Department of Chemistry and Biochemistry, University of Montana, Missoula, MT, USA.
Department of Chemistry and Biochemistry, University of Lethbridge, Lethbridge, AB, Canada.
Eur Biophys J. 2023 Jul;52(4-5):311-320. doi: 10.1007/s00249-023-01641-4. Epub 2023 Apr 4.
A method for characterizing and quantifying peaks formed in an analytical buoyant density equilibrium (ABDE) experiment is presented. An algorithm is derived to calculate the concentration of the density forming gradient material at every point in the cell, provided the rotor speed, temperature, meniscus position, bottom of the cell position, and the loading concentration, molar mass, and partial specific volume of the density gradient-forming material are known. In addition, a new peak fitting algorithm has been developed which allows the user to automatically quantify the peaks formed in terms of density, apparent partial specific volume, and relative abundance. The method is suitable for both ionic and non-ionic density forming materials and can be used with data generated from the UV optical system as well as the AVIV fluorescence optical system. These methods have been programmed in a new UltraScan-III module (us_abde). Examples are shown that demonstrate the application of the new module to adeno-associated viral vector preparations and proteins.
本文介绍了一种分析浮力密度平衡(ABDE)实验中峰形成的特征和定量方法。提供了一种算法,可以根据转子速度、温度、弯月面位置、池底位置以及密度形成梯度材料的装载浓度、摩尔质量和偏比容计算池内每个点的密度形成梯度材料的浓度。此外,还开发了一种新的峰拟合算法,允许用户根据密度、表观偏比容和相对丰度自动定量分析形成的峰。该方法适用于离子型和非离子型密度形成材料,可与紫外光学系统和 AVIV 荧光光学系统生成的数据一起使用。这些方法已在新的 UltraScan-III 模块(us_abde)中进行了编程。本文提供了一些示例,展示了该新模块在腺相关病毒载体制剂和蛋白质中的应用。