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美國布魯克海文儀器公司>技術(shù)文章>BI-MwA分子量測(cè)量應(yīng)用案例-4

技術(shù)文章

BI-MwA分子量測(cè)量應(yīng)用案例-4

閱讀:460          發(fā)布時(shí)間:2014-12-6
 文獻(xiàn)名: Characterization of stability, aggregation, and equilibrium properties of modified natural products; The case of carboxymethylated chitosans
 
作者: Rilton Alves de Freitas, Michael F. Drenski, Alina M. Alb, Wayne F. Reed
Tulane Center for Polymer Reaction Monitoring and Characterization (PolyRMC), Tulane University, New Orleans, Louisiana, 70118, USA
 
摘要:Unstable biopolymer solutions inevitably lead to mis-characterization of macromolecular properties and irreproducible results. Even under stable or quasi-stable conditions, persistent aggregates can hamper reliable characterization, especially using light scattering methods. Various pitfalls in characterizing biopolymers were worked through, including determination of solution stability zones, dissolution kinetics, estimation of fraction of aggregate populations, and the relationship between batch and fractionation methods. Chitosans, polyampholytic biopolymers with isoelectric point around pH = 6.0, with varying degrees of carboxymethylation were studied. Instability was determined vs. pH and ionic strength using a high throughput screening method, simultaneous multiple sample light scattering (SMSLS). With stable solution conditions determined, equilibrium batch and multi-detector GPC characterization of molecular weight, intrinsic viscosity, and polyelectrolyte properties was made. Finally, a first attempt at continuous online monitoring of the modification reaction itself was made and compared to FTIR analysis of carboxymethylation on discrete aliquots. Given the range of possible characterization problems, multiple approaches with independent instruments may be required for reliable natural product characterization. Online monitoring of modification reactions may lead to rapid advances in understanding and preparation of natural products.
 
關(guān)鍵詞:Characterization; Physical stability; Aggregation; Equilibrium properties; Carboxymethylchitosan

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