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通过高效液相色谱结合低角度激光光散射、紫外和示差折光检测实现生物聚合物分子量的在线完整测定。

Complete on-line determination of biopolymer molecular weight via high-performance liquid chromatography coupled to low-angle laser light scattering, ultraviolet, and differential refractive index detection.

作者信息

Stuting H H, Krull I S

机构信息

Barnett Institute, Northeastern University, Boston, Massachusetts 02115.

出版信息

Anal Chem. 1990 Oct 1;62(19):2107-14. doi: 10.1021/ac00218a012.

Abstract

An optically modified high-performance liquid chromatography refractive index detector was developed to allow complete on-line determinations for biopolymer molecular weights. On-line concentration, refractive index, specific refractive index increment (dn/dc2)mu, and Rayleigh factor were determined under flow injection analysis (FIA) and size exclusion chromatography (SEC) conditions using low-angle laser light scattering, ultraviolet, and modified refractive index detection. This instrumental system is capable of determining absolute on-line molecular weights. The error and time requirements involved in conventional methodologies for proteins have been reduced. Sample quantities have been reduced from 150 to 200 mg, in conventional off-line methods, to less than 2 mg for on-line FIA and 0.5 mg for on-line SEC, if mass absorptivities (a) are known. Otherwise, the determination of a will be the most sample-demanding step, requiring about 3 mg of the pure protein. On-line measurements of (dn/dc2)mu are in good agreement with traditional off-line values established at Donnan equilibrium (usually within 5%). In addition, this technique provides true injected mass as determined by the UV detector, after chromatographic exposure where losses may occur, which is then used in the calculation of biopolymer molecular weight.

摘要

开发了一种经光学改进的高效液相色谱折光率检测器,以实现生物聚合物分子量的完整在线测定。在流动注射分析(FIA)和尺寸排阻色谱(SEC)条件下,使用低角度激光光散射、紫外和改进的折光率检测,在线测定浓度、折光率、比折光率增量(dn/dc2)μ和瑞利因子。该仪器系统能够测定绝对在线分子量。传统蛋白质测定方法中的误差和时间要求已降低。如果已知质量吸光系数(a),样品量已从传统离线方法中的150至200毫克减少到在线FIA中的不到2毫克和在线SEC中的0.5毫克。否则,a的测定将是最消耗样品的步骤,需要约3毫克纯蛋白质。(dn/dc2)μ的在线测量值与在唐南平衡下建立的传统离线值高度一致(通常在5%以内)。此外,该技术在色谱暴露后(可能会发生损失),由紫外检测器确定真实的进样质量,然后将其用于生物聚合物分子量的计算。

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