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

Year: 2015

Journal: ADVANCES IN NATURAL SCIENCES-NANOSCIENCE AND NANOTECHNOLOGY, Vol. 6, p -, 20170208

Authors: Thien Dien To; Anh Tuan Nguyen; Khoa Nhat Thanh Phan; An Thu Thi Truong; Tin Chanh Duc Doan; Chien Mau Dang

Organizations: Vietnam Natl Univ Ho Chi Minh City, Lab Nanotechnol LNT, Community 6, Linh Trung Ward, Ho Chi Minh City, Vietnam

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.