Oh Junghwan, Feldman Marc D, Kim Jihoon, Kang Hyun Wook, Sanghi Pramod, Milner Thomas E
Department of Biomedical Engineering, University of Texas at Austin, Austin, Texas 78712, USA.
Lasers Surg Med. 2007 Mar;39(3):266-72. doi: 10.1002/lsm.20473.
A novel method to detect tissue-based macrophages using a combination of superparamagnetic iron oxide (SPIO) nanoparticles and differential phase optical coherence tomography (DP-OCT) with an external oscillating magnetic field is reported.
STUDY DESIGN/MATERIAL AND METHODS: Magnetic force acting on iron-laden tissue-based macrophages was varied by applying a sinusoidal current to a solenoid containing a conical iron core that substantially focused and increased magnetic flux density.
Nanoparticle motion was detected with DP-OCT, which can detect tissue movement with nanometer resolution. Frequency response of iron-laden tissue movement was twice the modulation frequency since the magnetic force is proportional to the product of magnetic flux density and gradient.
Results of our experiments indicate that DP-OCT can be used to identify tissue-based macrophage when excited by an external focused oscillating magnetic field.
报道了一种结合超顺磁性氧化铁(SPIO)纳米颗粒、差分相位光学相干断层扫描(DP-OCT)和外部振荡磁场来检测组织巨噬细胞的新方法。
研究设计/材料与方法:通过向包含锥形铁芯的螺线管施加正弦电流来改变作用于载铁组织巨噬细胞的磁力,该锥形铁芯可显著聚焦并增加磁通密度。
利用DP-OCT检测到纳米颗粒运动,DP-OCT能够以纳米分辨率检测组织运动。载铁组织运动的频率响应是调制频率的两倍,因为磁力与磁通密度和梯度的乘积成正比。
我们的实验结果表明,当受到外部聚焦振荡磁场激发时,DP-OCT可用于识别组织巨噬细胞。