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1 totoxicity against M14 melanoma cells at low micromolar concentration.
2 found to have enzyme inhibition activity at micromolar concentration.
3 d GPR35 of all three species at similar, low micromolar concentration.
4 y against a variety of bacterial taxa at low micromolar concentrations.
5 acid, inhibit FAAH activity in vitro at low micromolar concentrations.
6 effect on different tumor cell lines at low micromolar concentrations.
7 nown to be present in the mammalian brain at micromolar concentrations.
8 nd induced apoptosis in MM cell lines at low micromolar concentrations.
9 ell death during exposure for 24-48 h at low micromolar concentrations.
10 y-five arylstibonic acids showed activity at micromolar concentrations.
11 e., MOMIPP) that can induce methuosis at low micromolar concentrations.
12 f both CCR5- and CXCR4-using isolates at low micromolar concentrations.
13 ase domain to trigger its kinase activity at micromolar concentrations.
14 norketamine mimicked ketamine effects at sub-micromolar concentrations.
15 BG inhibits voltage-gated sodium channels at micromolar concentrations.
16 ining series that blocks this interaction at micromolar concentrations.
17 d transient increases in dopamine (DA) up to micromolar concentrations.
18 colloidal aggregates in aqueous solution at micromolar concentrations.
19 inhibited pUL89 endonuclease activity at low-micromolar concentrations.
20 rs and more complex quaternary structures at micromolar concentrations.
21 f the peptide, that occur in response to sub-micromolar concentrations.
22 was significantly inhibited by both drugs at micromolar concentrations.
23 good quality Raman spectra of carbendazim at micromolar concentrations.
24 orophore, also produced photopotentiation at micromolar concentrations.
25 AKT activation and causing apoptosis at low micromolar concentrations.
26 escence reduction is the dominant pathway at micromolar concentrations.
27 nhibited AR expression in LNCaP cells at low micromolar concentrations.
28 from additive to synergistic activity at low micromolar concentrations.
29 nd can be primed with fatty-acyl ACPp at low-micromolar concentrations.
30 plicing both in vivo and in vitro at similar micromolar concentrations.
31 of synaptic activity by Abeta42 oligomers at micromolar concentrations.
32 found to have enzyme inhibition activity at micromolar concentrations.
33 entrations but can form larger assemblies at micromolar concentrations.
34 the substrate APS to inhibit the reaction at micromolar concentrations.
35 tein and RNA expression, was achieved at low micromolar concentrations.
36 report that furamidine inhibits Tdp1 at low micromolar concentrations.
37 a fungal pathogen, Fusarium graminearum, at micromolar concentrations.
38 mposition, and overall amount of cysteine at micromolar concentrations.
39 revented growth of cultured parasites at low micromolar concentrations.
40 sn-2-azelaic acid, induced apoptosis at low micromolar concentrations.
41 were found to block viral replication at low micromolar concentrations.
42 for label-free DNA detection at picomolar to micromolar concentrations.
43 L. mexicana-infected J774 macrophages at low micromolar concentrations.
44 ranes mimicking bacterial inner membranes at micromolar concentrations.
45 bling to form homooligomeric bundles when in micromolar concentrations.
46 nhibits the activity of both isoforms at low micromolar concentrations.
47 ts cytochrome P450-dependent enzymes only at micromolar concentrations.
48 ibits fibrillogenesis of misfolded TTR under micromolar concentrations.
49 it more than 99% of HIV-1 infectivity at low micromolar concentrations.
50 ll growth, and induction of apoptosis at low micromolar concentrations.
51 er KDMs, as well as cellular activity at low micromolar concentrations.
52 sive methods for identifying analytes at sub-micromolar concentrations.
53 of complexes (0-24 h) in phosphate buffer at micromolar concentrations.
54 urospora crassa and Fusarium graminearum, at micromolar concentrations.
55 o 2-l-fucose (2F-Fuc) reduces root growth at micromolar concentrations.
56 intermediate BrO2(*) indirectly detected at micromolar concentrations.
57 ns to detect cytosolic peptide import at low micromolar concentrations.
58 ta-glucosidase activity in live cells at low-micromolar concentrations.
59 human and mouse breast cancer cells at high micromolar concentrations.
60 also demonstrated antiviral activity at low micromolar concentrations.
61 d selectively inhibiting WNV and DENV at low micromolar concentrations.
62 an form complexes with coralyne, even at low micromolar concentrations.
63 rupt MAPK and PI3K signaling in cells at low micromolar concentrations.
64 iazines as covalent protein modifiers at low micromolar concentrations.
65 t substrate inhibition of chain formation at micromolar concentrations.
66 ergic, and neuroprotective properties at low-micromolar concentrations.
67 yprotein synthesis was reduced <50%, even at micromolar concentrations.
68 one hand, assembles in inactive tetramers at micromolar concentrations.
69 ency (use) inhibition of Na+ currents at low micromolar concentrations.
70 th and splice variant AR forms at low to sub-micromolar concentrations.
71 s able to kill Pseudomonas aeruginosa at sub-micromolar concentrations.
72 ties of the catalytic core proteasome at low micromolar concentrations.
73 0 K suffice to polymerize 200-mers of RNA in micromolar concentrations.
74 ine inhibited dengue virus infections at low micromolar concentrations.
75 blastoma cells or primary human neurons with micromolar concentrations (10-100 microM) of D3T for 24
80 oxidative inactivation by superoxide at low micromolar concentrations and by H 2O 2 at low millimola
81 ow line width, high analytical resolution at micromolar concentrations and enhanced sensitivity to mo
82 ds interrupted cell cycle progression at low micromolar concentrations and induced early and late sta
83 against schistosomula and adult worms at low micromolar concentrations and therefore represent promis
84 ease-activated Ca(2+) (CRAC) currents at low micromolar concentrations and to inhibit them at higher
86 ucing both pro-oxidant actions at low (5-20) micromolar concentrations, and antioxidant activity at a
87 opper-loaded dimers exist in solution at low micromolar concentrations, and head-to-head and side-to-
88 and 3'-phosphatase activities of APE1 at low micromolar concentrations, and is a specific inhibitor o
89 nanoparticle is stable upon dilution to low micromolar concentrations, and is cytotoxic at both 37 a
90 unds were obtained that activated RNase L at micromolar concentrations, and structure-activity relati
91 l phenanthroline iridium(III) derivatives at micromolar concentrations are robust catalysts for the p
92 y source for biological reactions, for which micromolar concentrations are sufficient, we propose tha
94 general anesthetics used clinically, acts at micromolar concentrations as an anesthetic and positive
95 lass of small molecules that function at low micromolar concentrations as both beta- and beta,delta-e
96 alene synthase inhibitory activity (at lower micromolar concentrations) as well as a significant anti
98 hat transient calcium increase up to tens of micromolar concentration at the micro/nano domain trigge
101 2-116 markedly enhanced GlyR currents at low micromolar concentrations but had no effects on the clos
102 is capable of inducing the arr system at low micromolar concentrations, but it does not induce the ar
103 latelet activation was sGC-dependent only at micromolar concentrations, but sGC-independent at millim
104 oid peptide produces apoptosis in neurons at micromolar concentrations, but the mechanism by which be
105 they allow the detection of fluoride ions at micromolar concentration by the naked eye, UV-vis absorp
106 e found that 3-NOP indeed inactivates MCR at micromolar concentrations by oxidation of its active sit
109 Methamphetamine at physiologically relevant micromolar concentrations caused apoptosis in NG108-15 c
110 , we report that, at clinically relevant low micromolar concentrations, CCI-779 completely suppressed
111 h granulysin-mediated cytotoxicity occurs at micromolar concentrations, chemoattraction occurs in the
112 on of cancer cell growth was demonstrated at micromolar concentrations, comparable to the concentrati
114 nic matter (DOM) can be detected down to low micromolar concentration, depending on the DOM backgroun
115 compounds that inhibited tetramerization at micromolar concentrations, designated PF4 antagonists (P
116 be detected within the same analysis time as micromolar concentrations detected without the use of th
117 cule drug cocaine at near physiological, low micromolar concentrations directly in undiluted, otherwi
118 M, is more efficacious than diazoxide at low micromolar concentrations, directly activates the channe
119 In addition, we discovered that zinc in micromolar concentrations drives ssDNA to a unique, high
120 e latter of which was found to accumulate to micromolar concentrations during simulated solar irradia
121 MPs, which may explain why most AMPs require micromolar concentrations for activity, show significant
124 GLIC pore is predicted to be blocked at the micromolar concentrations for which inhibition by isoflu
127 th this hypothesis was the finding that high micromolar concentrations (> or =600 microm) of oxygen a
128 bit matriptase activation with IC(50) at low micromolar concentration in both intact-cell and cell-fr
130 related congeners inhibited melanogenesis at micromolar concentrations in B16 mouse melanoma cells, n
131 tes of the kynurenine pathway are present at micromolar concentrations in blood and are regulated by
132 (LPC) is an oxidized phospholipid present in micromolar concentrations in blood and inflamed tissues.
133 assays by modulation of the phenotype at low micromolar concentrations in both cancer and inflammator
136 actinides can be easily distinguished at low micromolar concentrations in complex salt mixtures.
137 a key uremic toxin that accumulates to high micromolar concentrations in kidney dialysis patients, b
138 embly of the Vernier complex is efficient at micromolar concentrations in nonpolar solvents, and unde
139 bited Bacillus anthracis bacterial growth at micromolar concentrations in the presence or absence of
143 class of S-nitrosylating agents that, at low micromolar concentrations, increase DeltaF508 and wild-t
144 (1)H-(13)C HSQC spectrum of p51 obtained at micromolar concentrations indicates that a significant f
145 nin are also angiogenic factors that, at low micromolar concentrations, induce endothelial cell proli
151 If glutamate were present tonically at low micromolar concentrations, many receptors, especially th
157 get hybridization is selectively detected at micromolar concentrations (nanomoles of target) using re
158 st the bacterial challenge was observed at a micromolar concentration of Ceftriaxone or Cefotaxime in
162 in transferrin, allowing us to predict a low micromolar concentration of these binding sites in neoco
163 eport here that PP5 is strongly inhibited by micromolar concentrations of a natural polyamine spermin
166 imize an enzyme-coupled assay to measure low micromolar concentrations of acetate, coupling acetate p
167 produced cAMP in response to adenosine, and micromolar concentrations of adenosine were measured in
172 cell function by responding specifically to micromolar concentrations of Ca(2+) in the presence of a
174 ivity of metal detection to afford measuring micromolar concentrations of calcium as well as simultan
176 and L3.6pL pancreatic cancer cells with low micromolar concentrations of CDDO or CDDO-Me resulted in
178 X-linked IAP (XIAP), a recent one found that micromolar concentrations of cIAP1 only weakly inhibit c
179 , evidence for cross-link formation with low micromolar concentrations of copper phenanthroline or io
181 conditions, TRPM4 currents were activated by micromolar concentrations of cytoplasmic Ca(2+) and prog
183 Chromatin immunoprecipitations revealed that micromolar concentrations of DIM-C-pPhtBu prevented asso
185 In this study, we report that femto- and micromolar concentrations of DM (both pre- and post-trea
186 campal slices were cultured and treated with micromolar concentrations of dopamine, with or without d
189 rated in vitro by stimulating microglia with micromolar concentrations of fibrillar Abeta, a major co
191 of Ca(2+)-dependent phospholipid binding at micromolar concentrations of free Ca(2+), suggesting tha
193 e damage that depends on the synergy between micromolar concentrations of GzmA and sublytic perforin
199 ultiple 0.5-1.0-cm(3) targets that contained micromolar concentrations of indocyanine green with 1:0
200 spond jointly to membrane depolarization and micromolar concentrations of intracellular Ca2+ ions, ar
201 or use in plants are monopartate and require micromolar concentrations of ligand for activation of th
203 ition of purified rabbit muscle PFK-1 by low micromolar concentrations of long chain fatty acyl-CoAs
206 mately 10 and are the predominant species at micromolar concentrations of metallothionein in cells.
207 olated transgenic keratinocytes to show that micromolar concentrations of MFQ attenuated increased ma
208 d that pharmacological intervention with low micromolar concentrations of N-(4-hydroxyphenyl)retinami
211 from nitrate and resulted in accumulation of micromolar concentrations of nitric oxide during denitri
212 hat had undergone a more chronic exposure to micromolar concentrations of nitric oxide showed an appr
213 onsequence (gravitropism), were inhibited by micromolar concentrations of NPPB that did not affect gr
217 ermediate is predicted not to exceed 0.5% at micromolar concentrations of protein under equilibrium a
219 er millimolar concentrations of ornithine or micromolar concentrations of putrescine or by complement
221 in, a linear dynamic range from nanomolar to micromolar concentrations of R6G with a limit of detecti
222 y refolded in an aerobic solution containing micromolar concentrations of reduced PDI and nanomolar l
224 While bacterial enzymes are inhibited by micromolar concentrations of serine bound to an alloster
226 that the preservation of tissue perfusion by micromolar concentrations of SNO-Hb is a composite effec
227 f unlabeled NAADP or 5N(3)-NAADP, but not by micromolar concentrations of structurally related nucleo
228 bited by an N-terminal fragment of LF and by micromolar concentrations of tetrabutylammonium ions.
233 MP could only be demonstrated at hundreds of micromolar concentrations of the dinucleotide, and it ha
235 ulated >2-fold but potently inhibited by low micromolar concentrations of the oxidizing reagent coppe
239 mu-EME salt removal from samples containing micromolar concentrations of the target analytes and 150
242 we show that arsenicals bind tightly to low micromolar concentrations of these unfolded proteins wit
243 te (EGCG), but effects were observed only at micromolar concentrations of unclear clinical relevance.
245 he rate of folding of SOD in the presence of micromolar concentrations of zinc demonstrates a signifi
246 rat hippocampal slices, we observed that low micromolar concentrations of zinc depress NMDAR synaptic
247 in cultured cells have demonstrated that low micromolar concentrations of zinc stimulate the endocyto
249 orters that are predominantly inward-facing, micromolar concentrations of Zn(2+) markedly potentiated
250 1 activity in the presence of physiological (micromolar) concentrations of Ca(2+) ions, as long as Mg
251 ibitors showed antibacterial activity at low micromolar concentration on Gram-positive and Gram-negat
255 ation, and quantification of analytes at low-micromolar concentrations, provided they can weakly asso
256 The best compound was active in a very low micromolar concentration range against all three transpo
257 totoxic agents with IC(50) values in the low micromolar concentration range and demonstrated enhanced
258 promising anti-influenza activity in the low micromolar concentration range and good selectivity.
259 chitooligosaccharides with Kd values in the micromolar concentration range and that the binding ener
261 tion of ciproxifan revealed IC50 values in a micromolar concentration range for human and rat monoami
262 ompounds 11 and 36 were effective in the low micromolar concentration range in a cellular assay syste
263 Pt1 strain, 2E,4E-decadienal supplied in the micromolar concentration range led to a nonspecific cell
265 Moreover, this method can be employed in the micromolar concentration range, which is not readily acc
266 showed selective detection of glucose in the micromolar concentration range, with a detection limit o
275 0.1) and cooperative substrate inhibition at micromolar concentrations ([S](1/2) = 740 +/- 240 nm; n
276 antioxidant and anti-inflammatory pathway at micromolar concentrations, showing interesting structure
277 hantom images provide sufficient contrast at micromolar concentrations, showing promise for eventual
278 e show that zinc binds unaggregated hIAPP at micromolar concentrations similar to those found in the
280 its the growth of melanoma cell lines at low micromolar concentrations that are clinically attainable
282 eukemia cells and AML patient samples at low micromolar concentrations through a mechanism of action
283 seleninic acid (MSA), inactivated PKC at low micromolar concentrations through a redox modification o
285 hibiting antioxidant character were able, at micromolar concentration, to slow down the photoinduced
286 ex 2 is active when compared to cisplatin at micromolar concentrations using the MTT and cell invasio
288 that c-di-GMP can form G-quadruplexes at low micromolar concentrations when aromatic molecules such a
289 kamides F and H inhibited HIV-1 entry at low micromolar concentrations while their linear counterpart
290 ma and MCF-7 breast carcinoma cell growth in micromolar concentration with the ability to arrest canc
291 from fluorometric measurements down into sub-micromolar concentrations with a limit of detection of 1
292 tes able to inhibit virus replication at low micromolar concentrations with no significant toxicity t
294 ion of a specific target protein in vitro at micromolar concentration, with a readout scheme that red
295 n cytomegalovirus (HCMV) replications at low micromolar concentration, with little or no cytotoxicity
296 n GABA(A) receptor function at nanomolar and micromolar concentrations, with maximum potentiation com
297 j and 7s were found to inhibit Mtb growth at micromolar concentrations, with MIC values of 1.4 and 1.
298 omponents, heroin, noscapine and morphine at micromolar concentration without any separation or pretr
300 eta cells or intact pancreatic islets at low micromolar concentrations, ZIMIR labeled cells rapidly,
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