x-ray phase contrast imaging of cell isolation with super-paramagnetic microbeadsx射线相衬成像的细胞与微磁珠是super-paramagnetic隔离.pdfVIP

x-ray phase contrast imaging of cell isolation with super-paramagnetic microbeadsx射线相衬成像的细胞与微磁珠是super-paramagnetic隔离.pdf

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x-ray phase contrast imaging of cell isolation with super-paramagnetic microbeadsx射线相衬成像的细胞与微磁珠是super-paramagnetic隔离

X-ray Phase Contrast Imaging of Cell Isolation with Super-Paramagnetic Microbeads 1 1 2 3 1 Rongbiao Tang , Wei-Min Chai , Guo-Yuan Yang , Honglan Xie , Ke-Min Chen * 1 Department of Radiology, Rui Jin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, People’s Republic of China, 2 Neuroscience and Neuroengineering Center, Med-X Research Institute, Shanghai Jiao Tong University, Shanghai, People’s Republic of China, 3 Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai, People’s Republic of China Abstract Super-paramagnetic microbeads are widely used for cell isolation. Evaluation of the binding affinity of microbeads to cells using optical microscopy has been limited by its small scope. Here, magnetic property of microbeads was first investigated by using synchrotron radiation (SR) in-line x-ray phase contrast imaging (PCI). The cell line mouse LLC (Lewis lung carcinoma) was selected for cell adhesion studies. Targeted microbeads were prepared by attaching anti-VEGFR2 (vascular endothelial growth factor receptor-2) antibody to the shell of the microbeads. The bound microbeads were found to better adhere to LLC cells than unbound ones. PCI dynamically and clearly showed the magnetization and demagnetization of microbeads in PE-50 tube. The cells incubated with different types of microbeads were imaged by PCI, which provided clear and real-time visualization of the cell isolation. Therefore, PCI might be considered as a novel and efficient tool for further cell isolation studies. Citation: Tang R, Chai W-M, Yang G-Y, Xie H, Chen K-M (2012) X-ray Phase Contrast Imaging of Cell Isolation with Super-Paramagnetic Microbeads. PLoS ONE 7(9): e45597. doi:10.1371/journal.pone.0045597

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