Kumar Ashok, Saini Gautam, Nair Anroop, Sharma Rishbha
M. M. College of Pharmacy, M. M. University, Mullana, Ambala, Haryana-133207, India.
Acta Pol Pharm. 2012 May-Jun;69(3):371-80.
The pharmaceutical companies today are driven to create novel and more efficient tools to discover, develop, deliver and monitor the drugs. In this contest the development of rapid chromatographic method is crucial for the analytical laboratories. In precedent decade, substantial technological advances have been done in enhancing particle chemistry performance, improving detector design and in optimizing the system, data processors and various controls of chromatographic techniques. When all was blended together, it resulted in the outstanding performance via ultra-high performance liquid chromatography (UPLC), which holds back the principle of HPLC technique. UPLC shows a dramatic enhancement in speed, resolution as well as the sensitivity of analysis by using particle size less than 2 pm and the system is operational at higher pressure, while the mobile phase could be able to run at greater linear velocities as compared to HPLC. This technique is considered as a new focal point in field of liquid chromatographic studies. This review focuses on the basic principle, instrumentation of UPLC and its advantages over HPLC, furthermore, this article emphasizes various pharmaceutical applications of this technique.
如今,制药公司致力于研发新颖且更高效的工具,用于药物的发现、开发、递送和监测。在这场竞争中,快速色谱方法的开发对分析实验室至关重要。在前十年中,在提升颗粒化学性能、改进检测器设计以及优化色谱技术的系统、数据处理器和各种控制方面取得了重大技术进步。当所有这些融合在一起时,通过超高效液相色谱(UPLC)实现了卓越的性能,它秉持了HPLC技术的原理。UPLC通过使用小于2μm的粒径,在速度、分辨率以及分析灵敏度方面都有显著提高,并且该系统在更高压力下运行,与HPLC相比,流动相能够以更高的线性流速运行。这项技术被认为是液相色谱研究领域的一个新焦点。本综述聚焦于UPLC的基本原理、仪器设备及其相对于HPLC的优势,此外,本文还强调了该技术在各种制药领域的应用。