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1 n-Probe Aptima Combo 2 and BD ProbeTec using Viper.
2 ext of the envenomation caused by the Gaboon viper.
3 from the venom of the Vipera lebetina obtusa viper.
4 that play key roles in subduing prey in many vipers.
5 nits in venoms of related Asian and American vipers.
6 example is the thermal imaging organ of pit vipers.
8 Regulator activities were inferred with the VIPER algorithm that integrates enrichment of expected e
11 or current best freely available pipelines (VIPER and BioJupies), Searchlight can reduce the time an
13 with increasing body size in the rhinoceros viper and black mamba, and males were found in arboreal
14 s that are affected by both Indian Russell's viper and cobra venoms and offers insights into the pote
15 medically important Indian snakes (Russell's viper and cobra) affect human skeletal muscle using a cu
17 genetically broad sampling of nonsidewinding vipers and other snakes from diverse habitats and wide g
18 iption factor) activity imputation (DoRothEA-VIPER), and trajectory analyses (Monocle3 and Velocyto-s
20 es of 484 snakes of five species (rhinoceros vipers Bitis nasicornis, black mambas Dendroaspis polyle
23 (ADET) of myotoxin II from the venomous pit viper, Bothrops asper, in a mouse model of envenoming th
24 those obtained using existing tools such as VIPER, but with the added benefit of being able to trace
30 leakeyi (Kenya), and from the sahara horned viper, Cerastes cerastes cerastes (Egypt) and the puff a
32 ding domain of the venom of the American pit viper, Crotalus molossus molossus as the targeting moiet
34 rt the high-quality genome of the five-pacer viper, Deinagkistrodon acutus, and comparative analyses
36 This paper describes an evaluation of how VIPER displays the different scales and types of dataset
37 venom gland EST database for the saw-scaled viper, Echis ocellatus (Nigeria), using the gene ontolog
42 nce of Protein-activity by Enriched Regulon (VIPER) for the MRA to identify top up- and down-regulate
43 otein activity by enriched regulon analysis (VIPER), for accurate assessment of protein activity from
44 etwork-based algorithms, such as OptiCon and VIPER, in the selection of target combinations is attrib
46 se errors are exposed and explored using the VIPER interface and we evaluate the utility and usabilit
48 emonstrate that the region of A46 from which VIPER is derived represents the TLR4-specific inhibitory
49 llomavirus (HPV) assay (Onclarity) on the BD Viper LT platform using both contrived and clinical spec
52 our candidate for a therapeutic vaccine, Man-VIPER-NR exerted superior efficacy in a B16F10-OVA tumor
57 tide purified from the venom of Wagler's pit viper on the whole cell current response (I(GABA)) to ga
64 Finally, we verified the delivery of siRNA/VIPER polyplexes to lung epithelial cells in vivo, which
66 TRPA1 orthologues from pit-bearing snakes (vipers, pythons and boas) are the most heat-sensitive ve
68 evaluated polymers with both releasable (Man-VIPER-R) or non-releasable (Man-VIPER-NR) d-melittin.
71 ur experimentally, with a description of how VIPER's display interface and functionality meet the cha
72 h improvements ranging from 0.05 to 0.2 over VIPER, scImpute, DCA, DeepImpute, SAVER, scMultiGAN and
76 luster sequence conservation across all four viper species which were significantly different from th
77 es isolated (by PCR) from another saw-scaled viper species, E. pyramidum leakeyi (Kenya), and from th
78 tions of two desert rodents to two different viper species, testing their ability to adjust to novel
81 dynamic lineage-specific expansion, and many viper TEs show brain-specific gene expression along with
82 n of this important group of venom toxins in vipers that are distributed throughout Africa, the Middl
83 n structures of a few sidewinding specialist vipers that inhabit sandy deserts-an isotropic texture t
85 rus-inspired polymers for endosomal release (VIPER) to address systemic and intracellular delivery ob
86 RET reporter called VIral ProteasE Reporter (VIPER) to investigate heterogeneity of protease activati
87 cobra (Ophiophagus hannah; OH) and green pit viper (Trimeresurus albolabris) showed the broadest anti
88 antigen can enhance defense against Russell viper venom (RVV) and determined whether such responses
92 of coagulation factors V and X by Russell's viper venom (RVV) has been implicated in the development
93 showed that factor X activator of Russell's viper venom (RVV-X) contains six N-linked oligosaccharid
99 GDFX and was also activated by the Russell's viper venom at similar rate, but it cleaved the chromoge
100 are capable of broadly neutralizing distinct viper venom bioactivities in vitro by inhibiting differe
101 peptide, was isolated from the Azemiops feae viper venom by combination of gel filtration and reverse
102 phospholipid-initiated and diluted Russell's viper venom clotting time, which could be partly rescued
107 oresceinated antibody, and enzyme (Russell's viper venom factor X activator)-labeled antibody is allo
112 coagulable state, we have used the Russell's viper venom test (RVV) to show that red blood cells (RBC
113 rogram/mL) did not prolong a modified Russel viper venom time, suggesting no significant inhibition o
115 s, such as cyclic RGD peptides isolated from viper venom, may prove to be useful as anti-inflammatory
116 f three of the four largest gene families in viper venom, showing that complexity evolution is a conc
117 ation by the factor X activator from Russell viper venom, the mutants were characterized with respect
120 the ApoE(-/-) (-22.22+/-7.95%) and Russell's viper venom-injected (-10.37+/-17.60%) mice compared wit
121 0.54, R(12 weeks) 3.83+/-0.52) and Russell's viper venom-injected wild-type mice (R(1)=4.57+/-0.86).
125 are small non-enzymatic proteins present in viper venoms reported to modulate hemostasis of victims
129 d a peptide fragment derived from A46 termed VIPER (Viral Inhibitory Peptide of TLR4), which specific
131 to mimic viral mechanisms of delivery called VIPER (virus-inspired polymer for endosomal release).
132 der to assist this process we are developing VIPER (Visual Pedigree Explorer), a software tool that i
133 community, and the virus particle explorer (VIPER) was developed to enable users to easily generate
134 om gland of the snake Bitis gabonica (Gaboon viper) was used for the first time to construct a unidir
135 ARHgamma), from the venom of the Malayan pit viper, was used to selectively cleave human factor X in
136 irus-inspired polymer for endosomal release (VIPER), which employs pH-sensitive triggered display of
137 n), a cathelicidin from a South American pit viper, yielded fragments Ctn[1-14] and Ctn[15-34], which