Cassaday M, Diebler H, Herron R, Pelavin M, Svenjak D, Vlastelica D
Clin Chem. 1985 Sep;31(9):1453-6.
We describe a new analytical approach--"capsule chemistry"--for high-speed, selective analysis of a wide variety of analytes. Sequential micro-aliquots of sample and reagents are encapsulated within an inert fluorocarbon liquid. The resulting "test capsule" is introduced into a single analytical flow path, composed of a solid fluorocarbon, Teflon, where the sample is incubated, mixed, reacted, and measured as a moving series of individual tests. These randomly selective assays are processed at a rate of 720 per hour. The unique physical interaction between the liquid and solid fluorocarbon carrier materials effectively prevents detectable "carryover" of aqueous constituents between the successive test capsules. Reactions are monitored through the walls of the Teflon analytical channel at nine in-line detector stations for colorimetric and nephelometric measurements.
我们描述了一种新的分析方法——“胶囊化学”,用于对多种分析物进行高速、选择性分析。将样品和试剂的连续微量等分试样封装在惰性氟碳液体中。所得的“测试胶囊”被引入由固态氟碳(聚四氟乙烯)组成的单一分析流路中,在其中样品作为一系列连续的单个测试进行孵育、混合、反应和测量。这些随机选择性分析以每小时720次的速度进行处理。液体和固态氟碳载体材料之间独特的物理相互作用有效地防止了连续测试胶囊之间水性成分的可检测“残留”。通过聚四氟乙烯分析通道壁在九个在线检测站监测反应,以进行比色和比浊测量。