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Synthetic Site-Selectively Mono-6-O-Sulfated Heparan Sulfate Dodecasaccharide Shows Anti-Angiogenic Properties In Vitro and Sensitizes Tumors to Cisplatin In Vivo (2016)
Journal Article
Miller. (2016). Synthetic Site-Selectively Mono-6-O-Sulfated Heparan Sulfate Dodecasaccharide Shows Anti-Angiogenic Properties In Vitro and Sensitizes Tumors to Cisplatin In Vivo. PloS one, e0159739 -?. https://doi.org/10.1371/journal.+pone.0159739

Heparan sulphate (HS), a ubiquitously expressed glycosaminoglycan (GAG), regulates multiple cellular functions by mediating interactions between numerous growth factors and their cell surface cognate receptors. However, the structural specificity of... Read More about Synthetic Site-Selectively Mono-6-O-Sulfated Heparan Sulfate Dodecasaccharide Shows Anti-Angiogenic Properties In Vitro and Sensitizes Tumors to Cisplatin In Vivo.

Synthetic Site-Selectively Mono-6-<i>O</i>-Sulfated Heparan Sulfate Dodecasaccharide Shows Anti-Angiogenic Properties <i>In Vitro</i> and Sensitizes Tumors to Cisplatin <i>In Vivo</i> (2016)
Journal Article
Avizienyte, E., Cole, C. L., Rushton, G., Miller, G. J., Bugatti, A., Presta, M., …Jayson, G. C. (2016). Synthetic Site-Selectively Mono-6-O-Sulfated Heparan Sulfate Dodecasaccharide Shows Anti-Angiogenic Properties In Vitro and Sensitizes Tumors to Cisplatin In Vivo. PloS one, 11(8), Article ARTN e0159739. https://doi.org/10.1371/journal.pone.0159739

Heparan sulphate (HS), a ubiquitously expressed glycosaminoglycan (GAG), regulates multiple cellular functions by mediating interactions between numerous growth factors and their cell surface cognate receptors. However, the structural specificity of... Read More about Synthetic Site-Selectively Mono-6-<i>O</i>-Sulfated Heparan Sulfate Dodecasaccharide Shows Anti-Angiogenic Properties <i>In Vitro</i> and Sensitizes Tumors to Cisplatin <i>In Vivo</i>.

An Updated Synthesis of the Diazo-Transfer Reagent Imidazole-1-sulfonyl Azide Hydrogen Sulfate (2016)
Journal Article
Potter, G. T., Jayson, G. C., Miller, G. J., & Gardiner, J. M. (2016). An Updated Synthesis of the Diazo-Transfer Reagent Imidazole-1-sulfonyl Azide Hydrogen Sulfate. Journal of Organic Chemistry, 81(8), 3443-3446. https://doi.org/10.1021/acs.joc.6b00177

Imidazole-1-sulfonyl azide and salts thereof are valuable reagents for diazo-transfer reactions, most particularly conversion of primary amines to azides. The parent reagent and its HCl salt present stability and detonation risks, but the hydrogen su... Read More about An Updated Synthesis of the Diazo-Transfer Reagent Imidazole-1-sulfonyl Azide Hydrogen Sulfate.