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csb e06882m  (Cusabio)


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    Cusabio csb e06882m
    Csb E06882m, supplied by Cusabio, used in various techniques. Bioz Stars score: 90/100, based on 2 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/mouse+prl+elisa+kit/Mouse+Prolactin%2FLuteotropic+Hormone(PRL%2FLTH)+ELISA+Kit/pm29438798-100-14-15
    Average 90 stars, based on 2 article reviews
    csb e06882m - by Bioz Stars, 2026-09
    90/100 stars

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    Enzyme-linked Immunosorbent Assay:

    Article Title: Short-term fasting decreases excitatory synaptic inputs to ventromedial tuberoinfundibular dopaminergic neurons and attenuates their activity in male mice.
    Article Snippet: The membrane was exposed to X-ray film (RX-U, FUJIFILM) for 30–300 s. Densitometric analyses of the bands were performed with NIH ImageJ software, and the arbitrary units were normalized to appropriate controls. .. Serum PRL levels were measured with a commercially available kit (Mouse PRL ELISA Kit, CSB-E06882m; CUSABIO BIOTECH CO., LTD). ..



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    a Upper panel: Macroscopic analysis of the pituitary gland from 27-week-old WT (+/+) and Ghrhr Gpr101 (+/T) mice. Lower panel: microscopic visualization of pituitary sections after H&E staining. Scale bar: 150 µm. b High magnification of anterior and posterior pituitaries stained with H&E. Scale bar: 15 µm. c Left panel: Immunohistochemical staining of the anterior pituitary sections with the cell proliferation marker Ki-67 (scale bar: 15 µm). Blue arrows indicate Ki-67-positive nuclei staining. Right panel: quantification of the Ki-67 labeling index in pituitary sections of 27-week-old WT (+/+) and Ghrhr Gpr101 (+/T) mice. The Ki-67 labeling index represents the percentage of positive nuclei stained by anti-Ki-67 antibody. n = 11 independent areas from staining section of WT (+/+) and Ghrhr Gpr101 (+/T) ( n = 4 mice per group, p = 0.9487). d Immunofluorescent staining of GH (green) and Ki-67 (Red). Scale bar: 10 µm. e Reticulin staining of the anterior and posterior pituitaries of WT (+/+) and Ghrhr Gpr101 (+/T) mice (scale bar: 15 µm). f The expression of GH in the pituitary of WT and Ghrhr Gpr101 mice (aged 27 weeks n = 5, p = 0.0079) was quantified by RT-qPCR. GAPDH was used as a control housekeeping gene. g The content of the GH protein was quantified by <t>ELISA</t> and normalized to total protein in pituitary lysates of both males and females of the WT (+/+) and Ghrhr Gpr101 (+/T) genotypes (aged 29 weeks, n = 4, p = 0.0286). h Ex vivo pituitary superfusion analysis. Pituitary glands of WT (+/+) and Ghrhr Gpr101 (+/T) (aged 29 weeks, n = 3 mice) were superfused at 0.1 ml min −1 in superfusion chambers. Effluents were collected every 5 min for GH measurement. GHRH (100 nM) was added to the medium for 15 min and KCl (0.03 M) for 20 min (as it is indicated with arrows). GH secretion was quantified by ELISA at indicated time points. All the experiments were independently repeated three times unless stated otherwise. F Female, M Male. For statistical analysis of all data, a two-sided Mann–Whitney test was used unless stated otherwise. ns not significantly different; * p < 0.05; ** p < 0.01; *** p < 0.001.
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    a Upper panel: Macroscopic analysis of the pituitary gland from 27-week-old WT (+/+) and Ghrhr Gpr101 (+/T) mice. Lower panel: microscopic visualization of pituitary sections after H&E staining. Scale bar: 150 µm. b High magnification of anterior and posterior pituitaries stained with H&E. Scale bar: 15 µm. c Left panel: Immunohistochemical staining of the anterior pituitary sections with the cell proliferation marker Ki-67 (scale bar: 15 µm). Blue arrows indicate Ki-67-positive nuclei staining. Right panel: quantification of the Ki-67 labeling index in pituitary sections of 27-week-old WT (+/+) and Ghrhr Gpr101 (+/T) mice. The Ki-67 labeling index represents the percentage of positive nuclei stained by anti-Ki-67 antibody. n = 11 independent areas from staining section of WT (+/+) and Ghrhr Gpr101 (+/T) ( n = 4 mice per group, p = 0.9487). d Immunofluorescent staining of GH (green) and Ki-67 (Red). Scale bar: 10 µm. e Reticulin staining of the anterior and posterior pituitaries of WT (+/+) and Ghrhr Gpr101 (+/T) mice (scale bar: 15 µm). f The expression of GH in the pituitary of WT and Ghrhr Gpr101 mice (aged 27 weeks n = 5, p = 0.0079) was quantified by RT-qPCR. GAPDH was used as a control housekeeping gene. g The content of the GH protein was quantified by <t>ELISA</t> and normalized to total protein in pituitary lysates of both males and females of the WT (+/+) and Ghrhr Gpr101 (+/T) genotypes (aged 29 weeks, n = 4, p = 0.0286). h Ex vivo pituitary superfusion analysis. Pituitary glands of WT (+/+) and Ghrhr Gpr101 (+/T) (aged 29 weeks, n = 3 mice) were superfused at 0.1 ml min −1 in superfusion chambers. Effluents were collected every 5 min for GH measurement. GHRH (100 nM) was added to the medium for 15 min and KCl (0.03 M) for 20 min (as it is indicated with arrows). GH secretion was quantified by ELISA at indicated time points. All the experiments were independently repeated three times unless stated otherwise. F Female, M Male. For statistical analysis of all data, a two-sided Mann–Whitney test was used unless stated otherwise. ns not significantly different; * p < 0.05; ** p < 0.01; *** p < 0.001.
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    Journal: Cell

    Article Title: Loss of transient receptor potential channel 5 causes obesity and postpartum depression

    doi: 10.1016/j.cell.2024.06.001

    Figure Lengend Snippet:

    Article Snippet: Prolactin (PRL) Mouse ELISA Kit , ThermoFisher Scientific , Cat #EMPRL.

    Techniques: Virus, Plasmid Preparation, Recombinant, Enzyme-linked Immunosorbent Assay, Software

    a Upper panel: Macroscopic analysis of the pituitary gland from 27-week-old WT (+/+) and Ghrhr Gpr101 (+/T) mice. Lower panel: microscopic visualization of pituitary sections after H&E staining. Scale bar: 150 µm. b High magnification of anterior and posterior pituitaries stained with H&E. Scale bar: 15 µm. c Left panel: Immunohistochemical staining of the anterior pituitary sections with the cell proliferation marker Ki-67 (scale bar: 15 µm). Blue arrows indicate Ki-67-positive nuclei staining. Right panel: quantification of the Ki-67 labeling index in pituitary sections of 27-week-old WT (+/+) and Ghrhr Gpr101 (+/T) mice. The Ki-67 labeling index represents the percentage of positive nuclei stained by anti-Ki-67 antibody. n = 11 independent areas from staining section of WT (+/+) and Ghrhr Gpr101 (+/T) ( n = 4 mice per group, p = 0.9487). d Immunofluorescent staining of GH (green) and Ki-67 (Red). Scale bar: 10 µm. e Reticulin staining of the anterior and posterior pituitaries of WT (+/+) and Ghrhr Gpr101 (+/T) mice (scale bar: 15 µm). f The expression of GH in the pituitary of WT and Ghrhr Gpr101 mice (aged 27 weeks n = 5, p = 0.0079) was quantified by RT-qPCR. GAPDH was used as a control housekeeping gene. g The content of the GH protein was quantified by ELISA and normalized to total protein in pituitary lysates of both males and females of the WT (+/+) and Ghrhr Gpr101 (+/T) genotypes (aged 29 weeks, n = 4, p = 0.0286). h Ex vivo pituitary superfusion analysis. Pituitary glands of WT (+/+) and Ghrhr Gpr101 (+/T) (aged 29 weeks, n = 3 mice) were superfused at 0.1 ml min −1 in superfusion chambers. Effluents were collected every 5 min for GH measurement. GHRH (100 nM) was added to the medium for 15 min and KCl (0.03 M) for 20 min (as it is indicated with arrows). GH secretion was quantified by ELISA at indicated time points. All the experiments were independently repeated three times unless stated otherwise. F Female, M Male. For statistical analysis of all data, a two-sided Mann–Whitney test was used unless stated otherwise. ns not significantly different; * p < 0.05; ** p < 0.01; *** p < 0.001.

    Journal: Nature Communications

    Article Title: GPR101 drives growth hormone hypersecretion and gigantism in mice via constitutive activation of G s and G q/11

    doi: 10.1038/s41467-020-18500-x

    Figure Lengend Snippet: a Upper panel: Macroscopic analysis of the pituitary gland from 27-week-old WT (+/+) and Ghrhr Gpr101 (+/T) mice. Lower panel: microscopic visualization of pituitary sections after H&E staining. Scale bar: 150 µm. b High magnification of anterior and posterior pituitaries stained with H&E. Scale bar: 15 µm. c Left panel: Immunohistochemical staining of the anterior pituitary sections with the cell proliferation marker Ki-67 (scale bar: 15 µm). Blue arrows indicate Ki-67-positive nuclei staining. Right panel: quantification of the Ki-67 labeling index in pituitary sections of 27-week-old WT (+/+) and Ghrhr Gpr101 (+/T) mice. The Ki-67 labeling index represents the percentage of positive nuclei stained by anti-Ki-67 antibody. n = 11 independent areas from staining section of WT (+/+) and Ghrhr Gpr101 (+/T) ( n = 4 mice per group, p = 0.9487). d Immunofluorescent staining of GH (green) and Ki-67 (Red). Scale bar: 10 µm. e Reticulin staining of the anterior and posterior pituitaries of WT (+/+) and Ghrhr Gpr101 (+/T) mice (scale bar: 15 µm). f The expression of GH in the pituitary of WT and Ghrhr Gpr101 mice (aged 27 weeks n = 5, p = 0.0079) was quantified by RT-qPCR. GAPDH was used as a control housekeeping gene. g The content of the GH protein was quantified by ELISA and normalized to total protein in pituitary lysates of both males and females of the WT (+/+) and Ghrhr Gpr101 (+/T) genotypes (aged 29 weeks, n = 4, p = 0.0286). h Ex vivo pituitary superfusion analysis. Pituitary glands of WT (+/+) and Ghrhr Gpr101 (+/T) (aged 29 weeks, n = 3 mice) were superfused at 0.1 ml min −1 in superfusion chambers. Effluents were collected every 5 min for GH measurement. GHRH (100 nM) was added to the medium for 15 min and KCl (0.03 M) for 20 min (as it is indicated with arrows). GH secretion was quantified by ELISA at indicated time points. All the experiments were independently repeated three times unless stated otherwise. F Female, M Male. For statistical analysis of all data, a two-sided Mann–Whitney test was used unless stated otherwise. ns not significantly different; * p < 0.05; ** p < 0.01; *** p < 0.001.

    Article Snippet: Mouse PRL was detected and quantified by using the PRL Mouse ELISA Kit (ThermoFisher Scientific, Cat. No EMPRL).

    Techniques: Staining, Immunohistochemical staining, Marker, Labeling, Expressing, Quantitative RT-PCR, Control, Enzyme-linked Immunosorbent Assay, Ex Vivo, MANN-WHITNEY

    All the experiments presented here were performed on the GH3 pituitary cell line. a Determination of cAMP levels (by ELISA) following transient transfection with MOCK or GPR101 plasmid ( p = 0.0022). b Determination of IP 1 levels (by ELISA) following transient transfection with MOCK or GPR101 plasmid ( p = 0.0006). c Time-dependent (0, 1, 2, and 6H) measurement (by ELISA) of GH secretion in the cell culture supernatant. The cells were transfected with MOCK (dark grey), GPR101 (green), GHSR (orange), or GHRHR (blue) for 24 h, then starved for 3 h. For GHSR and GHRHR, cells were stimulated with their respective ligands (GHS or GHRH, 10 nM). GPR101 and MOCK received a vehicle treatment as control. d GH determination in the cell culture supernatant after 24h-treatment with various siRNAs (G αs , G αq/11 , or G α12/13 ), 24h-transfection with expression plasmids containing receptors (MOCK, GPR101, GHSR, or GHRHR), 3h-starvation and 6h-stimulation with indicated agonists (GHS or GHRH, 10 nM). e GH secretion was determined (by ELISA) in the cell culture supernatant following transfection with GPR101 (or MOCK) and treated with vehicle, H89 (10 µM, p = 0.0286) or Calphostin (10 µM, p = 0.0286). f , g Rat GH mRNA determination by RT-qPCR following transfection with MOCK or GPR101 ( p = 0.0079) ( f ) and treatment with PKA & PKC inhibitors H89 (10 µM, p = 0.0079) and Calphostin (10 µM, p = 0.6905) ( g ), respectively. h Left: Immunoblot for the detection of phosphorylated PKA and PKC in GH3 cells following transfection with MOCK or GPR101. Right: Quantification by densitometry of immunoblots. Normalization was performed compared to total PKA and PKC proteins in cell lysate. Full scans of blots are available in the Source Data file. I , j Quantification by densitometry of immunoblots for PKA and PKC in the presence of GPR101 and different siRNAs. The antiphosphorylated antibody has been normalized to the signal from the antibody against total protein. All data are Mean ± S.D. of n = 8 ( b ), n = 6 ( a , c ), n = 5 ( d , f , g , j ), n = 4 ( e , i ), and n = 3 ( h ) independent experiments. For statistical analysis of all data, a two-sided Mann–Whitney test was used. ns not significantly different; * p < 0.05; ** p < 0.01; *** p < 0.001.

    Journal: Nature Communications

    Article Title: GPR101 drives growth hormone hypersecretion and gigantism in mice via constitutive activation of G s and G q/11

    doi: 10.1038/s41467-020-18500-x

    Figure Lengend Snippet: All the experiments presented here were performed on the GH3 pituitary cell line. a Determination of cAMP levels (by ELISA) following transient transfection with MOCK or GPR101 plasmid ( p = 0.0022). b Determination of IP 1 levels (by ELISA) following transient transfection with MOCK or GPR101 plasmid ( p = 0.0006). c Time-dependent (0, 1, 2, and 6H) measurement (by ELISA) of GH secretion in the cell culture supernatant. The cells were transfected with MOCK (dark grey), GPR101 (green), GHSR (orange), or GHRHR (blue) for 24 h, then starved for 3 h. For GHSR and GHRHR, cells were stimulated with their respective ligands (GHS or GHRH, 10 nM). GPR101 and MOCK received a vehicle treatment as control. d GH determination in the cell culture supernatant after 24h-treatment with various siRNAs (G αs , G αq/11 , or G α12/13 ), 24h-transfection with expression plasmids containing receptors (MOCK, GPR101, GHSR, or GHRHR), 3h-starvation and 6h-stimulation with indicated agonists (GHS or GHRH, 10 nM). e GH secretion was determined (by ELISA) in the cell culture supernatant following transfection with GPR101 (or MOCK) and treated with vehicle, H89 (10 µM, p = 0.0286) or Calphostin (10 µM, p = 0.0286). f , g Rat GH mRNA determination by RT-qPCR following transfection with MOCK or GPR101 ( p = 0.0079) ( f ) and treatment with PKA & PKC inhibitors H89 (10 µM, p = 0.0079) and Calphostin (10 µM, p = 0.6905) ( g ), respectively. h Left: Immunoblot for the detection of phosphorylated PKA and PKC in GH3 cells following transfection with MOCK or GPR101. Right: Quantification by densitometry of immunoblots. Normalization was performed compared to total PKA and PKC proteins in cell lysate. Full scans of blots are available in the Source Data file. I , j Quantification by densitometry of immunoblots for PKA and PKC in the presence of GPR101 and different siRNAs. The antiphosphorylated antibody has been normalized to the signal from the antibody against total protein. All data are Mean ± S.D. of n = 8 ( b ), n = 6 ( a , c ), n = 5 ( d , f , g , j ), n = 4 ( e , i ), and n = 3 ( h ) independent experiments. For statistical analysis of all data, a two-sided Mann–Whitney test was used. ns not significantly different; * p < 0.05; ** p < 0.01; *** p < 0.001.

    Article Snippet: Mouse PRL was detected and quantified by using the PRL Mouse ELISA Kit (ThermoFisher Scientific, Cat. No EMPRL).

    Techniques: Enzyme-linked Immunosorbent Assay, Transfection, Plasmid Preparation, Cell Culture, Control, Expressing, Quantitative RT-PCR, Western Blot, MANN-WHITNEY

    a Proliferation was measured with XTT cell proliferation kit on GH3 cells transiently transfected with increasing amounts (0, 25, 50, and 100 ng) of pcDNA3.1 FLAG-GPR101 plasmid (0 ng vs 25 ng p = 0.8182; vs 50 ng p = 0.5887; vs 100 ng p = 0.6991 ) . b Quantification of proliferation (by using the XTT reagent) of GH3 cells co-transfected with GHRHR and GPR101 (or MOCK) and treated with vehicle or GHRH at final concentration of 10 nM. c Comparison of cAMP levels (measured by ELISA) in GH3 cells transfected with GHRHR (100 ng) in the presence of increasing amounts (0, 25, 50, and 100 ng) of GPR101 plasmids, and treated with vehicle (dark grey) or GHRH (10 nM, orange). d , e GH3 cells transfected with GHRHR (100 ng) and increasing amounts of FLAG-GPR101. The cells were treated with increasing concentration of GHRH. d cAMP levels measured by ELISA and normalized to vehicle condition. e Proliferation measured with XTT assay. f Effect of the siRNA-mediated depletion of different G protein α subunits (G αs , G αq/11 , or G α12/13 ) on GH3 proliferation measured Briefly, GH3 cells were incubated with siRNAs (G αs , G αq/11 , or G α12/13 , at a final concentration of 1 µM) for 24 h, and then transfected with MOCK, GPR101 (NTS vs G αs p = 0.0022), GHRHR (NTS vs G αs p = 0.0022), GPR101+GHRHR (untreated NTS vs G αs p = 0.0286, GHRH-treated NTS vs G αs p = 0.0286) or GHSR (GHS-treated NTS vs G αq/11 p = 0.0065). GHRHR- and GPR101+GHRHR-transfected cells were stimulated with GHRH (10 nM) and GHSR-transfected cells with GHS (10 nM). g Determination of the proliferation of GPR101-transfected GH3 cells treated with vehicle or different pharmacological agents, such as FSK (adenylate cyclase activator, 10 µM), 8-Br-cAMP (PKA activator, 10 µM), and H89 (PKA inhibitor, 10 µM). All data are Mean ± S.D. of n = 6 independent experiments (except for the co-transfection of GHRHR with GPR101 in panel f and for experiments of panels d , e where n = 4). For statistical analysis of all data, a two-sided Mann–Whitney test was used. ns not significantly different; * p < 0.05; ** p < 0.01; *** p < 0.001.

    Journal: Nature Communications

    Article Title: GPR101 drives growth hormone hypersecretion and gigantism in mice via constitutive activation of G s and G q/11

    doi: 10.1038/s41467-020-18500-x

    Figure Lengend Snippet: a Proliferation was measured with XTT cell proliferation kit on GH3 cells transiently transfected with increasing amounts (0, 25, 50, and 100 ng) of pcDNA3.1 FLAG-GPR101 plasmid (0 ng vs 25 ng p = 0.8182; vs 50 ng p = 0.5887; vs 100 ng p = 0.6991 ) . b Quantification of proliferation (by using the XTT reagent) of GH3 cells co-transfected with GHRHR and GPR101 (or MOCK) and treated with vehicle or GHRH at final concentration of 10 nM. c Comparison of cAMP levels (measured by ELISA) in GH3 cells transfected with GHRHR (100 ng) in the presence of increasing amounts (0, 25, 50, and 100 ng) of GPR101 plasmids, and treated with vehicle (dark grey) or GHRH (10 nM, orange). d , e GH3 cells transfected with GHRHR (100 ng) and increasing amounts of FLAG-GPR101. The cells were treated with increasing concentration of GHRH. d cAMP levels measured by ELISA and normalized to vehicle condition. e Proliferation measured with XTT assay. f Effect of the siRNA-mediated depletion of different G protein α subunits (G αs , G αq/11 , or G α12/13 ) on GH3 proliferation measured Briefly, GH3 cells were incubated with siRNAs (G αs , G αq/11 , or G α12/13 , at a final concentration of 1 µM) for 24 h, and then transfected with MOCK, GPR101 (NTS vs G αs p = 0.0022), GHRHR (NTS vs G αs p = 0.0022), GPR101+GHRHR (untreated NTS vs G αs p = 0.0286, GHRH-treated NTS vs G αs p = 0.0286) or GHSR (GHS-treated NTS vs G αq/11 p = 0.0065). GHRHR- and GPR101+GHRHR-transfected cells were stimulated with GHRH (10 nM) and GHSR-transfected cells with GHS (10 nM). g Determination of the proliferation of GPR101-transfected GH3 cells treated with vehicle or different pharmacological agents, such as FSK (adenylate cyclase activator, 10 µM), 8-Br-cAMP (PKA activator, 10 µM), and H89 (PKA inhibitor, 10 µM). All data are Mean ± S.D. of n = 6 independent experiments (except for the co-transfection of GHRHR with GPR101 in panel f and for experiments of panels d , e where n = 4). For statistical analysis of all data, a two-sided Mann–Whitney test was used. ns not significantly different; * p < 0.05; ** p < 0.01; *** p < 0.001.

    Article Snippet: Mouse PRL was detected and quantified by using the PRL Mouse ELISA Kit (ThermoFisher Scientific, Cat. No EMPRL).

    Techniques: Transfection, Plasmid Preparation, Concentration Assay, Comparison, Enzyme-linked Immunosorbent Assay, XTT Assay, Incubation, Cotransfection, MANN-WHITNEY

    a Quantification of IP 1 levels in WT (+/+) and Ghrhr Gpr101 (+/T) pituitaries by ELISA in mice aged 29 weeks ( n = 8 mice per group, p = 0.0005). b Quantification of cAMP levels in WT (+/+) and Ghrhr Gpr101 (+/T) pituitaries by ELISA in mice aged 29 weeks ( n = 4 mice per group, p = 0.0286). c Immunofluorescent staining of Phospho-PKCα (Thr638) (in red) and DAPI (in blue) in pituitaries from 29-week-old WT (+/+) and WT (+/+) mice ( n = 4 mice/group). The results show that the staining for Phospho-PKCα (Thr638) is increased in tg Ghrhr Gpr101 mice compared to WT mice. Scale bar: 10 µm. d , e Illustrative examples of immunofluorescent staining of Phospho-PKCα (Thr638) (in red) and DAPI (in blue) in human GH-secreting pituitary adenomas ( d , in total n = 9 patients) that are either AIP WT (upper panel, n = 6) or AIP mutated (lower panel, n = 3) and illustrative examples of human X-LAG pituitary tumors from two different patients ( e , n = 3 patients). The results show that Phospho-PKC (Thr638) staining in human X-LAG pituitary tumors is elevated. Photos were taken at ×60 magnification. Scale bar: 10 µm. All data are Mean ± S.D. For statistical analysis of all data, a two-sided Mann–Whitney test was used. * p < 0.05; ** p < 0.01; *** p < 0.001.

    Journal: Nature Communications

    Article Title: GPR101 drives growth hormone hypersecretion and gigantism in mice via constitutive activation of G s and G q/11

    doi: 10.1038/s41467-020-18500-x

    Figure Lengend Snippet: a Quantification of IP 1 levels in WT (+/+) and Ghrhr Gpr101 (+/T) pituitaries by ELISA in mice aged 29 weeks ( n = 8 mice per group, p = 0.0005). b Quantification of cAMP levels in WT (+/+) and Ghrhr Gpr101 (+/T) pituitaries by ELISA in mice aged 29 weeks ( n = 4 mice per group, p = 0.0286). c Immunofluorescent staining of Phospho-PKCα (Thr638) (in red) and DAPI (in blue) in pituitaries from 29-week-old WT (+/+) and WT (+/+) mice ( n = 4 mice/group). The results show that the staining for Phospho-PKCα (Thr638) is increased in tg Ghrhr Gpr101 mice compared to WT mice. Scale bar: 10 µm. d , e Illustrative examples of immunofluorescent staining of Phospho-PKCα (Thr638) (in red) and DAPI (in blue) in human GH-secreting pituitary adenomas ( d , in total n = 9 patients) that are either AIP WT (upper panel, n = 6) or AIP mutated (lower panel, n = 3) and illustrative examples of human X-LAG pituitary tumors from two different patients ( e , n = 3 patients). The results show that Phospho-PKC (Thr638) staining in human X-LAG pituitary tumors is elevated. Photos were taken at ×60 magnification. Scale bar: 10 µm. All data are Mean ± S.D. For statistical analysis of all data, a two-sided Mann–Whitney test was used. * p < 0.05; ** p < 0.01; *** p < 0.001.

    Article Snippet: Mouse PRL was detected and quantified by using the PRL Mouse ELISA Kit (ThermoFisher Scientific, Cat. No EMPRL).

    Techniques: Enzyme-linked Immunosorbent Assay, Staining, MANN-WHITNEY

    Journal: Cell

    Article Title: A Neuro-hormonal Circuit for Paternal Behavior Controlled by a Hypothalamic Network Oscillation

    doi: 10.1016/j.cell.2020.07.007

    Figure Lengend Snippet:

    Article Snippet: Mouse Prl ELISA kit , ThermoFisher , Cat# EMPRL.

    Techniques: Plasmid Preparation, Virus, Recombinant, Saline, Enzyme-linked Immunosorbent Assay, Competitive ELISA, Software