stop solution 2n sulfuric acid (Bio-Techne corporation)
99
Structured Review
Bio-Techne corporation
stop solution 2n sulfuric acid
Stop Solution 2n Sulfuric Acid, supplied by Bio-Techne corporation, used in various techniques. Bioz Stars score: 99/100, based on 170 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/stop+solution/Stop+Solution+2N+Sulfuric+Acid/custom%40dy994%4042143412
Average 99 stars, based on 170 article reviews
Stop Solution 2n Sulfuric Acid, supplied by Bio-Techne corporation, used in various techniques. Bioz Stars score: 99/100, based on 170 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/stop+solution/Stop+Solution+2N+Sulfuric+Acid/custom%40dy994%4042143412
Average 99 stars, based on 170 article reviews
stop solution 2n sulfuric acid - by Bioz Stars,
2026-09
99/100 stars
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Incubation:Article Title: Engineered Surfaces that Promote Capture of Latent Proteins to Facilitate Integrin-Mediated Mechanical Activation of Growth Factors. Article Snippet: Conventional osteogenic platforms utilize active growth factors to repair bone defects that are extensive in size, but they can adversely affect patient health.. Here, we report an unconventional osteogenic platform that functions by promoting capture of inactive osteogenic growth factor molecules to the site of cell growth for subsequent integrin-mediated activation, using a recombinant fragment of latent transforming growth factor beta-binding protein-1 (rLTBP1).. We show that rLTBP1 binds to the growth factorand integrin-binding domains of fibronectin on poly(ethyl acrylate) surfaces, which immobilises rLTBP1 and promotes the binding of latency associated peptide (LAP), within which inactive TGF- 1 is bound. rLTBP1 facilitates the interaction of LAP with integrin 1 and the subsequent mechanically driven release of TGF- 1 to stimulate canonical TGF- 1 signalling, activating osteogenic marker expression in-vitro and complete regeneration of a critical-sized bone defect in-vivo. |