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1 tient groups defined by signs, symptoms, and phenotypic screening.
2 by classical mutagenesis techniques based on phenotypic screening.
3 dic ALS (SALS) and conducted population-wide phenotypic screening.
4 ted great potential across multiple areas of phenotypic screening.
5 cal assays such as patient-specific drug and phenotypic screening.
6            These methods depend on extensive phenotypic screening.
7 2-dimethylhexanoic acid), was identified via phenotypic screening.
8 n-class small molecules were identified from phenotypic screening.
9 ient solution for large-scale, high-fidelity phenotypic screening.
10 nome-scale guide RNA libraries for unbiased, phenotypic screening.
11 ery of many new lead compounds identified by phenotypic screening.
12  related to elements found to be powerful in phenotypic screening.
13  discovery project, applying high-throughput phenotypic screening across broad chemical diversity and
14                                              Phenotypic screening against MCF7 mammary adenocarcinoma
15 mising class of antituberculosis agents from phenotypic screening against mycobacteria.
16 tituted indoles that were identified through phenotypic screening against T. cruzi.
17                                 We performed phenotypic screening against trypanosomes and identified
18                                          The phenotypic screening allowed identification of a mutant
19 monstrate the utility of this population for phenotypic screening and associated genomic characteriza
20 evelopment by random mutagenesis followed by phenotypic screening and by targeted gene disruption fol
21 ing stem cell proliferation responses with a phenotypic screening and by using specific knockdowns.
22 cision-making assays ranging from whole-cell phenotypic screening and cytotoxicity to aqueous solubil
23 nstrate the power of combining iPSC-CMs with phenotypic screening and deep learning to accelerate dru
24 h available SALK T-DNA mutagenesis lines for phenotypic screening and identified two previously unrep
25 ghlights MorphDiff's potential to accelerate phenotypic screening and improve MOA identification, mak
26 erties against several neurotoxic drugs in a phenotypic screening and is shown to protect axons in an
27 oughput pharmacodynamic assays, accelerating phenotypic screening and personalized medicine.
28 of small-molecule degraders relies mostly on phenotypic screening and retrospective target identifica
29                                              Phenotypic screening and structure-activity relationship
30                                         This phenotypic screening and subsequent analysis identified
31 s fully functionalized probes for integrated phenotypic screening and target identification.
32 reens are certain to change the paradigm for phenotypic screening and will be discussed.
33 as enabled high-throughput reverse genetics, phenotypic screenings and analyses of synthetic-genetic
34 rug target identification, drug repurposing, phenotypic screening, and side effect prediction.
35 loy whole-genome sequencing, high-throughput phenotypic screenings, and genome-scale models of metabo
36    These findings establish a genomics-based phenotypic screening approach capable of quickly connect
37                             Here we report a phenotypic screening approach in which cytotoxins whose
38 lop agents for the treatment of influenza, a phenotypic screening approach utilizing a cell protectio
39                     The gene biomarker-based phenotypic screening approach was developed, and 3,4-dis
40 n of the model described here as an unbiased phenotypic screening approach will help with our long te
41 as historically benefited from a whole-cell (phenotypic) screening approach to identify lead molecule
42  results support SNF integration of multiple phenotypic screening approaches along with untargeted me
43  mutational studies, adaptive evolution, and phenotypic screening are powerful tools for creating new
44 bination of diversity-oriented synthesis and phenotypic screening as a strategy for the discovery of
45 es and random point mutagenesis, followed by phenotypic screening based on a yeast two-hybrid system.
46 al 5A (NS5A) protein have been identified by phenotypic screening campaigns using HCV subgenomic repl
47 or constructing conventional high-throughput phenotypic screening campaigns.
48  Our study demonstrates that high-throughput phenotypic screening can uncover rich genetic diversity
49                    By using a combination of phenotypic screening, chemoproteomics, and biophysical s
50 f optimized MMP inhibitors that went through phenotypic screening consisting of thromboelastometry an
51                          Both siRNA and drug phenotypic screening converge to implicate the phosphoin
52                                              Phenotypic screening coupled with transcriptome sequenci
53                          These large matched phenotypic screening datasets (initial and well-randomiz
54 en a vital feature of the hits obtained from phenotypic screenings despite the use of varied assay co
55 ogical processes and could be used for rapid phenotypic screening (e.g., to produce plants with super
56                                    Through a phenotypic screening employing viral pseudotypes and our
57  silico screening protocols able to simulate phenotypic screening experiments.
58               These results demonstrate that phenotypic screening, followed by comprehensive MoA effo
59                                              Phenotypic screening for additional cases from a large A
60 loped for cancer therapy: many discovered by phenotypic screening for cancer cell death have low nano
61 ferred to as "SD70," initially identified by phenotypic screening for inhibitors of ligand and genoto
62                                              Phenotypic screening for resistant cultivars is however
63 esults demonstrate the utility of cell-based phenotypic screening for Select Agent drug discovery and
64      Our findings underscore the benefits of phenotypic screening for targeting post-translational mo
65                                              Phenotypic screening found that 2,3,6-trisubstituted qui
66             Cyclotide MCoCP4 was selected by phenotypic screening from cells transformed with a mixtu
67                   High-throughput cell-based phenotypic screening has become an increasingly importan
68                                 High-content phenotypic screening has become the approach of choice f
69                                  Image-based phenotypic screening has emerged as a powerful tool for
70                                              Phenotypic screening has yielded small-molecule inhibito
71 echanisms of actions of drugs, discovered by phenotypic screening, have been elucidated.
72                 Successful optimization of a phenotypic screening hit based on a quinoline-4-carboxam
73                      10 was optimized from a phenotypic screening hit utilizing insights from X-ray c
74 n peptidic amino alcohols originating from a phenotypic screening hit, we have here developed a serie
75 950 (developed by Pfizer) were discovered by phenotypic screening, however their mode of action was o
76                                 Our previous phenotypic screening identified styrylquinoline UCF501 a
77 veloped by combining ligand-based design and phenotypic screening in an iterative manner.
78                          We have conducted a phenotypic screening in endothelial cells exposed to ele
79 f the inactive E96A mutant cDNA, followed by phenotypic screening in Escherichia coli, led to isolati
80                   By integrating image-based phenotypic screening in HeLa cells with high-resolution
81   In the absence of a validated drug target, phenotypic screening in model organisms provides a route
82 anization, generating a dataset suitable for phenotypic screening in neural models.
83  genomics approach that combines genome-wide phenotypic screening in primary murine macrophages with
84 oved ASDs were originally discovered through phenotypic screening in rodent models of seizures.
85 age-gated K+ channel, Kat1, is combined with phenotypic screening in Saccharomyces cerevisiae and ele
86     These results demonstrate the utility of phenotypic screening in the identification of residues c
87                                  An unbiased phenotypic screening in TNNT2 mutant iPSC-derived cardio
88 cut lung slice (PCLS) screening ex vivo, and phenotypic screening in vivo, we identified a HSP90 inhi
89                                              Phenotypic screening in zebrafish revealed that the expr
90 ed at viral or host factors and results from phenotypic screenings in cellular assay systems for vira
91 However, it is equally applicable to general phenotypic screening involving helminths and other compl
92                                              Phenotypic screening is a powerful approach to identify
93                                              Phenotypic screening is a powerful method in both neglec
94                                              Phenotypic screening is an unbiased method to screen for
95                       Small molecule in vivo phenotypic screening is used to identify drugs or biolog
96 C-nucleoside 4 (RSV A2 EC(50) = 530 nM) as a phenotypic screening lead targeting the RSV RNA-dependen
97                               Our cell-based phenotypic screening led to the discovery of novel triaz
98 ghlights recent advances and progress toward phenotypic screening methodologies over the past several
99                 Here we develop high-content phenotypic screening methods for the systematic identifi
100  based on the C-terminal region of Psu using phenotypic screening methods.
101                                    Through a phenotypic screening of >30 mouse lines deficient in lip
102                                              Phenotypic screening of a cereblon (CRBN)-biased chemica
103                                              Phenotypic screening of a GBS transposon insertion libra
104                            Here, we report a phenotypic screening of a human secretome library in hum
105                                        Here, phenotypic screening of a human/hamster radiation hybrid
106                                              Phenotypic screening of a library of type II human kinas
107                                              Phenotypic screening of a Medicines for Malaria Venture
108                                          Our phenotypic screening of a TILLING mutant collection iden
109 line has recently disclosed the results of a phenotypic screening of an internal library, publishing
110                                Genotypic and phenotypic screening of C. difficile isolates revealed m
111 ion, opening new options for region-specific phenotypic screening of complex physiological phenomena
112  or develop chemical scaffolds identified by phenotypic screening of compound libraries, specific pha
113                           Here, we show that phenotypic screening of drug libraries in zebrafish scn1
114 ith severe hypercholesterolemia, followed by phenotypic screening of family members.
115  of genetic materials to mammalian cells for phenotypic screening of gene expression and gene silenci
116 tes the potential for using yeast to perform phenotypic screening of genetically encoded cyclotide-ba
117 limitation in important areas, including the phenotypic screening of human genes in transgenic mice b
118 ontargeted therapies are drugs identified by phenotypic screening of natural products or chemical lib
119  phenotype-driven approach that involves the phenotypic screening of organisms with randomly induced
120                    Utilizing high-throughput phenotypic screening of primary keratinocytes, we identi
121 lar cell-surface receptors, and we have used phenotypic screening of radiation hybrid cell lines to i
122                                              Phenotypic screening of representative examples against
123                           By high-throughput phenotypic screening of small molecules, we identified c
124 ular cell barcoding to enable direct in vivo phenotypic screening of small-molecule libraries.
125                                     From the phenotypic screening of the AstraZeneca corporate compou
126 vel quinoline and quinazoline series through phenotypic screening of the ChemDiv library against Mtb-
127  of the receptor gene in the human genome by phenotypic screening of the G3 human-hamster radiation h
128 ly precise localization might be achieved by phenotypic screening of the hybrids to facilitate positi
129                                              Phenotypic screening of the library identified disruptio
130                                              Phenotypic screening of the mini library against multipl
131                                              Phenotypic screening of the resulting oxazonine collecti
132 ble to infect Chinese hamster cells, we used phenotypic screening of the T31 mouse/hamster radiation
133                                              Phenotypic screening of U. maydis mutants deleted for ge
134  In the pursuit of new antimalarial leads, a phenotypic screening of various commercially sourced com
135    By using whole-transcriptome analyses and phenotypic screenings of the marine bacterium Phaeobacte
136                                              Phenotypic screening offers a powerful approach to ident
137 ased screening on pteridine reductase 1 with phenotypic screening on Trypanosoma brucei for hit ident
138 d the use of these workhorse collections for phenotypic screening or genetic mapping.
139 identification of new lead compounds include phenotypic screening or target-based approaches.
140                  In this review, we describe phenotypic screening paradigms that make use of nocicept
141               Here, we develop a large-scale phenotypic screening pipeline and use it to carry out a
142  we describe the development of an astrocyte phenotypic screening platform for identifying chemical m
143                    We develop a high-content phenotypic screening platform to identify compounds that
144                                            A phenotypic screening platform using DCM iPSC-CMs was est
145   Their viability for medium/high-throughput phenotypic screening presents a promising avenue via whi
146                                  Large-scale phenotypic screening presents challenges and opportuniti
147 ecies were identified from a high-throughput phenotypic screening program of the 456 compounds belong
148 fully functionalized compound libraries into phenotypic screening programs should facilitate the disc
149                                              Phenotypic screening provides a complementary approach t
150                                              Phenotypic screening provides a means to discover small
151     Target-directed screening and whole-cell phenotypic screening represent two complementary approac
152                                   Cell-based phenotypic screening revealed that noncytotoxic concentr
153                       Finally, comprehensive phenotypic screening showed a broader pathological pheno
154                                              Phenotypic screening showed that some of these antibodie
155  which compounds discovered using cell-based phenotypic screening strategies might exert their effect
156                         Here, we developed a phenotypic screening strategy for identifying factors th
157  vulnerability to ototoxin in a high-content phenotypic screening system.
158  the absence of an effective high-throughput phenotypic screening system.
159                                      Through phenotypic screening, systems analysis, and rigorous exp
160                       Through the process of phenotypic screening, target deconvolution, and structur
161 nt plasmodium-specific aaRS inhibitors using phenotypic screening, target validation, and structure-g
162 usually reported as G6PD "normal" by current phenotypic screening tests.
163    We recently identified a compound through phenotypic screening that blocked infectivity of this in
164 pyrrolopyrimidine series, identified through phenotypic screening, that offers an opportunity to impr
165 study addresses three inherent challenges in phenotypic screening: the identification of the molecula
166                                              Phenotypic screening therefore retains a niche in drug d
167 ablish biologically relevant models that use phenotypic screening to detect drug-induced toxicity in
168  we combine saturation mutagenesis and multi-phenotypic screening to dissect the impact of 11,213 mis
169                                        Using phenotypic screening to guide structure-activity relatio
170                      Multiple labs have used phenotypic screening to identify dozens of drugs that en
171 rovides a compelling example of the power of phenotypic screening to identify leads engaging novel ta
172 this study demonstrates the power of in vivo phenotypic screening to identify new classes of 'cancer
173 bine fragment-based chemical proteomics with phenotypic screening to identify small molecules that pr
174 e, it is often a challenge in small molecule phenotypic screening to infer the causality between a pa
175                  Here, we used phage display phenotypic screening to isolate antibodies that alter th
176               Here we employ high-throughput phenotypic screening to systematically test pairwise com
177                                              Phenotypic screening using CLIMET represents a valuable
178                                     However, phenotypic screening using rodent models is labor intens
179 rentiation can be identified via multiplexed phenotypic screening using thousands of miniaturized org
180 ayed, kinome focused siRNA and oncology drug phenotypic screening utilizing a set of syngeneic Ras mu
181                                        Rapid phenotypic screening, via modified mRNA transfection of
182          Therefore, the gene biomarker-based phenotypic screening was demonstrated as a promising too
183                An unexpected impurity from a phenotypic screening was optimized as a series of dimeri
184        Using genome-wide ENU mutagenesis and phenotypic screening, we have identified a mouse line th
185 ving random transposon mutagenesis and rapid phenotypic screening, we identified a murine cytomegalov
186 labeling differentiated oligodendrocytes for phenotypic screening, we identified a small-molecule epi
187  predict targets, drug development relied on phenotypic screening, where the effectiveness of candida
188 pecially important in campaigns arising from phenotypic screening, where the protein target and bindi
189                     Herein, we have combined phenotypic screening with a biased target-specific scree
190 very for PAH can be accelerated by combining phenotypic screening with in silico analyses of publicly
191                                 By combining phenotypic screening with ShHTL structural information a
192 d from chemically induced mouse mutations by phenotypic screening with slit lamp examination.
193 ation of causative mutations concurrent with phenotypic screening, without the need to outcross mutan

 
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