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1 egative and/or Gram-positive bacteria of new amphiphilic 3',4'-dialkyl neamine derivatives and of the
2                           We have identified amphiphilic 3',6-dialkyl derivatives of the small aminog
3 dation, necessitating the development of new amphiphilic agents with enhanced properties.
4  and aqueous self-assembly of a new class of amphiphilic aliphatic polyesters are presented.
5 n this study, we show that BASIC contains an amphiphilic alpha-helical structure within its N-termina
6  aqueous phase photochemistry of a series of amphiphilic alpha-keto acids with differing linear alkyl
7 building blocks, including peptides and even amphiphilic amino acids.
8                However, the self-assembly of amphiphilic aminocyclopropenium ions remains challenging
9 ntribute to an improved understanding of how amphiphilic aminoglycoside antibiotics that bind to nega
10 ng the effects induced on lipid membranes by amphiphilic aminoglycoside antibiotics.
11                   3',6-Dinonyl neamine is an amphiphilic aminoglycoside derivative active against Pse
12 erated a novel class of potent antibacterial amphiphilic aminoglycosides (AAGs) with significant impr
13                                         Both amphiphilic and dipolar glycolipids were synthesized, an
14 hich combine the catechol functionality with amphiphilic and ionic features of mfp-3s, were synthesiz
15 ical and computational studies, suggest that amphiphilic and lipophilic molecules may gain access to
16  core surrounded by progressively assembling amphiphilic and polar molecules, which form an elastic s
17 t likely to accumulate contain an amine, are amphiphilic and rigid, and have low globularity.
18 nsitions upon encapsulation of more than 130 amphiphilic and soluble additives into the bicontinuous
19  (hydrophilic anionic, hydrophilic cationic, amphiphilic anionic, and amphiphilic cationic) were inve
20  directly relevant for the transport of many amphiphilic antibiotics, antineoplastic agents and cytot
21 homologue of human granulysin, is a cationic amphiphilic antimicrobial peptide (AMP) that is produced
22 goTEA macrocycles designed to mimic facially amphiphilic antimicrobial peptides.
23                                              Amphiphilic arrays containing PEG-substituted BODIPY and
24 smonic-magnetic vesicle assembled from Janus amphiphilic Au-Fe3 O4 NPs grafted with polymer brushes o
25 ecifically we demonstrate the preparation of amphiphilic Au25(MHA)18@xCTA NCs (x = 6-9 where x is the
26 mination of asymmetric pai-chromophoric bola-amphiphilic BAB1 (dodecyl and triethyleneglycolmonomethy
27      We find that the fundamental concept of amphiphilic balance is still applicable to these new pol
28 In particular, we focus on the principle of "amphiphilic balance" as it relates to some recently deve
29 k copolymers (BCPs), and AuNPs tethered with amphiphilic BCPs.
30 tions in multiple areas, is shown to feature amphiphilic behavior.
31                       The disassembly of the amphiphilic biomass is thus enabled through the local de
32 or the differentiation of similarly composed amphiphilic blends.
33 covery of polymer nanodiscs, i.e., discoidal amphiphilic block copolymer membrane patches encased wit
34 directly observe the evolution of individual amphiphilic block copolymer micellar nanoparticles in so
35 resent study was to examine the stability of amphiphilic block copolymer micelles in biologic fluids
36           Utilizing this technique, a linear amphiphilic block copolymer or hyperbranched polymer und
37 e formed by single/individual multi-arm star amphiphilic block copolymer poly(amidoamine)-polyvalerol
38                                          The amphiphilic block copolymer, consisting of a hydrophobic
39 ost interestingly, this is achieved using an amphiphilic block copolymer, that by itself does not for
40 ion is coupled with the polymerization of an amphiphilic block copolymer.
41                       Micelles prepared from amphiphilic block copolymers (ABCs) have found numerous
42 sembling a mixture of hydrophobic MNPs, free amphiphilic block copolymers (BCPs), and AuNPs tethered
43                                              Amphiphilic block copolymers based on PEO and PPO (Polox
44                                              Amphiphilic block copolymers covalently functionalized w
45             The morphological studies of the amphiphilic block copolymers in solution were conducted
46                               We synthesized amphiphilic block copolymers made of poly(ethylene glyco
47                   In aqueous solution, these amphiphilic block copolymers self-assemble into bridged
48                                   Lipids and amphiphilic block copolymers spontaneously self-assemble
49                                              Amphiphilic block copolymers that carry nucleobases in t
50  Here we show that in contrast to uncharged, amphiphilic block copolymers that form discrete micelles
51 ve carbyne transfer strategy gives access to amphiphilic block copolymers through synthetic cascades
52  the first time, the controlled synthesis of amphiphilic block copolymers via ROAMP.
53 logically distinct nanocarriers comprised of amphiphilic block copolymers were engineered for targete
54 lomicelles" that self-assemble in water from amphiphilic block copolymers were investigated as aeroso
55 nsitivity to PI in the presence of synthetic amphiphilic block copolymers, Pluronics (SP1017).
56 ospheres were formed in water from comb-like amphiphilic block copolymers.
57 and aqueous buffer with the self-assembly of amphiphilic block copolypeptoids with aliphatic side cha
58                                          Two amphiphilic block polymer variants, poly(2-(dimethylamin
59 lysts through ligand-assisted co-assembly of amphiphilic block-copolymer micelles and polymer-tethere
60 nanoparticles (SCKs) have been designed from amphiphilic block-graft terpolymers, PEBP-b-PBYP-g-PEG,
61  produced in a single, scalable step from an amphiphilic bottlebrush block copolymer.
62           Janus particles are modified to be amphiphilic by introducing either carboxyl, hydroxyl, or
63 nd toxicity in vivo Only hAChE-S contains an amphiphilic C-terminal domain (T40, AChE(575-614)), with
64 with guest species revealed a very flexible, amphiphilic carbohydrate chain that has frequent dynamic
65 cid-based hydrogel encapsulating luminescent amphiphilic carbon-dots (C-dots).
66 drophilic cationic, amphiphilic anionic, and amphiphilic cationic) were investigated, with the aim of
67         This constitutes the first report of amphiphilic CD-based liquid crystals applied as proton c
68                            A series of model amphiphilic chain-like giant molecules was designed and
69 assembly is facilitated by the complementary amphiphilic character of CQDs and cellulose nanocrystals
70  isomeric polypeptides with the cationic and amphiphilic character of many antimicrobial peptides (AM
71     We explain these outcomes by the loss of amphiphilic character of the C-terminal helix due to oxi
72 er, enhanced in vitro cellular uptake due to amphiphilic character, and endosomal escape because of t
73                                   Because of amphiphilic character, the AP had the moisturizing actio
74 reversible tuning of the torsion angle of an amphiphilic chiral binaphthyl, from -90 degrees to -80 d
75  preparation conditions on the properties of amphiphilic chitosan nanocarriers (ACNs) that have shown
76                         Incorporation of the amphiphilic [Co(L3)](2+) complex into the liposome bilay
77 anins by lipophilization, in order to obtain amphiphilic colorants, which could be easily incorporate
78 methacrylate)-core/polyethylene glycol-shell amphiphilic comblike nanoparticle through controlled con
79                                           If amphiphilic compounds present on the prebiotic Earth ass
80                            By introducing an amphiphilic conjugated polyelectrolyte as an interfacial
81 manganese from foods and vegetables using an amphiphilic copolymer adsorbent, poly(styrene)-co-2-viny
82 e goal of our work is to develop, a cationic amphiphilic copolymer for simultaneous delivery of drug
83 so been designed with the cooperation of two amphiphilic copolymer gates.
84  was incorporated in the hydrophobic core of amphiphilic copolymer micelles, and was used to coordina
85                                           An amphiphilic copolymer PAVE containing photo-cross-linkab
86 synthesis and characterization of a cationic amphiphilic copolymer, poly (lactide-co-glycolide)-graft
87 blies resulting from self-assembly of mostly amphiphilic copolymers either as 3D compartments (polyme
88                         The self-assembly of amphiphilic copolymers of controlled architecture in sup
89  the design, optimization and use of various amphiphilic copolymers to surface functionalize the abov
90 pylene (PP) and their use to access triblock amphiphilic copolymers with the PP block located in the
91  Intravital imaging of fluorescently labeled amphiphilic-CpG revealed increased accumulation in irrad
92 th study of the hierarchical assembly of the amphiphilic cylindrical P-H-P triblock comicelles with p
93                We have recently developed an amphiphilic dendrimer that is able to deliver siRNA to a
94 earch described new types of carriers termed amphiphilic dendrimers (ADs), which are based on polyami
95 he self-assembly phenomenon of this class of amphiphilic dendrimers has not been molecularly explored
96                  The one-pot synthesis of an amphiphilic di-block copolymer and retention of oscillat
97 drophilic and hydrophobic polymer brushes or amphiphilic diblock co-polymer brushes.
98                                              Amphiphilic diblock copolymers are known to self-assembl
99                                      Herein, amphiphilic diblock copolymers are used to develop a pla
100 t can be simultaneously achieved by grafting amphiphilic diblock copolymers made of sequence-controll
101     This ROPISA process affords well-defined amphiphilic diblock copolymers that simultaneously form
102 y(ethylene glycol) macroinitiator results in amphiphilic diblock copolymers that spontaneously self-a
103 activity, quaternary ammonium-functionalized amphiphilic diblock copolymers were synthesized and blen
104 ical self-assembly of cyclic peptide-bridged amphiphilic diblock copolymers.
105 , we demonstrate that purified, monodisperse amphiphilic diblock copolypeptoids, with chemically dist
106 f amphiphilic gold nanocrystals, coated with amphiphilic diblock polymer brushes using a 'grafting to
107                         Herein, we report an amphiphilic DNA-paclitaxel conjugate, which forms stable
108 tin protein, encoded by exon-1, comprises an amphiphilic domain (htt(NT)), a polyglutamine (Q (n) ) t
109 untingtin peptides comprising the N-terminal amphiphilic domain without (htt(NT)) or with (htt(NT)Q(1
110                                              Amphiphilic drug formulation additives based on palmitic
111 n microscopy, we show that multiple cationic amphiphilic drugs (CADs) cause complete separation of th
112 -Ebola mechanism of SERMs, even the cationic amphiphilic drugs (CADs), this mechanism led to the endo
113 he bilayer-perturbing potency of hydrophobic/amphiphilic drugs candidates.
114 f the lipid bilayer may direct lipophilic or amphiphilic drugs to a specific depth within the bilayer
115 gnature of lipid bilayer-mediated effects of amphiphilic drugs.
116 s a widely open extracellular region with an amphiphilic environment for ligand binding.
117 ing and charge separation, take place in the amphiphilic environment of the thylakoid membrane.
118 ynamic, consisting of a hydrophobic core and amphiphilic exterior.
119                   During solvent extraction, amphiphilic extractants assist the transport of metal io
120 larly crowded, and dimensionally constrained amphiphilic fluids.
121 a graphene-like single-crystalline structure amphiphilic fluorescent probe with a periphery that is f
122 ta-peptide sequences that generated globally amphiphilic (GA) helices, each with a nonpolar domain fo
123                             Rhamnolipids are amphiphilic glycolipids biosynthesized by bacteria that,
124 embly, under electroformation conditions, of amphiphilic, glycosylated block copolymers in aqueous so
125 tional plasmonic vesicles are assembled from amphiphilic gold nanocrystals (such as gold nanoparticle
126 rface functionalization and self-assembly of amphiphilic gold nanocrystals grafted covalently with po
127 -responsive plasmonic gold nanovesicles from amphiphilic gold nanocrystals using a film-rehydration m
128                           The preparation of amphiphilic gold nanocrystals, coated with amphiphilic d
129 th 2-oxazolines can lead to the formation of amphiphilic gradient copolymers in a single step.
130 ragments form the core, with hydrophilic and amphiphilic groups exposed to water, making DOM accessib
131  the carefully designed, positively charged, amphiphilic guanidinocalix[5]arene pentadodecyl ether (G
132 e TLR4 signaling, we present here a panel of amphiphilic guanidinocalixarenes whose structure was com
133                            A location in the amphiphilic headgroup region of the bilayer was supporte
134  (inosinic:cytidylic acid) (PolyI:C)) and an amphiphilic hexapeptide, Pam3CSK4.
135                                        These amphiphilic hybrids self-assembled into micellar nanocar
136 e highly effective proteins bind ice through amphiphilic ice-binding sites based on arrays of threoni
137 an oil-in-water droplet system comprising an amphiphilic imine dissolved in chloroform that catalyses
138 -water droplet containing a self-replicating amphiphilic imine that can undergo repeated droplet divi
139 ral units is generally limited to the use of amphiphilic interactions.
140 ts is only slightly stronger than these weak amphiphilic interactions.
141 ee-radical polymerization using branched and amphiphilic ionic compounds as reactive monomers.
142                                              Amphiphilic Janus dendrimers (JDs) and glycodendrimers (
143 n isothiocyanate-containing sequence-defined amphiphilic Janus dendrimers and either linear or branch
144 s with metal-chelating ligands conjugated to amphiphilic Janus dendrimers generates dendrimersomes th
145                                 A library of amphiphilic Janus dendrimers including two that are fluo
146 f a library containing seven self-assembling amphiphilic Janus dendrimers is reported.
147                                Coassembly of amphiphilic Janus dendrimers with metal-chelating ligand
148  we report that vesicles self-assembled from amphiphilic Janus dendrimers, called dendrimersomes, enc
149 l membranes and vesicles self-assembled from amphiphilic Janus dendrimers, known as dendrimersomes, a
150                           A library of eight amphiphilic Janus glycodendrimers (GDs) with d-mannose (
151                           A library of eight amphiphilic Janus glycodendrimers (Janus-GDs) presenting
152                             Sequence-defined amphiphilic Janus glycodendrimers containing simple mono
153                                              Amphiphilic JDs consist of hydrophobic dendrons connecte
154                                    These new amphiphilic kanamycin derivatives bearing alkyl chains l
155         A facile route toward functionalized amphiphilic layered transition-metal dichalcogenide nano
156 ular structure of an interface that contains amphiphilic ligand molecules is necessary for a full und
157 , altering the number and orientation of the amphiphilic ligand on a self-assembled DNA nanocube can
158                          In our approach, an amphiphilic linear-brush block copolymer, with high pote
159 ach to generate a new group of tyrosol-based amphiphilic lipid alkylsuccinylated tyrosol by lipase-ca
160 e transfer process of fluorescently labelled amphiphilic lipid probe from HDL particles to the lipid
161 o accumulate in lymphoid tissue, we designed amphiphilic lipid-polymer conjugates that suppress syste
162 f precise information, nanovesicles built of amphiphilic "lipid-like" peptides are generally assumed
163                                              Amphiphilic lipids aggregate in aqueous solution into a
164 XS) on the ratio between amount of water and amphiphilic lipids differed for WD and PLA2 ED vs PLC an
165             Similar to membranes composed of amphiphilic lipids, these nucleoprotein-RNA vesicular me
166                           In this system, an amphiphilic LMWH-UA (LHU) conjugate was synthesized and
167                            In this study, an amphiphilic macromolecular prodrug of SIM was designed a
168 obic and hydrophilic molecules, due to their amphiphilic macromolecule composition.
169  at the single macrophage level, sugar-based amphiphilic macromolecules (AMs) were designed to compet
170                                          The amphiphilic MAG2 helix was found to lie flat on the memb
171  new class of hydrophobic building block for amphiphilic materials, and sugar-PAO conjugates in parti
172 l-surface-induced folding to form a facially amphiphilic membrane-active conformer.
173 sed hydrophobicity allowed interactions with amphiphilic membranes and modulation of biological respo
174                         The novel concept of amphiphilic molecular motors that self-assemble into res
175                   Typically, hydrotropes are amphiphilic molecules and differ from classical surfacta
176 simultaneous coordination-driven assembly of amphiphilic molecules and hydrophilic polymers are repor
177 significant elevations of negatively charged amphiphilic molecules are observed in obesity (e.g. free
178 a spontaneous self-assembly process of small amphiphilic molecules by specific secondary interactions
179 ved signatures of molecular self-assembly of amphiphilic molecules in topological defects, including
180                                       Mixing amphiphilic molecules with iron(III) chloride and hydrop
181 f a gold nanoparticle functionalized with an amphiphilic monolayer of alkanethiol ligands that had pr
182                               Trigonal star, amphiphilic monomers bearing three anthraceno groups on
183 uoro and 6-methoxyindoles bearing a cationic amphiphilic motif represented by a lipophilic n-octyl si
184                                    Since the amphiphilic nanoassembly sequesters hydrophobic guest mo
185 ere, we prepared innovative drug-integrating amphiphilic nanomaterial assemblies (DIANA) with tunable
186 olymer, polyvinyl alcohol (PVA), creating an amphiphilic nanomaterial that is water-soluble.
187 y to stabilize open bilayer structures using amphiphilic nanoparticle surfactants that present mixtur
188                             It is shown that amphiphilic nanoparticles (NPs) with a moderate HLB valu
189 derivative (C60-serPF) was designed to be an amphiphilic nanostructure, which is able to cross severa
190 t undergo one-dimensional self-assembly into amphiphilic nanotubes, which subsequently arrange as tub
191                               Owing to their amphiphilic nature and nano-size, they exhibited dual pr
192 re, we show that by carefully modulating the amphiphilic nature of a monoamine-based GAEL, we can gen
193                      We hypothesize that the amphiphilic nature of Janus particles leads to both anis
194 e cubicon method described here exploits the amphiphilic nature of membrane proteins and their natura
195         These results indicate that branched amphiphilic oligo-peptides nanoparticles represent a new
196                            The peptide forms amphiphilic parallel beta-sheets that assemble into stac
197 linker connected via a thiourea group to the amphiphilic part of Janus glycodendrimers, self-organize
198 d a novel method for the direct detection of amphiphilic pathogen biomarkers indicative of bacteremia
199 ically, we have exploited the interaction of amphiphilic pathogen biomarkers such as lipopolysacchari
200     Crosslinked micelles were prepared using amphiphilic PEG-b-poly(L-glutamic acid)/SN38 conjugates
201 spectroscopy and microscopy, we studied four amphiphilic PEG-dendron hybrids and their self-assembled
202 mechanism by which this synthetic C-terminal amphiphilic peptide (LumC13), binds to ALK5.
203 ts with the cationic surface of the Branched Amphiphilic Peptide Capsules (BAPCs) through numerous el
204 ggests that 12f is a new structural class of amphiphilic peptide with rapid fungicidal activity cause
205                              The design of a amphiphilic peptide, 3FD-IL, is described that comprises
206             Nanovesicles self-assembled from amphiphilic peptides are promising candidates for applic
207 membrane thinning, as typically observed for amphiphilic peptides embedded near the polar/apolar bila
208                                    Synthetic amphiphilic peptides have been found to form ion channel
209 e kinetics of the self-assembly processes of amphiphilic peptides remains elusive.
210 recently reported on a new class of branched amphiphilic peptides that associate with double stranded
211 ension to the structural study of biomimetic amphiphilic peptides with determination of molecular org
212 hrough the self-assembly of the two branched amphiphilic peptides.
213 helial cells and mouse lungs with engineered amphiphilic peptides.
214                    Our results show that the amphiphilic pH-low insertion peptide supports a highly h
215 tructure of a designed phospholipid-inspired amphiphilic phosphopeptide at 0.8 A resolution is presen
216 ommon drug resistance mechanisms with doubly amphiphilic poly(2-oxazoline)s (POx), a safe and highly
217 of the living CDSA of phosphonium-terminated amphiphilic poly(3-hexylthiophene)s to prepare colloidal
218                Novel cyclodextrin (CD)-based amphiphilic poly(carboxylic acid)s that self-assemble in
219 lop a self-assembled nanoparticle formula of amphiphilic poly(curcumin-dithiodipropionic acid)-b-poly
220 icles with a bicontinuous cubic structure by amphiphilic poly(ionic liquid) diblock copolymers, poly(
221 The self-assembly properties of the prepared amphiphilic poly[(2-methyl-2-oxazine)- grad-(2-butyl-2-o
222              We have previously developed an amphiphilic polyanhydride nanoparticle (NP)-based vaccin
223                                This class of amphiphilic polycarbonates could embody a powerful platf
224 le alkynes and azides inside a water-soluble amphiphilic polymer and proximal to copper catalytic sit
225 gel formed with nanoparticles assembled with amphiphilic polymer blocks of polyethyleneglycol (PEG) a
226               SPNpd is self-assembled from a amphiphilic polymer brush, which comprises a light-respo
227  number) as well as the conformations of the amphiphilic polymer chains in the micelle (e.g., blocks'
228              The coating was comprised of an amphiphilic polymer followed by three crosslinked amphip
229  analyze the structure within self-assembled amphiphilic polymer solutions.
230 s, we observe the macroscale consequences of amphiphilic polymer synthesis and the resulting molecula
231                                           An amphiphilic polymer with cleavable side chain and main c
232 synthesis from a single-source precursor (an amphiphilic polymer), which exhibits a very high quantum
233   This is comprised of an ultra-pH sensitive amphiphilic polymer, conjugated with indocyanine green,
234  we report on the design and synthesis of an amphiphilic polymer-prodrug conjugate of an imidazoquino
235  mechanistic insight into the assembly of an amphiphilic polymer-stabilized oil/aqueous interface, in
236 philic polymer followed by three crosslinked amphiphilic polymeric layers (P(3) coating), imparting h
237 he characterization of surfactants and other amphiphilic polymers and for the differentiation of simi
238             Self-assembling nanoparticles of amphiphilic polymers can transport hydrophobic molecules
239 reloaded with TTA molecules as the core, and amphiphilic polymers encapsulating anticancer prodrug mo
240 ticles (NPs) derived from self-assemblies of amphiphilic polymers have demonstrated great potential i
241 intensity profiles and information about the amphiphilic polymers in solution, CREASE outputs the str
242 ic insight into the assembly of well-defined amphiphilic polymers to form functional structures remai
243 otein delivery by site-selectively attaching amphiphilic polymers to the N-terminal positions of prot
244 work, we generate and screen a library of 24 amphiphilic polymers, preselected for molecular recognit
245  using readily available aldehydes to obtain amphiphilic polymers.
246                                 The radially amphiphilic polypeptides can also be used as effective a
247                           Here, we report on amphiphilic polypeptides that self-assemble to form nano
248                               This family of amphiphilic polypeptoids formed free-floating 2-dimensio
249 ing and antibacterial properties of cationic amphiphilic polyproline helices (CAPHs) with modificatio
250                                        Their amphiphilic properties and degradability into fully solu
251                                          The amphiphilic properties and the instability of 2-AG in aq
252 ell can be well controlled by exploiting the amphiphilic property of the two types of polymers.
253         The immense application potential of amphiphilic protein-polymer conjugates remains largely u
254 recursive Pickering emulsion procedure using amphiphilic protein-polymer nanoconjugate building block
255  particular attention to the large family of amphiphilic PS derivatives (AMPDs); they are synthesized
256                               A pyrene based amphiphilic receptor has been utilized in the nanomolar
257  controlling phosphate binding to elementary amphiphilic receptors anchored at air-water interfaces.
258      We demonstrate that the presence of the amphiphilic replicator, by lowering the interfacial tens
259 responsive element binding factor-associated amphiphilic repression (EAR) domain-dependent transcript
260 ) in the ethylene response factor-associated amphiphilic repression (EAR) motif in the coding region
261 cterized Ethylene response factor-associated Amphiphilic Repression (EAR) motif is known to facilitat
262 responsive element binding factor-associated amphiphilic repression (EAR) motifs.
263 responsive element binding factor-associated amphiphilic repression (EAR-like) domain.
264 rbor the ethylene response factor-associated amphiphilic repression domain but differ in the presence
265 responsive element-binding factor-associated amphiphilic repression motif.
266  waters, and were dominated by amphibactins, amphiphilic siderophores with cell membrane affinity.
267                                    A1T is an amphiphilic small molecule that may represent a mechanis
268                                              Amphiphilic small molecules and polymers form commonplac
269                        To combat infections, amphiphilic small molecules have been developed as promi
270 n, we report the mesostructural evolution of amphiphilic sphere-rod conjugates (giant lipids), and st
271                        Here, we compare four amphiphilic stapled peptides with their linear counterpa
272                            Herein, a general amphiphilic star-like block copolymer nanoreactor strate
273                                 By utilizing amphiphilic star-like PAA-b-PEDOT diblock copolymer as t
274                                              Amphiphilic star-like triblock copolymers [polystyrene-b
275                                 The radially amphiphilic structure enables the polypeptide to bind ef
276 bial peptides (AMPs) generally have facially amphiphilic structures that may lead to undesired peptid
277 echanisms of interaction with hydrophobic or amphiphilic substrates, and homology to soluble folds.
278 llular distribution insights, we selected an amphiphilic surface ligand-coated AuNP that targeted mye
279                                              Amphiphilic surfactants are thus likely to enhance the C
280 vely) were investigated and found to contain amphiphilic surfactants in concentrations up to 2.8 mug
281 h the PM(1) chemical composition showed that amphiphilic surfactants were present in the entire range
282                               We designed an amphiphilic synthetic polymeric vehicle from a triblock
283                                              Amphiphilic TBPOSS form rugged monolayers and Grazing In
284 nse of semi-dilute solutions (5 w/w%) of two amphiphilic thermoresponsive poly(ethylene oxide)-b-poly
285                                    Recently, amphiphilic tobramycin analogues, C12 and C14, were show
286 d here are designed to capture the cationic, amphiphilic traits of anticancer peptides.
287                           Furthermore, B-A-B amphiphilic triblock comicelles with PFS-b-poly(2-vinylp
288       In this work, we use NEs featured with amphiphilic triblock copolymer (Pluronic F-127) as a mod
289 s (PFCs) at physiological temperatures by an amphiphilic triblock copolymer which can emulsify PFCs a
290          Herein we demonstrate the use of an amphiphilic triblock copolymer, Pluronic F127, to fabric
291                      The support is based on amphiphilic triblock copolymers of poly(2-oxazoline)s wi
292  a self-wrinkling behavior was observed when amphiphilic triblock copolymers of PS-block-poly(2-vinyl
293                                    Star-like amphiphilic triblock copolymers were rationally designed
294 mulsion using a small amount of FDA-approved amphiphilic triblock Pluronic copolymers which act as ge
295                                           An amphiphilic triblock polymer was designed and synthesize
296                                Water-soluble amphiphilic triblock polymers are also synthesized.
297 ously shown to possess porin activity, forms amphiphilic trimers, while MOSP(N) forms an extended hyd
298 he hydrophobic lipid core as compared to the amphiphilic water-lipid interface.
299                              Its molecule is amphiphilic with a hydrophobic ridge on the surface enri
300                             Surface-modified amphiphilic zirconium phosphate (ZrP) platelets were fab

 
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