Fortina Paolo, Kricka Larry J, Surrey Saul, Grodzinski Piotr
Center for Translational Medicine, Department of Medicine, Thomas Jefferson University, Philadelphia, PA 19107, USA.
Trends Biotechnol. 2005 Apr;23(4):168-73. doi: 10.1016/j.tibtech.2005.02.007.
Nanobiotechnology is the convergence of engineering and molecular biology that is leading to a new class of multifunctional devices and systems for biological and chemical analysis with better sensitivity and specificity and a higher rate of recognition. Nano-objects with important analytical applications include nanotubes, nanochannels, nanoparticles, nanopores and nanocapacitors. Here, we take a critical look at the subset of recent developments in this area relevant to molecular recognition. Potential benefits of using nano-objects (nanotubes, quantum dots, nanorods and nanoprisms) and nanodevices (nanocapacitors, nanopores and nanocantilevers) leading to an expanded range of label multiplexing are described along with potential applications in future diagnostics. We also speculate on further pathways in nanotechnology development and the emergence of order in this somewhat chaotic, yet promising, new field.
纳米生物技术是工程学与分子生物学的融合,正催生出一类新型的多功能设备和系统,用于生物和化学分析,具备更高的灵敏度、特异性以及更快的识别速度。具有重要分析应用价值的纳米物体包括纳米管、纳米通道、纳米颗粒、纳米孔和纳米电容器。在此,我们批判性地审视了该领域近期与分子识别相关的发展子集。阐述了使用纳米物体(纳米管、量子点、纳米棒和纳米棱镜)和纳米设备(纳米电容器、纳米孔和纳米悬臂梁)实现标签复用范围扩展的潜在益处,以及在未来诊断中的潜在应用。我们还推测了纳米技术发展的进一步路径,以及在这个有些混乱但前景光明的新领域中秩序的出现。