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Cell Immobilization and Detection Using Surface Plasmon Resonance Biochemical Analysis System based on Nano SiO_2 Film

机译:基于纳米SiO_2薄膜的表面等离子体共振生化分析系统的细胞固定化和检测

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Surface plasmon resonance (SPR) biochemical analysis system began to be developed from the detection and analysis of molecular interactions to the ligand/cell interactions, cell/cell contacts, or cellular reactions. Cells needed be immobilized on the SPR chips based on the penetration depth of surface plasma waves. However it is not easily to fix suspension cells on the bare gold chips. In this paper, an effective method has been developed to immobilize yeast cells on the SPR chip based on a nano SiO_2 film which was chemically modified. The sensitivity of the SPR chip with a nano SiO_2 film is 6 ×10~(-7) refractive index unit (RIU), which could meet different applications including cell detection. The whole procedure of cell immobilization has been measured in a lab-free and real-time mode by using our home-made SPR instrument. From the experimental results, the change of the SPR signal of the SPR chip with a modified nano SiO_2 film is 2.83 times of the bare SPR chip. That means the cell immobilization capability of the modified SiO_2-coating SPR chip is much stronger than that of the bare gold SPR chip, which was also proved by using a microscope. Yeast cells can be effectively fixed on the SPR chip and their immobilization process could be monitored, which hold great potential for the immobilization, detection and further analysis of other suspension cells, such as blood cells.
机译:表面等离子体共振(SPR)生物化学分析系统从对配体/细胞相互作用,细胞/细胞接触或细胞反应的分子相互作用的检测和分析开始。需要基于表面等离子体波的渗透深度固定在SPR芯片上的细胞。然而,在裸金芯片上固定悬浮电池并不容易。本文基于化学改性的纳米SiO_2薄膜,已经开发了一种有效的方法以固定在SPR芯片上的酵母细胞。 SPR芯片具有纳米SiO_2膜的灵敏度为6×10〜(-7)折射率单元(RIU),其可以满足包括细胞检测的不同应用。通过使用本土化的SPR仪器,在无实验室和实时模式下测量了细胞固定的整个过程。从实验结果中,具有改性纳米SiO_2膜的SPR芯片的SPR信号的变化为2.83次裸SPR芯片。这意味着改性的SiO_2涂层SPR芯片的细胞固定能力比使用显微镜证明的裸金簧芯片的细胞固定能力远大于裸金簧芯片。酵母细胞可以有效地固定在SPR芯片上,并且可以监测它们的固定过程,其具有固定,检测和进一步分析其他悬浮细胞,例如血细胞的潜力。

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