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nano Online

DOI: 10.1515/nano.11671_2015.308

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Assaying Carcinoembryonic Antigens by Normalized Saturation Magnetization

Journal article published in 2015 by 黃凱文, Kai-Wen Huang ORCID, Jen-Jie Chieh, Jin-Cheng Shi, Ming-Hsien Chiang
This paper is made freely available by the publisher.
This paper is made freely available by the publisher.

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Abstract

Biofunctionalized magnetic nanoparticles (BMNs) that provide unique advantages have been extensively used to develop immunoassay methods. However, these developed magnetic methods have been used only for specific immunoassays and not in studies of magnetic characteristics of materials. In this study, a common vibration sample magnetometer (VSM) was used for the measurement of the hysteresis loop for different carcinoembryonic antigens (CEA) concentrations (Phi(CEA)) based on the synthesized BMNs with anti-CEA coating. Additionally, magnetic parameters such as magnetization (M), remanent magnetization (M-R), saturation magnetization (M-s), and normalized parameters (Delta M-R/M-R and Delta M-s/M-s) were studied. Here, Delta M-R and Delta M-s were defined as the difference between any Phi(CEA) and zero Phi(CEA). The parameters M, Delta M-R, and Delta M-s increased with Phi(CEA), and Delta M-s showed the largest increase. Magnetic clusters produced by the conjugation of the BMNs to CEAs showed a Delta M-s greater than that of BMNs. Furthermore, the relationship between Delta M-s/M-s and Phi(CEA) could be described by a characteristic logistic function, which was appropriate for assaying the amount of CEAs. This analytic Delta M-s/M-s and the BMNs used in general magnetic immunoassays can be used for upgrading the functions of the VSM and for studying the magnetic characteristics of materials. ; 解剖學暨細胞生物學科暨研究所 ; 醫學院 ; 期刊論文