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adrb2 rabbit poly ab  (Proteintech)


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    Structured Review

    Proteintech adrb2 rabbit poly ab
    Glioblastomas alter their adrenoceptor expression levels depending on their stage of differentiation. (A). Number of RNA sequence reads representing the expression of mRNAs encoding adrenoceptors in GSCs and DGCs of MGG4, MGG6, and MGG8. ADRA1D , ADRA2C , ADRB1 , and <t>ADRB2</t> , which are well expressed and particularly variable, are highlighted with orange lines. (B). Graph showing the relative expression levels of ADRA1D , ADRA2C , ADRB1 , and ADRB2 in GSCs and DGCs of MGG4, MGG6, and MGG8 as a ratio of DGCs to GSCs. The vertical axis is shown in logarithm; of the four genes, those representing a common pattern of variation in the three cell lines are highlighted with green lines. (C). Western blotting results evaluating protein expression of ADRA1D, ADRB1, and ADRB2 in GSCs and DGCs of MGG4, MGG8, MGG18, and MGG23. (D). Immunostaining images showing changes in ADRA1D expression in GSCs and DGCs of MGG8. (E). Immunostaining image showing ADRA1D expression in tumor tissue of orthotopic xenografts composed of 8GSC-RFP and 8DGC-GFP. ADRA1D, which is upregulated in the differentiated state, is positive in some RFP-positive cells (formerly GSC cells) and negative in some GFP-positive cells (formerly DGC cells), indicating that, like undifferentiated and differentiated markers, the expression pattern of ADRA1D is also heterogeneous. Staining for ADRA1D in normal mouse brain tissue is shown as a control.
    Adrb2 Rabbit Poly Ab, supplied by Proteintech, used in various techniques. Bioz Stars score: 93/100, based on 33 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/adrb2 rabbit poly ab/product/Proteintech
    Average 93 stars, based on 33 article reviews
    adrb2 rabbit poly ab - by Bioz Stars, 2026-03
    93/100 stars

    Images

    1) Product Images from "Changes in adrenoceptor expression level contribute to the cellular plasticity of glioblastoma cells"

    Article Title: Changes in adrenoceptor expression level contribute to the cellular plasticity of glioblastoma cells

    Journal: The Journal of Physiological Sciences : JPS

    doi: 10.1016/j.jphyss.2025.100016

    Glioblastomas alter their adrenoceptor expression levels depending on their stage of differentiation. (A). Number of RNA sequence reads representing the expression of mRNAs encoding adrenoceptors in GSCs and DGCs of MGG4, MGG6, and MGG8. ADRA1D , ADRA2C , ADRB1 , and ADRB2 , which are well expressed and particularly variable, are highlighted with orange lines. (B). Graph showing the relative expression levels of ADRA1D , ADRA2C , ADRB1 , and ADRB2 in GSCs and DGCs of MGG4, MGG6, and MGG8 as a ratio of DGCs to GSCs. The vertical axis is shown in logarithm; of the four genes, those representing a common pattern of variation in the three cell lines are highlighted with green lines. (C). Western blotting results evaluating protein expression of ADRA1D, ADRB1, and ADRB2 in GSCs and DGCs of MGG4, MGG8, MGG18, and MGG23. (D). Immunostaining images showing changes in ADRA1D expression in GSCs and DGCs of MGG8. (E). Immunostaining image showing ADRA1D expression in tumor tissue of orthotopic xenografts composed of 8GSC-RFP and 8DGC-GFP. ADRA1D, which is upregulated in the differentiated state, is positive in some RFP-positive cells (formerly GSC cells) and negative in some GFP-positive cells (formerly DGC cells), indicating that, like undifferentiated and differentiated markers, the expression pattern of ADRA1D is also heterogeneous. Staining for ADRA1D in normal mouse brain tissue is shown as a control.
    Figure Legend Snippet: Glioblastomas alter their adrenoceptor expression levels depending on their stage of differentiation. (A). Number of RNA sequence reads representing the expression of mRNAs encoding adrenoceptors in GSCs and DGCs of MGG4, MGG6, and MGG8. ADRA1D , ADRA2C , ADRB1 , and ADRB2 , which are well expressed and particularly variable, are highlighted with orange lines. (B). Graph showing the relative expression levels of ADRA1D , ADRA2C , ADRB1 , and ADRB2 in GSCs and DGCs of MGG4, MGG6, and MGG8 as a ratio of DGCs to GSCs. The vertical axis is shown in logarithm; of the four genes, those representing a common pattern of variation in the three cell lines are highlighted with green lines. (C). Western blotting results evaluating protein expression of ADRA1D, ADRB1, and ADRB2 in GSCs and DGCs of MGG4, MGG8, MGG18, and MGG23. (D). Immunostaining images showing changes in ADRA1D expression in GSCs and DGCs of MGG8. (E). Immunostaining image showing ADRA1D expression in tumor tissue of orthotopic xenografts composed of 8GSC-RFP and 8DGC-GFP. ADRA1D, which is upregulated in the differentiated state, is positive in some RFP-positive cells (formerly GSC cells) and negative in some GFP-positive cells (formerly DGC cells), indicating that, like undifferentiated and differentiated markers, the expression pattern of ADRA1D is also heterogeneous. Staining for ADRA1D in normal mouse brain tissue is shown as a control.

    Techniques Used: Expressing, Sequencing, Western Blot, Immunostaining, Staining, Control

    The antibodies used for Western blotting.
    Figure Legend Snippet: The antibodies used for Western blotting.

    Techniques Used: Western Blot, Produced



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    Proteintech adrb2 rabbit poly ab
    Glioblastomas alter their adrenoceptor expression levels depending on their stage of differentiation. (A). Number of RNA sequence reads representing the expression of mRNAs encoding adrenoceptors in GSCs and DGCs of MGG4, MGG6, and MGG8. ADRA1D , ADRA2C , ADRB1 , and <t>ADRB2</t> , which are well expressed and particularly variable, are highlighted with orange lines. (B). Graph showing the relative expression levels of ADRA1D , ADRA2C , ADRB1 , and ADRB2 in GSCs and DGCs of MGG4, MGG6, and MGG8 as a ratio of DGCs to GSCs. The vertical axis is shown in logarithm; of the four genes, those representing a common pattern of variation in the three cell lines are highlighted with green lines. (C). Western blotting results evaluating protein expression of ADRA1D, ADRB1, and ADRB2 in GSCs and DGCs of MGG4, MGG8, MGG18, and MGG23. (D). Immunostaining images showing changes in ADRA1D expression in GSCs and DGCs of MGG8. (E). Immunostaining image showing ADRA1D expression in tumor tissue of orthotopic xenografts composed of 8GSC-RFP and 8DGC-GFP. ADRA1D, which is upregulated in the differentiated state, is positive in some RFP-positive cells (formerly GSC cells) and negative in some GFP-positive cells (formerly DGC cells), indicating that, like undifferentiated and differentiated markers, the expression pattern of ADRA1D is also heterogeneous. Staining for ADRA1D in normal mouse brain tissue is shown as a control.
    Adrb2 Rabbit Poly Ab, supplied by Proteintech, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/adrb2 rabbit poly ab/product/Proteintech
    Average 93 stars, based on 1 article reviews
    adrb2 rabbit poly ab - by Bioz Stars, 2026-03
    93/100 stars
      Buy from Supplier

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    Glioblastomas alter their adrenoceptor expression levels depending on their stage of differentiation. (A). Number of RNA sequence reads representing the expression of mRNAs encoding adrenoceptors in GSCs and DGCs of MGG4, MGG6, and MGG8. ADRA1D , ADRA2C , ADRB1 , and ADRB2 , which are well expressed and particularly variable, are highlighted with orange lines. (B). Graph showing the relative expression levels of ADRA1D , ADRA2C , ADRB1 , and ADRB2 in GSCs and DGCs of MGG4, MGG6, and MGG8 as a ratio of DGCs to GSCs. The vertical axis is shown in logarithm; of the four genes, those representing a common pattern of variation in the three cell lines are highlighted with green lines. (C). Western blotting results evaluating protein expression of ADRA1D, ADRB1, and ADRB2 in GSCs and DGCs of MGG4, MGG8, MGG18, and MGG23. (D). Immunostaining images showing changes in ADRA1D expression in GSCs and DGCs of MGG8. (E). Immunostaining image showing ADRA1D expression in tumor tissue of orthotopic xenografts composed of 8GSC-RFP and 8DGC-GFP. ADRA1D, which is upregulated in the differentiated state, is positive in some RFP-positive cells (formerly GSC cells) and negative in some GFP-positive cells (formerly DGC cells), indicating that, like undifferentiated and differentiated markers, the expression pattern of ADRA1D is also heterogeneous. Staining for ADRA1D in normal mouse brain tissue is shown as a control.

    Journal: The Journal of Physiological Sciences : JPS

    Article Title: Changes in adrenoceptor expression level contribute to the cellular plasticity of glioblastoma cells

    doi: 10.1016/j.jphyss.2025.100016

    Figure Lengend Snippet: Glioblastomas alter their adrenoceptor expression levels depending on their stage of differentiation. (A). Number of RNA sequence reads representing the expression of mRNAs encoding adrenoceptors in GSCs and DGCs of MGG4, MGG6, and MGG8. ADRA1D , ADRA2C , ADRB1 , and ADRB2 , which are well expressed and particularly variable, are highlighted with orange lines. (B). Graph showing the relative expression levels of ADRA1D , ADRA2C , ADRB1 , and ADRB2 in GSCs and DGCs of MGG4, MGG6, and MGG8 as a ratio of DGCs to GSCs. The vertical axis is shown in logarithm; of the four genes, those representing a common pattern of variation in the three cell lines are highlighted with green lines. (C). Western blotting results evaluating protein expression of ADRA1D, ADRB1, and ADRB2 in GSCs and DGCs of MGG4, MGG8, MGG18, and MGG23. (D). Immunostaining images showing changes in ADRA1D expression in GSCs and DGCs of MGG8. (E). Immunostaining image showing ADRA1D expression in tumor tissue of orthotopic xenografts composed of 8GSC-RFP and 8DGC-GFP. ADRA1D, which is upregulated in the differentiated state, is positive in some RFP-positive cells (formerly GSC cells) and negative in some GFP-positive cells (formerly DGC cells), indicating that, like undifferentiated and differentiated markers, the expression pattern of ADRA1D is also heterogeneous. Staining for ADRA1D in normal mouse brain tissue is shown as a control.

    Article Snippet: ADRB2 Rabbit Poly Ab , 1:2000 , Proteintech , 13096 −1-AP.

    Techniques: Expressing, Sequencing, Western Blot, Immunostaining, Staining, Control

    The antibodies used for Western blotting.

    Journal: The Journal of Physiological Sciences : JPS

    Article Title: Changes in adrenoceptor expression level contribute to the cellular plasticity of glioblastoma cells

    doi: 10.1016/j.jphyss.2025.100016

    Figure Lengend Snippet: The antibodies used for Western blotting.

    Article Snippet: ADRB2 Rabbit Poly Ab , 1:2000 , Proteintech , 13096 −1-AP.

    Techniques: Western Blot, Produced