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1 istance by multitargeting and broad-spectrum antibacterial activity.
2  fluids did not affect short-term release or antibacterial activity.
3 ver the molecular process that underlies its antibacterial activity.
4 to hydroxylamine intermediate for exhibiting antibacterial activity.
5 renylated phenolics found in pools with high antibacterial activity.
6 in the phenolic skeleton also influenced the antibacterial activity.
7 farnesol, which is commonly known to exhibit antibacterial activity.
8 omplex lanthipeptide that has broad spectrum antibacterial activity.
9 t the effects of MW thermal heating on honey antibacterial activity.
10 nstrated that the dressings exhibited potent antibacterial activity.
11 mpounds significantly contribute towards its antibacterial activity.
12 ific ligand combinations affects in vivo SCN antibacterial activity.
13  gyrase and topoisomerase IV inhibitors with antibacterial activity.
14 ce 1 containing Cu and Pt metals with strong antibacterial activity.
15 anoparticle (NP) system based on silver-free antibacterial activity.
16 membranes and delivery into target cells for antibacterial activity.
17 phenylmethane dye with potent antifungal and antibacterial activity.
18 or decreasing the ring size deteriorated the antibacterial activity.
19  that provide intrinsic and highly effective antibacterial activity.
20 clic guanidine library that displayed strong antibacterial activity.
21  gyrase and topoisomerase IV inhibitors with antibacterial activity.
22 . coli indicated that some compounds exhibit antibacterial activity.
23  Hydrogen peroxide plays a key role in honey antibacterial activity.
24 anthraquinones generated in this work showed antibacterial activity.
25 ard polymer parts and reveal the mode of the antibacterial activity.
26 s exhibit enhanced antifouling potential and antibacterial activity.
27 e clusters were synthesized and screened for antibacterial activity.
28 nding peptides while in many cases retaining antibacterial activity.
29 ald's eyesalve', and showed it had promising antibacterial activity.
30 network capable of predicting molecules with antibacterial activity.
31 icle size, which gives a series of different antibacterial activity.
32 icles with variable size and give controlled antibacterial activity.
33  inhibitors with potent in vivo and in vitro antibacterial activity.
34 TCA within micelles crucially improved their antibacterial activity.
35 the compounds presented clinically effective antibacterial activity.
36 IR, acceptable biocompatibility and moderate antibacterial activity.
37  occurring nucleoside inhibitors with potent antibacterial activity.
38 eria, signaling that another effector(s) has antibacterial activity.
39 associated with neutralised cytotoxicity and antibacterial activity.
40 )-CH(2)-CH(2)-N(3) are characterized by high antibacterial activity.
41 nificant regenerative potential and enhanced antibacterial activity.
42 porated into various biomaterials possessing antibacterial activities.
43 rtunity to develop derivatives with improved antibacterial activities.
44 ssess among other properties antioxidant and antibacterial activities.
45 in and exhibited significant antioxidant and antibacterial activities.
46 , also resulting in a higher antioxidant and antibacterial activities.
47 ma-AApeptide (AA1), which has broad-spectrum antibacterial activities.
48 ophil recruitment, and potentiation of their antibacterial activities.
49 tective, antidiabetic, anti-inflammatory and antibacterial activities.
50 ijoa leaf extracts with high antioxidant and antibacterial activities.
51 ows it with superior nuclease properties and antibacterial activities.
52 h as teratogenic, cytotoxic, phytotoxic, and antibacterial activities.
53  important structural features necessary for antibacterial activity (a nitrogenous and a lipophilic c
54 any studies have tried to summarize NPs with antibacterial activities, a comprehensive review with ri
55  assessed for DNA gyrase inhibition, and the antibacterial activity across Gram-positive and Gram-neg
56 e acetic acid-solubilized chitosan possessed antibacterial activities against 3 single-species biofil
57 e find the TA-nHP66 scaffolds exhibit potent antibacterial activities against E. coli and S. aureus,
58 ibitors, several hit series eliciting potent antibacterial activities against Enterobacteriaceae and
59  DNA gyrase and topoisomerase IV, displaying antibacterial activities against Gram-positive and Gram-
60                       All extracts exhibited antibacterial activities against gram-positive bacteria,
61  6-substituted analogues, demonstrate potent antibacterial activities against MRSA, MRSE and VRE (MIC
62  human microbiome and that they exert potent antibacterial activities against neighboring microbes, i
63          Additionally, PSEO displayed potent antibacterial activity against 3 Gram-positive and 3 Gra
64                                Evaluation of antibacterial activity against a panel of Gram-positive
65 was designed, synthesized, and evaluated for antibacterial activity against a wide range of clinicall
66 e reported previously as a new scaffold with antibacterial activity against an array of multidrug-res
67 ideromycin natural product that shows potent antibacterial activity against clinically important path
68 bacterial RNA polymerase (RNAP) and exhibits antibacterial activity against drug-resistant bacterial
69 -a]pyrimidines that had good narrow-spectrum antibacterial activity against E. faecium and exhibited
70 lin-binding proteins, resulting in intrinsic antibacterial activity against Enterobacteriaceae and re
71  SCN ligands were sufficient to activate SCN antibacterial activity against Escherichia coli In the p
72        Compound 1 also showed broad spectrum antibacterial activity against Escherichia coli, Mycobac
73         The active biofilms exhibited strong antibacterial activity against food-borne pathogens with
74 lgal extracts or cyanobacterial isolates had antibacterial activity against Gram negative bacteria (E
75       Some of the compounds possessed modest antibacterial activity against Gram positive bacterial s
76 somerase IV inhibitors and display excellent antibacterial activity against Gram positive pathogens,
77 ee cationic charge centres can elicit potent antibacterial activity against Gram-positive and Gram-ne
78                         Bacaucin shows broad antibacterial activity against Gram-positive bacteria, b
79           Only some compounds possessed weak antibacterial activity against Gram-positive bacteria.
80 sions that accumulate in E. coli and possess antibacterial activity against high-priority Gram-negati
81 hyperlipidemic drug exhibited broad-spectrum antibacterial activity against important Gram-positive (
82 l-sn-glycero-3-phosphocholine exhibited good antibacterial activity against Klebsiella planticola wit
83  isoflavonoids and stilbenoids showed potent antibacterial activity against Listeria monocytogenes an
84                            Pools showed high antibacterial activity against Listeria monocytogenes: c
85 films while 11 and 12 demonstrated excellent antibacterial activity against M. tuberculosis (MIC = 3.
86 ines, guanidine groups demonstrated improved antibacterial activity against methicillin-resistant Sta
87 ave been further exploited in photocatalytic antibacterial activity against methicillin-resistant Sta
88                                              Antibacterial activity against model Gram negative and G
89 ng power and lipid peroxidation inhibition), antibacterial activity against MRSA and MSSA and cytotox
90 red ring-opened heptapeptide, shows specific antibacterial activity against MRSA by a membrane-disrup
91       In vitro, both peptides exhibited good antibacterial activity against MRSA, vancomycin-resistan
92 signed, synthesized, and evaluated for their antibacterial activity against multidrug resistant (MDR)
93 re, one CAPH, Pentyl-P14 exhibited excellent antibacterial activity against multiple strains of patho
94                     This material has strong antibacterial activity against periodontal pathogens suc
95 ant activity was evaluated by DPPH assay and antibacterial activity against Pseudomonas aeruginosa an
96           One compound demonstrated the best antibacterial activity against Pseudomonas aeruginosa bo
97 /RT inhibitors are characterized by a potent antibacterial activity against S. aureus and in cellulo
98 chemokines with OPN strongly inhibited their antibacterial activity against S. pneumoniae but did not
99 ion of a potent analogue, PK150, that showed antibacterial activity against several pathogenic strain
100                       HP 13 displayed potent antibacterial activity against slow-growing M. tuberculo
101  modified peptide exhibiting narrow-spectrum antibacterial activity against some symbiotic bacteria o
102 thod and related multifactorially with their antibacterial activity against Staphylococcus aureus and
103  protein and the subsequent demonstration of antibacterial activity against Staphylococcus aureus.
104 library to screen 37 different libraries for antibacterial activity against the ESKAPE pathogens.
105 ly, the antibacterial assay reveals a strong antibacterial activity against the tested Gram-positive
106             Although CRAMP exhibits in vitro antibacterial activity against UPEC, it may enhance UPEC
107 a facile methodology not only displayed good antibacterial activity against wild-type bacteria but al
108 g structural information to achieve improved antibacterial activity against wild-type E. coli.
109 The two fully processed PTM analogues showed antibacterial activities, albeit lower than that of PTM,
110 tly inhibited gram negative bacteria and the antibacterial activity also increased significantly agai
111                            Ultimately, their antibacterial activity analysis against some food pathog
112 ack of VDR in Paneth cells leads to impaired antibacterial activities and consequently increased infl
113 rial topoisomerase inhibitors with promising antibacterial activities and potencies, which thus repre
114 ffiliated bacterial flora had a wide-ranging antibacterial activities and potential natural product d
115                           Synthetic methods, antibacterial activities and relative binding affinities
116 ve properties with special emphasis on their antibacterial activities and to support their uses as na
117 modified PRO membranes possess much enhanced antibacterial activity and antibiofouling propensity.
118 l, cationic AMPs, which offer broad-spectrum antibacterial activity and better therapeutic potential
119  added as a second binary element to enhance antibacterial activity and biocompatibility.
120  gyrase and topoisomerase IV) display potent antibacterial activity and exhibit no target-mediated cr
121 escribed herein, owing to the broad-spectrum antibacterial activity and favorable in vitro safety pro
122 t screening commercial kinase inhibitors for antibacterial activity and found the anticancer drug sor
123 ed with compounds that possessed both potent antibacterial activity and high aqueous solubility.
124 absorbance, pH, color, antioxidant capacity, antibacterial activity and kinematic viscosity.
125 ficant components in honey: three related to antibacterial activity and linked to phenolic compounds;
126  spectroscopy as a predictive tool for honey antibacterial activity and methylglyoxal content was ass
127 nearization of the peptide sequence improves antibacterial activity and reduces hemolysis of mouse bl
128 n is studied, indicating a broad spectrum of antibacterial activity and showing selective killing abi
129 s to the importance of lipid aggregation for antibacterial activity and suggests that guanidine group
130 e demonstrate that bile salts increase SPI-6 antibacterial activity and that S Typhimurium kills comm
131 nity for accelerated wound healing, enhanced antibacterial activity and the potential for controlled
132 tibacterioribosomal activity correlates with antibacterial activity, and the ribosomally more active
133 a that compounds with strong antioxidant and antibacterial activities are also water-soluble.
134  theranostic nanodrugs that display enhanced antibacterial activities, as well as aggregation-induced
135 tic use prior to the hospital visit using an antibacterial activity assay.
136 mpounds is further discussed regarding their antibacterial activity, biosynthesis, structure-activity
137 rophobicity between two centers show similar antibacterial activity but significantly less toxicity t
138                   TiO2 exhibited significant antibacterial activity, but the protein expression profi
139 he old tuberculosis drug pyrazinamide exerts antibacterial activity by acting as a target degrader, a
140 ed to highlight plant-derived compounds with antibacterial activity by focusing on their growth inhib
141 y and suggests that guanidine groups improve antibacterial activity by increasing the extent of lipid
142    Capuramycin displays a narrow spectrum of antibacterial activity by targeting bacterial translocas
143       These results indicate the spectrum of antibacterial activity can be altered by controlling the
144 d antioxidant activities, and therefore, the antibacterial activity cannot be attributed (only) to ph
145 nfected with RSV, have significantly greater antibacterial activity compared to RSV-negative controls
146       On the other hand, ZnO exhibited lower antibacterial activity compared to TiO2, and the bacteri
147 s with vertical orientation exhibit enhanced antibacterial activity compared with random and horizont
148 s were evaluated for immediate and long-term antibacterial activity, cytotoxicity, polymerization beh
149 y and is stable in human serum; (c) displays antibacterial activity; (d) binds to CD98, which mediate
150                                  The highest antibacterial activity detected was against the fish far
151            However, the contribution of T6SS antibacterial activity during pathogen invasion of the g
152 oglycoside antibiotic increases the inherent antibacterial activity, effectively combats multiple mec
153                   Here, we report remarkable antibacterial activity enhancement via halogen substitut
154 phenoloxidase, involved in melanization, and antibacterial activity for humoral immunity.
155            Biological assays revealed potent antibacterial activity for the nitrile analogue against
156 ts specific localization and its established antibacterial activity, Gga-AvBD11 appears to play a pro
157 e I inhibition, binding to B-DNA duplex, and antibacterial activity has been evaluated.
158                                              Antibacterial activity has demonstrated (by using Staphy
159       These compounds were then screened for antibacterial activity, illustrating the utility of the
160 rheumatic agent, which also possesses potent antibacterial activity in a clinically achievable range.
161         In serum, however, C10OOc12O induced antibacterial activity in a manner suppressible by antic
162 es of the upper airway and determined direct antibacterial activity in airway secretions of RSV-infec
163 red airway surface liquid pH, viscosity, and antibacterial activity in primary cultures of airway epi
164 the first time, full in situ photocontrol of antibacterial activity in the presence of bacteria was a
165 niae, but only CCL26 and CCL28 retained high antibacterial activity in the presence of sodium chlorid
166           Mesenchymal stem cells (MSC) exert antibacterial activity in vitro and in acute bacterial i
167 ded by structure-based design and focused on antibacterial activity in vitro and in vivo, culminating
168 gh dose, improvements in both solubility and antibacterial activity in vivo were prioritized early on
169 cles) up-regulated induced immunity (generic antibacterial activity) in anticipation of feeding and m
170 binations is sulbactam-ETX2514, whose potent antibacterial activity, in vivo efficacy against MDR A.
171 eral host defense proteins and peptides with antibacterial activities including beta-defensins, ELR-n
172         Both (+)-2 and (-)-2 showed moderate antibacterial activities including several multidrug-res
173 ked by overexpression of proteins with known antibacterial activity including BPI, EPX, MPO and AZU1.
174 o increase its own production and to enhance antibacterial activities, including the release of oxyge
175 12-epi-pleuromutilins with extended-spectrum antibacterial activity, including activity against Gram-
176 eta-lactamase inhibitor relebactam has broad antibacterial activity, including against carbapenem-res
177 exacyclines displayed potent, broad spectrum antibacterial activity, including promising anti-Pseudom
178 ctamases and the potentiation of beta-lactam antibacterial activity, indicating that DBO functionaliz
179   The present study demonstrates auranofin's antibacterial activity is a complex process that involve
180                    Our data show etoposide's antibacterial activity is due to DNA gyrase inhibition a
181 n an Hcp1-dependent manner and that the T6SS antibacterial activity is essential for Salmonella to es
182                                          Its antibacterial activity is limited to gram positive bacte
183                                 We show that antibacterial activity is modulated by the presence of o
184                    Our results indicate that antibacterial activity is sensitive to Cu and Ag while e
185 de compositional range by co-sputtering, and antibacterial activity is strongly dependent on alloy co
186                                          Its antibacterial activity is superior to that of vancomycin
187 In addition, these nanodrugs showed enhanced antibacterial activities, lowering the minimum inhibitor
188       Our results indicate that nanopillars' antibacterial activities may be mediated by oxidative st
189  resulted in a pronounced improvement in the antibacterial activity observed against Listeria monocyt
190         Herein, we present the synthesis and antibacterial activities of cholic acid-peptide conjugat
191                          The antioxidant and antibacterial activities of commercial rice wine extract
192 se the hypocholesterolaemic, antioxidant and antibacterial activities of fenugreek seeds.
193    We investigated the anti-inflammatory and antibacterial activities of Hc-cath, a cathelicidin pept
194                            Comparison of the antibacterial activities of multiple S. salivarius strai
195 e roles in enhancing the recruitment and the antibacterial activities of neutrophils in a manner that
196 oxidant, antiproliferative, proapoptotic and antibacterial activities of raspberry pomace and favour
197                                              Antibacterial activities of the chemokines were investig
198                 We show genetically that the antibacterial activities of the compounds against efflux
199                                          The antibacterial activities of the dicarbonyl compounds gly
200                                              Antibacterial activities of the eotaxins were investigat
201                                              Antibacterial activities of the most potent compounds of
202 4 and 24h of hydrolysis, the antioxidant and antibacterial activities of the peptide hydrolysates obt
203  to their neuromodulatory functions, display antibacterial activities of unclear significance.
204 ro enzymatic assays, we confirmed the potent antibacterial activity of 6-OH-BDE-47 occurs via direct
205 and simulated intestinal fluid (SIF), on the antibacterial activity of auranofin were investigated.
206                                          The antibacterial activity of betanin-AgNPs were determined
207                                 Studying the antibacterial activity of Ce-TiO2 nanocrystals against E
208 pectrum for V. odorata cyclotides, including antibacterial activity of cycloviolacin O2 against A. ba
209                                    Here, the antibacterial activity of dextran-coated nanoceria was e
210 on and physicochemical characterization, the antibacterial activity of EDP on food spoilage and food
211                             Furthermore, the antibacterial activity of ES24 is equivalent to or bette
212     The nanoemulsion appeared to amplify the antibacterial activity of essential oils against E. coli
213             This study aimed to evaluate the antibacterial activity of eugenol and its derivatives al
214  Moreover, to the best of our knowledge, the antibacterial activity of GO and MGO against Listeria in
215 nt at 45 and 55 degrees C did not affect the antibacterial activity of honey samples.
216 H(2)O(2) over time, which in turn boosts the antibacterial activity of honey.
217 )O(2) and gluconic acid is essential for the antibacterial activity of honey.
218 s on the benzisoxazole that improve upon the antibacterial activity of initially described compounds
219 ing capacity, enhanced shelf life and strong antibacterial activity of linalool.
220                                   The potent antibacterial activity of lysozyme-loaded silica nanopol
221                                          The antibacterial activity of methanolic extracts against fo
222   The goal of this report is to evaluate the antibacterial activity of monoclonal antibodies (MAbs) t
223                             The demonstrated antibacterial activity of MXene coated membranes against
224                              We compared the antibacterial activity of N-(3-azido-2-hydroxypropyl)chi
225                                 The superior antibacterial activity of necklace 1 against both standa
226  study provides important information on the antibacterial activity of nisin-loaded nano-carriers enh
227                                          The antibacterial activity of non-antibiotic treated AM comp
228 ze the importance of guanidines for enhanced antibacterial activity of oligoTEAs, and present biophys
229 , eliciting caspase-4 recruitment, enhancing antibacterial activity of polymyxin B, and blocking the
230                                          The antibacterial activity of Prunus persica varieties studi
231              This work demonstrates that the antibacterial activity of PU-AuNPs-CV samples and the sy
232                                          The antibacterial activity of PU-AuNPs-CV samples was tested
233 o determine the effects of MW heating on the antibacterial activity of raw rapeseed honeys against Ps
234                    Recent evidence links the antibacterial activity of SCN in human urine to iron seq
235                          Here we present the antibacterial activity of self-assembled diphenylalanine
236 , antioxidant capacity and variations of the antibacterial activity of the Brazilian red propolis met
237                                          The antibacterial activity of the compounds was assessed usi
238                                          The antibacterial activity of the essential oil against E. c
239                                          The antibacterial activity of the essential oil in both pure
240 ization is performed to explain the enhanced antibacterial activity of the film with vertically align
241  cell membrane, suggesting that the enhanced antibacterial activity of the film with vertically align
242  lipid II was found to effectively block the antibacterial activity of the nisin-derived lipopeptides
243     Furthermore, our results showed that the antibacterial activity of the obtained microcapsules sig
244                                          The antibacterial activity of the obtained polymers is mainl
245        Zeta potential analysis supports that antibacterial activity of the PDA solution originates fr
246                                          The antibacterial activity of the peptides was determined ag
247                                              Antibacterial activity of the pools and membrane permeab
248 nhibitor cells (PICs) that direct the potent antibacterial activity of the type VI secretion system (
249 w that mites: 1) cause beetles to reduce the antibacterial activity of their exudates but 2) there ar
250                        The antiribosomal and antibacterial activity of these derivatives is briefly p
251 may be essential for the cellular uptake and antibacterial activity of this class of compounds.
252 ions eventually confirmed the broad-spectrum antibacterial activity of this new family of molecules.
253  structure is not essential for the observed antibacterial activity of this novel lipopeptide.
254         Here, we investigate the spectrum of antibacterial activity of three phenylthiazole-substitut
255                  Herein, we investigated the antibacterial activity of two short novel peptides (WR12
256 model, we demonstrate for the first time the antibacterial activity of Vibrio vulnificus Type 6 secre
257                                   Similarly, antibacterial activity of zein-THY/gamma-CD-IC-NF (2:1)
258 ave been reported to exhibit antioxidant and antibacterial activity; often touted as being beneficial
259              To introduce hydrophilicity and antibacterial activity, quaternary ammonium-functionaliz
260 rmone hepcidin, which, in addition to having antibacterial activity, regulates the functions of FPN.
261  of this study suggest that part of HAMLET's antibacterial activity relates to its ability to target
262 oxazole scaffold with improved Gram-positive antibacterial activity relative to previously described
263 n in mice, the underlying mechanisms of this antibacterial activity remain unclear.
264                                              Antibacterial activity studies integrated with the outco
265 turally occurring nucleoside inhibitors with antibacterial activity target this enzyme.
266 teins with antiviral, anti-inflammatory, and antibacterial activities that could contribute to the cl
267  phylum Cnidaria) secrete neuropeptides with antibacterial activity that may shape the microbiome on
268 ntact AS-48 resists digestion guarantees its antibacterial activity throughout the gastrointestinal t
269                                  It imparted antibacterial activity to the membranes; the number of l
270                    Interestingly, ES24 shows antibacterial activity toward clinically relevant strain
271 odified peptide (RiPP) that possesses potent antibacterial activity towards multidrug-resistant bacte
272 mple, we demonstrate how glass formation and antibacterial activity, two unrelated properties, can be
273                        The roles of T6SSs in antibacterial activity, type-1 fimbriae expression, cell
274 d exhibits antiviral, antiproliferative, and antibacterial activities typical of type I IFNs, albeit
275                                          The antibacterial activity was assessed using the inhibition
276 ges (hAMs) were infected with S. aureus, and antibacterial activity was assessed.
277                               The discovered antibacterial activity was confirmed and specified by a
278                                              Antibacterial activity was determined by measuring the m
279                                        Their antibacterial activity was evaluated against the multire
280 leic acid and lipid peroxidation assays; the antibacterial activity was evaluated by the hole plate a
281                     However, their promising antibacterial activity was hampered in large part by the
282                             The mechanism of antibacterial activity was investigated by measuring pot
283                                  The highest antibacterial activity was obtained at a DH of 30% (enzy
284                                     Although antibacterial activity was partially compromised, a sing
285 dize to SMX after oxygen exposure, and their antibacterial activity was significantly decreased compa
286                         Auranofin's in vitro antibacterial activity was stable in the presence of hig
287 taphylococcus aureus strains, and its potent antibacterial activity was verified.
288 on, antioxidant, anti-lipid peroxidation and antibacterial activities were improved.
289                                              Antibacterial activities were tested against 4 bacteria
290                        PUM exhibits additive antibacterial activity when co-administered with Rif, ex
291 W thermal heating completely abolished honey antibacterial activity whereas conventional thermal trea
292 chitin derivatives are characterized by high antibacterial activity, which is comparable with that of
293  by ethanol extraction resulted in a loss of antibacterial activity, which was restored by re-additio
294          The COOH-terminal fragment retained antibacterial activity while the NH2 -terminal had poten
295 nate HPs 24 and 25 were found to have potent antibacterial activities with significantly improved wat
296  cytosolic ribosomes, which is predictive of antibacterial activity with reduced ototoxicity and syst
297 s found to exert a considerable influence on antibacterial activity, with a significant increase in t
298                                              Antibacterial activity without antibiotic was low, confi
299 BF4) powder provided immediate and long-term antibacterial activity without cytotoxic effect against
300  on the interaction of these drugs and their antibacterial activity would add to the plethora of meri

 
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