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1 ociation to generate the structures that are surface active.
2  of SSO, indicating that it was not strongly surface active.
3                  Both B6.4-13 and B13-17 are surface active.
4  structures which are cationic in nature and surface active.
5 nct of the three and is the only one that is surface active.
6 nized that many amyloid-forming peptides are surface-active.
7                      While both peptides are surface active, [198-243]apoA-I is more stable at the TO
8                       Amyloid precursors are surface-active, accumulating at hydrophobic-hydrophilic
9 t of a nontoxic, nonionic block co-polymeric surface active agent, poloxamer 188, on electroporation
10 ptomycetes proteins, the fungal protein is a surface active agent.
11                       Lung surfactant is the surface-active agent comprised of phospholipids and prot
12 erved when KSL was used in the presence of a surface-active agent, or after biofilms were mechanicall
13      Therapeutic administration of non-ionic surface-active agents is known to facilitate early colla
14 hat modification of tooth permselectivity by surface-active agents may be a viable method of decreasi
15                     Two-dimensional films of surface-active agents-from phospholipids and proteins to
16 r pulses results in faster depletion of more surface active analytes, effectively comprising a surfac
17  measurements due to ion suppression of less surface active analytes, particularly in the analysis of
18 his technique to readily generate spectra of surface-active analytes, and we compare the spectra to t
19                      Components of serum are surface active and adsorb reversibly to the interface in
20 s a result, the GO-adsorbed nanowires become surface active and are enriched at the air-water interfa
21 de toxins, the hemolysin from B. cepacia was surface active and lowered the surface tension of high-p
22 roduces SapB, an amphipathic peptide that is surface active and required for aerial growth on certain
23                       This new amphiphile is surface active and, more importantly, does not denature
24 c organic constituents in the atmosphere are surface-active and chiral, the role of stereochemistry i
25                                              Surface-active artificial enzymes (SAEs) are designed an
26 ed ferrocyanide, Fe(CN)(6)(4-), anion is not surface active at high concentrations, as expected, but
27 nce-random copolymers can mimic the in vitro surface-active behavior of lung surfactant proteins in a
28 spholipids that yield functionally important surface active behaviors.
29 ylglyoxal (MG) and acetaldehyde, known to be surface-active, can enhance aerosol CCN activity upon up
30                            Droplets emitting surface-active chemicals exhibit chemotaxis toward low-p
31                Application of cell spreading surface-active coating materials in combination with tot
32      Previous work demonstrated that chiral, surface-active collectors could be used to enrich enanti
33 cific hydrogen atoms with methyl groups in a surface-active comonomer utilized in adhesive bonding pr
34 rimental measurements on the interactions of surface active components such as trehalose with monolay
35  indicated that in most cases the mixture of surface active compounds lead to production of colloidal
36 on effects caused by the presence of various surface active compounds that coelute with the analyte.
37 ique in the presence of different food grade surface active compounds, namely, Polysorbate 20 (PS20),
38 erall solubility, indicating the presence of surface-active compounds below the critical micelle conc
39 hanced the relative analyte responses of the surface-active corrosion inhibitors.
40  water with sodium dodecylsulfate (SDS) as a surface-active dispersing agent.
41 pete efficiently with serum to form a highly surface-active film.
42 a propeptide (SP-C21) to produce the 3.7-kDa surface active form.
43 witterionic and anionic phospholipids to the surface-active function of calf lung surfactant extract
44 charge due to protonation or dissociation of surface active functional groups.
45  a facile and efficient method for preparing surface-active functional trialkoxysilanes.
46 ctadecylamine are also made, and this highly surface-active ion is observed to outcompete all other a
47                 The design and properties of surface-active ionic liquids that are able to form stabl
48  life cycle, surfactant converts from highly surface active, large aggregates to less surface active,
49 ed on prussian blue (PB) coating on peculiar surface active maghemite nanoparticles (SAMNs), was deve
50 hell nanocarrier, combining the magnetism of surface active maghemite nanoparticles (SAMNs, the core)
51 t work demonstrates the feasibility of these surface active maghemite nanoparticles as efficient hydr
52 oparticles, synthesized in-house and called "Surface Active Maghemite Nanoparticles" (SAMNs), are pro
53 e (gamma-Fe2O3) nanoparticles, called SAMNs (surface active maghemite nanoparticles) and characterize
54 portant roles in the production and decay of surface active materials; however, the details of these
55 nstrate that membranes constitute a critical surface-active medium for promoting interactions between
56 ow that earthworms possess a class of unique surface-active metabolites in their gut, which we term '
57                           Biosurfactants are surface-active microbial products that have numerous ind
58  sorption of aldehydes in positively charged surface active minerals.
59 turated with atmospheric gas and may contain surface-active molecules that can lower surface tension.
60 ersible post-translational modification of a surface-active morphogenetic peptide suggests a new mode
61 Previous evidence has shown that on the cell surface, active MT1-MMP undergoes autocatalytic processi
62 ese two seemingly different phenomena is the surface-active nature of the amyloid-forming species, wh
63 face composition, particularly the impact of surface active organic films, on the condensation and ev
64 nd theoretical evidence for a rate limiting, surface active ozonide formed at the interface.
65           We also report that SapB, like the surface-active peptide streptofactin produced by the spe
66  hyaluronan (HA), proteoglycan 4 (PRG4), and surface-active phospholipids (SAPL) contribute to bounda
67  mucosal hydrophobicity by reacting with the surface-active phospholipids of the colonic mucosa.
68 functionalized PEG grafts were used as 'cell surface active' polymeric carriers for biotin, hydrazide
69 data indicate that films containing the most surface-active polymers attain adsorptive and dynamic-cy
70 nterfacial tension of SSO, due to its strong surface active properties.
71 f natural compounds present in pulses having surface active properties.
72 rom the amino terminus (SP-B(1-25)) exhibits surface-active properties similar to those of full-lengt
73 oal and Kaolin as emulsifiers for their good surface-active properties.
74 ty of tyrosol and entailing tyrosol with new surface-active property.
75 and explain how ENaC in epithelia expressing surface-active proteases can appear refractory to solubl
76 faces, and a wide range of organisms produce surface-active proteins and peptides that reduce surface
77                     A new class of secreted, surface-active proteins called chaplins has been identif
78 ce patches are also observed in the class of surface-active proteins known as hydrophobins, and are t
79 rface, and in both groups of microorganisms, surface-active proteins take part in the initiation of a
80 complex bacterium requiring the secretion of surface-active proteins to progress through its life cyc
81               Higher-order organisms produce surface-active proteins with a wide variety of functions
82  adsorption due to competitive adsorption of surface active serum proteins.
83 tability shows that the presence of charged, surface-active serum proteins at the alveolar air-liquid
84  competitive adsorption of albumin and other surface-active serum proteins that are present in the lu
85             While nonspecific effects on the surface active site were shown to generally enhance sele
86 formed, yielding a direct measurement of the surface active-site density of a CoPi electrode (11 Co/n
87 y combine high macroscopic conductivity with surface active sites, and can be directly used as the el
88 cantly gain from the systematic variation of surface active sites, tested under the very same conditi
89 s Fermi level, bandgap, charge transport and surface active sites.
90 raphene nucleation density by passivating Cu surface active sites.
91 lar approach to the question in catalysis by surface-active sites, with as foremost example the elect
92 hly surface active, large aggregates to less surface active, smaller aggregates.
93 canethiolate on gold in aqueous solutions of surface-active sodium n-alkyl sulfates (NaCnSO4) of 6, 8
94 t the ion suppression efficiency of the most surface active species in this study was comparable to t
95 e attributed to rising bubbles that scavenge surface-active species from seawater, while further enri
96   Electrochemical control of the position of surface-active species within aqueous films of liquid su
97 sion between brush-like polymers tethered to surface-active species, we obtained long-range arrays of
98 erties of the released organic material, the surface active substances (SAS), reduced sulphur species
99 patially patterned birefringent elements and surface-active topographical features, is selectively tu

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