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1 with wide linear dynamic ranges of micro- to millimolar concentration.
2 ale structure in an aqueous polar solvent at millimolar concentration.
3 nd prevents intermolecular association above millimolar concentrations.
4 enzyme was inhibited by Mg(2+) and Mn(2+) in millimolar concentrations.
5     The dimeric form is stable at low pH and millimolar concentrations.
6 um elevations and cell death when present at millimolar concentrations.
7 e surfaceK(ATP) current requires exposure to millimolar concentrations.
8 ximately 1 mM) with a prominent crossover at millimolar concentrations.
9 ains of CD patients, NAA accumulates to high millimolar concentrations.
10 late galactose when this sugar is present at millimolar concentrations.
11 ted galactose when this sugar was present at millimolar concentrations.
12 ellular media, where mycothiol is present at millimolar concentrations.
13 t they are mostly monomers in solution up to millimolar concentrations.
14 nomers to existing oligonucleotides requires millimolar concentrations.
15 molar concentrations, but sGC-independent at millimolar concentrations.
16  activation and m-calpain (calpain2) needing millimolar concentrations.
17 s accumulate hydrogen peroxide (H(2)O(2)) in millimolar concentrations.
18 cromolar concentrations and by H 2O 2 at low millimolar concentrations.
19 As on FFA2 is low, in the high micromolar to millimolar concentrations.
20 ctably permeant and block the gating pore at millimolar concentrations.
21 nhibited growth of the double mutants in low-millimolar concentrations.
22 oncentrations of Cu2+ but toward higher (1-5 millimolar) concentrations.
23 g the formation of ULVWF-platelet strings as millimolar concentrations (0.1-20 mM) of histamine.
24 netic resonance results indicate that at low millimolar concentrations, 1-chloro-1,2,2-trifluorocyclo
25 d detectable, whole-cell, inward currents at millimolar concentrations (73 +/- 7 pA at -60 mV with 10
26 0.4 nm), high stability in water solution at millimolar concentration, and high thermal stability.
27 Ps selectively accumulate within bacteria at millimolar concentrations, and are a thousand-fold more
28  A beta peptides could be studied at higher, millimolar concentrations (as required by NMR) in aqueou
29 fferent natural and artificial sweeteners at millimolar concentrations, as well as commonly used indi
30 ranscription or promote DNA binding, even at millimolar concentrations, at least 1000-fold higher tha
31 ryls are likely because N-acetyl-cysteine at millimolar concentrations blocks stress signals.
32                  Mg(2+) ions are required in millimolar concentrations, but Mn(2+) ions are only requ
33 s, and the volatile agent isoflurane, at low millimolar concentrations, but not by octanol or ethanol
34 We conclude that calretinin, when present at millimolar concentration, can serve as a diffusionally m
35  Mannose, glucose, maltose, and inositol, at millimolar concentrations, competed for human SP-D bindi
36                                 BES (at low [millimolar] concentrations) completely prevented growth
37 ly increased the beating rate, whereas high (millimolar) concentrations decreased it.
38   Cytoplasmic MgATP, supplied by dialysis at millimolar concentrations, effectively inhibits only whe
39  be considered as metallic films for typical millimolar concentrations employed in amperometry and vo
40 P) or cyanide (CN) are bacteriostatic at low-millimolar concentrations for growing Escherichia coli,
41 -(AAKA)3-NH2 exhibit some helical content at millimolar concentrations in aqueous solution.
42  These antigenic alkylamines are secreted to millimolar concentrations in bacterial supernatants and
43 ve for the analysis of physiological ions at millimolar concentrations in biological and biomedical s
44            Urocanic acid (UCA) is present at millimolar concentrations in mammalian epidermis and und
45 min C) is a powerful reducing agent found in millimolar concentrations in plants, and is proposed to
46 ntioxidant and cellular reductant present at millimolar concentrations in plants.
47 e D-amino acids as well, which accumulate at millimolar concentrations in supernatants of stationary
48 lyamine spermine, which is normally found in millimolar concentrations in the nucleus, is shown here
49 was facilitated by, and dependent on, ATP at millimolar concentrations in the pipette solution.
50         We show here zinc, which is found at millimolar concentrations in the secretory granule, sign
51  the estimates of [Ca2+]i, from nanomolar to millimolar concentrations, in the presence and absence o
52  most effective anions was ATP, which at low millimolar concentrations increased the potency of GGPTa
53                                    GdnHCl at millimolar concentrations inhibited ATP hydrolysis.
54                         Extracellular ATP at millimolar concentrations inhibits growth of mycobacteri
55                  We report that caffeine, in millimolar concentrations, interacts strongly with four
56              When nitrite ion was present at millimolar concentration levels in the medium, nitration
57 gregation of the alphaT68His6 protein at the millimolar concentrations needed for NMR study, we utili
58                                          Ten millimolar concentration of Ca(2+) resulted in a 30% ele
59                However, astrocytes contain a millimolar concentration of cytosolic glutamate and expr
60 annel regulated the channel activity despite millimolar concentration of intracellular ATP.
61                           In the presence of millimolar concentration of Mg(2+) ion, the RNA samples
62 an open Ca2+ channel in a cell dialyzed with millimolar concentrations of 1,2-bis(2-aminophenoxy)etha
63 ocking the alpha-subunit of the IKr channel, millimolar concentrations of 4-AP can modulate ventricul
64 activation of phospho-NR is known to require millimolar concentrations of a divalent cation such as M
65 ximately 10(4) M(-1)) and in the presence of millimolar concentrations of a reducing cofactor such as
66                         We conclude that, at millimolar concentrations of AGE inhibitors used in many
67 ectively blocked by unlabeled bacteria or by millimolar concentrations of alpha-mannosides and microm
68                                              Millimolar concentrations of ascorbate in the presence o
69 for the ability of these cells to accumulate millimolar concentrations of ascorbic acid.
70                                              Millimolar concentrations of ATP have been previously sh
71        We hypothesize that the activation by millimolar concentrations of ATP is due to binding of ad
72 ncentrations are sufficient, we propose that millimolar concentrations of ATP may act to keep protein
73            The probe is most efficient under millimolar concentrations of ATP which are relevant to i
74                                              Millimolar concentrations of ATP, GTP or ITP are equally
75 ctivity and the rate of dephosphorylation by millimolar concentrations of ATP.
76 +]i does not require the re-establishment of millimolar concentrations of ATP.
77 tor P2X ligand-gated ion channel 7 (P2X7) by millimolar concentrations of ATP.
78 oplasmic (CP) was decided from the effect of millimolar concentrations of azide on the rates of proto
79 ucleoside triphosphates and are inhibited by millimolar concentrations of azide, whereas ecto-ATPases
80 (2+) and Sr(2+) triggered docking while even millimolar concentrations of Ba(2+) yielded poor docking
81          Cellular systems contain as much as millimolar concentrations of both ascorbate and GSH, alt
82                                              Millimolar concentrations of butyrate are needed to acti
83 sponse is not compromised by the presence of millimolar concentrations of Ca(II) or Mg(II) ions.
84  Methanococcus jannaschii in the presence of millimolar concentrations of Ca2+ ions to produce two-di
85 e mitochondria of neurones, and suggest that millimolar concentrations of Ca2+ may be reached followi
86 d = 3.1 mM suitable for the detection of low millimolar concentrations of chelatable Mg(2+) typical o
87  can be observed in solutions containing low millimolar concentrations of complex at neutral pH, 100
88                                Micromolar to millimolar concentrations of conventional contrast agent
89 e highly selective for K+ and blocked by low millimolar concentrations of Cs+ or Ba2+.
90 s by shallow intracutaneous injection of low millimolar concentrations of CTX into the dorsal skin of
91 rrents that were only partially inhibited at millimolar concentrations of Cu2+.
92        However, its activity is dependent on millimolar concentrations of Cys in the assay media.
93 d by either L- or D-Arg, but were blocked by millimolar concentrations of D-Pro.
94 anomolar levels of deamination products from millimolar concentrations of deoxynucleosides and oligom
95 . typhimurium PhoQ (ST-PhoQ) is repressed by millimolar concentrations of divalent cations and activa
96                                              Millimolar concentrations of divalent cations are shown
97 ve conditions is restored by the presence of millimolar concentrations of divalent cations Ca(2+), Ba
98                                  Addition of millimolar concentrations of either A or meA to the dTn
99 nds after C1q-stimulation in the presence of millimolar concentrations of external calcium.
100 li cells, MmaK renders the host sensitive to millimolar concentrations of externally applied K+, indi
101 ingle-molecule association dynamics at up to millimolar concentrations of fluorescent species.
102 length human plasma gelsolin at nanomolar to millimolar concentrations of free Ca2+.
103 ven in the presence of low millimolar to sub-millimolar concentrations of free glycine.
104 strate-substituted enzyme mechanism in which millimolar concentrations of free GSH and micromolar con
105 ons exhibited robust currents in response to millimolar concentrations of GABA and a picrotoxin (PTX)
106        Persistent activation of GABA(A)Rs by millimolar concentrations of GABA occurs under physiolog
107           Instead, mature glands accumulated millimolar concentrations of glucose (Glc) and fructose
108  arsenate but was only slightly inhibited by millimolar concentrations of glucose-1-P, glucose-6-P, o
109 al evidence that SML is able to compete with millimolar concentrations of GTP and GDP for the GN-bind
110   Poliovirus RNA replication is inhibited by millimolar concentrations of guanidine hydrochloride (Gd
111                                              Millimolar concentrations of guanidine hydrochloride (Gu
112              In low oxygen environments with millimolar concentrations of H(2)S, it functions as an e
113           The Co(II)2 probe is stable toward millimolar concentrations of H2PO4(-)/HPO4(2-), CO3(2-),
114 onversion (by reconstituted holo-rHCYase) of millimolar concentrations of homocysteine (HCY) to H(2)S
115 dence that patients with vitiligo accumulate millimolar concentrations of hydrogen peroxide (H2O2) in
116 s, the chromophore of pnGFP is unreactive to millimolar concentrations of hydrogen peroxide (H2O2).
117 ut 50% and 80%, respectively, by addition of millimolar concentrations of KHCO(3).
118                                              Millimolar concentrations of L-carnitine, which were not
119  and absolutely required the presence of low millimolar concentrations of l-glutamine in the extracel
120                                              Millimolar concentrations of leukocyte elastase, when re
121                                              Millimolar concentrations of Li+ resulted in decreases i
122                     Upon the addition of sub-millimolar concentrations of magnesium ions, the tRNA co
123                           On the other hand, millimolar concentrations of magnesium stabilize GroES,
124                                              Millimolar concentrations of Mg(2+) accelerate catalysis
125                                  Addition of millimolar concentrations of Mg(2+) in the absence of gl
126 el could be restored through the addition of millimolar concentrations of MgCl2 or CaCl2 to the trans
127  in Li(+) was also potently inhibited by low millimolar concentrations of Na(+), which according to o
128                                              Millimolar concentrations of NaCl, CaCl(2), and MgCl(2)
129 desensitized by extracellular application of millimolar concentrations of NH(4)Cl.
130 type could be bypassed by addition of either millimolar concentrations of ornithine or micromolar con
131 tracts and purified BSCS were incubated with millimolar concentrations of P(i).
132 terica serovar Typhimurium hypersensitive to millimolar concentrations of paraquat.
133 n binding sites that potentially can attract millimolar concentrations of profilin to areas requiring
134 d for metallic SWNTs) and with approximately millimolar concentrations of redox species the network b
135 al ClC-0 current by incubating the oocyte in millimolar concentrations of reducing agents, suggesting
136  metal.GSH thiolates (e.g. cadmium.GS(2)) or millimolar concentrations of S-alkylglutathiones serve a
137                 Microbiological reduction of millimolar concentrations of Sb(V) to Sb(III) was observ
138             All evaluated anaerobes produced millimolar concentrations of SCFAs, including acetic, pr
139 xidant defenses including a thick cell wall, millimolar concentrations of small molecule thiols, and
140                                              Millimolar concentrations of sulfhydryl-specific arsenic
141  chloride (APM) polyacrylamide gels, whereas millimolar concentrations of TCEP gave no difference in
142 estimated to be a major contribution only at millimolar concentrations of the complex or at very larg
143 anoma cells remain viable in the presence of millimolar concentrations of the complex.
144 ls into membranes, where inhibition required millimolar concentrations of the nucleotides.
145    The mutant was also impaired in growth on millimolar concentrations of these aromatic acids.
146 ophils and mononuclear phagocytes accumulate millimolar concentrations of vitamin C.
147 e of a membrane potential and a pH gradient, millimolar concentrations of zinc are required to inhibi
148 2 alpha and by S/M extracts was inhibited by millimolar concentrations of Zn2+, which had a minimal e
149 the maximum currents achieved by saturating (millimolar) concentrations of agonist.
150 vivo despite the permanent presence of high (millimolar) concentrations of ATP in mitochondria.
151                                        High (millimolar) concentrations of ATP were needed to produce
152 ely requires AMP and is antagonized by high (millimolar) concentrations of ATP.
153                            Exposure to high (millimolar) concentrations of calcium in the external me
154              Roots curved away from low (0.1 millimolar) concentrations of Cu2+ but toward higher (1-
155  yeast, Sdt1, the human 5'-NTs require high (millimolar) concentrations of nicotinamide mononucleotid
156 on reagents display minimal cell toxicity at millimolar concentrations, penetrate cell membranes, and
157                                       In the millimolar concentration range, Ca2+ also interacts with
158                     Increasing Ca2+ into the millimolar concentration range, however, resulted in a c
159             Over the experimentally relevant millimolar concentration range, TX, NBA, and pNBA, cause
160  inhibitors with inhibition constants in the millimolar concentration range, with more hydrophobic co
161 scrimination limits have been as high in the millimolar concentration range.
162  NMR characterization of Ag complexes in the millimolar concentration range.
163 d divalent cations elicited assembly only at millimolar concentrations, similar to those required for
164                              Nicotinamide at millimolar concentrations stops the deacetylation but do
165                                           At millimolar concentrations, TEA inhibited nicotinic recep
166 s high affinity site, while at micromolar to millimolar concentrations the oligosaccharides are bound
167                    In CD2Cl2 solution and at millimolar concentration, the thermally equilibrated all
168     If 5'-mononucleotides are in solution at millimolar concentrations, then oligomers resembling RNA
169                                       At sub-millimolar concentrations, these antibiotics inhibited j
170              Notably, addition of Ca(2+) (to millimolar concentrations) to dodecameric Dps-1 can resu
171 tes cAMP phosphodiesterase (PDE3A); however, millimolar concentrations were needed to inactivate PDE3
172           The cation specificity and the sub-millimolar concentrations where these effects occur stro
173  polymorphism of various oligomeric forms at millimolar concentrations, which differ in base stacking
174 nd 6'-sialyllactose inhibited binding 50% at millimolar concentrations, which were nearly 1,000 times
175 er induction of sepsis achieved perivascular millimolar concentrations, which were reduced to normal
176 r) channels (NaV1.8 and NaV1.9) inhibited by millimolar concentrations, with NaV1.5 having an interme
177           IAPP is stored before secretion at millimolar concentrations within secretory granules insi
178 rom the cylindrical electrode accumulates to millimolar concentrations within the closed streamlines

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