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Image Search Results
Journal: Journal of Biological Chemistry
Article Title: Bone Morphogenetic Protein 1 Prodomain Specifically Binds and Regulates Signaling by Bone Morphogenetic Proteins 2 and 4
doi: 10.1074/jbc.m610929200
Figure Lengend Snippet: FIGURE 2. ProBMP1SSQQ binds BMP4 and BMP2 in a highly specific man- ner. A, an immunoblot is shown of samples containing () or lacking () 5 nM proBMP1SSQQ, BMP1, and/or BMP4; which were immunoprecipitated with anti-BMP1 antibodies (26). Blots were cut and the separate pieces were incu- bated with anti-BMP1 or anti-BMP4 antibodies. B, proBMP1SSQQ was incu- bated with a fixed amount of BMP4 (5 nM) alone, or in the presence of increas- ing amounts of BMP2 (molar ratios of BMP4:BMP2 of 1:1, 1:2, 1:5, and 1:10) followed by immunoprecipitation with anti-BMP1 antibody (26) and immu- noblotting with anti-BMP4 or anti-BMP2 monoclonal antibodies. As a control for pull-down efficiency, the anti-BMP4 blot was stripped and re-probed with anti-BMP1 antibodies to detect immunoprecipitated proBMP1SSQQ. C, puri- fied BMP1 prodomain, produced in a baculovirus system, was visualized by stainingwithCoomassieBrilliantBlueR-250(lane2).Numberstotheleftofgel correspond to the approximate sizes in kDa of molecular mass markers (lane 1). D, Western blot is used for characterization of anti-BMP prodomain anti- bodies, which at a 1:20,000 dilution detect 6 ng of BMP1-Fc fusion protein (lane 1), but do not detect 6 ng of Fc domain (lane 2).
Article Snippet:
Techniques: Western Blot, Immunoprecipitation, Bioprocessing, Control, Produced
Journal: Journal of Biological Chemistry
Article Title: Bone Morphogenetic Protein 1 Prodomain Specifically Binds and Regulates Signaling by Bone Morphogenetic Proteins 2 and 4
doi: 10.1074/jbc.m610929200
Figure Lengend Snippet: FIGURE 3. The BMP1 prodomain directly binds BMP2 and BMP4 with high specificity and affinity. A, 5 nM BMP4 and His-tagged BMP1 prodomain were incubated separately or together, followed by precipitation with nickel- chargedaffinityresin(leftpanel)orwithanti-BMP1prodomainantibody(right panel) and immunoblot analysis with anti-prodomain or anti-BMP4 antibod- ies.B,5nMBMP2andHis-taggedBMP1prodomainwereincubatedseparately or together, followed by precipitation with anti-BMP1 prodomain antibody and protein A-Sepharose, and immunoblot analysis with anti-BMP1 prodo- main or with anti-BMP2 antibodies. C, 5 nM BMP4 and His-tagged BMP1 prodomain were coincubated, as in A, but in the presence of 10-fold excesses ofBMP2,TGF-1,EGF,orBMP5;followedbyprecipitationwithnickel-charged affinity resin and immunoblot analyses. D, 5 nM BMP4 and soluble BMP recep- tor IA (BMPR-1A, ALK-3), fused to an Fc domain, were coincubated in the presence of 1:1, 2:1, or 5:1 molar ratios of either BMP1 prodomain or Chordin, and the samples then precipitated with protein A-Sepharose and analyzed by immunoblots employing anti-BMP4 or anti-BMPR-1A antibodies.
Article Snippet:
Techniques: Incubation, Western Blot
Journal: Journal of Biological Chemistry
Article Title: Bone Morphogenetic Protein 1 Prodomain Specifically Binds and Regulates Signaling by Bone Morphogenetic Proteins 2 and 4
doi: 10.1074/jbc.m610929200
Figure Lengend Snippet: FIGURE 4. The BMP1 prodomain binds BMP2 with a KD of 10.9 nM. Coomassie Brilliant Blue R-250-stained SDS-PAGE gels are shown for molecular mass standards (lane 1) and purified BMP1 prodomain-Fc fusion protein (lane 2) (A) or molecular mass standards (lane 1) and purified BMP1 prodomain minus the Fc domain (lane 2) (B). Numbers to the left of gels correspond to the approximate sizes in kDa of molecular mass markers. BMP1 prodomain (C) and murine Chordin (D) bind to BMP2 with KDs of 10.9 4.7 nM and 6.7 1.0 nM, respectively.
Article Snippet:
Techniques: Staining, SDS Page, Purification
Journal: Clinical and Experimental Dental Research
Article Title: Absorbable collagen sponges loaded with recombinant bone morphogenetic protein 9 induces greater osteoblast differentiation when compared to bone morphogenetic protein 2
doi: 10.1002/cre2.55
Figure Lengend Snippet: Growth factor adsorption of recombinant human bone morphogenetic protein 2 and recombinant human bone morphogenetic protein 9to absorbable collagen sponges at 0 min, 15 min, 60 min, 8 hrs, 24 hrs, 3 days, and 10 days as quantified by enzyme‐linked immunosorbent assay. absorbable collagen sponges were able to efficiently adsorb recombinant bone morphogenetic protein 2 and bone morphogenetic protein 9 and have comparable release kinetics over time
Article Snippet:
Techniques: Adsorption, Recombinant, Enzyme-linked Immunosorbent Assay
Journal: Clinical and Experimental Dental Research
Article Title: Absorbable collagen sponges loaded with recombinant bone morphogenetic protein 9 induces greater osteoblast differentiation when compared to bone morphogenetic protein 2
doi: 10.1002/cre2.55
Figure Lengend Snippet: (a) Attachment (8 hrs) and (b) proliferation (1, 3, and 5 days) assays of ST2 cells seeded on control tissue culture plastic, control absorbable collagen sponges (ACS), ACS loaded with bone morphogenetic protein 2 low (10 ng/ml), ACS loaded with bone morphogenetic protein 2 high (100 ng/ml), ACS loaded with bone morphogenetic protein 9 low (10 ng/ml), and ACS loaded with bone morphogenetic protein 9 high (100 ng/ml). No significant difference was observed between six groups at all time points
Article Snippet:
Techniques: Control
Journal: Clinical and Experimental Dental Research
Article Title: Absorbable collagen sponges loaded with recombinant bone morphogenetic protein 9 induces greater osteoblast differentiation when compared to bone morphogenetic protein 2
doi: 10.1002/cre2.55
Figure Lengend Snippet: (a) Alkaline phosphatase staining of absorbable collagen sponges (ACS) at 7 days of ST2 cells seeded on control tissue culture plastic, control ACS, ACS loaded with BMP2 low (10 ng/ml), ACS loaded with BMP2 high (100 ng/ml), ACS loaded with BMP9 low (10 ng/ml), and ACS loaded with BMP9 high (100 ng/ml). (b) bone morphogenetic protein 9 low and high significantly increased alkaline phosphatase staining when compared to control and bone morphogenetic protein 2samples (* denotes significant difference, p < .05; ** denotes significantly higher than all other treatment modalities, p < .05)
Article Snippet:
Techniques: Staining, Control
Journal: Clinical and Experimental Dental Research
Article Title: Absorbable collagen sponges loaded with recombinant bone morphogenetic protein 9 induces greater osteoblast differentiation when compared to bone morphogenetic protein 2
doi: 10.1002/cre2.55
Figure Lengend Snippet: Real‐time PCR of ST2 cells seeded on control tissue culture plastic, control absorbable collagen sponges (ACS), ACS loaded with BMP2 low (10 ng/ml), ACS loaded with BMP2 high (100 ng/ml), ACS loaded with BMP9 low (10 ng/ml), and ACS loaded with BMP9 high (100 ng/ml) for genes encoding (a) runt‐related transcription factor 2, (b) collagen 1 alpha 2 (COL1a2), (c) alkaline phosphatase (ALP), (d) bone sialoprotein (BSP), and (e) osteocalcin (OCN) at 3 and 14 days postseeding (* denotes significant difference, p < .05; ** denotes significantly higher than all other treatment modalities, p < .05)
Article Snippet:
Techniques: Real-time Polymerase Chain Reaction, Control
Journal: Clinical and Experimental Dental Research
Article Title: Absorbable collagen sponges loaded with recombinant bone morphogenetic protein 9 induces greater osteoblast differentiation when compared to bone morphogenetic protein 2
doi: 10.1002/cre2.55
Figure Lengend Snippet: (a) Visual representation of alizarin red‐stained of negative control absorbable collagen sponges (ACS) without cells, control tissue culture plastic, control ACS, ACS loaded with BMP2 low (10 ng/ml), ACS loaded with BMP2 high (100 ng/ml), ACS loaded with BMP9 low (10 ng/ml), and ACS loaded with BMP9 high (100 ng/ml) at 14 days postseeding. Note the intensity of red staining of ACS coated with BMP9 in comparison to control and BMP2 samples. (b) Quantified data of alizarin red staining from colour thresholding software (* denotes significant difference, p < .05; ** denotes significantly higher than all other treatment modalities, p < .05)
Article Snippet:
Techniques: Staining, Negative Control, Control, Comparison, Software
Journal: Materials Today Bio
Article Title: Pressure-sensitive composite bandages with high toughness, self-healability and strong tissues adhesion for rapid bone fixation and accelerated osteogenesis via immunomodulation and neovascularization
doi: 10.1016/j.mtbio.2025.102730
Figure Lengend Snippet: In vitro osteogenic capacity of POC-G/HA bone adhesives. (A) ALP staining and (C) ARS staining of rBMSCs cultured with POC-G/HA adhesives. Quantitative analysis of ALP activity (B) and ARS staining (D). RT-qPCR results of ALP (E), Runx-2 (F), and BMP2 (G) for detecting relative osteogenic genes expression after 14 days incubation. Results were normalized with GAPDH. (n = 3). Western blot analysis of ALP (H), Runx-2 (I) and BMP2 (J) for detecting osteogenic-related proteins expression (n = 3). Statistical significance: ∗p < 0.05, ∗∗p < 0.001, ∗∗∗p < 0.001 (ANOVA).
Article Snippet: Transcript levels of ALP ,
Techniques: In Vitro, Staining, Cell Culture, Activity Assay, Quantitative RT-PCR, Expressing, Incubation, Western Blot