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bmp4  (MedChemExpress)


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    Structured Review

    MedChemExpress bmp4
    Bmp4, supplied by MedChemExpress, used in various techniques. Bioz Stars score: 95/100, based on 8 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/human+bmp4/BMP-4%2C+Human/med_rxiv__64898__2026__04__07__26350283-152-23-24
    Average 95 stars, based on 8 article reviews
    bmp4 - by Bioz Stars, 2026-09
    95/100 stars

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    Related Articles

    Recombinant:

    Article Title: POSTN + fibroblast-secreted small extracellular vesicles drive macrophage M2 polarization through BMP4/BMPR2/Smad signaling
    Article Snippet: The human monocytic leukemia cell line THP-1 was grown in a T25 culture flask supplemented with RPMI 1640 medium(Gibco; Thermo Fisher Scientific, Inc.) containing 50 ng/ml of phorbol 12-myristate 13-acetate (PMA; cat. no. P8139; Sigma-Aldrich; Merck KGaA) for 48 h. Then, they were maintained in fresh RPMI 1640 culture medium for 24 h to stabilize their growth. .. To confirm that BMP4 promotes macrophage polarization toward the M2 phenotype, THP-1 (2×10 6 cells) were seeded in 6-well plates and differentiated into macrophages using 50 ng/ml PMA for 48 h. After stabilization, macrophages were assigned to different groups and then either left unstimulated or stimulated for an additional 48 h with recombinant human BMP4 (50 or 100 ng/ml; cat. no. HY-P7007; MedChemExpress). .. Macrophages were stained with FITC anti-human CD163 antibody (cat. no. 333617; 1:50; Biolegend Inc.) and FITC anti-human CD206 antibody (cat. no. 321103; 1:50; Biolegend Inc.) at 4°C for 15 min and then centrifugation 1,000 × g at 4°C for 5 min. Pellets were resuspended in 1 ml PBS and analyzed the expression of M2 macrophage polarization biomarkers (CD163 and CD206) was then analyzed by Flow cytometry (NovoCyte 2040R; ACEA Biosciences) equipped with NovoExpress software (version 1.6.3; http://explore.agilent.com/ACEA-joins-Agilent ).

    Concentration Assay:

    Article Title: CRB1 mutations cause structural and molecular defects in patient-derived retinal pigment epithelium cells.
    Article Snippet: Mutations in the CRB1 gene can cause retinitis pigmentosa (RP), Leber con22 genital amaurosis, and other retinopathies, with retinal pigment epithelium (RPE) being 23 a primary affected cell type.. However, the effects of CRB1 variants on RPE cells remain 24 poorly defined.. Here, for the first time, we report an in vitro model of patient-specific 25 RPE cells carrying the CRB1 mutations (c.2249G>A and c.2809G>A) to study CRB126 associated RP disease.



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    Miltenyi Biotec bmp4
    Signaling factors required for generation of human ARC in vitro (A) Hypothalamic development in vivo and in vitro differentiation of hPSC into hypothalamic cells. (B) Principal-component analysis (PCA) of day 16 RT-qPCR data (RC17), clustering according to ARC- and PVN-associated genes. Each dot represents one differentiation batch ( n = 113). (C) Estimated marginal means assessing the effect of factors on PC1, adjusted for covariates. (D) ICC/ISH at days 16 and 50 for ARC protocol with or without <t>BMP4.</t> Scale bars: 100 μm. (E) ARC differentiation protocol and maturation options. (F–H) ICC of day 50 in 2D (F) and 3D (G and H), scale bars: 50 and 100 μm. (I) Quantification of day 50 3D spheroids (AGRP: n = 14, 4.53% ± 0.69%, mean ± SEM; αMSH: n = 6, 5.90% ± 1.19%). (J) Xenotransplantation of day 16 ARC progenitors into nude rats. (J′) Top: ICC for human neural cell adhesion molecule (NCAM) highlights graft site, scale bar: 2 mm. Bottom: IF for human nuclear antigen (HuNu), scale bar: 200 μm. (K–Q) IF for ARC neuronal markers in grafts. Scale bars: 100 μm (K and O), 50 μm (N), 25 μm (L, M, P, and Q).
    Bmp4, supplied by Miltenyi Biotec, 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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    Signaling factors required for generation of human ARC in vitro (A) Hypothalamic development in vivo and in vitro differentiation of hPSC into hypothalamic cells. (B) Principal-component analysis (PCA) of day 16 RT-qPCR data (RC17), clustering according to ARC- and PVN-associated genes. Each dot represents one differentiation batch ( n = 113). (C) Estimated marginal means assessing the effect of factors on PC1, adjusted for covariates. (D) ICC/ISH at days 16 and 50 for ARC protocol with or without <t>BMP4.</t> Scale bars: 100 μm. (E) ARC differentiation protocol and maturation options. (F–H) ICC of day 50 in 2D (F) and 3D (G and H), scale bars: 50 and 100 μm. (I) Quantification of day 50 3D spheroids (AGRP: n = 14, 4.53% ± 0.69%, mean ± SEM; αMSH: n = 6, 5.90% ± 1.19%). (J) Xenotransplantation of day 16 ARC progenitors into nude rats. (J′) Top: ICC for human neural cell adhesion molecule (NCAM) highlights graft site, scale bar: 2 mm. Bottom: IF for human nuclear antigen (HuNu), scale bar: 200 μm. (K–Q) IF for ARC neuronal markers in grafts. Scale bars: 100 μm (K and O), 50 μm (N), 25 μm (L, M, P, and Q).
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    Signaling factors required for generation of human ARC in vitro (A) Hypothalamic development in vivo and in vitro differentiation of hPSC into hypothalamic cells. (B) Principal-component analysis (PCA) of day 16 RT-qPCR data (RC17), clustering according to ARC- and PVN-associated genes. Each dot represents one differentiation batch ( n = 113). (C) Estimated marginal means assessing the effect of factors on PC1, adjusted for covariates. (D) ICC/ISH at days 16 and 50 for ARC protocol with or without <t>BMP4.</t> Scale bars: 100 μm. (E) ARC differentiation protocol and maturation options. (F–H) ICC of day 50 in 2D (F) and 3D (G and H), scale bars: 50 and 100 μm. (I) Quantification of day 50 3D spheroids (AGRP: n = 14, 4.53% ± 0.69%, mean ± SEM; αMSH: n = 6, 5.90% ± 1.19%). (J) Xenotransplantation of day 16 ARC progenitors into nude rats. (J′) Top: ICC for human neural cell adhesion molecule (NCAM) highlights graft site, scale bar: 2 mm. Bottom: IF for human nuclear antigen (HuNu), scale bar: 200 μm. (K–Q) IF for ARC neuronal markers in grafts. Scale bars: 100 μm (K and O), 50 μm (N), 25 μm (L, M, P, and Q).
    Recombinant Human Bmp4, supplied by R&D Systems, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    R&D Systems bmp4
    Signaling factors required for generation of human ARC in vitro (A) Hypothalamic development in vivo and in vitro differentiation of hPSC into hypothalamic cells. (B) Principal-component analysis (PCA) of day 16 RT-qPCR data (RC17), clustering according to ARC- and PVN-associated genes. Each dot represents one differentiation batch ( n = 113). (C) Estimated marginal means assessing the effect of factors on PC1, adjusted for covariates. (D) ICC/ISH at days 16 and 50 for ARC protocol with or without <t>BMP4.</t> Scale bars: 100 μm. (E) ARC differentiation protocol and maturation options. (F–H) ICC of day 50 in 2D (F) and 3D (G and H), scale bars: 50 and 100 μm. (I) Quantification of day 50 3D spheroids (AGRP: n = 14, 4.53% ± 0.69%, mean ± SEM; αMSH: n = 6, 5.90% ± 1.19%). (J) Xenotransplantation of day 16 ARC progenitors into nude rats. (J′) Top: ICC for human neural cell adhesion molecule (NCAM) highlights graft site, scale bar: 2 mm. Bottom: IF for human nuclear antigen (HuNu), scale bar: 200 μm. (K–Q) IF for ARC neuronal markers in grafts. Scale bars: 100 μm (K and O), 50 μm (N), 25 μm (L, M, P, and Q).
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    Signaling factors required for generation of human ARC in vitro (A) Hypothalamic development in vivo and in vitro differentiation of hPSC into hypothalamic cells. (B) Principal-component analysis (PCA) of day 16 RT-qPCR data (RC17), clustering according to ARC- and PVN-associated genes. Each dot represents one differentiation batch ( n = 113). (C) Estimated marginal means assessing the effect of factors on PC1, adjusted for covariates. (D) ICC/ISH at days 16 and 50 for ARC protocol with or without <t>BMP4.</t> Scale bars: 100 μm. (E) ARC differentiation protocol and maturation options. (F–H) ICC of day 50 in 2D (F) and 3D (G and H), scale bars: 50 and 100 μm. (I) Quantification of day 50 3D spheroids (AGRP: n = 14, 4.53% ± 0.69%, mean ± SEM; αMSH: n = 6, 5.90% ± 1.19%). (J) Xenotransplantation of day 16 ARC progenitors into nude rats. (J′) Top: ICC for human neural cell adhesion molecule (NCAM) highlights graft site, scale bar: 2 mm. Bottom: IF for human nuclear antigen (HuNu), scale bar: 200 μm. (K–Q) IF for ARC neuronal markers in grafts. Scale bars: 100 μm (K and O), 50 μm (N), 25 μm (L, M, P, and Q).
    Human Bmp4, supplied by R&D Systems, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Image Search Results


    Signaling factors required for generation of human ARC in vitro (A) Hypothalamic development in vivo and in vitro differentiation of hPSC into hypothalamic cells. (B) Principal-component analysis (PCA) of day 16 RT-qPCR data (RC17), clustering according to ARC- and PVN-associated genes. Each dot represents one differentiation batch ( n = 113). (C) Estimated marginal means assessing the effect of factors on PC1, adjusted for covariates. (D) ICC/ISH at days 16 and 50 for ARC protocol with or without BMP4. Scale bars: 100 μm. (E) ARC differentiation protocol and maturation options. (F–H) ICC of day 50 in 2D (F) and 3D (G and H), scale bars: 50 and 100 μm. (I) Quantification of day 50 3D spheroids (AGRP: n = 14, 4.53% ± 0.69%, mean ± SEM; αMSH: n = 6, 5.90% ± 1.19%). (J) Xenotransplantation of day 16 ARC progenitors into nude rats. (J′) Top: ICC for human neural cell adhesion molecule (NCAM) highlights graft site, scale bar: 2 mm. Bottom: IF for human nuclear antigen (HuNu), scale bar: 200 μm. (K–Q) IF for ARC neuronal markers in grafts. Scale bars: 100 μm (K and O), 50 μm (N), 25 μm (L, M, P, and Q).

    Journal: Cell Stem Cell

    Article Title: Generation of human appetite-regulating neurons and tanycytes from pluripotent stem cells

    doi: 10.1016/j.stem.2026.05.005

    Figure Lengend Snippet: Signaling factors required for generation of human ARC in vitro (A) Hypothalamic development in vivo and in vitro differentiation of hPSC into hypothalamic cells. (B) Principal-component analysis (PCA) of day 16 RT-qPCR data (RC17), clustering according to ARC- and PVN-associated genes. Each dot represents one differentiation batch ( n = 113). (C) Estimated marginal means assessing the effect of factors on PC1, adjusted for covariates. (D) ICC/ISH at days 16 and 50 for ARC protocol with or without BMP4. Scale bars: 100 μm. (E) ARC differentiation protocol and maturation options. (F–H) ICC of day 50 in 2D (F) and 3D (G and H), scale bars: 50 and 100 μm. (I) Quantification of day 50 3D spheroids (AGRP: n = 14, 4.53% ± 0.69%, mean ± SEM; αMSH: n = 6, 5.90% ± 1.19%). (J) Xenotransplantation of day 16 ARC progenitors into nude rats. (J′) Top: ICC for human neural cell adhesion molecule (NCAM) highlights graft site, scale bar: 2 mm. Bottom: IF for human nuclear antigen (HuNu), scale bar: 200 μm. (K–Q) IF for ARC neuronal markers in grafts. Scale bars: 100 μm (K and O), 50 μm (N), 25 μm (L, M, P, and Q).

    Article Snippet: BMP4 , Miltenyi Biotec , Cat#130-111-168.

    Techniques: In Vitro, In Vivo, Quantitative RT-PCR

    Duration of BMP stimulation controls ARC versus VMH identity (A) BMP signaling in the developing chick tuberal hypothalamus. Adapted from Chinnaiya et al. vFB, ventral forebrain. (B) Experimental design to simulate BMP withdrawal. (C) ICC/ISH for days 16 and 50 across BMP4 withdrawal conditions. Scale bar: 100 μm. (D) Day 16 RT-qPCR (RC17, KOLF2.1J, BIONi010) across BMP4 withdrawal conditions. Mean ± SEM, Kruskal-Wallis with Dunn’s multiple comparisons test: FGF10 : −BMP versus days 5–14 p < 0.0001; days 5–7 versus days 5–14 p < 0.0001; days 5–9 versus days 5–14 p = 0.0040; days 5–11 versus days 5–14 p = 0.013; SOX14 : −BMP versus days 5–14 p < 0.0001; days 5–7 versus days 5–14 p = 0.0004; days 5–9 versus days 5–14 p = 0.0011; days 5–11 versus days 5–14 p = 0.0020. (E) Day 50 RT-qPCR (RC17, KOLF2.1J, BIONi010) across BMP4 withdrawal conditions. Mean ± SEM, Kruskal-Wallis with Dunn’s test: AGRP : −BMP versus days 5–14 p = 0.0080; days 5–7 versus days 5–14 p = 0.0269 NR5A1 : −BMP versus days 5–14 p = 0.0016; days 5–7 versus days 5–14 p = 0.0162. (F and G) UMAPs of day 16 (F) and days 50 + 80 + 110 (G) snRNA-seq ( n = 3; RC17, KOLF2.1J, BIONi010) and annotated clusters with proportional representation. ARC- and VMH-specific clusters are marked with a box. (H) Spatial projection probability of days 50 + 80 + 110 clusters onto human adult reference. (I) 3D staining for Wisteria floribunda agglutinin (WFA), scale bar: 100 μm.

    Journal: Cell Stem Cell

    Article Title: Generation of human appetite-regulating neurons and tanycytes from pluripotent stem cells

    doi: 10.1016/j.stem.2026.05.005

    Figure Lengend Snippet: Duration of BMP stimulation controls ARC versus VMH identity (A) BMP signaling in the developing chick tuberal hypothalamus. Adapted from Chinnaiya et al. vFB, ventral forebrain. (B) Experimental design to simulate BMP withdrawal. (C) ICC/ISH for days 16 and 50 across BMP4 withdrawal conditions. Scale bar: 100 μm. (D) Day 16 RT-qPCR (RC17, KOLF2.1J, BIONi010) across BMP4 withdrawal conditions. Mean ± SEM, Kruskal-Wallis with Dunn’s multiple comparisons test: FGF10 : −BMP versus days 5–14 p < 0.0001; days 5–7 versus days 5–14 p < 0.0001; days 5–9 versus days 5–14 p = 0.0040; days 5–11 versus days 5–14 p = 0.013; SOX14 : −BMP versus days 5–14 p < 0.0001; days 5–7 versus days 5–14 p = 0.0004; days 5–9 versus days 5–14 p = 0.0011; days 5–11 versus days 5–14 p = 0.0020. (E) Day 50 RT-qPCR (RC17, KOLF2.1J, BIONi010) across BMP4 withdrawal conditions. Mean ± SEM, Kruskal-Wallis with Dunn’s test: AGRP : −BMP versus days 5–14 p = 0.0080; days 5–7 versus days 5–14 p = 0.0269 NR5A1 : −BMP versus days 5–14 p = 0.0016; days 5–7 versus days 5–14 p = 0.0162. (F and G) UMAPs of day 16 (F) and days 50 + 80 + 110 (G) snRNA-seq ( n = 3; RC17, KOLF2.1J, BIONi010) and annotated clusters with proportional representation. ARC- and VMH-specific clusters are marked with a box. (H) Spatial projection probability of days 50 + 80 + 110 clusters onto human adult reference. (I) 3D staining for Wisteria floribunda agglutinin (WFA), scale bar: 100 μm.

    Article Snippet: BMP4 , Miltenyi Biotec , Cat#130-111-168.

    Techniques: Quantitative RT-PCR, Staining

    Different POMC subtypes are dependent on BMP timing (A) UMAP of days 50 + 80 + 110 snRNA-seq data from G with POMC clusters and their % across BMP4 exposure timings. (B) Key marker genes across POMC + ARC and VMH clusters in in vitro dataset and human fetal and adult reference datasets. , , (C) MetaNeighbor cluster similarity analysis comparing in vitro POMC⁺ clusters to hypothalamic reference datasets. , , (D) Expression of ARC/VMH-related markers on spatial transcriptomics reference. (E) DEG between in vitro POMC⁺ subtypes, spatial DEGs from HYPOMAP are highlighted. Benjamini-Hochberg corrected p values. (F) Prediction probabilities from spatial mapping of in vitro POMC clusters to HYPOMAP. (G) Hybridization chain reaction (HCR) of chick embryo heads at HH17 and HH20, n = 7–10. Scale bar: 100 μm.

    Journal: Cell Stem Cell

    Article Title: Generation of human appetite-regulating neurons and tanycytes from pluripotent stem cells

    doi: 10.1016/j.stem.2026.05.005

    Figure Lengend Snippet: Different POMC subtypes are dependent on BMP timing (A) UMAP of days 50 + 80 + 110 snRNA-seq data from G with POMC clusters and their % across BMP4 exposure timings. (B) Key marker genes across POMC + ARC and VMH clusters in in vitro dataset and human fetal and adult reference datasets. , , (C) MetaNeighbor cluster similarity analysis comparing in vitro POMC⁺ clusters to hypothalamic reference datasets. , , (D) Expression of ARC/VMH-related markers on spatial transcriptomics reference. (E) DEG between in vitro POMC⁺ subtypes, spatial DEGs from HYPOMAP are highlighted. Benjamini-Hochberg corrected p values. (F) Prediction probabilities from spatial mapping of in vitro POMC clusters to HYPOMAP. (G) Hybridization chain reaction (HCR) of chick embryo heads at HH17 and HH20, n = 7–10. Scale bar: 100 μm.

    Article Snippet: BMP4 , Miltenyi Biotec , Cat#130-111-168.

    Techniques: Marker, In Vitro, Expressing, Spatial Transcriptomics, Hybridization