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mouse monoclonal anti lim3 lhx3  (Developmental Studies Hybridoma Bank)


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    Structured Review

    Developmental Studies Hybridoma Bank mouse monoclonal anti lim3 lhx3

    Mouse Monoclonal Anti Lim3 Lhx3, supplied by Developmental Studies Hybridoma Bank, used in various techniques. Bioz Stars score: 94/100, based on 25 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/mouse+anti+lim3/pmc11995121-12-0-4?v=Developmental+Studies+Hybridoma+Bank
    Average 94 stars, based on 25 article reviews
    mouse monoclonal anti lim3 lhx3 - by Bioz Stars, 2026-08
    94/100 stars

    Images

    1) Product Images from "The Iroquois ( Iro/Irx ) homeobox genes are conserved Hox targets involved in motor neuron development"

    Article Title: The Iroquois ( Iro/Irx ) homeobox genes are conserved Hox targets involved in motor neuron development

    Journal: iScience

    doi: 10.1016/j.isci.2025.112210


    Figure Legend Snippet:

    Techniques Used: Virus, Recombinant, Blocking Assay, Electron Microscopy, Saline, Software, Transgenic Assay



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    Developmental Studies Hybridoma Bank mouse monoclonal anti lim3 lhx3

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    Developmental Studies Hybridoma Bank anti human lhx3 mouse monoclonal
    ( A ) Culture protocol and outline to generate pituitary organoids in three-dimensional (3D) culture from human induced pluripotent stem cell (hiPSC). Organoids were collected at days ( d ) 0, 6, 18, 27, 48, 75, and 105 during differentiation to analyze. ( B ) Brightfield microscopy views of WT organoid examples at different time points throughout differentiation. Scale bars are indicated in each image. ( C ) Number of replicates per time point and per genotype in experiments depicted in the following graphs. Asterisks indicate that 7–8 organoids were grouped for each sample. For other points, each sample consists of a single organoid. ( D–H ) Relative quantification (RQ) mRNA expression analysis for key markers of pituitary organoids during differentiation: WT (in black line) and TBX19 KI organoids (in red line). Relative quantification of each target gene was obtained by the 2 -ΔΔCt method from qRT-PCR results (see Methods). Data show means ± standard error of the mean (SEM, Mann-Whitney t-test [unpaired, two-tailed, nonparametric]). p<0.05 (*), p<0.01 (**). ( D ) Relative quantification of HESX1 expression, the earliest pituitary placode marker assessed. The expression of HESX1 is significantly downregulated in TBX19 KI organoids vs. WT at d18 and d27. ( E ) Relative quantification expression of PITX1 , a pituitary progenitor marker. PITX1 was significantly downregulated in TBX19 KI organoids by d48 and d75. ( F ) Relative quantification expression of <t>LHX3</t> , a pituitary progenitor marker. LHX3 was significantly lower in TBX19 KI organoids as compared to WT from d48 onwards. ( G ) Relative quantification expression of TBX19 , a critical transcriptional determinant for corticotroph differentiation. TBX19 expression is higher in TBX19 KI organoids at d105. ( H ) Relative quantification expression of pro-opiomelanocortin ( POMC) , a corticotroph marker. POMC was significantly downregulated in TBX19 KI organoids from d48 onwards.
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    Developmental Studies Hybridoma Bank e12 mouse
    ( A ) Culture protocol and outline to generate pituitary organoids in three-dimensional (3D) culture from human induced pluripotent stem cell (hiPSC). Organoids were collected at days ( d ) 0, 6, 18, 27, 48, 75, and 105 during differentiation to analyze. ( B ) Brightfield microscopy views of WT organoid examples at different time points throughout differentiation. Scale bars are indicated in each image. ( C ) Number of replicates per time point and per genotype in experiments depicted in the following graphs. Asterisks indicate that 7–8 organoids were grouped for each sample. For other points, each sample consists of a single organoid. ( D–H ) Relative quantification (RQ) mRNA expression analysis for key markers of pituitary organoids during differentiation: WT (in black line) and TBX19 KI organoids (in red line). Relative quantification of each target gene was obtained by the 2 -ΔΔCt method from qRT-PCR results (see Methods). Data show means ± standard error of the mean (SEM, Mann-Whitney t-test [unpaired, two-tailed, nonparametric]). p<0.05 (*), p<0.01 (**). ( D ) Relative quantification of HESX1 expression, the earliest pituitary placode marker assessed. The expression of HESX1 is significantly downregulated in TBX19 KI organoids vs. WT at d18 and d27. ( E ) Relative quantification expression of PITX1 , a pituitary progenitor marker. PITX1 was significantly downregulated in TBX19 KI organoids by d48 and d75. ( F ) Relative quantification expression of <t>LHX3</t> , a pituitary progenitor marker. LHX3 was significantly lower in TBX19 KI organoids as compared to WT from d48 onwards. ( G ) Relative quantification expression of TBX19 , a critical transcriptional determinant for corticotroph differentiation. TBX19 expression is higher in TBX19 KI organoids at d105. ( H ) Relative quantification expression of pro-opiomelanocortin ( POMC) , a corticotroph marker. POMC was significantly downregulated in TBX19 KI organoids from d48 onwards.
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    Developmental Studies Hybridoma Bank mouse anti lhx3 lim3
    ( A ) Culture protocol and outline to generate pituitary organoids in three-dimensional (3D) culture from human induced pluripotent stem cell (hiPSC). Organoids were collected at days ( d ) 0, 6, 18, 27, 48, 75, and 105 during differentiation to analyze. ( B ) Brightfield microscopy views of WT organoid examples at different time points throughout differentiation. Scale bars are indicated in each image. ( C ) Number of replicates per time point and per genotype in experiments depicted in the following graphs. Asterisks indicate that 7–8 organoids were grouped for each sample. For other points, each sample consists of a single organoid. ( D–H ) Relative quantification (RQ) mRNA expression analysis for key markers of pituitary organoids during differentiation: WT (in black line) and TBX19 KI organoids (in red line). Relative quantification of each target gene was obtained by the 2 -ΔΔCt method from qRT-PCR results (see Methods). Data show means ± standard error of the mean (SEM, Mann-Whitney t-test [unpaired, two-tailed, nonparametric]). p<0.05 (*), p<0.01 (**). ( D ) Relative quantification of HESX1 expression, the earliest pituitary placode marker assessed. The expression of HESX1 is significantly downregulated in TBX19 KI organoids vs. WT at d18 and d27. ( E ) Relative quantification expression of PITX1 , a pituitary progenitor marker. PITX1 was significantly downregulated in TBX19 KI organoids by d48 and d75. ( F ) Relative quantification expression of <t>LHX3</t> , a pituitary progenitor marker. LHX3 was significantly lower in TBX19 KI organoids as compared to WT from d48 onwards. ( G ) Relative quantification expression of TBX19 , a critical transcriptional determinant for corticotroph differentiation. TBX19 expression is higher in TBX19 KI organoids at d105. ( H ) Relative quantification expression of pro-opiomelanocortin ( POMC) , a corticotroph marker. POMC was significantly downregulated in TBX19 KI organoids from d48 onwards.
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    Developmental Studies Hybridoma Bank mouse anti lhx3
    ( A ) Culture protocol and outline to generate pituitary organoids in three-dimensional (3D) culture from human induced pluripotent stem cell (hiPSC). Organoids were collected at days ( d ) 0, 6, 18, 27, 48, 75, and 105 during differentiation to analyze. ( B ) Brightfield microscopy views of WT organoid examples at different time points throughout differentiation. Scale bars are indicated in each image. ( C ) Number of replicates per time point and per genotype in experiments depicted in the following graphs. Asterisks indicate that 7–8 organoids were grouped for each sample. For other points, each sample consists of a single organoid. ( D–H ) Relative quantification (RQ) mRNA expression analysis for key markers of pituitary organoids during differentiation: WT (in black line) and TBX19 KI organoids (in red line). Relative quantification of each target gene was obtained by the 2 -ΔΔCt method from qRT-PCR results (see Methods). Data show means ± standard error of the mean (SEM, Mann-Whitney t-test [unpaired, two-tailed, nonparametric]). p<0.05 (*), p<0.01 (**). ( D ) Relative quantification of HESX1 expression, the earliest pituitary placode marker assessed. The expression of HESX1 is significantly downregulated in TBX19 KI organoids vs. WT at d18 and d27. ( E ) Relative quantification expression of PITX1 , a pituitary progenitor marker. PITX1 was significantly downregulated in TBX19 KI organoids by d48 and d75. ( F ) Relative quantification expression of <t>LHX3</t> , a pituitary progenitor marker. LHX3 was significantly lower in TBX19 KI organoids as compared to WT from d48 onwards. ( G ) Relative quantification expression of TBX19 , a critical transcriptional determinant for corticotroph differentiation. TBX19 expression is higher in TBX19 KI organoids at d105. ( H ) Relative quantification expression of pro-opiomelanocortin ( POMC) , a corticotroph marker. POMC was significantly downregulated in TBX19 KI organoids from d48 onwards.
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    Developmental Studies Hybridoma Bank mouse 67 4 e12 dshb otx2
    ( A ) Culture protocol and outline to generate pituitary organoids in three-dimensional (3D) culture from human induced pluripotent stem cell (hiPSC). Organoids were collected at days ( d ) 0, 6, 18, 27, 48, 75, and 105 during differentiation to analyze. ( B ) Brightfield microscopy views of WT organoid examples at different time points throughout differentiation. Scale bars are indicated in each image. ( C ) Number of replicates per time point and per genotype in experiments depicted in the following graphs. Asterisks indicate that 7–8 organoids were grouped for each sample. For other points, each sample consists of a single organoid. ( D–H ) Relative quantification (RQ) mRNA expression analysis for key markers of pituitary organoids during differentiation: WT (in black line) and TBX19 KI organoids (in red line). Relative quantification of each target gene was obtained by the 2 -ΔΔCt method from qRT-PCR results (see Methods). Data show means ± standard error of the mean (SEM, Mann-Whitney t-test [unpaired, two-tailed, nonparametric]). p<0.05 (*), p<0.01 (**). ( D ) Relative quantification of HESX1 expression, the earliest pituitary placode marker assessed. The expression of HESX1 is significantly downregulated in TBX19 KI organoids vs. WT at d18 and d27. ( E ) Relative quantification expression of PITX1 , a pituitary progenitor marker. PITX1 was significantly downregulated in TBX19 KI organoids by d48 and d75. ( F ) Relative quantification expression of <t>LHX3</t> , a pituitary progenitor marker. LHX3 was significantly lower in TBX19 KI organoids as compared to WT from d48 onwards. ( G ) Relative quantification expression of TBX19 , a critical transcriptional determinant for corticotroph differentiation. TBX19 expression is higher in TBX19 KI organoids at d105. ( H ) Relative quantification expression of pro-opiomelanocortin ( POMC) , a corticotroph marker. POMC was significantly downregulated in TBX19 KI organoids from d48 onwards.
    Mouse 67 4 E12 Dshb Otx2, supplied by Developmental Studies Hybridoma Bank, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Image Search Results


    Journal: iScience

    Article Title: The Iroquois ( Iro/Irx ) homeobox genes are conserved Hox targets involved in motor neuron development

    doi: 10.1016/j.isci.2025.112210

    Figure Lengend Snippet:

    Article Snippet: Mouse monoclonal anti-Lim3/Lhx3 , Developmental Studies Hybridoma Bank , Cat#67.4E12; RRID: AB_2135805.

    Techniques: Virus, Recombinant, Blocking Assay, Electron Microscopy, Saline, Software, Transgenic Assay

    ( A ) Culture protocol and outline to generate pituitary organoids in three-dimensional (3D) culture from human induced pluripotent stem cell (hiPSC). Organoids were collected at days ( d ) 0, 6, 18, 27, 48, 75, and 105 during differentiation to analyze. ( B ) Brightfield microscopy views of WT organoid examples at different time points throughout differentiation. Scale bars are indicated in each image. ( C ) Number of replicates per time point and per genotype in experiments depicted in the following graphs. Asterisks indicate that 7–8 organoids were grouped for each sample. For other points, each sample consists of a single organoid. ( D–H ) Relative quantification (RQ) mRNA expression analysis for key markers of pituitary organoids during differentiation: WT (in black line) and TBX19 KI organoids (in red line). Relative quantification of each target gene was obtained by the 2 -ΔΔCt method from qRT-PCR results (see Methods). Data show means ± standard error of the mean (SEM, Mann-Whitney t-test [unpaired, two-tailed, nonparametric]). p<0.05 (*), p<0.01 (**). ( D ) Relative quantification of HESX1 expression, the earliest pituitary placode marker assessed. The expression of HESX1 is significantly downregulated in TBX19 KI organoids vs. WT at d18 and d27. ( E ) Relative quantification expression of PITX1 , a pituitary progenitor marker. PITX1 was significantly downregulated in TBX19 KI organoids by d48 and d75. ( F ) Relative quantification expression of LHX3 , a pituitary progenitor marker. LHX3 was significantly lower in TBX19 KI organoids as compared to WT from d48 onwards. ( G ) Relative quantification expression of TBX19 , a critical transcriptional determinant for corticotroph differentiation. TBX19 expression is higher in TBX19 KI organoids at d105. ( H ) Relative quantification expression of pro-opiomelanocortin ( POMC) , a corticotroph marker. POMC was significantly downregulated in TBX19 KI organoids from d48 onwards.

    Journal: eLife

    Article Title: Modeling corticotroph deficiency with pituitary organoids supports the functional role of NFKB2 in human pituitary differentiation

    doi: 10.7554/eLife.90875

    Figure Lengend Snippet: ( A ) Culture protocol and outline to generate pituitary organoids in three-dimensional (3D) culture from human induced pluripotent stem cell (hiPSC). Organoids were collected at days ( d ) 0, 6, 18, 27, 48, 75, and 105 during differentiation to analyze. ( B ) Brightfield microscopy views of WT organoid examples at different time points throughout differentiation. Scale bars are indicated in each image. ( C ) Number of replicates per time point and per genotype in experiments depicted in the following graphs. Asterisks indicate that 7–8 organoids were grouped for each sample. For other points, each sample consists of a single organoid. ( D–H ) Relative quantification (RQ) mRNA expression analysis for key markers of pituitary organoids during differentiation: WT (in black line) and TBX19 KI organoids (in red line). Relative quantification of each target gene was obtained by the 2 -ΔΔCt method from qRT-PCR results (see Methods). Data show means ± standard error of the mean (SEM, Mann-Whitney t-test [unpaired, two-tailed, nonparametric]). p<0.05 (*), p<0.01 (**). ( D ) Relative quantification of HESX1 expression, the earliest pituitary placode marker assessed. The expression of HESX1 is significantly downregulated in TBX19 KI organoids vs. WT at d18 and d27. ( E ) Relative quantification expression of PITX1 , a pituitary progenitor marker. PITX1 was significantly downregulated in TBX19 KI organoids by d48 and d75. ( F ) Relative quantification expression of LHX3 , a pituitary progenitor marker. LHX3 was significantly lower in TBX19 KI organoids as compared to WT from d48 onwards. ( G ) Relative quantification expression of TBX19 , a critical transcriptional determinant for corticotroph differentiation. TBX19 expression is higher in TBX19 KI organoids at d105. ( H ) Relative quantification expression of pro-opiomelanocortin ( POMC) , a corticotroph marker. POMC was significantly downregulated in TBX19 KI organoids from d48 onwards.

    Article Snippet: Antibody , Anti-human LHX3 Mouse monoclonal , DSHB , 67.4E12 RRID: AB_2135805 , (1/500).

    Techniques: Microscopy, Quantitative Proteomics, Expressing, Quantitative RT-PCR, MANN-WHITNEY, Two Tailed Test, Marker

    ( A–C ) Induction of two tissues hypothalamus-pituitary in organoid on day 48. ( A ) Oral ectoderm-like tissue expressed pituitary progenitor markers (LHX3). ( B ) Hypothalamus-like tissue expressed hypothalamic progenitor markers (NKX2.1). ( C ) Oral ectoderm-like tissue expressed PITX1 and E-cadherin. ( D ) Corticotroph cells expressed TBX19 in the nucleus and adrenocorticotropic hormone (ACTH) in the cytoplasm in organoid on day 105. Scale bars: 50 µm.

    Journal: eLife

    Article Title: Modeling corticotroph deficiency with pituitary organoids supports the functional role of NFKB2 in human pituitary differentiation

    doi: 10.7554/eLife.90875

    Figure Lengend Snippet: ( A–C ) Induction of two tissues hypothalamus-pituitary in organoid on day 48. ( A ) Oral ectoderm-like tissue expressed pituitary progenitor markers (LHX3). ( B ) Hypothalamus-like tissue expressed hypothalamic progenitor markers (NKX2.1). ( C ) Oral ectoderm-like tissue expressed PITX1 and E-cadherin. ( D ) Corticotroph cells expressed TBX19 in the nucleus and adrenocorticotropic hormone (ACTH) in the cytoplasm in organoid on day 105. Scale bars: 50 µm.

    Article Snippet: Antibody , Anti-human LHX3 Mouse monoclonal , DSHB , 67.4E12 RRID: AB_2135805 , (1/500).

    Techniques:

    ( A, B ) Immunostaining of LHX3 and CDH1 (E-cadherin) expression in epithelial cells, typical of Rathke’s pouch ectoderm in early pituitary primordia, was reduced in TBX19 KI organoid vs wild-type (WT) on day 48 (n=10 organoids for each group). Scale bars: 10 μm. ( C, D ) Immunostaining showed that adrenocorticotropic hormone (ACTH) and TBX19 expressions were reduced in TBX19 KI organoid vs WT on day 105 (n=10 organoids for each group). Scale bars: 10 μm.

    Journal: eLife

    Article Title: Modeling corticotroph deficiency with pituitary organoids supports the functional role of NFKB2 in human pituitary differentiation

    doi: 10.7554/eLife.90875

    Figure Lengend Snippet: ( A, B ) Immunostaining of LHX3 and CDH1 (E-cadherin) expression in epithelial cells, typical of Rathke’s pouch ectoderm in early pituitary primordia, was reduced in TBX19 KI organoid vs wild-type (WT) on day 48 (n=10 organoids for each group). Scale bars: 10 μm. ( C, D ) Immunostaining showed that adrenocorticotropic hormone (ACTH) and TBX19 expressions were reduced in TBX19 KI organoid vs WT on day 105 (n=10 organoids for each group). Scale bars: 10 μm.

    Article Snippet: Antibody , Anti-human LHX3 Mouse monoclonal , DSHB , 67.4E12 RRID: AB_2135805 , (1/500).

    Techniques: Immunostaining, Expressing

    ( A ) Number of replicates per time point and per genotype in experiments depicted in the following graphs. Asterisks indicate that 7–8 organoids were grouped for each sample. For other point, each sample consists of a single organoid. ( B–F ) Relative quantification (RQ) mRNA expression analysis for key markers of pituitary organoids during differentiation: WT (black line and dots) and NFKB2 KI organoids (red line and dots). Data show means ± standard error of the mean (SEM);. Mann-Whitney t-test (unpaired, two-tailed, nonparametric). p<0.05 (*), p<0.01 (**). ( B ) Relative quantification expression of HESX1 , the earliest pituitary placode marker assessed. The expression of HESX1 was upregulated in NFKB2 KI organoids vs. WT between d27 and d75. ( C ) Pituitary progenitor marker PITX1 was significantly downregulated in NFKB2 KI organoids at d48 and d75. ( D ) Pituitary progenitor marker LHX3 was significantly lower in NFKB2 KI organoids as compared to WT from d48 onwards. ( E ) Relative quantification expression of TBX19 , a corticotroph marker. TBX19 was significantly increased in NFKB2 KI organoids by d105. ( F ) Relative quantification expression of pro-opiomelanocortin ( POMC) , a corticotroph marker. POMC was significantly downregulated in NFKB2 KI organoids from d75. ( G ) Volume of organoids (mm 3 ) on d105, calculated using Imaris software (see in methods). There was no significant difference in volume between WT and NFKB2 KI organoids (p=0.6126). Data show means ± SEM; n=7 in the WT group, n=8 in the mutant group. Mann-Whitney test (unpaired, two-tailed).

    Journal: eLife

    Article Title: Modeling corticotroph deficiency with pituitary organoids supports the functional role of NFKB2 in human pituitary differentiation

    doi: 10.7554/eLife.90875

    Figure Lengend Snippet: ( A ) Number of replicates per time point and per genotype in experiments depicted in the following graphs. Asterisks indicate that 7–8 organoids were grouped for each sample. For other point, each sample consists of a single organoid. ( B–F ) Relative quantification (RQ) mRNA expression analysis for key markers of pituitary organoids during differentiation: WT (black line and dots) and NFKB2 KI organoids (red line and dots). Data show means ± standard error of the mean (SEM);. Mann-Whitney t-test (unpaired, two-tailed, nonparametric). p<0.05 (*), p<0.01 (**). ( B ) Relative quantification expression of HESX1 , the earliest pituitary placode marker assessed. The expression of HESX1 was upregulated in NFKB2 KI organoids vs. WT between d27 and d75. ( C ) Pituitary progenitor marker PITX1 was significantly downregulated in NFKB2 KI organoids at d48 and d75. ( D ) Pituitary progenitor marker LHX3 was significantly lower in NFKB2 KI organoids as compared to WT from d48 onwards. ( E ) Relative quantification expression of TBX19 , a corticotroph marker. TBX19 was significantly increased in NFKB2 KI organoids by d105. ( F ) Relative quantification expression of pro-opiomelanocortin ( POMC) , a corticotroph marker. POMC was significantly downregulated in NFKB2 KI organoids from d75. ( G ) Volume of organoids (mm 3 ) on d105, calculated using Imaris software (see in methods). There was no significant difference in volume between WT and NFKB2 KI organoids (p=0.6126). Data show means ± SEM; n=7 in the WT group, n=8 in the mutant group. Mann-Whitney test (unpaired, two-tailed).

    Article Snippet: Antibody , Anti-human LHX3 Mouse monoclonal , DSHB , 67.4E12 RRID: AB_2135805 , (1/500).

    Techniques: Quantitative Proteomics, Expressing, MANN-WHITNEY, Two Tailed Test, Marker, Software, Mutagenesis

    ( A, B ) Immunostaining for LHX3 (green) and p100/p52 (red) in the early pituitary-type epithelium was reduced in NFKB2 KI organoids vs wild-type (WT) on day 48 (n=10 organoids for each group). Stronger expression of p100/p52 was observed in pituitary progenitors, but expression in the hypothalamic part of the organoid cannot be excluded. Scale bar: 10 μm ( C, D ) by day 105, although nuclear TBX19 was detectable in both mutants, these cells failed to co-express ACTH in NFKB2 KI organoids (n=10 organoids for each group). Scale bars: 10 μm.

    Journal: eLife

    Article Title: Modeling corticotroph deficiency with pituitary organoids supports the functional role of NFKB2 in human pituitary differentiation

    doi: 10.7554/eLife.90875

    Figure Lengend Snippet: ( A, B ) Immunostaining for LHX3 (green) and p100/p52 (red) in the early pituitary-type epithelium was reduced in NFKB2 KI organoids vs wild-type (WT) on day 48 (n=10 organoids for each group). Stronger expression of p100/p52 was observed in pituitary progenitors, but expression in the hypothalamic part of the organoid cannot be excluded. Scale bar: 10 μm ( C, D ) by day 105, although nuclear TBX19 was detectable in both mutants, these cells failed to co-express ACTH in NFKB2 KI organoids (n=10 organoids for each group). Scale bars: 10 μm.

    Article Snippet: Antibody , Anti-human LHX3 Mouse monoclonal , DSHB , 67.4E12 RRID: AB_2135805 , (1/500).

    Techniques: Immunostaining, Expressing

    RNA-seq expression data for a list of 144 genes known from the literature to have a functional influence on pituitary-hypothalamic development. Differentially expressed genes (padj <0.05) in nuclear factor kappa-B subunit 2 ( NFKB2) KI organoids are highlighted in green when upregulated and in orange when downregulated. FC; Fold change.

    Journal: eLife

    Article Title: Modeling corticotroph deficiency with pituitary organoids supports the functional role of NFKB2 in human pituitary differentiation

    doi: 10.7554/eLife.90875

    Figure Lengend Snippet: RNA-seq expression data for a list of 144 genes known from the literature to have a functional influence on pituitary-hypothalamic development. Differentially expressed genes (padj <0.05) in nuclear factor kappa-B subunit 2 ( NFKB2) KI organoids are highlighted in green when upregulated and in orange when downregulated. FC; Fold change.

    Article Snippet: Antibody , Anti-human LHX3 Mouse monoclonal , DSHB , 67.4E12 RRID: AB_2135805 , (1/500).

    Techniques: Expressing, Functional Assay

    ( A ) RT-qPCR experiments at d48 show that HESX1 expression is upregulated NFKB2 KI organoids, compared to wild-type (WT) and TBX19 KI, whereas PITX1 and LHX3 are downregulated in both mutants. ( B ) BMP4 expression is increased whereas, and FGF8 and FGF10 are decreased in NFKB2 mutants, but unchanged in TBX19 KI organoids. Data show means ± SEM ; n=17, 12, and 11 for WT, TBX19 KI, and NFKB2 KI, respectively. Mann-Whitney t-test (unpaired, two-tailed, nonparametric). p<0.05 (*), p<0.01 (**), p<0.005 (***),.

    Journal: eLife

    Article Title: Modeling corticotroph deficiency with pituitary organoids supports the functional role of NFKB2 in human pituitary differentiation

    doi: 10.7554/eLife.90875

    Figure Lengend Snippet: ( A ) RT-qPCR experiments at d48 show that HESX1 expression is upregulated NFKB2 KI organoids, compared to wild-type (WT) and TBX19 KI, whereas PITX1 and LHX3 are downregulated in both mutants. ( B ) BMP4 expression is increased whereas, and FGF8 and FGF10 are decreased in NFKB2 mutants, but unchanged in TBX19 KI organoids. Data show means ± SEM ; n=17, 12, and 11 for WT, TBX19 KI, and NFKB2 KI, respectively. Mann-Whitney t-test (unpaired, two-tailed, nonparametric). p<0.05 (*), p<0.01 (**), p<0.005 (***),.

    Article Snippet: Antibody , Anti-human LHX3 Mouse monoclonal , DSHB , 67.4E12 RRID: AB_2135805 , (1/500).

    Techniques: Quantitative RT-PCR, Expressing, MANN-WHITNEY, Two Tailed Test

    Journal: eLife

    Article Title: Modeling corticotroph deficiency with pituitary organoids supports the functional role of NFKB2 in human pituitary differentiation

    doi: 10.7554/eLife.90875

    Figure Lengend Snippet:

    Article Snippet: Antibody , Anti-human LHX3 Mouse monoclonal , DSHB , 67.4E12 RRID: AB_2135805 , (1/500).

    Techniques: Cell Culture, Knock-Out, Recombinant, Sequencing, CRISPR