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1 yl sulfoxide, aqueous dimethylformamide, and deuterium oxide).
2 ose and deuterated pyruvate during growth on deuterium oxide.
3 ted nitrogen could undergo H/D exchange with deuterium oxide.
4 ide are first deuterated by dissolving it in deuterium oxide.
5 sphate using [(16)O(18)O] labeled species in deuterium oxide.
6 om the midshaft of rabbit tibiae immersed in deuterium oxide.
7  CH3-H4folate by 1 pK unit in both water and deuterium oxide.
8 tep in turnover was implicated by studies in deuterium oxide.
9 films were amended with either (15)NH4(+) or deuterium oxide ((2)H2O) and proteomic stable isotope pr
10 ere, we developed a workflow that integrates deuterium oxide (2H2O) labeling, high-resolution mass sp
11 d with the gold standard volumes measured by deuterium oxide and bromine dilutional space determinati
12 center was observed in the solution of 10 in deuterium oxide and MeOH-d4.
13 are these values with measurements of TBW by deuterium oxide and of ECW by bromide dilutions.
14                            The use of water, deuterium oxide, and H2O/D2O mixtures helped to distingu
15 drogen atom transfer reactions of the water, deuterium oxide, and methanol complexes of bis(cyclopent
16 s of skinfold thickness, total body water by deuterium oxide, and total-body electrical conductivity.
17                                     Although deuterium oxide as a mobile phase does in some cases cha
18                                   The use of deuterium oxide as a mobile phase in the routine analysi
19  exhibits a kinetic isotope effect of 2 with deuterium oxide as the solvent, consistent with a solven
20 body water by using stable isotope dilution (deuterium oxide) combined with body-weight changes.
21 nts were administered heavy water ((2)H(2)O; deuterium oxide) continuously for 6 wk to isotopically l
22 tidyl residues of Hb A were also measured in deuterium oxide (D(2)O) in 0.1 M N-(2-hydroxyethyl)piper
23                                              Deuterium oxide (D(2)O) is known to promote the assembly
24  Transport is retarded by a factor of 2-3 in deuterium oxide (D(2)O) relative to water, strongly sugg
25 nking is greatly enhanced in the presence of deuterium oxide (D(2)O), even when RF is present at only
26  bone by using exchange of native water with deuterium oxide (D(2)O).
27 3-dimethyl-2-thiourea [DMTU]) and enhancers (deuterium oxide [D(2)O] and 3-aminotriazole [3-AT]) of o
28 at overcome these limitations, in particular deuterium oxide (D2 O or heavy water).
29 s of polyelectrolyte dendrimers dissolved in deuterium oxide (D2O) and its dependence on molecular ch
30                                              Deuterium oxide (D2O) has been identified not only as a
31 n University of Wisconsin (UW) solution with deuterium oxide (D2O) in an attempt to improve vascular
32  single-phase solution by adding maximum wt% deuterium oxide (D2O) to HEMA/BisGMA neat resins contain
33                                              Deuterium oxide (D2O) was infused as a postcolumn additi
34                                              Deuterium oxide (D2O) was orally administered to 21 adul
35 ructural components in aqueous (both H2O and deuterium oxide (D2O)) solution using algorithms, such a
36                        Using newly developed deuterium oxide (D2O)-tracer techniques, we investigated
37 the trimannoside in hydrogen oxide (H2O) and deuterium oxide (D2O).
38 ke at 9-10 mo of age with the dose-to-mother deuterium oxide dilution method.
39  x-ray absorptiometry); total body water (by deuterium oxide dilution); extracellular water (by sodiu
40  replacement of water by the similarly sized deuterium oxide does not change the value of Deltax(u).
41 r permeability (Pd) was measured by H2O/D2O (deuterium oxide) exchange using the H2O/D2O-sensitive fl
42 sum synthesis over an extended period, using deuterium oxide have been shown to accurately reflect mu
43 h a mass spectrometer, the retention time of deuterium oxide injected in the column.
44  enrichment and the rate of incorporation of deuterium oxide into newly synthesized muscle proteins w
45 en solvents and the deuterated push solvent, deuterium oxide, is economical.
46 actorily for the observed rates of efflux of deuterium oxide (K2H = 0.30 min-1), calcium ions (KCa =
47                             (3) The solvent (deuterium oxide) kinetic isotope effect was found to be
48 clease A, results obtained in both water and deuterium oxide led to an estimate of the accessible sur
49  the products and their exchange behavior in deuterium oxide led to confirmation of its role as the P
50 triethylborane and its complexes with water, deuterium oxide, methanol, and THF at ambient temperatur
51                             The influence of deuterium oxide on the pre-steady-state kinetics was mon
52 on of the protein protons when hydrated with deuterium oxide provides no evidence for significant dyn
53          Relative rates of exchange in basic deuterium oxide reflect the relative acidities.
54 e assessed by using [(1)(3)C]cholesterol and deuterium oxide, respectively.
55                       These reactions run in deuterium oxide result in 13% incorporation of a second
56 ent kinetic isotope effect experiments using deuterium oxide reveal that the reactivation mechanism f
57                     Experiments performed in deuterium oxide show that a single solvent exchangeable
58 ng is greatly increased in both glycerol and deuterium oxide solutions, Deltax(u) depends on the size
59 te profile study of Tyr216Ala, together with deuterium oxide solvent kinetic isotope effects (KIEs).
60 ase in the magnitude of the rate constant in deuterium oxide solvent, and a proton inventory for this
61 centuated in solvents having more structure (deuterium oxide) than water and attenuated in solvents h
62 was inserted into nanodiscs and labeled with deuterium oxide under native conditions.
63                                              Deuterium oxide was used as nonretarded tracer.
64                            We also show that deuterium oxide, which broadens the zone of dorsalizatio

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