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species-specific oligo microarray platform  (Agilent technologies)


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    Structured Review

    Agilent technologies species-specific oligo microarray platform
    Transcriptomic characterization of exposures to ZnO NPs in in vitro and in vivo studies.
    Species Specific Oligo Microarray Platform, supplied by Agilent technologies, 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/species-specific+oligo+microarray+platform/pmc09031840-346-9-13
    Average 90 stars, based on 1 article reviews
    species-specific oligo microarray platform - by Bioz Stars, 2026-09
    90/100 stars

    Images

    1) Product Images from "A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies"

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies

    Journal: Nanomaterials

    doi: 10.3390/nano12081247

    Transcriptomic characterization of exposures to ZnO NPs in in vitro and in vivo studies.
    Figure Legend Snippet: Transcriptomic characterization of exposures to ZnO NPs in in vitro and in vivo studies.

    Techniques Used: In Vitro, In Vivo, Microarray, Binding Assay, Expressing, Derivative Assay, Animal Model, Cell Culture

    Transcriptomic characterization of exposures to TiO 2 NPs in in vitro and in vivo studies.
    Figure Legend Snippet: Transcriptomic characterization of exposures to TiO 2 NPs in in vitro and in vivo studies.

    Techniques Used: In Vitro, In Vivo, Microarray, Chemotaxis Assay, Activation Assay, Animal Model, Expressing, Transduction, Cell Differentiation, Activity Assay, Coagulation

    Transcriptomic characterization of exposures to ZnO and TiO 2 NPs in ecotoxicology-related models.
    Figure Legend Snippet: Transcriptomic characterization of exposures to ZnO and TiO 2 NPs in ecotoxicology-related models.

    Techniques Used: Microarray, Binding Assay, Homologous Recombination, Cell Differentiation, Transformation Assay, Modification

    Related Articles

    Microarray:

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies
    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    In Vitro:

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies
    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    In Vivo:

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies
    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    Binding Assay:

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies
    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    Expressing:

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies
    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    Derivative Assay:

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies
    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    Animal Model:

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies
    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    Cell Culture:

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies
    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    Chemotaxis Assay:

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies
    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    Activation Assay:

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies
    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    Transduction:

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies
    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    Cell Differentiation:

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies
    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    Activity Assay:

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies
    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    Coagulation:

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies
    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    Homologous Recombination:

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies
    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    Transformation Assay:

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies
    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    Modification:

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies
    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.



    Similar Products

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    Agilent technologies species-specific oligo microarray platform
    Transcriptomic characterization of exposures to ZnO NPs in in vitro and in vivo studies.
    Species Specific Oligo Microarray Platform, supplied by Agilent technologies, 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/species-specific+oligo+microarray+platform/pmc09031840-346-9-13
    Average 90 stars, based on 1 article reviews
    species-specific oligo microarray platform - by Bioz Stars, 2026-09
    90/100 stars
      Buy from Supplier

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    Transcriptomic characterization of exposures to ZnO NPs in in vitro and in vivo studies.

    Journal: Nanomaterials

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies

    doi: 10.3390/nano12081247

    Figure Lengend Snippet: Transcriptomic characterization of exposures to ZnO NPs in in vitro and in vivo studies.

    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    Techniques: In Vitro, In Vivo, Microarray, Binding Assay, Expressing, Derivative Assay, Animal Model, Cell Culture

    Transcriptomic characterization of exposures to TiO 2 NPs in in vitro and in vivo studies.

    Journal: Nanomaterials

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies

    doi: 10.3390/nano12081247

    Figure Lengend Snippet: Transcriptomic characterization of exposures to TiO 2 NPs in in vitro and in vivo studies.

    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    Techniques: In Vitro, In Vivo, Microarray, Chemotaxis Assay, Activation Assay, Animal Model, Expressing, Transduction, Cell Differentiation, Activity Assay, Coagulation

    Transcriptomic characterization of exposures to ZnO and TiO 2 NPs in ecotoxicology-related models.

    Journal: Nanomaterials

    Article Title: A New Look at the Effects of Engineered ZnO and TiO 2 Nanoparticles: Evidence from Transcriptomics Studies

    doi: 10.3390/nano12081247

    Figure Lengend Snippet: Transcriptomic characterization of exposures to ZnO and TiO 2 NPs in ecotoxicology-related models.

    Article Snippet: The combination of a well-established zebrafish model organism, and species-specific oligo microarray platform (Agilent, Santa Clara, CA, USA) and RSEQ strategies provide tools for studies on the molecular mechanisms underlying the adaptive response of fish to NPs, and they aid in the identification of NP-specific genes and signaling pathways in fish.

    Techniques: Microarray, Binding Assay, Homologous Recombination, Cell Differentiation, Transformation Assay, Modification