hek blue il (InvivoGen)
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Hek Blue Il, supplied by InvivoGen, used in various techniques. Bioz Stars score: 95/100, based on 59 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/hek+blue+il+2/HEK-Blue+IL-2+Cells/pm42242227-239-13-16
Average 95 stars, based on 59 article reviews
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Cell Culture:Article Title: IL-12-releasing nanoparticles for effective immunotherapy of metastatic ovarian cancer. Article Snippet: .. HEK-Blue IL-12 and Article Title: IL-12-releasing nanoparticles for effective immunotherapy of metastatic ovarian cancer Article Snippet: .. HEK-Blue IL-12 and Modification:Article Title: trans -Cyclooctene-caged-IL-1β immunocytokine-constructs ligated to unmodified nanobodies allow click-2-release-based control of cytokine activity Article Snippet: .. HEK-Blue IL-1β, TNF-α and IL-2 HEK-BLUETM IL-1β (cat. Hkb-il1bv2, InvivoGen), HEK-BLUETM TNF-α (cat. Hkb-tnfdmyd, InvivoGen) and Article Title: Modular and Nondisturbing Chimeric Adaptor Protein for Surface Chemistry of Small Extracellular Vesicles. Article Snippet: Current chemical strategies for modifying the surface of extracellular vesicles (sEVs) often struggle to balance efficient functionalization with preserving structural integrity.. Here, we present a modular approach for the surface modification of sEVs using a chimeric adaptor protein (CAP).. The CAP was designed with three key features: a SNAP-tag for stable and modular binding, long and rigid linker to enhance spatial accessibility and conjugation efficiency, and the N-terminal sorting domain derived from syntenin to improve CAP expression on the sEV. Expressing:Article Title: Modular and Nondisturbing Chimeric Adaptor Protein for Surface Chemistry of Small Extracellular Vesicles. Article Snippet: Current chemical strategies for modifying the surface of extracellular vesicles (sEVs) often struggle to balance efficient functionalization with preserving structural integrity.. Here, we present a modular approach for the surface modification of sEVs using a chimeric adaptor protein (CAP).. The CAP was designed with three key features: a SNAP-tag for stable and modular binding, long and rigid linker to enhance spatial accessibility and conjugation efficiency, and the N-terminal sorting domain derived from syntenin to improve CAP expression on the sEV. Selection:Article Title: Modular and Nondisturbing Chimeric Adaptor Protein for Surface Chemistry of Small Extracellular Vesicles. Article Snippet: Current chemical strategies for modifying the surface of extracellular vesicles (sEVs) often struggle to balance efficient functionalization with preserving structural integrity.. Here, we present a modular approach for the surface modification of sEVs using a chimeric adaptor protein (CAP).. The CAP was designed with three key features: a SNAP-tag for stable and modular binding, long and rigid linker to enhance spatial accessibility and conjugation efficiency, and the N-terminal sorting domain derived from syntenin to improve CAP expression on the sEV. Transfection:Article Title: Modular and Nondisturbing Chimeric Adaptor Protein for Surface Chemistry of Small Extracellular Vesicles. Article Snippet: Current chemical strategies for modifying the surface of extracellular vesicles (sEVs) often struggle to balance efficient functionalization with preserving structural integrity.. Here, we present a modular approach for the surface modification of sEVs using a chimeric adaptor protein (CAP).. The CAP was designed with three key features: a SNAP-tag for stable and modular binding, long and rigid linker to enhance spatial accessibility and conjugation efficiency, and the N-terminal sorting domain derived from syntenin to improve CAP expression on the sEV. |
