Christ Henrik-Alexander, Bourgat Yannick, Menzel Henning
Institute for Technical Chemistry, Braunschweig University of Technology, Hagenring 30, 38106 Braunschweig, Germany.
Polymers (Basel). 2021 Aug 13;13(16):2702. doi: 10.3390/polym13162702.
An optimization of the 1-ethyl-3-(3-dimethylaminopropyl) carbodiimide and hydroxy benzotriazole mediated conjugation of the polysaccharide chitosan with functional carboxylic acids was shown. Optimal parameters that enable resource-efficient synthesis of highly functionalized chitosan were identified. In particular, use of only catalytic instead of stoichiometric amounts of hydroxy benzotriazole and tight control of pH in reaction mixture resulted in highly efficient incorporation of the desired moieties as side chains in chitosan. As a result, the model reactant 4-azidobenzoic acid was incorporated resulting in a degree of substitution of over 30% with very high coupling efficacy of up to 90%. Similar results were obtained with other carboxylic acids such as methacrylic acid, 3-(2-furyl) propionic acid and 3-maleimido propionic acid, highlighting the broad applicability of our findings for the functionalization of chitosan.
结果表明,对1-乙基-3-(3-二甲基氨基丙基)碳二亚胺和羟基苯并三唑介导的多糖壳聚糖与功能性羧酸的共轭反应进行了优化。确定了能够实现资源高效合成高功能化壳聚糖的最佳参数。特别地,仅使用催化量而非化学计量的羟基苯并三唑以及严格控制反应混合物的pH值,使得所需部分作为侧链高效地掺入壳聚糖中。结果,模型反应物4-叠氮基苯甲酸被掺入,取代度超过30%,耦合效率高达90%。用其他羧酸如甲基丙烯酸、3-(2-呋喃基)丙酸和3-马来酰亚胺丙酸也得到了类似的结果,突出了我们的发现对壳聚糖功能化的广泛适用性。