Bulseco Dylan A, Wolf David E
Sensor Technologies, LLC, Shrewsbury, Massachusetts 01545, USA.
Methods Cell Biol. 2003;72:465-98. doi: 10.1016/s0091-679x(03)72022-6.
FCS is an important technique for biophysicists, biochemists, and cell biologists. FCS represents an example of how one can make use of the microscope and electronics to extract information beyond the resolution limit of classical optics. It can be used to study single-molecules both in solution and in living cells and can be used to monitor a wide variety of macromolecular interactions. When used as an in vitro technique, FCS measurements are easy to conduct and can be made on simplified instrumentation. When used in vivo on living cells, many additional factors must be considered when evaluating experimental data. Despite these concerns, FCS represents a new approach that has broad applicability for the determination of molecular stoichiometry both in vivo and in vitro for a variety of membrane and soluble receptor systems.
荧光相关光谱技术(FCS)对生物物理学家、生物化学家和细胞生物学家而言是一项重要技术。FCS体现了一种利用显微镜和电子设备来获取超越经典光学分辨率极限信息的方法。它可用于研究溶液中和活细胞内的单分子,还可用于监测多种大分子相互作用。当作为一种体外技术使用时,FCS测量易于进行,且可以在简化的仪器上完成。当用于活细胞的体内研究时,在评估实验数据时必须考虑许多其他因素。尽管存在这些问题,但FCS代表了一种新方法,对于多种膜受体和可溶性受体系统在体内和体外确定分子化学计量具有广泛的适用性。