Materials Science Division, Argonne National Laboratory, Argonne, IL 60439, USA.
Nanoscale. 2018 Jun 21;10(24):11642-11650. doi: 10.1039/c8nr01511b.
Geometrically confined magnetic particles due to their unique response to external magnetic fields find a variety of applications, including magnetic guidance, heat and drug delivery, magneto-mechanical actuation, and contrast enhancement. Highly sensitive detection and imaging techniques based on the nonlinear properties of nanomagnets were recently proposed as innovative strong-translational potential methods applicable in complex, often opaque, biological systems. Here we report on the significant enhancement of the detection capability using optical-lithography-defined, ferromagnetic iron-nickel alloy disk-shaped particles. We show that an irreversible transition between strongly non-collinear (vortex) and single domain states, driven by an alternating magnetic field, translates into a nonlinear magnetic response that enables ultrasensitive detection of these particles. The record sensitivity of ∼3.5 × 10-9 emu, which is equivalent to ∼39 pg of magnetic material is demonstrated at room temperature for arrays of patterned disks. We also show that unbound disks suspended in the aqueous buffer can be successfully detected and quantified in real-time when administered into a live animal allowing for tracing of their biodistribution. The use of nanoscale ferromagnetic particles with engineered nonlinear properties opens prospects for further enhancing the sensitivity, scalability, and tunability of noise-free magnetic tag detection in high-background environments for various applications spanning from biosensing and medical imaging to anti-counterfeiting technologies.
由于对外磁场的独特响应,几何受限的磁性粒子在各种应用中找到了一席之地,包括磁导向、热和药物输送、磁机械致动以及对比增强。最近,基于纳米磁铁的非线性特性提出了高度灵敏的检测和成像技术,作为适用于复杂、通常不透明的生物系统的创新强平移潜力方法。在这里,我们报告了使用光学光刻定义的铁镍合金盘状磁性粒子显著提高检测能力的情况。我们表明,在交变磁场的驱动下,强烈的非共线(涡旋)和单畴状态之间的不可逆转变转化为非线性磁响应,从而能够对这些粒子进行超灵敏检测。在室温下,对于图案化磁盘阵列,记录的灵敏度约为 3.5×10-9 emu,相当于约 39 pg 的磁性材料。我们还表明,当悬浮在水性缓冲液中的未结合磁盘被施用于活体动物中时,可以成功地实时检测和定量,从而可以追踪它们的生物分布。具有工程非线性特性的纳米级铁磁粒子的使用为在高背景环境中进行无噪声磁标记检测的灵敏度、可扩展性和可调性提供了进一步提高的前景,适用于从生物传感和医学成像到防伪技术等各种应用。