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1 oluble form of the receptor caused ASLV-B to hydrophobically associate with liposome membranes at neu
2 ocation, small and large cargo-complexes are hydrophobically attached to FG-repeat domains for 86 and
3        Mechanistic studies demonstrated that hydrophobically balanced xenopeptides are more resistant
4 ze carrying tert-butylphenyl groups that can hydrophobically bind into the cyclodextrin cavities.
5 ulations reveal that the side chain of Thr10 hydrophobically binds to ice revealing a potential mecha
6 es modified dodecyl-3,4,5-trihydroxybenzoate hydrophobically bound to a octadecyl silica resin (C-18)
7  charge of a series of droplets sliding over hydrophobically coated (1-5 nm thickness) glass substrat
8  superhydrophilic patterns on the surface of hydrophobically coated glass through CO2 laser cleaning.
9 like micelles to be tuned, while addition of hydrophobically coated iron oxide nanoparticles enables
10                     By creating an array of "hydrophobically coded dimples" on the surface of surface
11  below their transition temperature (T1) but hydrophobically collapse and aggregate at temperatures g
12 ded intermediate (IU) and another which is a hydrophobically collapsed intermediate (I phi).
13 appears to be consistent with formation of a hydrophobically collapsed intermediate state which slowl
14 tted the detection of a previously reported, hydrophobically collapsed intermediate, I phi.
15           One of these species appears to be hydrophobically collapsed, as mutations in an aromatic-r
16                                              Hydrophobically cross-linked networks offer advantages o
17                           Although drying in hydrophobically dominated interfaces is abrupt, resembli
18 ly modulated by pH and is most favorable for hydrophobically driven aggregation at pH 6.
19 Ss were obtained readily through spontaneous hydrophobically driven aggregation of the dyes in water.
20  that heme binding and release from CcmE are hydrophobically driven and relatively indifferent to axi
21 transitions on superhydrophobic surfaces, to hydrophobically driven biomolecular folding and assembly
22              All of the structures underwent hydrophobically driven collapse in response to the drop
23 mFRET data in terms of the hydrogen bond- or hydrophobically driven contraction of the unfolded state
24 ic polymers on one face of the cage leads to hydrophobically driven formation of quantized aggregates
25  aqueous environment simultaneously involved hydrophobically driven hydrogen bonds and ionic interact
26 nd increases with ionic strength, indicating hydrophobically driven intermolecular interactions.
27               We report on a model system of hydrophobically driven LLPS induced by high salt concent
28    Such parallel stacking is consistent with hydrophobically driven stabilization.
29 ral single or correlated hydrogen bonds in a hydrophobically enclosed environment, and (3) five categ
30 low temperatures the hydration shells have a hydrophobically enhanced water structure with greater te
31 ed on the surface of optical fiber probes to hydrophobically entrap LPS from aqueous solutions.
32                      Both 5- and 10 nm thick hydrophobically functionalized probes naturally resided
33 f Neuroligin-2 (His-cytNL2) were prepared on hydrophobically functionalized silicon dioxide substrate
34 n made in understanding the basic physics of hydrophobically induced evaporation, a comprehensive und
35 o participate in galactoside binding: Cys148 hydrophobically interacts with the galactosyl ring, whil
36 d (ii) proteins and lipids are not naturally hydrophobically matched in some biological membranes.
37 del is applied to estimate the enrichment of hydrophobically matched lipids near the channel in a mix
38 ids) using Pickering emulsions stabilised by hydrophobically modified cellulose nanocrystals (MCNCs).
39 polyethyleneoxide (PEO) moieties adsorbed to hydrophobically modified colloids and surfaces.
40  fibrinogen relative to bare fused silica or hydrophobically modified fused silica, suggesting that t
41                                              Hydrophobically modified glycol chitosan (hGC) conjugate
42 consisting of an assembly of surfactants and hydrophobically modified HA, have a mean size of 130 nm,
43 (DEs) with the inner interface stabilized by hydrophobically modified silica nanoparticles with myris
44 acity and uptake rate for PEI supported in a hydrophobically modified silica, which exhibits repulsiv
45 internalization and target mRNA silencing of hydrophobically modified siRNAs (hsiRNAs), yielding a ap
46                         Chitosan polymer was hydrophobically modified using oleic acid prior to compl
47 CGKRK peptides, based on the hypothesis that hydrophobically-modified CGKRK peptide could enhance cel
48 ecreases when unfolding exposes an otherwise hydrophobically shielded active site to water.
49 droxybutyl and methoxybutyl derivatives, and hydrophobically substituted piperidinylbutyl derivatives
50            Here we study the interactions of hydrophobically tagged DNA with synthetic and cell membr
51 tivate EnvA, such that ASLV-A particles bind hydrophobically to and merge their membranes with target
52              The linear decomposition of the hydrophobically transformed m(1)AChR amino acid sequence
53          Without electric field, RNA remains hydrophobically trapped in the membrane despite large en
54  a relatively lipid-rich particle associated hydrophobically with MTP.
55 clusion that benzyl alcohol and ANS interact hydrophobically with partially unfolded aggregation-pron
56 run buffer, a fluorescent dye that interacts hydrophobically with protein-SDS complexes.
57  in which the chains of the ligands interact hydrophobically with the surface of BCA.
58 S-resistant homotrimer, the virus associates hydrophobically with the target membrane, and fusion of