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1 ingococcal resistance to complement-mediated killing.
2 trafficking to the tumor and mediating cell killing.
3 al essential steps in PGRP-induced bacterial killing.
4 tially explaining one mechanism of bacterial killing.
5 resistance to neutrophil-mediated bacterial killing.
6 migration toward tumor cells, and tumor cell killing.
7 ed SMAP component that contributed to target killing.
8 rtially restored cell couple maintenance and killing.
9 cells and macrophages, to induce tumor cell killing.
10 pharmacokinetics and radiation-induced cell killing.
11 sistance of reservoir-harboring cells to CTL killing.
12 slink tumor and T-cells to induce tumor cell killing.
13 le production and shielding from nonspecific killing.
14 ation-induced bacterial permeabilization and killing.
15 pd1 is required for resistance to neutrophil killing.
16 tic granule contents during NK cell-mediated killing.
17 ession in primary T cells, led to tumor cell killing.
18 nce, and tissue penetration to maximize cell killing.
19 iting HER2 overexpression for improved tumor killing.
20 the meningococcal surface and meningococcal killing.
21 apacity but not the specificity of cytotoxic killing.
22 sostaphin degradation and host cell-mediated killing.
23 r survival and protection against neutrophil killing.
24 istinct role in amebic trogocytosis and cell killing.
25 ased TIL locomotion, and impaired tumor cell killing.
26 anisms to escape opsonization and complement killing.
27 ogocytosis and phagocytosis, as well as cell killing.
28 n the mucosal barrier and invasive bacterial killing.
29 ance NK cell activation and NK cell-mediated killing.
30 CytoD was able to abrogate C. albicans killing.
31 produced a ferumoxytol-dose dependent tumor killing.
32 bilities of proliferation and tumor-specific killing.
33 ntibodies to PD-1 or PD-L1, to enhance tumor killing.
34 bled higher tissue penetration and more cell killing.
35 facilitate spirochete evasion of complement killing.
36 WT but not REG3gamma-deficient IEC bacterial killing.
37 cytotoxicity has not been linked to parasite killing.
38 flammatory cytokines, leading to target cell killing.
39 ersistent natural killer (NK) cell cytolytic killing.
40 oduction and high resistance to PGRP-induced killing.
41 re also observed for different cytokines and killing.
42 serve as reagents for bacterial imaging and killing.
43 processes such as bacterial phagocytosis and killing.
44 vectors encoding CAR that direct tumor cell killing.
45 utrophil NADPH oxidase activity and conidial killing.
46 f newborn cells to mediate Ab-dependent cell killing.
47 gen species for proopiomelanocortin neuronal killing.
48 cells (CARB19) that are resistant to CART19 killing.
49 ntrol of tumor progression, but limited cell killing.
50 variants to antibody-dependent bactericidal killing.
51 ng feature of CD4+ T cells that survived CTL killing.
56 ecific pathways and mechanisms in macrophage killing ability, explored how pathogens subvert these re
57 e could be resulted from the direct bacteria-killing activities of PG-1, and the immunomodulatory eff
58 the CapsidCas13a(s) exhibit strong bacterial killing activities upon recognizing target genes regardl
59 ove those considered adequate for redirected killing activity against Env-expressing target cells but
60 uplexes and R loops and showed a potent cell killing activity associated with the formation of micron
69 n vector control, it is widely accepted that killing adult mosquitoes would sharply reduce the propor
70 as no better than IVM alone for sterilizing, killing adult worms, or achieving sustained MF clearance
71 amma production, degranulation, and specific killing against NK-resistant lymphoma lines and primary
72 atholyte was collected and used ex situ as a killing agent for the inactivation of a pathogenic speci
73 utonomous release of the chemoattractant and killing agents result in long-range chemotactic attracti
74 s combination strategies that promote fungal killing and also provide effective immunomodulation.
76 during T-starvation, while both the dramatic killing and chromosomal DNA loss in the ECA-deficient th
77 IgG1 mAb confers proinflammatory direct cell killing and enhanced avidity, an approach that could be
78 of cell competition could induce cancer cell killing and form the basis for novel anticancer therapie
79 CD2 signaling as key for mediating cytotoxic killing and granule polarization in freshly isolated CD8
80 d killing, and formate enhanced PGRP-induced killing and H(2)O(2) production in an FDH-dependent mann
81 er monocyte recruitment, increased bacterial killing and improved healing upon a secondary infection.
83 ine IgG3 residues underlying the direct cell killing and increased avidity via a series of constant r
86 ctions since both direct microbial pathogens killing and matrix stabilization can occur simultaneousl
90 on and achieved both efficient in vitro cell killing and tumor regression in Mcl-1 dependent cancer m
91 Ham (mHam) assay (complement-dependent cell killing) and cell-surface deposition of C5b-9 to test th
92 ate responses including phagocytosis, fungal killing, and antigen presentation which can also shape t
93 n and the highest resistance to PGRP-induced killing, and formate enhanced PGRP-induced killing and H
94 ules involved in T cell-mediated target cell-killing, and monomeric teal fluorescent protein from the
96 mechanisms of anti-proliferation and/or cell-killing are consistent with the published mechanisms for
97 formation correlated with competency in prey killing, as well as with the phylogeny of A. oligospora
98 fic ex vivo restimulation assays and in vivo killing assays demonstrated that CD8(+) T cells produce
102 te concentration of 2 mug/mL is required for killing bacteria with colistin minimum inhibitory concen
103 honey appearing to be the most bactericidal, killing bacterial concentrations as high as 8 x 10(7) CF
104 nsulinemic hyperglycemia, highly selectively killing beta-cells by receptor-targeted photodynamic the
108 actose) resisted direct complement-dependent killing but was killed approximately 70% by 2C7-Ximab-E4
109 sure enhances resistance to human neutrophil killing, but this increase in pathogenicity was not due
110 The results provide an insight into assisted killing by an exogenous alkene with dark toxicity effect
111 al antiserum modestly increased phagocytosis/killing by an oxidative burst of murine neutrophils in v
113 agy control cancer-cell-intrinsic evasion of killing by CTLs and we highlight the importance of these
116 equent PD-L1 upregulation protects them from killing by cytotoxic T lymphocytes, yet dampens the anti
117 ht to enhance the potency and specificity of killing by driving lytic granule fusion at the synapse a
118 oncentration of CD11b blocking Ab, S. aureus killing by female BMN was greatly reduced compared with
119 ulation plays a critical role in target cell killing by freshly isolated human CD8(+) T cells, which
120 ich were found to be important for resisting killing by H(2)O(2) Finally, DeltamumR exhibited reduced
121 cterial burdens and more efficient bacterial killing by Ly6B.2(+) myeloid cells and macrophages compa
123 ion rather than on enhanced opsonophagocytic killing by neutrophils or protection against toxin-media
126 not cytotoxic) dramatically increased their killing by proteasome inhibitors and inhibitors of ubiqu
128 esponsible for preventing activation of, and killing by, serum complement could inform new approaches
129 elk population increased the odds of wolves killing calves relative to cows, whereas low SWE and poo
131 uces PDE3A-SLFN12 complex formation, thereby killing cancer cells with high levels of PDE3A and SLFN1
132 ated, activated, and exhausted, with reduced killing capacity in vitro than blood CD8 T cells, potent
135 nd CXCL12 and activation of their tumor cell killing capacity through IFNgamma and IL4, which led to
136 as9-based antimicrobials that lack bacterial killing capacity when the target genes are located on a
139 ast, no intereference was seen in tumor cell killing, caspase activation, or mitochondrial membrane d
140 polymerase 1 (PARPi) are highly effective in killing cells deficient in homologous recombination (HR)
142 DT2) by CDT2 knockdown can be more potent in killing cSCC cells than targeting CRLs or CRL4s in gener
143 resonance spectroscopy as well as bacterial killing curves against Pseudomonas aeruginosa were utili
145 ATCC 43816 and RH201207 were able to resist killing despite being associated with substantial levels
147 Parasitological profiles, including rate of killing, docking, and molecular dynamics studies, sugges
151 wed that the catholyte possesses a long-term killing efficacy and continued to inhibit pathogen growt
152 sensitizers is an effective way to boost the killing efficacy of radiotherapy while drastically limit
155 pose that SMAPs are autonomous extracellular killing entities that deliver cytotoxic cargo targeted b
156 t the identified antibodies have utility for killing epithelial cell adhesion molecule-positive cells
162 ts activation, recruitment, phagocytosis and killing functions of neutrophils, causing susceptibility
167 sistance of the clade to complement-mediated killing in low levels of human complement likely present
171 oduction and that defective L. monocytogenes killing in P2X5-deficient BMMs is substantially rescued
172 ycan-targeting mAb often induces direct cell killing in the absence of immune effector cells or compl
173 d and demonstrated potent and specific tumor killing in vitro and in vivo against both epithelioid an
184 in cells overlying the LRP or by physically killing LRP-overlying cells by ablation with optical twe
185 o 129hIgG1, converting it into a direct cell killing mAb with enhanced avidity and significant in viv
186 hypotheses have been proposed: liberalizing killing may decrease poaching incidence ('tolerance hunt
188 ibodies, the Th1-type cellular response, and killing mechanisms elicited by BPZE1 may hold prospects
190 d pathways that enable cancer cells to evade killing mediated by cytotoxic T lymphocytes (CTLs), we p
191 y, and outperforms combination treatments in killing methicillin-resistant Staphylococcus aureus (MRS
192 Zika virus (ZIKV) causes microcephaly by killing neural precursor cells (NPCs) and other brain ce
193 either LCK to enhance the kinetics of tumor killing of 4-1BB CAR-T cells or SHP1 to tune down cytoki
194 c fibrosis neutrophils, wortmannin inhibited killing of a rough clinical isolate and not a smooth iso
200 to CD22 and selectins promote both targeted killing of B lymphoma cells and improved trafficking to
201 )-roscovitine and M3 significantly increased killing of B. cenocepacia and P. aeruginosa in CF MDMs i
203 less efficient at inducing opsonophagocytic killing of bacteria by neutrophils in vitro, and were wo
204 odrugs we describe here synergize the direct killing of bacteria with a simultaneous rapid immune res
206 ism of membrane-tension-induced (mechanical) killing of bacterial cells by non-translocating NPs.
208 g minimal cell toxicity, displaying superior killing of bacterial reservoirs harboured within bladder
212 engineering enhances avidity and direct cell killing of cancer-targeting anti-glycan antibodies to cr
213 apsidCas13a(s), capable of sequence-specific killing of carbapenem-resistant Escherichia coli and met
214 moiety and axial ligands) contribute to the killing of cells and not just one dominant component.
218 nding resulted in an almost 10-fold superior killing of EGFR-overexpressing tumor cells compared with
219 phants comes from the Monitoring the Illegal Killing of Elephants (MIKE) program, which reports numbe
220 ng BTN3A1 therefore orchestrates cooperative killing of established tumors by alphabeta and gammadelt
223 es to delineate antibody-mediated uptake and killing of Gram-positive pathogens remain extremely limi
224 , this serum facilitated complement-mediated killing of H. pylori and E. cloacae, indicating its pote
225 ombinations of 3 mAbs mediated more than 30% killing of HIV-infected primary CD4+ T cells in the pres
226 AdRGD-PG-hIFNbeta vector provides extensive killing of human melanoma cells in vitro and a potent an
228 2 to 24 hours resulted in increased specific killing of infected cells, even with neutralization-resi
230 nd contribute to protecting the host through killing of infected, foreign, stressed or transformed ce
231 crophages (BMMs) exhibit defective cytosolic killing of L. monocytogenes We further showed that P2X5
232 binding mode; consequently, the direct cell killing of mouse IgG3 mAb is lost upon chimerization or
233 cubation of linezolid significantly improved killing of MRSA by dysfunctional neutrophils, which was
235 the intestinal epithelium and the effective killing of penetrant microorganisms, while suppressing t
236 ompared to wild-type cells, showed increased killing of phagocytosed E. coli and M. smegmatis Polypho
237 DNA cleavage in vitro impair P2 OLD-mediated killing of recBC-Escherichia coli hosts, indicating that
239 white blood cells showed defective in vitro killing of Staphylococcus aureus, consistent with a spec
242 -subunit resulted in a significantly reduced killing of target cells and a >50% reduction in CG fusio
245 ations achieved similar complement-dependent killing of three gonococcal mutants with glycan extensio
246 essing the ability to elicit T cell-mediated killing of tumor cells and prevent disease recurrence.
248 ly improved NK cell-mediated, EGFR-dependent killing of tumor cells compared with the NK cell engager
249 also mediate antitumour responses by direct killing of tumour cells and by participating in cellular
250 ease 2019 (COVID-19) pandemic and the police killings of George Floyd, Breonna Taylor, and multiple o
252 ured surfaces and bacteria lead to bacterial killing or prevention of bacterial attachment and subseq
259 epithelia to produce antimicrobial peptides, killing pathogenic competitors, while S. epidermidis its
260 hazard and incidence during six liberalized killing periods, but that was outweighed by larger incre
262 centrioles did display substantially reduced killing potential, which was associated with defects in
264 with sensitivity across all species was the killing rate constant of the GUTS-RED-SD model (the redu
268 We also assembled the genome of the male-killing Spiroplasma, and find that it shows perfect gene
269 wo binding events and mediated protection by killing SPZ in the liver and by preventing their egress
270 akinra to whole blood reduced staphylococcal killing, supporting an IL-1beta functional significance
271 activity against various human cancer cells, killing SW48 colon cancer cells in particular with a sub
272 from these cells, making them susceptible to killing-termed kick and kill regimens-have been explored
273 re sensitive to hydrogen peroxide (H(2)O(2)) killing than wild-type A. baumannii However, mumR, which
279 can quickly lyse target cells in addition to killing them, the T6SS becomes a much more effective wea
280 an of the prey bacterium, which leads to its killing, thereby providing a growth advantage for P. aer
281 , and activation of natural killer (NK) cell killing through TNF-related apoptosis-inducing ligand (T
283 the way for the proinflammatory direct cell killing to promote antibody-dependent cellular cytotoxic
285 tially more active in vitro than Nutlin-3 in killing tumor cells bearing wild-type p53, and effective
289 rential degrees of drug effect on tumor cell killing versus inhibition of cell division, which may no
291 term impact of the catholyte on the pathogen killing was evaluated by plating Salmonella typhimurium
295 nse occurred in p53-defective cells and cell killing was not blocked by a pan-caspase inhibitor.
297 ear to have a greater capacity for bacterial killing, which may contribute to control of bacteria in
298 fficient in enhancing PMN-mediated bacterial killing, while topical administration of such drug in a
300 organism containing numerous gamete (spore)-killing wtf drivers, offers a tractable system to test t