Johnson Benjamin M, Nikolic Dejan, van Breemen Richard B
Department of Medicinal Chemistry and Pharmacognosy, College of Pharmacy, University of Illinois at Chicago, 833 South Wood Street, Chicago, Illinois 60612-7231,USA.
Mass Spectrom Rev. 2002 Mar-Apr;21(2):76-86. doi: 10.1002/mas.10020.
Pulsed ultrafiltration-mass spectrometry (PUF-MS) is a method with a variety of uses for the discovery and development of biologically active small molecules, including the screening of combinatorial libraries and natural product extracts for biologically active compounds, investigation of thermodynamic and kinetic ligand-receptor binding parameters, high-throughput metabolic screening, and the screening of combinatorial libraries and botanical extracts for electrophilic metabolites. Solution-phase ligand-screening assays that use pulsed ultrafiltration-mass spectrometry are useful for "reverse pharmacology" studies in which a macromolecular receptor of interest has been isolated, but ligands for the receptor are needed. Protein-binding studies that involve pulsed ultrafiltration can be used to rapidly determine classical binding parameters for interactions between a macromolecular receptor and a compound of interest. Metabolic screening assays can identify substrates for cytochromes p450, and should be capable of characterizing phase I metabolites with a throughput of at least 60 compounds/hr. Pulsed ultrafiltration can also be used in conjunction with LC-MS-MS to screen mixtures for compounds that might be activated metabolically to electrophilic quinoid and epoxide metabolites by cytochrome p450; that screening can provide early warning of compounds likely to be toxic when administered in large doses. The combination of pulsed-ultrafiltration extraction and mass spectrometric detection provides the sensitivity and selectivity necessary to characterize compounds present at low concentrations in complex chemical mixtures, and is applicable to the analysis of biologically active compounds from combinatorial libraries and botanical extracts.
脉冲超滤-质谱联用技术(PUF-MS)是一种具有多种用途的方法,可用于生物活性小分子的发现与开发,包括筛选组合文库和天然产物提取物中的生物活性化合物、研究热力学和动力学配体-受体结合参数、高通量代谢筛选,以及筛选组合文库和植物提取物中的亲电代谢产物。使用脉冲超滤-质谱联用技术的溶液相配体筛选分析对于“反向药理学”研究很有用,在这类研究中,目标大分子受体已被分离,但需要该受体的配体。涉及脉冲超滤的蛋白质结合研究可用于快速确定大分子受体与目标化合物之间相互作用的经典结合参数。代谢筛选分析可识别细胞色素P450的底物,并且应该能够以至少60种化合物/小时的通量表征I相代谢产物。脉冲超滤还可与液相色谱-串联质谱联用,以筛选混合物中可能被细胞色素P450代谢激活成亲电醌和环氧化物代谢产物的化合物;这种筛选可以对大剂量给药时可能有毒的化合物提供早期预警。脉冲超滤萃取和质谱检测的结合提供了表征复杂化学混合物中低浓度存在的化合物所需的灵敏度和选择性,并且适用于分析组合文库和植物提取物中的生物活性化合物。