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piqo mirxplore microarrays  (Miltenyi Biotec)


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    Miltenyi Biotec piqo mirxplore microarrays
    Piqo Mirxplore Microarrays, supplied by Miltenyi Biotec, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/mirxplore+microarray/mirxplore+microarrays/pm28930607-130-12-10
    Average 90 stars, based on 1 article reviews
    piqo mirxplore microarrays - by Bioz Stars, 2026-09
    90/100 stars

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    Related Articles

    Microarray:

    Article Title: miR expression profiling at diagnosis predicts relapse in pediatric precursor B-cell acute lymphoblastic leukemia.
    Article Snippet: Smadar Avigad,* Iedan RN Verly, Asaf Lebel, Oshrit Kordi, Keren Shichrur, Anat Ohali, Michal Hameiri-Grossman, Gertjan JL Kaspers, Jacqueline Cloos, Eva Fronkova, Jan Trka, Drorit Luria, Yona Kodman, Hadar Mirsky, Dafna Gaash, Marta Jeison, Galia Avrahami, Sarah Elitzur, Gil Gilad, Batia Stark, and Isaac Yaniv Molecular Oncology,Felsenstein Medical Research Center,PetahTikva,Israel Pediatric Hematology Oncology,Schneider Children’s Medical Centerof Israel,PetahTikva,Israel Sackler Facultyof Medicine,Tel Aviv University,Tel Aviv,Israel Pediatric Oncology/Hematology,VUUniversity Medical Center,Amsterdam, the Netherlands Departmentof Paediatric Haematology and Oncology, 2nd Facultyof Medicine,Charles University Prague,Czech Republic

    Article Title: Prognostic relevance of miR-124-3p and its target TP53INP1 in pediatric ependymoma.
    Article Snippet: Prognostic relevance of miR-124-3p and its target TP53INP1 in pediatric ependymoma Yulia Margolin-Miller, 1,2 Natalia Yanichkin, 2,3 Keren Shichrur, 4 Helen Toledano, 2,4 Anat Ohali, 4 Theophilos Tzaridis, 6 Shalom Michowitz, 2,5 Suzana Fichman-Horn, 2,3 Meora Feinmesser, 2,3 Stefan M. Pfister, 6 Hendrik Witt,7 Uri Tabori, 8 Eric Bouffet, 8 Vijay Ramaswamy,8 Cynthia Hawkins,8 Michael D. Taylor, 8 Isaac Yaniv, 1,2,4 Smadar Avigad 1,2,4 1 Molecular Oncology, Felsenstein Medical Research Center, Rabin Medical Center, Petah Tikva, Israel 2 Sackler Faculty of Medicine, Tel Aviv University, Tel Aviv, Israel 3 Pathology Department, Rabin Medical Center, Petah Tikva, Israel 4 Pediatric Hematology Oncology, Schneider Children's Medical Center of Israel, Petah Tikva, Israel 5 Department of Neurosurgery, Schneider Children's Medical Center of Israel, Petah Tikva, Israel 6 Division of Pediatric Neurooncology, German Cancer Research Center (DKFZ), Heidelberg, Germany 7 Department of Pediatric Oncology Hematology and Immunology, Children's Hospital, University of Heidelberg, Heidelberg, Germany 8 Division of Hematology Oncology, Hospital for Sick Children, University of Toronto, Toronto, Canada The work was performed in the Molecular Oncology Lab, Felsenstein Medical Research Center, Rabin Medical Center, Petah Tikva.. This article has been accepted for publication and undergone full peer review but has not been through the copyediting, typesetting, pagination and proofreading process which may lead to differences between this version and the Version of Record.. Please cite this article as an ‘Accepted Article’, doi: 10.1002/gcc.22467 This article is protected by copyright.

    Article Title: An in silico integrative analysis of hepatocellular carcinoma omics databases shows the dual regulatory role of microRNAs either as tumor suppressors or as oncomirs
    Article Snippet: .. These six integrated datasets are “Miltenyi Biotec miRXplore miRNA Microarray, GSE28854’’, Capital Bio Mammalian miRNA Array Services V1 [ ].0, GSE10694’’, “Affymetrix Multispecies miRNA-2 Array, GSE74618”Affymetrix Multispecies miRNA-4 Array, GSE115016” “Agilent-031181 Unrestricted_Human_miRNA_V16.0_Microarray, GSE110217” and “TCGA-LIHC, RNA seq’’. .. These integrated datasets have been downloaded and analyzed by the Subio Platform PC program http://www.subio.jp/products/platform to be filtered to get the overlap of common down-expressed microRNAs in HCC specimens.

    Article Title: In vitro Differentiation of Human TERT-Transfected Multi-Lineage Progenitor Cells (MLPC) into Immortalized Hepatocyte-Like Cells
    Article Snippet: Human mesenchymal stem cells (hMSC) were obtained from Lonza (PT-2501) and were expanded in MSCGM for use in comparative flow cytometry and confocal analysis with MLPC. .. Relative levels of gene expression by MSC and MLPC were analyzed by competitive hybridization utilizing the PIQOR Stem Cell Microarray system analyzing 942 genes associate with stemness and differentiation to ectodermal, mesodermal or endodermal commitment (Miltenyi Biotec). ..

    Article Title: Comparison of Microarray Platforms for Measuring Differential MicroRNA Expression in Paired Normal/Cancer Colon Tissues
    Article Snippet: .. RNA aliquots from these samples were hybridized on four microarray platforms: Agilent SurePrint G3 human miRNA Microarray, Exiqon miRCURY LNA microRNA Array, Illumina Human_v2 microRNA expression Beadchips, and Miltenyi miRXplore Microarray. ..

    RNA Sequencing:

    Article Title: An in silico integrative analysis of hepatocellular carcinoma omics databases shows the dual regulatory role of microRNAs either as tumor suppressors or as oncomirs
    Article Snippet: .. These six integrated datasets are “Miltenyi Biotec miRXplore miRNA Microarray, GSE28854’’, Capital Bio Mammalian miRNA Array Services V1 [ ].0, GSE10694’’, “Affymetrix Multispecies miRNA-2 Array, GSE74618”Affymetrix Multispecies miRNA-4 Array, GSE115016” “Agilent-031181 Unrestricted_Human_miRNA_V16.0_Microarray, GSE110217” and “TCGA-LIHC, RNA seq’’. .. These integrated datasets have been downloaded and analyzed by the Subio Platform PC program http://www.subio.jp/products/platform to be filtered to get the overlap of common down-expressed microRNAs in HCC specimens.

    Gene Expression:

    Article Title: In vitro Differentiation of Human TERT-Transfected Multi-Lineage Progenitor Cells (MLPC) into Immortalized Hepatocyte-Like Cells
    Article Snippet: Human mesenchymal stem cells (hMSC) were obtained from Lonza (PT-2501) and were expanded in MSCGM for use in comparative flow cytometry and confocal analysis with MLPC. .. Relative levels of gene expression by MSC and MLPC were analyzed by competitive hybridization utilizing the PIQOR Stem Cell Microarray system analyzing 942 genes associate with stemness and differentiation to ectodermal, mesodermal or endodermal commitment (Miltenyi Biotec). ..

    Hybridization:

    Article Title: In vitro Differentiation of Human TERT-Transfected Multi-Lineage Progenitor Cells (MLPC) into Immortalized Hepatocyte-Like Cells
    Article Snippet: Human mesenchymal stem cells (hMSC) were obtained from Lonza (PT-2501) and were expanded in MSCGM for use in comparative flow cytometry and confocal analysis with MLPC. .. Relative levels of gene expression by MSC and MLPC were analyzed by competitive hybridization utilizing the PIQOR Stem Cell Microarray system analyzing 942 genes associate with stemness and differentiation to ectodermal, mesodermal or endodermal commitment (Miltenyi Biotec). ..

    Expressing:

    Article Title: Transcriptomics in amyotrophic lateral sclerosis.
    Article Snippet: Amyotrophic lateral sclerosis (ALS) is an adult-onset, incurable neurodegenerative disease characterized by the selective death of upper and lowers motor neurons in the spinal cord, brainstem and motor cortex, which ultimately leads to paralysis and death within 2–3 years of onset.. ALS is poorly understood, although multiple studies have been proposed to explain the pathophysiological mechanisms of the disorder.. The development of microarray technology, for simultaneous analysis of the transcriptional expression of thousands of genes, has provided new possibilities to get better insights into the pathogenesis of ALS, and most important, potential new candidate targets for novel treatments.

    Article Title: Comparison of Microarray Platforms for Measuring Differential MicroRNA Expression in Paired Normal/Cancer Colon Tissues
    Article Snippet: .. RNA aliquots from these samples were hybridized on four microarray platforms: Agilent SurePrint G3 human miRNA Microarray, Exiqon miRCURY LNA microRNA Array, Illumina Human_v2 microRNA expression Beadchips, and Miltenyi miRXplore Microarray. ..

    Virus:

    Article Title: MicroRNA targeting of the non-canonical planar cell polarity pathway in the developing neural tube.
    Article Snippet: Funding information National Institutes of Health, Grant/Award Numbers: DE018215, DE021460, HD053509, P20GM103453; National Institute of General Medical Sciences; Institutional Development Award (IDeA) Abstract MicroRNAs (miRNAs) provide context-dependent transcriptional regulation of genes comprising signalling networks throughout the developing organism including morphogenesis of the embryonic neural tube (NT).. Using a high-sensitivity, high-coverage microarray analysis platform, miRNA expression in the murine embryonic NT during the critical stages of its formation was examined.. Analysis of a number of differentially expressed (DE) miRNAs enabled identification of several gene targets associated with cellular processes essential for normal NT development.

    other:

    Article Title: How Can Microarrays Unlock Asthma?
    Article Snippet: Miltenyi Biotec , miRXplore TM Microarray Kits , http://www.miltenyibiotec.com/.



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    Overview of the production and use of expression microarrays. 3′ Expression arrays use synthetically derived oligo probes with design based on mRNA Databases (RefSeq mRNAs, GenBank mRNAs, and ESTs from dbEST) or cDNA derived from bacterial libraries (see ). Sample mRNA can be labeled using two methods (a) Cy3/Cy5 labeling: sample mRNA is reverse transcribed into cDNA and Cy3 is added to one sample and Cy5 to another. Both labeled samples are hybridized to the same <t>microarray.</t> (b) 3′ IVT array: sample mRNA is reverse transcribed to cDNA using oligo(dT) primers, to provide a template for transcription. Using biotin-conjugated nucleotides, the template cDNA is then converted to amplified RNA (aRNA). The biotin-labeled aRNA samples are then fragmented and hybridized onto 3′ expression arrays. A biotin binding fluorescent stain is added to the microarray after hybridization. (c) Affymetrix HuExon 1.0 ST: sample mRNA is reverse transcribed to cDNA using random primers, to provide a template for transcription. The resulting RNA is then reverse transcribed in the presence of dUTPs which are incorporated occasionally into the cDNA sequence instead of dTTP. An enzyme is then used to cleave the cDNA at the site of dUTP incorporation and fragments are terminally labeled before hybridization onto the array. The microarray is then washed and stained after hybridization.
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    Image Search Results


    Overview of the production and use of expression microarrays. 3′ Expression arrays use synthetically derived oligo probes with design based on mRNA Databases (RefSeq mRNAs, GenBank mRNAs, and ESTs from dbEST) or cDNA derived from bacterial libraries (see ). Sample mRNA can be labeled using two methods (a) Cy3/Cy5 labeling: sample mRNA is reverse transcribed into cDNA and Cy3 is added to one sample and Cy5 to another. Both labeled samples are hybridized to the same microarray. (b) 3′ IVT array: sample mRNA is reverse transcribed to cDNA using oligo(dT) primers, to provide a template for transcription. Using biotin-conjugated nucleotides, the template cDNA is then converted to amplified RNA (aRNA). The biotin-labeled aRNA samples are then fragmented and hybridized onto 3′ expression arrays. A biotin binding fluorescent stain is added to the microarray after hybridization. (c) Affymetrix HuExon 1.0 ST: sample mRNA is reverse transcribed to cDNA using random primers, to provide a template for transcription. The resulting RNA is then reverse transcribed in the presence of dUTPs which are incorporated occasionally into the cDNA sequence instead of dTTP. An enzyme is then used to cleave the cDNA at the site of dUTP incorporation and fragments are terminally labeled before hybridization onto the array. The microarray is then washed and stained after hybridization.

    Journal: Journal of Allergy

    Article Title: How Can Microarrays Unlock Asthma?

    doi: 10.1155/2012/241314

    Figure Lengend Snippet: Overview of the production and use of expression microarrays. 3′ Expression arrays use synthetically derived oligo probes with design based on mRNA Databases (RefSeq mRNAs, GenBank mRNAs, and ESTs from dbEST) or cDNA derived from bacterial libraries (see ). Sample mRNA can be labeled using two methods (a) Cy3/Cy5 labeling: sample mRNA is reverse transcribed into cDNA and Cy3 is added to one sample and Cy5 to another. Both labeled samples are hybridized to the same microarray. (b) 3′ IVT array: sample mRNA is reverse transcribed to cDNA using oligo(dT) primers, to provide a template for transcription. Using biotin-conjugated nucleotides, the template cDNA is then converted to amplified RNA (aRNA). The biotin-labeled aRNA samples are then fragmented and hybridized onto 3′ expression arrays. A biotin binding fluorescent stain is added to the microarray after hybridization. (c) Affymetrix HuExon 1.0 ST: sample mRNA is reverse transcribed to cDNA using random primers, to provide a template for transcription. The resulting RNA is then reverse transcribed in the presence of dUTPs which are incorporated occasionally into the cDNA sequence instead of dTTP. An enzyme is then used to cleave the cDNA at the site of dUTP incorporation and fragments are terminally labeled before hybridization onto the array. The microarray is then washed and stained after hybridization.

    Article Snippet: Miltenyi Biotec , miRXplore ™ Microarray Kits , http://www.miltenyibiotec.com/.

    Techniques: Expressing, Derivative Assay, Labeling, Microarray, Amplification, Binding Assay, Staining, Hybridization, Sequencing

    Databases used in Affymetrix  microarray  annotation.

    Journal: Journal of Allergy

    Article Title: How Can Microarrays Unlock Asthma?

    doi: 10.1155/2012/241314

    Figure Lengend Snippet: Databases used in Affymetrix microarray annotation.

    Article Snippet: Miltenyi Biotec , miRXplore ™ Microarray Kits , http://www.miltenyibiotec.com/.

    Techniques: Microarray, Sequencing, Construct, Expressing

    List of a number companies currently providing miRNA  microarray  technology.

    Journal: Journal of Allergy

    Article Title: How Can Microarrays Unlock Asthma?

    doi: 10.1155/2012/241314

    Figure Lengend Snippet: List of a number companies currently providing miRNA microarray technology.

    Article Snippet: Miltenyi Biotec , miRXplore ™ Microarray Kits , http://www.miltenyibiotec.com/.

    Techniques: Microarray

    The GEO accession number for  microarray  studies conducted on asthma.

    Journal: Journal of Allergy

    Article Title: How Can Microarrays Unlock Asthma?

    doi: 10.1155/2012/241314

    Figure Lengend Snippet: The GEO accession number for microarray studies conducted on asthma.

    Article Snippet: Miltenyi Biotec , miRXplore ™ Microarray Kits , http://www.miltenyibiotec.com/.

    Techniques: Microarray, Expressing, Clone Assay, Infection, Functional Assay, Sequencing, Synthesized

    Platform description.

    Journal: PLoS ONE

    Article Title: Comparison of Microarray Platforms for Measuring Differential MicroRNA Expression in Paired Normal/Cancer Colon Tissues

    doi: 10.1371/journal.pone.0045105

    Figure Lengend Snippet: Platform description.

    Article Snippet: RNA aliquots from these samples were hybridized on four microarray platforms: Agilent SurePrint G3 human miRNA Microarray, Exiqon miRCURY LNA microRNA Array, Illumina Human_v2 microRNA expression Beadchips, and Miltenyi miRXplore Microarray.

    Techniques: Microarray, Labeling, Ligation

    (A) Pathway enrichment analysis of anti-correlated predicted target genes of differentially expressed miRNAs according to each microarray platform. (B) Network between the top 8 differentially expressed miRNAs and their anti-correlated target genes. The 250 top interactions were used to generate the network using MAGIA tool.

    Journal: PLoS ONE

    Article Title: Comparison of Microarray Platforms for Measuring Differential MicroRNA Expression in Paired Normal/Cancer Colon Tissues

    doi: 10.1371/journal.pone.0045105

    Figure Lengend Snippet: (A) Pathway enrichment analysis of anti-correlated predicted target genes of differentially expressed miRNAs according to each microarray platform. (B) Network between the top 8 differentially expressed miRNAs and their anti-correlated target genes. The 250 top interactions were used to generate the network using MAGIA tool.

    Article Snippet: RNA aliquots from these samples were hybridized on four microarray platforms: Agilent SurePrint G3 human miRNA Microarray, Exiqon miRCURY LNA microRNA Array, Illumina Human_v2 microRNA expression Beadchips, and Miltenyi miRXplore Microarray.

    Techniques: Microarray