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1 e upper layer of a comet is a product of its surface activity.
2 n the most important measure of a molecule's surface activity.
3 nied by up-regulation of TF protein and cell surface activity.
4 KCC2 residue Ser940 is known to regulate its surface activity.
5 oid 17mers and demonstrated their biomimetic surface activity.
6 s the effects of altered fusion and lysis on surface activity.
7 ine and fatty acids sodium salt, and greater surface activity.
8 pecially the hydrophilic compound with lower surface activity.
9  as much as a approximately 99% reduction in surface activity.
10 rs are vulnerable to contamination from land-surface activities.
11 in a mixture of two molecules with different surface activities.
12 ps of SP-B and tested for fusion, lytic, and surface activities.
13  that compete for protons but have different surface activities.
14 stabilization agents, the variation in their surface activity afforded different levels of control ov
15 ith a synthetic lipid mixture, have superior surface activity and biomimetic film morphology in compa
16  Morphogenesis requires coordination of cell surface activity and cytoskeletal architecture.
17 ons of these sites had major effects on both surface activity and expression.
18 found that both proteins exhibited a similar surface activity and formed stable, rigid monolayers.
19                             QS showed a high surface activity and functionality with respect to micel
20 d can explain the role of nanodomains in its surface activity and inhibition by an increased choleste
21  a model interface, we characterized Abeta's surface activity and its conformation, assembly, and mor
22 conductance (MscS) and compare them with the surface activity and lateral pressure changes measured i
23                                              Surface activity and mechanical effects were compared fo
24  a mass spectrometric method to characterize surface activity and solute partitioning between bulk li
25 for army ant species with varying degrees of surface activity and with different body sizes within an
26 quaternary ammonium compounds with different surface activities, and octadecylamine and glycine were
27 ol and electrospray ionization mass spectra, surface activity, and hygroscopicity.
28     Topographic smoothing and passivation of surface activity are observed for the alkylated capillar
29 roteins, yielding characteristic features of surface activity as a function of pH.
30 ecular weight polymers of varying degrees of surface activity, as illustrated for the size-exclusion
31 roughput method for the screening of protein surface activity at the air/liquid interface as a functi
32 ce active analytes, effectively comprising a surface activity-based separation.
33                         Specific measures of surface activity before and after native surfactant was
34           Hence, PACS-2 sustains ADAM17 cell-surface activity by diverting ADAM17 away from degradati
35 that the inhibitory effect of DeltaG8-P80 on surface activity can be overcome by wild type levels of
36 nterface and the concentration dependence of surface activity coefficients.
37  using the lattice theory expression for the surface activity coefficients.
38 mber of different factors, including analyte surface activity, competition between analytes for charg
39 ased mimics and that there is an increase in surface activity corresponding to increasing helical len
40                           By virtue of their surface activity, detergents have the potential to impac
41 k narrowing is qualitatively explicable by a surface-activity effect invoking large, attractive later
42     Adding alpha1-AT did not affect in vitro surface activity, except for that of the PL mixture.
43  here provides direct information on analyte surface activities free from the complications encounter
44                              Overall dynamic surface activity in oscillating bubble studies was not s
45 s of the more significant effects of analyte surface activity in the gentler zero volt experiment tha
46  the peptoid has little effect on biomimetic surface activity, indicating that interactions of the gu
47 ly unfolded which resulted in an increase in surface activity irrespective of the presence of the lip
48 r correlation between the retention time and surface activity is also observed within a subcategory o
49 e mimic of SP-C that retains its biophysical surface activity is extraordinarily challenging given th
50                                         This surface activity is inhibited by addition of micromolar
51 a protein sample as the pH-dependent protein surface activity is measured by a dynamic surface tensio
52  of apo hA-I are very similar as assessed by surface activity, lipid association with palmitoyloleoyl
53 celle polymers which include zero cmc, lower surface activity, low volatility, high electrophoretic m
54 results indicate that SP-B fusion, lytic and surface activities map predominantly to the N-terminal h
55 hy (HPLC) phase partitioning: comparisons of surface activities measured by laser desorption with ret
56                                              Surface activity measurements of the anion/IPR complex w
57                                 Furthermore, surface activity measurements with EPL1 revealed that, i
58  of root elongation relative to the computed surface activities of ions revealed three separate mecha
59                         Here, we compare the surface activities of six different helical peptoid anal
60 utside its natural matrix, it displayed high surface activity of 0.26 units cm(-)(2) in the matrix of
61                                              Surface activity of analytes plays a significant role in
62 yers is unusually facile, as revealed by the surface activity of aqueous liposome dispersions.
63 methylglyoxal reaction mixtures, the lack of surface activity of glyoxal reaction mixtures, and the h
64            In this Research News article the surface activity of GO and how it can be employed to cre
65                                Driven by the surface activity of graphene, electrically conductive el
66 n-bonding network of water molecules and the surface activity of ions.
67 nhibitor acting alone was able to reduce the surface activity of LS and CLSE, either raising minimum
68                  The concentration-dependent surface activity of other common surfactant inhibitors i
69 lated Rgps are poorly secreted, whereas cell surface activity of phosphorylated Kgp is enhanced.
70                                          The surface activity of surfactant isolated from the SP-A(-/
71  experimentally relevant concentrations, the surface activity of the amyloid-forming peptides leads t
72 nwetting biofilm to form as they control the surface activity of the BslA protein.
73                                          The surface activity of the colonizing fungal hyphae is exte
74                                          The surface activity of the complex suggests its possible us
75 n between the observed ESI responses and the surface activity of the complex was found.
76 tal ion extraction are related to the higher surface activity of the ligand at the phase interface.
77                                          The surface activity of the model LS films again showed dras
78 l enhancement may be facilitated by the high surface activity of the perfluorinated surfactants on th
79 he absence of a thiol initiator improves the surface activity of the protein at the air:water interfa
80 esponsible for the pronounced improvement in surface activity of the protein on heating.
81 of benzoic oxidation rates suggests that the surface activity of the solids for .OH generation correl
82 anced sensitivity could be attributed to the surface activity of the unsymmetrical dications, which r
83 n and nonprotein inhibitors in impairing the surface activity of whole and extracted calf lung surfac
84  (GPB; which does not facilitate band 3 cell-surface activity or trafficking) to identify candidate r
85 ciated with detectable changes in surfactant surface activity, postnatal respiratory function, or sur
86  MCF10A mammary epithelial cells, suppressed surface activity, retarded cell spreading after plating,
87 nts showed that the AR-BSA complex presented surface activity, since interfacial tension of the water
88 h aromatic side chains shows more biomimetic surface activity than simpler peptoids, and even better
89              Xylem surfactants showed strong surface activity that reduces surface tension to low val
90 o convert macroclimate data to pika-specific surface activity time in summer across the western Unite
91 and using a mechanistic predictor (predicted surface activity time) in SDMs.
92                                          The surface activity was found to be highest at pH 4.
93                                          The surface activity was greater in the C3H mandible than in
94 ed mRNA, cell surface protein, and activity; surface activity was greater than that observed with hyd
95                                              Surface activity was studied for SP-C and dSP-C combined
96 al stimulation with imagery-induced cortical surface activity, we demonstrate the role of primary mot
97 ific mRNA, TF surface protein levels, and TF surface activity when compared with non-heat-shocked, LP
98 e, indicating a more complicated behavior of surface activity where there is competition among dissol
99          These molecules show an increase in surface activity, which is normally associated with an i
100 carbon SECM electrode enabled correlation of surface activity with accurate topographical information
101                   NTAIL showed a significant surface activity, with a higher adsorption capacity at t
102 s showed that alkylation improved biomimetic surface activities, yielding lower film compressibility

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