels and chemicals (e.g., acetic acid, methanol, ethanol, and formaldehyde) were s
208 aration was achieved on a C18 column with 2% acetic acid/methanol (96:4, v/v) as the mobile phase.
209 -3-(4-hydroxyphenyl)-4,5-dihydro-5-isoxazole acetic acid methyl ester considerably attenuated TPA-ind
210 -oxo-1-phenyl-1,3,8-triazaspiro[4.5]decane-3-acetic acid, methyl ester] are G protein-biased agonists
211 ary methylhistamine (MH) and methylimidazole acetic acid (MIMA) is still unknown.
212 crystals using concentrated reactants and an acetic acid modulator.
213 ng the tetradentate L(2-) and two additional acetic acid moieties by bringing conformational changes
214       Fifteen compounds, sharing an indole-1-acetic acid moiety as a common fragment, were selected f
215 icarbaldehyde building blocks in m-cresol or acetic acid, named RT-COF-1 or RT-COF-1Ac/RT-COF-1AcB.
216  1,4,7-triazacyclononane,1-glutaric acid-4,7-acetic acid (NODAGA), 1,4,7,10-tetraazacyclododecane-1,4
217 1,4,7-triazacyclononane, 1-glutaric acid-4,7 acetic acid (NODAGA), and 1,4,7-triazacyclononane-1,4,7-
218 vinylguaiacol, sotolon, methional, vanillin, acetic acid, nor-furaneol, guaiacol and ethyl 2-methylbu
219 s from both separating dimensions, including acetic acid; octen-3-ol; ethyl octanoate; methyl-2-oxo-n
220 s a halide-removal agent, and it proceeds in acetic acid or acetic acid/hexafluoroisopropanol solvent
221 rease in the oxidation product 2-oxoindole-3-acetic acid (oxIAA) and increases in the conjugated form
222 ulator of auxin degradation to 2-oxoindole-3-acetic acid (oxIAA) in Arabidopsis Surprisingly, AtDAO1
223 f IAA to its primary catabolite 2-oxindole-3-acetic acid (oxIAA) remains uncharacterized.
224 r alpha (TNFalpha) by using Poly(3-thiophene acetic acid) (P3), a conjugated polymer as an immobiliza
225 n-inhibitor (a-(phenyl ethyl-2-one)-indole-3-acetic acid (PEO-IAA)), together with the MIR172C AuxRE:
226 uxinole), alpha-(phenylethyl-2-oxo)-indole-3-acetic acid (PEO-IAA), and 5-fluoroindole-3-acetic acid
227  catalyst, yield around 22,000 micromoles of acetic acid per gram of catalyst, or around 230 micromol
228             It was found that in presence of acetic acid, PGWS resulted in higher water absorption an
229 ure deionized water (pH approximately 7) and acetic acid (pH 3) and determined changes in nanoparticl
230 as achieved by MEKC in an acidic BGE (500 mM acetic acid [pH 2.54] and 60mM SDS).
231 substituents are similar or more acidic than acetic acid (pKa = 13.5 (3(1)), 9.5 (3(2)), 7.3 (3(3)) v
232 y urine samples have been compromised by the acetic acid preservative.
233 e sterically demanding rac-2-fluoro-2-benzyl acetic acid proceeded similarly.
234  for making nanoparticles capable of sensing acetic acid produced by enzymatic hydrolysis of acetylch
235 t of lupus nephritis urine samples with 0.5% acetic acid produced the same protein degradation profil
236 naerobic acetogen Moorella thermoacetica The acetic acid product is fed as a substrate to a second bi
237 ransducing enzymatic pathway responsible for acetic acid production at short time scales (3 h).
238 ptome analyses that show widespread indole-3-acetic acid production by Sulfitobacter-related bacteria
239 -up of MES and AF for an economically viable acetic acid production process.
240 current density of -102 +/- 1 A m(-2) and an acetic acid production rate of 685 +/- 30 (g m(-2) day(-
241 s of sterilization and yeast presence on the acetic acid production were investigated.
242                       In addition, exogenous acetic acid promotes de novo JA synthesis and enrichment
243        Stool samples were analysed for SCFA (acetic acid, propionic acid, butyric acid, isobutyric ac
244 rmation, and IAA20, encoding an auxin/indole acetic acid protein that is stable in the presence of au
245 er short-chain fatty acids, systems fed with acetic acid realized energy neutrality with maximal net
246 -3,4-dihyd ro-1H-pyrido[4,3-b]indol-5(2H)-yl)acetic acid, respectively, each composed of two enantiom
247 synthesis of the by-products lactic acid and acetic acid, respectively.
248 2,3,4-tetrahydro-5H-pyrido[4,3-b]indol-5- yl)acetic acid, respectively.
249 ones with commercially available enamines in acetic acid results in a rapid rearrangement and formati
250                         After quenching with acetic acid, samples were directly analyzed by LC-MS/MS
251 phenyl)-2-hydroxyethyl]amino]propyl]phenoxy] acetic acid sodium hydrate) or SR 59,230 (3-(2-ethylphen
252 of (R,S)-2-Amino-2-(2-chloro-5-hydroxyphenyl)acetic acid sodium salt (CHPG) an mGluR5 agonist restore
253 dily formed visco-elastic masses in water or acetic acid solutions than equivalent kafirin preparatio
254 onic morphine in both the tail-immersion and acetic acid stretch assays.
255 response elements, and treatment with indole-acetic acid strongly induces MtLAX2 expression in roots.
256     Furthermore, the external application of acetic acid successfully enhanced the drought tolerance
257 vision via secretion of the hormone indole-3-acetic acid, synthesized by the bacterium using both dia
258 produce intracellular acidification, such as acetic acid, taste more sour than strong acids.
259  cleavable linker (col-aaPEG) introducing an acetic acid terminated poly (ethylene glycol) methyl eth
260 hange of the 4-O-acetyl group by the glacial acetic acid that serves as external nucleophile in the g
261 racterization of a small molecule, (aminooxy)acetic acid, that reprograms the differentiation of T he
262 h the lowest H2ase activity photosynthesized acetic acid the fastest.
263  selectivity, the highest value reported for acetic acid thus far.
264 ion also proceeds in aqueous HTFA as well as acetic acid to afford methyl acetate.
265  studied by subjecting rac-2-fluoro-2-phenyl acetic acid to the defluorination process.
266 butanol production, glycerol utilization and acetic acid tolerance, and may greatly accelerate future
267        The are mutant has increased indole-3-acetic acid transport and greater sensitivity to the inh
268            Generally, regardless of water or acetic acid treatment, all the zein preparations had sim
269 tity and that explain the (18)O label in the acetic acid, two involving the intermediacy of an acetyl
270 boxylation of oxo[4-(trimethylammonio)phenyl]acetic acid upon collision induced dissociation.
271 direct conversion of methane to methanol and acetic acid, using oxygen and carbon monoxide under mild
272 rts mixtures of gases of CO2 and CO or H2 to acetic acid, using the anaerobic acetogen Moorella therm
273 icantly reduced mean urinary 5-hydroxyindole acetic acid versus placebo at week 12 ( P < .001).
274 evaluated investment and production costs of acetic acid via MES and AF, and compared them to industr
275       Odorants were n-amyl acetate (banana), acetic acid (vinegar), octanoic acid (rancid), and pheny
276 PY using trichloroisocyanuric acid (TCCA) in acetic acid was developed.
277                                              Acetic acid was found to be beneficial in controlling th
278     Under real-time MRI guidance, ethanol or acetic acid was injected into the myocardium of 8 swine
279 howed that the extent of AgNP dissolution in acetic acid was larger than in water.
280 to the best findings, while the use of 0.02% acetic acid was more appropriate in negative ionization
281 ysozyme from cheese samples using 1 mol/L of acetic acid was performed.
282 ivity of 4.2/0.8 nm core/shell Ni/FePt after acetic acid wash reach 1.95 mA/cm(2) and 490 mA/mgPt at
283 raction methods based on the use of EDTA and acetic acid were applied to differently amended vineyard
284 lts of AEDA indicated that 1-octen-3-one and acetic acid were important aroma compounds in raw almond
285 hes treated with citric acid, lactic acid or acetic acid were significantly reduced as compared to th
286  +/- 4% of electrons into the final product (acetic acid) were achieved after development of a mature
287 aptopropionate, and the plant auxin indole 3-acetic acid, were released by S. elongatus at multiple t
288 -MOR generated drastically higher amounts of acetic acid when compared to Cu-ZSM-5 (22 vs 4 mumol/g).
289 cetate is larger than original oil molecule (acetic acid), which reduces oil recovery.
290     The main volatile compound in vinegar is acetic acid, which gives vinegar its strong, sour aroma
291 dation produces short chain fatty acids like acetic acid, which induces gluconeogenesis and thereby a
292 ed through direct oxidative carbonylation to acetic acid, which is commercially obtained through meth
293 t for the direct carbonylation of methane to acetic acid, which might enable the economical small-sca
294 u(II) acetate to styrene, Cu(I) acetate, and acetic acid with 100% selectivity and yields >/=95%.
295  formed from condensation of acetaldehyde or acetic acid with excess ethanol.
296 ed from meso-substituted BODIPY dyes release acetic acid with green wavelengths >500 nm.
297 drive the photosynthetic reduction of CO2 to acetic acid with high efficiency.
298 ted hydrated electrons derived from 3-indole-acetic-acid within an organomodified clay induce the red
299  of acid sites in the 8MR pockets in MOR and acetic acid yield, indicating that methoxy species prese
300  use of aldehydes using catalytic amounts of acetic acid yielding 39-90% and ketones using catalytic

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