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Modification of silicon nitride surfaces with GOPES and APTES for antibody immobilization: computational and experimental studies - IOPscience

机译:用GOPES和APTES修饰氮化硅表面以固定抗体:计算和实验研究-IOPscience

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摘要

Chemical modification of silicon nitride (SiN) surfaces by silanization has been widely studied especially with 3-(aminopropyl)triethoxysilane (APTES) and 3-(glycidyloxypropyl) dimethylethoxysilane (GOPES). However few reports performed the experimental and computational studies together. In this study, surface modification of SiN surfaces with GOPES and APTES covalently bound with glutaraldehyde (GTA) was investigated for antibody immobilization. The monoclonal anti-cytokeratin-FITC (MACF) antibody was immobilized on the modified SiN surfaces. The modified surfaces were characterized by water contact angle measurements, atomic force microscopy and fluorescence microscopy. The FITC-fluorescent label indicated the existence of MACF antibody on the SiN surfaces and the efficiency of the silanization reaction. Absorption of APTES and GOPES on the oxidized SiN surfaces was computationally modeled and calculated by Materials Studio software. The computational and experimental results showed that modification of the SiN surfaces with APTES and GTA was more effective than the modification with GOPES.
机译:通过硅烷化对氮化硅(SiN)表面进行化学改性已得到广泛研究,尤其是使用3-(氨基丙基)三乙氧基硅烷(APTES)和3-(缩水甘油基氧基丙基)二甲基乙氧基硅烷(GOPES)。但是,很少有报道一起进行实验和计算研究。在这项研究中,研究了使用GOPES和与戊二醛(GTA)共价结合的APTES对SiN表面进行的表面修饰,以进行抗体固定。单克隆抗细胞角蛋白-FITC(MACF)抗体固定在修饰的SiN表面上。通过水接触角测量,原子力显微镜和荧光显微镜表征改性的表面。 FITC荧光标记表明在SiN表面上存在MACF抗体和硅烷化反应的效率。 APTES和GOPES在氧化的SiN表面上的吸收是通过Material Studio软件进行计算建模和计算的。计算和实验结果表明,用APTES和GTA修饰SiN表面比用GOPES修饰更有效。

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