Chemical Engineering Division, National Chemical Laboratory, Pune, India.
Langmuir. 2013 May 14;29(19):5659-67. doi: 10.1021/la400144t. Epub 2013 Apr 30.
The synthesis of the amphiphilic homoglycopolypeptide was carried out by a combination of NCA polymerization and click chemistry to yield a well-defined polypeptide having an amphiphilic carbohydrate on its side chain. The amphiphilicity of the carbohydrate was achieved by incorporation of an alkyl chain at the C-6 position of the carbohydrate thus also rendering the homoglycopolypeptide amphiphilic. The homoglycopolypeptide formed multimicellar aggregates in water above a critical concentration of 0.9 μM due to phase separation. The multimicellar aggregates were characterized by DLS, TEM, and AFM. It is proposed that hydrophobic interactions of the aliphatic chains at the 6-position of the sugar moieties drives the assembly of these rod-like homoglycopolypeptide into large spherical aggregates. These multimicellar aggregates encapsulate both hydrophilic as well as hydrophobic dye as was confirmed by confocal microscopy. Finally, amphiphilic random polypeptides containing 10% and 20% α-d-mannose in addition to glucose containing a hydrophobic alkyl chain at its 6 position were synthesized by our methodology, and these polymers were also found to assemble into spherical nanostructures. The spherical assemblies of amphiphilic random glycopolypeptides containing 10% and 20% mannose were found to be surface bioactive and were found to interact with the lectin Con-A.
通过 NCA 聚合和点击化学的组合,合成了两亲性同聚糖多肽,在其侧链上得到了具有两亲性碳水化合物的定义明确的多肽。通过在碳水化合物的 C-6 位置引入烷基链来实现碳水化合物的两亲性,从而使同聚糖多肽也具有两亲性。由于相分离,该同聚糖多肽在高于 0.9 μM 的临界浓度的水中形成多胶束聚集体。通过 DLS、TEM 和 AFM 对多胶束聚集体进行了表征。据推测,糖基部分 6 位上脂肪链的疏水相互作用驱动这些棒状同聚糖多肽组装成大的球形聚集体。共聚焦显微镜证实了这些多胶束聚集体包封了亲水性和疏水性染料。最后,通过我们的方法合成了含有 10%和 20%α-d-甘露糖以及在其 6 位含有疏水烷基链的葡萄糖的两亲性随机多肽,这些聚合物也被发现组装成球形纳米结构。含有 10%和 20%甘露糖的两亲性随机糖肽的球形组装体被发现具有表面生物活性,并与凝集素 Con-A 相互作用。