array gene expression profiling Search Results


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fluidigm 96 96 dynamic array
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CapitalBio Corporation 60 k human gene expression array
60 K Human Gene Expression Array, supplied by CapitalBio Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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CANTECH LIMITED chemosensitivity gene expression array cgea-1
Heterogeneity of <t>chemosensitivity</t> for (a) docetaxel (b) cisplatin, (c) cisplatin with docetaxel, (d) cisplatin with gemcitabine, and (e) docetaxel with gemcitabine, (f) gemcitabine . Each line represents a different tumor tested at six concentrations.
Chemosensitivity Gene Expression Array Cgea 1, supplied by CANTECH LIMITED, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 90 stars, based on 1 article reviews
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NimbleGen Systems GmbH 12 × 135k custom-designed microarrays
Heterogeneity of <t>chemosensitivity</t> for (a) docetaxel (b) cisplatin, (c) cisplatin with docetaxel, (d) cisplatin with gemcitabine, and (e) docetaxel with gemcitabine, (f) gemcitabine . Each line represents a different tumor tested at six concentrations.
12 × 135k Custom Designed Microarrays, supplied by NimbleGen Systems GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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NimbleGen Systems GmbH mouse whole-genome microarray
(A) Replication domain profiles change dramatically upon differentiation of ESCs to NPCs. An exemplary Chromosome 7 segment is shown. (B and C) NPCs derived from distinct neural differentiation schemes and three independent mESC lines showed fairly similar replication timing profiles, both by visual inspection (B) and high Pearson R 2 values for pair-wise comparisons of NPCs (C). The low R 2 values for pair-wise comparisons of ESCs and NPCs confirm that substantial changes occurred upon differentiation (C). (D–G) Exemplary EtoL (Early-to-Late) (D and E) and LtoE (Late-to-Early) (F and G) consolidation. (H) Schematic representation of domain consolidation, boundary shift, and isolation. (I) Summary of replication domain properties in ESCs and NPCs. (J) Replication domain sizes by chromosome. Chromosome Y was underrepresented on the <t>microarray</t> and was excluded from the analysis. (K) Box plots of sizes of domains that changed replication timing (EtoL and LtoE), as well as early- and late-replicating domains in NPCs. EtoL and LtoE domains show smaller and tighter distribution than domains in NPCs or ESCs ( B).
Mouse Whole Genome Microarray, supplied by NimbleGen Systems GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 90 stars, based on 1 article reviews
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Arraystar inc agilent mouse gene expression array (4 × 44 k
(A) Replication domain profiles change dramatically upon differentiation of ESCs to NPCs. An exemplary Chromosome 7 segment is shown. (B and C) NPCs derived from distinct neural differentiation schemes and three independent mESC lines showed fairly similar replication timing profiles, both by visual inspection (B) and high Pearson R 2 values for pair-wise comparisons of NPCs (C). The low R 2 values for pair-wise comparisons of ESCs and NPCs confirm that substantial changes occurred upon differentiation (C). (D–G) Exemplary EtoL (Early-to-Late) (D and E) and LtoE (Late-to-Early) (F and G) consolidation. (H) Schematic representation of domain consolidation, boundary shift, and isolation. (I) Summary of replication domain properties in ESCs and NPCs. (J) Replication domain sizes by chromosome. Chromosome Y was underrepresented on the <t>microarray</t> and was excluded from the analysis. (K) Box plots of sizes of domains that changed replication timing (EtoL and LtoE), as well as early- and late-replicating domains in NPCs. EtoL and LtoE domains show smaller and tighter distribution than domains in NPCs or ESCs ( B).
Agilent Mouse Gene Expression Array (4 × 44 K, supplied by Arraystar inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Rosetta Inpharmatics gene expression profiling rna preparation and array hybridizations
(A) Replication domain profiles change dramatically upon differentiation of ESCs to NPCs. An exemplary Chromosome 7 segment is shown. (B and C) NPCs derived from distinct neural differentiation schemes and three independent mESC lines showed fairly similar replication timing profiles, both by visual inspection (B) and high Pearson R 2 values for pair-wise comparisons of NPCs (C). The low R 2 values for pair-wise comparisons of ESCs and NPCs confirm that substantial changes occurred upon differentiation (C). (D–G) Exemplary EtoL (Early-to-Late) (D and E) and LtoE (Late-to-Early) (F and G) consolidation. (H) Schematic representation of domain consolidation, boundary shift, and isolation. (I) Summary of replication domain properties in ESCs and NPCs. (J) Replication domain sizes by chromosome. Chromosome Y was underrepresented on the <t>microarray</t> and was excluded from the analysis. (K) Box plots of sizes of domains that changed replication timing (EtoL and LtoE), as well as early- and late-replicating domains in NPCs. EtoL and LtoE domains show smaller and tighter distribution than domains in NPCs or ESCs ( B).
Gene Expression Profiling Rna Preparation And Array Hybridizations, supplied by Rosetta Inpharmatics, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Bar Harbor BioTechnology custom mouse immunology 384 stellarraytm qpcr array plates
(A) Replication domain profiles change dramatically upon differentiation of ESCs to NPCs. An exemplary Chromosome 7 segment is shown. (B and C) NPCs derived from distinct neural differentiation schemes and three independent mESC lines showed fairly similar replication timing profiles, both by visual inspection (B) and high Pearson R 2 values for pair-wise comparisons of NPCs (C). The low R 2 values for pair-wise comparisons of ESCs and NPCs confirm that substantial changes occurred upon differentiation (C). (D–G) Exemplary EtoL (Early-to-Late) (D and E) and LtoE (Late-to-Early) (F and G) consolidation. (H) Schematic representation of domain consolidation, boundary shift, and isolation. (I) Summary of replication domain properties in ESCs and NPCs. (J) Replication domain sizes by chromosome. Chromosome Y was underrepresented on the <t>microarray</t> and was excluded from the analysis. (K) Box plots of sizes of domains that changed replication timing (EtoL and LtoE), as well as early- and late-replicating domains in NPCs. EtoL and LtoE domains show smaller and tighter distribution than domains in NPCs or ESCs ( B).
Custom Mouse Immunology 384 Stellarraytm Qpcr Array Plates, supplied by Bar Harbor BioTechnology, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Real Time Primers primers for the customized stem cell gene expression array
(A) Replication domain profiles change dramatically upon differentiation of ESCs to NPCs. An exemplary Chromosome 7 segment is shown. (B and C) NPCs derived from distinct neural differentiation schemes and three independent mESC lines showed fairly similar replication timing profiles, both by visual inspection (B) and high Pearson R 2 values for pair-wise comparisons of NPCs (C). The low R 2 values for pair-wise comparisons of ESCs and NPCs confirm that substantial changes occurred upon differentiation (C). (D–G) Exemplary EtoL (Early-to-Late) (D and E) and LtoE (Late-to-Early) (F and G) consolidation. (H) Schematic representation of domain consolidation, boundary shift, and isolation. (I) Summary of replication domain properties in ESCs and NPCs. (J) Replication domain sizes by chromosome. Chromosome Y was underrepresented on the <t>microarray</t> and was excluded from the analysis. (K) Box plots of sizes of domains that changed replication timing (EtoL and LtoE), as well as early- and late-replicating domains in NPCs. EtoL and LtoE domains show smaller and tighter distribution than domains in NPCs or ESCs ( B).
Primers For The Customized Stem Cell Gene Expression Array, supplied by Real Time Primers, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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SuperArray Bioscience Corporation gene expression
(A) Replication domain profiles change dramatically upon differentiation of ESCs to NPCs. An exemplary Chromosome 7 segment is shown. (B and C) NPCs derived from distinct neural differentiation schemes and three independent mESC lines showed fairly similar replication timing profiles, both by visual inspection (B) and high Pearson R 2 values for pair-wise comparisons of NPCs (C). The low R 2 values for pair-wise comparisons of ESCs and NPCs confirm that substantial changes occurred upon differentiation (C). (D–G) Exemplary EtoL (Early-to-Late) (D and E) and LtoE (Late-to-Early) (F and G) consolidation. (H) Schematic representation of domain consolidation, boundary shift, and isolation. (I) Summary of replication domain properties in ESCs and NPCs. (J) Replication domain sizes by chromosome. Chromosome Y was underrepresented on the <t>microarray</t> and was excluded from the analysis. (K) Box plots of sizes of domains that changed replication timing (EtoL and LtoE), as well as early- and late-replicating domains in NPCs. EtoL and LtoE domains show smaller and tighter distribution than domains in NPCs or ESCs ( B).
Gene Expression, supplied by SuperArray Bioscience Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


Heterogeneity of chemosensitivity for (a) docetaxel (b) cisplatin, (c) cisplatin with docetaxel, (d) cisplatin with gemcitabine, and (e) docetaxel with gemcitabine, (f) gemcitabine . Each line represents a different tumor tested at six concentrations.

Journal: BMC Cancer

Article Title: Resistance gene expression determines the in vitro chemosensitivity of non-small cell lung cancer (NSCLC)

doi: 10.1186/1471-2407-9-300

Figure Lengend Snippet: Heterogeneity of chemosensitivity for (a) docetaxel (b) cisplatin, (c) cisplatin with docetaxel, (d) cisplatin with gemcitabine, and (e) docetaxel with gemcitabine, (f) gemcitabine . Each line represents a different tumor tested at six concentrations.

Article Snippet: The Chemosensitivity Gene Expression Array (CGEA-1, CanTech Ltd, Portsmouth, UK) also included four housekeeping genes to allow standardisation of the results for comparison of individual tumor data.

Techniques:

(A) Replication domain profiles change dramatically upon differentiation of ESCs to NPCs. An exemplary Chromosome 7 segment is shown. (B and C) NPCs derived from distinct neural differentiation schemes and three independent mESC lines showed fairly similar replication timing profiles, both by visual inspection (B) and high Pearson R 2 values for pair-wise comparisons of NPCs (C). The low R 2 values for pair-wise comparisons of ESCs and NPCs confirm that substantial changes occurred upon differentiation (C). (D–G) Exemplary EtoL (Early-to-Late) (D and E) and LtoE (Late-to-Early) (F and G) consolidation. (H) Schematic representation of domain consolidation, boundary shift, and isolation. (I) Summary of replication domain properties in ESCs and NPCs. (J) Replication domain sizes by chromosome. Chromosome Y was underrepresented on the microarray and was excluded from the analysis. (K) Box plots of sizes of domains that changed replication timing (EtoL and LtoE), as well as early- and late-replicating domains in NPCs. EtoL and LtoE domains show smaller and tighter distribution than domains in NPCs or ESCs ( B).

Journal: PLoS Biology

Article Title: Global Reorganization of Replication Domains During Embryonic Stem Cell Differentiation

doi: 10.1371/journal.pbio.0060245

Figure Lengend Snippet: (A) Replication domain profiles change dramatically upon differentiation of ESCs to NPCs. An exemplary Chromosome 7 segment is shown. (B and C) NPCs derived from distinct neural differentiation schemes and three independent mESC lines showed fairly similar replication timing profiles, both by visual inspection (B) and high Pearson R 2 values for pair-wise comparisons of NPCs (C). The low R 2 values for pair-wise comparisons of ESCs and NPCs confirm that substantial changes occurred upon differentiation (C). (D–G) Exemplary EtoL (Early-to-Late) (D and E) and LtoE (Late-to-Early) (F and G) consolidation. (H) Schematic representation of domain consolidation, boundary shift, and isolation. (I) Summary of replication domain properties in ESCs and NPCs. (J) Replication domain sizes by chromosome. Chromosome Y was underrepresented on the microarray and was excluded from the analysis. (K) Box plots of sizes of domains that changed replication timing (EtoL and LtoE), as well as early- and late-replicating domains in NPCs. EtoL and LtoE domains show smaller and tighter distribution than domains in NPCs or ESCs ( B).

Article Snippet: Sample labeling, hybridization, and data extraction were performed according to standard procedures by NimbleGen Systems using a mouse whole-genome microarray with one probe every 5.8 kb (Nimblegen Systems, 2006-07-26_MM8_WG_CGH).

Techniques: Derivative Assay, Isolation, Microarray