cd105 protein (Sino Biological)
Structured Review
Cd105 Protein, supplied by Sino Biological, used in various techniques. Bioz Stars score: 93/100, based on 4 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/cd105+protein/Human+Endoglin+%2F+CD105+%2F+ENG+Protein/10__1016_slash_j__apmt__2025__102870-34-0-22
Average 93 stars, based on 4 article reviews
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other:Article Title: Graphene quantum dots-based magnetic relaxation switch involving magnetic separation for enhanced performances of endoglin detection using ultra-low-field nuclear magnetic resonance relaxometry Article Snippet: Magnetic relaxation switches (MRS) based on target-induced state changes of magnetic nanoparticles are vital approaches for biomolecule detection in in vitro diagnosis.. Recently, magnetic graphene quantum dots have been employed as magnetic probes instead of iron oxide nanoparticles and showed high sensitivity.. Introducing magnetic separation into an MRS assay before the relaxometry measurements can enhance the sensitivity, elevate accuracy, and expand the linear region. Enzyme-linked Immunosorbent Assay:Article Title: Visible sonodynamic therapy targeting blood vessels using rapid-functionalized carbon nanostructure Article Snippet: Angiogenesis imbalance can cause severe diseases such as malignant tumors, and inhibition of angiogenesis may suppress such imbalance.. Endoglin (CD105) which is associated with angiogenesis serves as the prime vascular target for antiangiogenetic therapy.. Notably, carbon nanostructures with good biocompatibility and excellent O2 generation capability can be used to construct agents to inhibit angiogenesis. CCK-8 Assay:Article Title: Visible sonodynamic therapy targeting blood vessels using rapid-functionalized carbon nanostructure Article Snippet: Angiogenesis imbalance can cause severe diseases such as malignant tumors, and inhibition of angiogenesis may suppress such imbalance.. Endoglin (CD105) which is associated with angiogenesis serves as the prime vascular target for antiangiogenetic therapy.. Notably, carbon nanostructures with good biocompatibility and excellent O2 generation capability can be used to construct agents to inhibit angiogenesis. |
