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Bio-Techne corporation
recombinant human cd40/tnfrsf5 fc chimera protein, cf Recombinant Human Cd40/Tnfrsf5 Fc Chimera Protein, Cf, supplied by Bio-Techne corporation, 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/product/human+cd40+fc/Recombinant+Human+CD40%2FTNFRSF5+Fc+Chimera+Protein%2C+CF/bio-techne+corporation___1493-cdb Average 93 stars, based on 1 article reviews
recombinant human cd40/tnfrsf5 fc chimera protein, cf - by Bioz Stars,
2026-10
93/100 stars
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A DNA sequence encoding the human CD40 ( NP_001241.1) (Met1-Arg193) was expressed with a C-terminal Fc region of human IgG1 tag followed by an AVI tag. The expressed protein was biotinylated in vivo by the
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R&D Systems
recombinant human cd40 ![]() Recombinant Human Cd40, supplied by R&D Systems, 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/product/human+cd40+fc/Recombinant+Human+CD40%2FTNFRSF5+Fc+Chimera+Protein%2C+CF/pmc12107651-101-19-22 Average 93 stars, based on 1 article reviews
recombinant human cd40 - by Bioz Stars,
2026-10
93/100 stars
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ACROBiosystems
cd40 antibody selectivity human cd40 ![]() Cd40 Antibody Selectivity Human Cd40, supplied by ACROBiosystems, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/human+cd40+fc/Human+CD40+%2F+TNFRSF5+Protein%2C+Fc+Tag/pm34117053-350-0-5 Average 95 stars, based on 1 article reviews
cd40 antibody selectivity human cd40 - by Bioz Stars,
2026-10
95/100 stars
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BPS Bioscience
human cd40 ![]() Human Cd40, supplied by BPS Bioscience, used in various techniques. Bioz Stars score: 92/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/human+cd40+fc/CD40%2C+Fc+fusion+(Human)+Recombinant/10__1158_slash_2326___6066__cir___20___0138-67-8-13 Average 92 stars, based on 1 article reviews
human cd40 - by Bioz Stars,
2026-10
92/100 stars
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The Recombinant Human CD40 TNFRSF5 Fc Chimera Protein from R D Systems is derived from NS0 The Recombinant Human CD40 TNFRSF5 Fc Chimera Protein has been validated for the following applications Binding Activity
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Human / Mouse CD40 Recombinant Protein Fc Tag Lyophilized from Innovative Research has been recombinantly produced in HEK293 cells. This is a Lyophilized protein buffered in Contains PBS. Reconstitute with 50 and#956;l sterile water. Further
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Recombinant Human CD40/TNFRSF5 Fc Alexa Fluor® 647 Protein
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Recombinant Human CD40/TNFRSF5 Fc Avi-tag Protein, CF
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The extracellular domain of human CD40 (AAH12419.1)(Glu21-Arg193) is fused to the N-terminus of the Fc region of mouse IgG2awas expressed in CHO cellThe protein encoded by this gene is a member of the TNF-receptor superfamily.
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A DNA sequence encoding the Human CD40LG (NP_000065.1) (Met113-Leu261 ) was fused with the Fc region of human IgG1 at the N-terminus.
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Human CD40 Recombinant Protein Fc Tag Lyophilized from Innovative Research has been recombinantly produced in CHO cells. This is a Lyophilized protein buffered in Lyophilized from 0.2um-filtered solution in PBS. Reconstitute with 100 and#956;l sterile
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Image Search Results
Journal: Drug Delivery
Article Title: Antigenic peptide delivery to antigen-presenting cells using a CD40-coiled coil affinity-based platform
doi: 10.1080/10717544.2025.2486340
Figure Lengend Snippet: Design of the coiled-coil peptide delivery platform. (A) Anti-CD40 antibody constructs of IgG1 or IgG2 isotypes were connected with E domains of various lengths (EIAALEK)3-6 via a peptide linker (4GS)x2to the C-terminal of the light chain, heavy chain or both light and heavy chains. (B). Combination of antibodies connected with E domains with K domains fused with OVA peptides leads to the formation of complexes. Created with BioRender.com.
Article Snippet: White, flat-bottom, high-binding 96-well plates (Greiner Bio-One, Kremsmünster, Austria, #655074) were coated overnight at 4 °C with 0.5 μg/mL
Techniques: Construct
Journal: Drug Delivery
Article Title: Antigenic peptide delivery to antigen-presenting cells using a CD40-coiled coil affinity-based platform
doi: 10.1080/10717544.2025.2486340
Figure Lengend Snippet: K4-OVA peptides strongly bind E4 domains connected to anti-CD40 antibody constructs and aid formation of stable complexes capable of cell binding and CD40 activation. Binding interactions between E and K coiled coil peptides as determined by ELISA and bio-layer interferometry (BLI). ELISA plates were coated with human CD40 antigen followed by addition of antibody constructs of either IgG1 (A) or IgG2 (B) isotype connected with E4 domains. Biotinylated K4 domains fused with OVA peptides were added followed by detection using streptavidin HRP. Representative BLI affinity measurements to determine binding kinetics of (C) mAbLCE4-IgG1 or (D) mAbLCE4-IgG2 antibody constructs interacting with K4 domains fused with OVA peptides. Antibody constructs connected with E domains were captured on anti-fab 2nd generation (FAB2G) sensors and assayed against serially diluted K4-OVA peptides in solution. Antibody-peptide complex formation and binding of the complexes to B16-F10 CD40 expressing and B16-F10 wt cells was assessed by flow cytometry. IgG1 anti-CD40 antibodies connected with E4 were mixed with equimolar amounts of biotynylated K4-OVA to enable complex formation followed by staining using PE streptavidin and flow cytometry analysis. (E) Cells incubated with 5 µg mAbLCE4 + 0.5 µg biotinylated K4-OVA peptides, (F) cells incubated with 5 µg mAbLCE4, (G) cells incubated with 0.5 µg biotinylated K4-OVA peptides, (H) cells without any compounds. Data shown is representative of two independent experiments. (I) a reporter assay was performed to assess the ability of IgG1 anti-CD40 antibody constructs connected with E domains to induce CD40 activation. CD40 reporter cells (promega) were incubated with FcγRI (CD64) CHO expressing cells or wildtype CHO cells in the presence of mAbLCE3 complexed with K4-OVA peptides, mAbLCE3 and mAb control. CD40 activation was measured according to the manufacturer’s instructions.
Article Snippet: White, flat-bottom, high-binding 96-well plates (Greiner Bio-One, Kremsmünster, Austria, #655074) were coated overnight at 4 °C with 0.5 μg/mL
Techniques: Construct, Binding Assay, Activation Assay, Enzyme-linked Immunosorbent Assay, Expressing, Flow Cytometry, Staining, Incubation, Reporter Assay, Control
Journal: Drug Delivery
Article Title: Antigenic peptide delivery to antigen-presenting cells using a CD40-coiled coil affinity-based platform
doi: 10.1080/10717544.2025.2486340
Figure Lengend Snippet: Stability characterization of anti-CD40 antibody constructs connected with E domains. (A) Ability of the constructs to withstand shear stress was determined by measuring A280 before and after rapid agitation. (B) Constructs were incubated in human serum or BSA for seven days after which a Mono ELISA was performed. (C) Stability of the constructs in un optimized buffer (PBS) was analyzed by incubation at room temperature (RT) or 40 °C for 2 weeks followed by SEC-HPLC analysis. Data is presented as changes in high molecular weight species (Δ HMWS) before and after stability studies. (D) Constructs were subjected to three rounds of freeze (-80 °C)-thawing (37 °C) at 24, 48, and 72 hours followed by SEC-HPLC analysis. Data is presented as changes in high molecular weight species (Δ HMWS) before and after stability studies.
Article Snippet: White, flat-bottom, high-binding 96-well plates (Greiner Bio-One, Kremsmünster, Austria, #655074) were coated overnight at 4 °C with 0.5 μg/mL
Techniques: Construct, Shear, Incubation, Enzyme-linked Immunosorbent Assay, High Molecular Weight
Journal: Drug Delivery
Article Title: Antigenic peptide delivery to antigen-presenting cells using a CD40-coiled coil affinity-based platform
doi: 10.1080/10717544.2025.2486340
Figure Lengend Snippet: Combining the coiled coil platform with potential antigen carrying nanocarriers. (A) An illustration of formation of antibody-peptide-bead complexes from interactions between antibody-peptide conjugate constructs, biotinylated K6-OVA peptides and streptavidin labeled beads (utilized to mimic antigen loaded nanocarriers). Antibody-peptide-bead complexes were prepared first before addition to cells. (B) B16-F10 CD40 and B16-F10 wt cells incubated with antibody-peptide-bead complexes and stained with both PE anti-streptavidin and anti-human lgG Fc-PE. (C) B16-F10 CD40 and B16-F10 wt cells incubated with antibody-peptide-bead complexes stained with only PE anti-streptavidin. (D) B16-F10 CD40 and B16-F10 wt cells incubated with antibody-peptide-bead complexes stained with only anti-human lgG Fc-PE. (E) Unstained B16-F10 CD40 and B16-F10 wt cells without any compounds. All stainings were followed by FACS analysis. The data depicted here is representative of two independent experiments. was created with BioRender.com.
Article Snippet: White, flat-bottom, high-binding 96-well plates (Greiner Bio-One, Kremsmünster, Austria, #655074) were coated overnight at 4 °C with 0.5 μg/mL
Techniques: Construct, Labeling, Incubation, Staining
Journal: Drug Delivery
Article Title: Antigenic peptide delivery to antigen-presenting cells using a CD40-coiled coil affinity-based platform
doi: 10.1080/10717544.2025.2486340
Figure Lengend Snippet: Coiled-coil technology enables efficient OVA peptide cross-presentation and activation of OVA-specific CD8+ T cells. (A) Mice treatment plan. On day 0 and day 7, non-tumor bearing male hCD40tg mice were subcutaneously treated with different compound formulations. Seven days after the second treatment (day 14), mice were sacrificed and their inguinal lymph nodes closest to the treatment site (iLN) were removed for FACS analysis of the percentage of OVA peptide-specific CD8+ T cells. (B) Mice were treated with vehicle (PBS), or molar equivalent amounts of the peptides alone or in combination with mAbLCE4 IgG1 construct. (C) a similar treatment set up as that in (B) was used and additional molecules were included (mAbLCE4 -IgG2 + K4-OVA, mAbLCE4 -IgG2+ OVA peptides, mAb wt + OVA peptides). Four to five mice were used per group in each experiment. The graphs show the mean ± SD of data from each experiment. Statisctical analysis was performed using a Mann-Whitney test, * p < 0.05; ** p < 0.01. (D) a postulated mode of action of the technology. After internalization of the antigen-peptide complexes, DCs process and cross-present antigenic peptides to T-cells that are activated to kill tumor cells. (E) An example of a potential application of the technology could be in personalized neoantigen cancer vaccines. From patient tumors, neoantigens are identified and characterized. Neoantigens fused with K domains are manufactured and combined with off-the-shelf anti-CD40 antibodies connected with E domains. Finally, patients are vaccinated with the mixture. were created with BioRender.com.
Article Snippet: White, flat-bottom, high-binding 96-well plates (Greiner Bio-One, Kremsmünster, Austria, #655074) were coated overnight at 4 °C with 0.5 μg/mL
Techniques: Activation Assay, Construct, MANN-WHITNEY, Vaccines, Immunopeptidomics
Journal: Drug Delivery
Article Title: Antigenic peptide delivery to antigen-presenting cells using a CD40-coiled coil affinity-based platform
doi: 10.1080/10717544.2025.2486340
Figure Lengend Snippet: Evaluating the potential of the technology to evoke anti-tumor responses in vivo . (A) Human CD40 transgenic mice were subcutaneously (s.c) administered with (0.2x10 6 ) MB49-EpCam-OVA tumor cells on day 0 followed by s.c. treatment on the right outer flank with either vehicle (PBS), 1.5 µM free OVA-peptides, 0.4 µM of mAbLCE4, 1.5 µM K4-OVA peptides, 0.4 µM of mAbLCE4 in combination with 1.5 µM K4-OVA peptides or 0.4 µg of mAbLCE4 in combination with 1.5 µM OVA peptides on day 10 and 17. (B) Tumor growth and (C) survival over time were monitored. The graphs show the mean (+SEM) of 7–10 mice per group in one experiment. Statistical analysis of tumor volumes was performed on days 21–34 using a Mann-Whitney test. Survival analysis was conducted using Kaplan-Meier log-rank test. * p < 0.05, ** p < 0.01, *** p < 0.001, ns- not statistically significant.
Article Snippet: White, flat-bottom, high-binding 96-well plates (Greiner Bio-One, Kremsmünster, Austria, #655074) were coated overnight at 4 °C with 0.5 μg/mL
Techniques: In Vivo, Transgenic Assay, MANN-WHITNEY
Journal: Science advances
Article Title: High-throughput functional screening for next-generation cancer immunotherapy using droplet-based microfluidics.
doi: 10.1126/sciadv.abe3839
Figure Lengend Snippet: Fig. 4. Screening CD40 agonist from a spike-in library using a microfluidic system. (A) RFP-positive hexameric CD40L protein–secreting cells were spiked into a 10-fold excess of BFP-positive anti-HEL antibody–secreting cells, and the mixture of cells was coencapsulated with the reporter cells. After incubation, droplets containing activated reporter cells were sorted. The proportion of droplets containing RFP- or BFP-positive cells before and after sorting was analyzed. (B) Bright-field and fluores- cence images of droplets before and after sorting.
Article Snippet:
Techniques: Incubation
Journal: Science advances
Article Title: High-throughput functional screening for next-generation cancer immunotherapy using droplet-based microfluidics.
doi: 10.1126/sciadv.abe3839
Figure Lengend Snippet: Fig. 5. Screening CD40 agonist antibody from a monoclonal antibody library. HEK293FT cells were infected with a lentivirus antibody library and individually coen- capsulated with Jurkat/NF-B-GFP-hCD40 reporter cells and fluorescence-labeled secondary antibodies in droplets. Droplets containing reporter cells activated by anti- bodies secreted by the coencapsulated antibody–expressing cells were sorted. The sorted cells were expanded for the second round of selection, and enriched antibodies were identified by next-generation sequencing. (A) Schematic of possible time traces. (B) Proportions of different types of droplets for each round of selection were analyzed. (C) Bright-field and fluorescence images of the sorted droplets after the second round of selection. (D) Bar plot for the top 20 scFv clusters and their fre- quencies during the selection process. (E) The change in frequencies of the selected antibodies during the selection process. (F) Agonist activity of the selected antibodies was determined using the CD40 reporter cell line in the presence or absence of the cross-linking secondary antibody.
Article Snippet:
Techniques: Infection, Fluorescence, Labeling, Expressing, Selection, Next-Generation Sequencing, Activity Assay