Department of Chemistry, University of Texas at San Antonio, One UTSA Circle, San Antonio, Texas 78249, United States.
ACS Appl Mater Interfaces. 2020 Nov 25;12(47):53310-53317. doi: 10.1021/acsami.0c15464. Epub 2020 Nov 15.
We report the use of amide coupling chemistry to covalently link five different biofunctional groups onto an anionic water-soluble poly(phenylene ethynylene) (PPE) polymer. Two of the biofunctionalized PPEs are used in prototype applications, including pH sensing and flow cytometry labeling. The PPE is functionalized with carboxylate (R-CO) and sulfonate (R-SO) ionic groups. By using an activated ester, the amine-functionalized groups are covalently linked to the PPE polymer via amide linkages. The reaction chemistry is optimized using biotin-ethylene diamine, making it possible to control the loading of the biotin functionality on the PPE chains. Using the optimized approach, a family of five PPEs were prepared that contain biotin, rhodamine, cholesterol, mannose, or folic acid moieties appended to the polymer backbones. The rhodamine- and biotin-modified PPEs were further applied for pH response and flow cytometry applications. The reported approach can be utilized for other classes of water-soluble conjugated polymers, allowing facile development of a variety of new functionalized water-soluble conjugated polymers for a range of applications including sensing, bioimaging, and flow cytometry analysis.
我们报告了酰胺偶联化学的使用,将五个不同的生物功能基团共价连接到阴离子水溶性聚(苯乙炔)(PPE)聚合物上。两种生物功能化的 PPE 用于原型应用,包括 pH 感应和流式细胞术标记。PPE 用羧酸盐(R-CO)和磺酸盐(R-SO)离子基团官能化。通过使用活化酯,胺官能化基团通过酰胺键共价连接到 PPE 聚合物上。使用生物素-乙二胺优化反应化学,可以控制 PPE 链上生物素功能的负载。使用优化的方法,制备了包含生物素、罗丹明、胆固醇、甘露糖或叶酸部分的五组 PPE。进一步将修饰后的罗丹明和生物素的 PPE 应用于 pH 响应和流式细胞术应用。所报道的方法可用于其他类别的水溶性共轭聚合物,允许轻松开发各种新型功能化水溶性共轭聚合物,用于包括传感、生物成像和流式细胞术分析在内的一系列应用。