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accession-icon GSE87304
Impact of molecular subtypes in muscle-invasive bladder cancer on predicting response and survival outcome to neoadjuvant chemotherapy: results from a multi-institutional validation study
  • organism-icon Homo sapiens
  • sample-icon 298 Downloadable Samples
  • Technology Badge Icon Affymetrix Human Exon 1.0 ST Array [transcript (gene) version, custom CDF (huex10st)

Description

Four different molecular classifications of muscle-invasive bladder cancer (MIBC) based on gene expression have been proposed. With the ultimate goal of utilizing these molecular subtypes for personalized treatment, we investigated their significance in the context of neoadjuvant cisplatin-based chemotherapy (NAC).

Publication Title

Impact of Molecular Subtypes in Muscle-invasive Bladder Cancer on Predicting Response and Survival after Neoadjuvant Chemotherapy.

Sample Metadata Fields

Age, Disease, Disease stage, Treatment

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accession-icon GSE25518
Testis developmental gene expression in cryptorchid boys at risk of azoospermia
  • organism-icon Homo sapiens
  • sample-icon 23 Downloadable Samples
  • Technology Badge Icon Affymetrix Human Genome U133 Plus 2.0 Array (hgu133plus2)

Description

Despite timely and successful surgery, 32% of patients with bilateral and 10% with unilateral cryptorchidism will develop azoospermia. Cryptorchid boys at risk of azoospermia display a typical testicular histology of impaired mini-puberty at the time of the orchidopexy.

Publication Title

Testicular gene expression in cryptorchid boys at risk of azoospermia.

Sample Metadata Fields

Specimen part

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accession-icon GSE41058
Competition between viral-derived and endogenous small RNA pathways regulates gene expression in response to viral infection in C.elegans.
  • organism-icon Caenorhabditis elegans
  • sample-icon 20 Downloadable Samples
  • Technology Badge Icon Affymetrix C. elegans Genome Array (celegans)

Description

This SuperSeries is composed of the SubSeries listed below.

Publication Title

Competition between virus-derived and endogenous small RNAs regulates gene expression in Caenorhabditis elegans.

Sample Metadata Fields

No sample metadata fields

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accession-icon GSE41056
Analysis of gene expression changes upon infection of C.elegans with Orsay virus
  • organism-icon Caenorhabditis elegans
  • sample-icon 20 Downloadable Samples
  • Technology Badge Icon Affymetrix C. elegans Genome Array (celegans)

Description

Analysis of the transcriptional response to viral infection in C.elegans.

Publication Title

Competition between virus-derived and endogenous small RNAs regulates gene expression in Caenorhabditis elegans.

Sample Metadata Fields

No sample metadata fields

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accession-icon SRP015836
Changes in small RNAs upon Viral infection of C.elegans
  • organism-icon Caenorhabditis elegans
  • sample-icon 6 Downloadable Samples
  • Technology Badge IconIllumina HiSeq 2000

Description

Attempt to identify small non-coding RNAs that change in levels as a result of viral infection of C.elegans Overall design: Small non-coding RNA (18-30nt) was extracted from animals either infected with Orsay virus or uninfected as indicated.

Publication Title

Competition between virus-derived and endogenous small RNAs regulates gene expression in Caenorhabditis elegans.

Sample Metadata Fields

Cell line, Subject

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accession-icon SRP016138
GRO-seq of Drosophila embryos at 2-2.5 hours and 3-3.5 hours after egg laying (AEL)
  • organism-icon Drosophila melanogaster
  • sample-icon 4 Downloadable Samples
  • Technology Badge IconIllumina Genome Analyzer II

Description

The transition in developmental control from maternal to zygotic gene products marks a critical step in early embryogenesis. Here, we use GRO-seq analysis to map the genome-wide RNA polymerase distribution during the Drosophila maternal to zygotic transition. This analysis unambiguously identifies the zygotic transcriptome, and provides insight into its mechanisms of regulation. Overall design: Two replicates of GRO-seq at each time point.

Publication Title

Extensive polymerase pausing during Drosophila axis patterning enables high-level and pliable transcription.

Sample Metadata Fields

Specimen part, Cell line, Subject, Time

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accession-icon E-MEXP-998
Transcription profiling by array of Saccharomyces cerevisiae after treatment with methionine or hydrogen peroxide
  • organism-icon Saccharomyces cerevisiae
  • sample-icon 24 Downloadable Samples
  • Technology Badge Icon Affymetrix Yeast Genome 2.0 Array (yeast2)

Description

Yeast cells were grown up in SD media containing all required amino acids. Each strain set was performed in triplicate. One set had no changes, the second set had 1mM methionine supplenting the media for the duration of growth and the third set was exposed to 0.5mM hydrogen peroxide for 15 minutes prior to harvesting

Publication Title

Gcn4 is required for the response to peroxide stress in the yeast Saccharomyces cerevisiae.

Sample Metadata Fields

Compound

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accession-icon GSE80683
Association of Multiparametric MRI Quantitative Imaging Features with Prostate Cancer Gene Expression in MRI-targeted Prostate Biopsies
  • organism-icon Homo sapiens
  • sample-icon 17 Downloadable Samples
  • Technology Badge Icon Affymetrix Human Exon 1.0 ST Array [probe set (exon) version (huex10st)

Description

Standard clinicopathological variables are inadequate for optimal management of prostate cancer patients. While genomic classifiers have improved patient risk classification, the multifocality and heterogeneity of prostate cancer can confound pre-treatment assessment. The objective is to investigate the association of multiparametric (mp)MRI quantitative features with prostate cancer risk gene expression profiles in mpMRI-guided biopsies tissues.

Publication Title

Association of multiparametric MRI quantitative imaging features with prostate cancer gene expression in MRI-targeted prostate biopsies.

Sample Metadata Fields

Age, Specimen part

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accession-icon E-MEXP-526
Transcription profiling by array of Saccharomyces cerevisiae after treatment with hydrogen peroxide
  • organism-icon Saccharomyces cerevisiae
  • sample-icon 18 Downloadable Samples
  • Technology Badge Icon Affymetrix Yeast Genome S98 Array (ygs98)

Description

Global restriction of protein synthesis is a hallmark of cellular stress. Using hydrogen peroxide, we monitor the transcript level and also the translation status for each RNA using cycloheximide to freeze elongating ribosomes. Polyribosome fractionation of cell extracts was used to separate highly translated and poorly translated mRNAs that were then separately analysed.

Publication Title

Global translational responses to oxidative stress impact upon multiple levels of protein synthesis.

Sample Metadata Fields

Sex, Compound

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accession-icon GSE65154
Wnt ligands from the embryonic surface ectoderm regulate bimetallic strip optic cup morphogenesis in the mouse
  • organism-icon Mus musculus
  • sample-icon 8 Downloadable Samples
  • Technology Badge Icon Affymetrix Mouse Gene 1.0 ST Array (mogene10st)

Description

Wnt signaling in early eye development, specifically the lens placode shows expression of 12 out of 19 Wnt ligands. We these Wnt activities were suppressed using conditional deletion of Wntless, dramatic phenotypic changes in morphogensis occurred.

Publication Title

Wnt ligands from the embryonic surface ectoderm regulate 'bimetallic strip' optic cup morphogenesis in mouse.

Sample Metadata Fields

Specimen part

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refine.bio is a repository of uniformly processed and normalized, ready-to-use transcriptome data from publicly available sources. refine.bio is a project of the Childhood Cancer Data Lab (CCDL)

fund-icon Fund the CCDL

Developed by the Childhood Cancer Data Lab

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Cite refine.bio

Casey S. Greene, Dongbo Hu, Richard W. W. Jones, Stephanie Liu, David S. Mejia, Rob Patro, Stephen R. Piccolo, Ariel Rodriguez Romero, Hirak Sarkar, Candace L. Savonen, Jaclyn N. Taroni, William E. Vauclain, Deepashree Venkatesh Prasad, Kurt G. Wheeler. refine.bio: a resource of uniformly processed publicly available gene expression datasets.
URL: https://www.refine.bio

Note that the contributor list is in alphabetical order as we prepare a manuscript for submission.

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