MatSearch Consulting, 1009 Pully, Switzerland.
Swiss Med Wkly. 2010 Sep 17;140:w13081. doi: 10.4414/smw.2010.13081. eCollection 2010.
Nanoparticles show several interesting new physical and biological properties and therefore play an increasing role in pharmaceutics and medicine. For more than 30 years this research field has been developing slowly but steadily from physical and biological interest (bench) to applications in clinics (bedside). However, many of these particles for biomedical applications are still in the pre-clinical or clinical phase. Combined with drugs or genes these nanoparticles may change the viability of or the transcription processes in cells, which make them interesting for the pharmaceutical industry, cell biology and diagnostics. Because most of the application of superparamagnetic nanoparticles as therapeutic tool, like non-viral vector, drug delivery, are still far from clinical use, this review will concentrate on superparamagnetic nanoparticles as versatile agent for early diagnosis, including the use of such particles as contrast agent for MR imaging and as vehicle for the detection of biomarkers.
纳米粒子表现出一些有趣的新物理和生物特性,因此在药剂学和医学中发挥着越来越重要的作用。三十多年来,这个研究领域一直从物理和生物兴趣(基础)缓慢而稳定地发展到临床应用(床边)。然而,许多用于生物医学应用的这些粒子仍处于临床前或临床阶段。这些纳米粒子与药物或基因结合后,可能会改变细胞的活力或转录过程,这使得它们在制药工业、细胞生物学和诊断学中很有吸引力。由于超顺磁纳米粒子作为治疗工具的应用,如非病毒载体、药物输送,仍然远远没有达到临床应用的程度,因此,本综述将集中讨论超顺磁纳米粒子作为一种多功能的早期诊断试剂,包括将此类粒子用作磁共振成像的对比剂和生物标志物检测的载体。