Roy and Diana Vagelos Laboratories, Department of Chemistry, University of Pennsylvania, Philadelphia, PA 19104-6323, USA.
Science. 2010 May 21;328(5981):1009-14. doi: 10.1126/science.1185547.
Self-assembled nanostructures obtained from natural and synthetic amphiphiles serve as mimics of biological membranes and enable the delivery of drugs, proteins, genes, and imaging agents. Yet the precise molecular arrangements demanded by these functions are difficult to achieve. Libraries of amphiphilic Janus dendrimers, prepared by facile coupling of tailored hydrophilic and hydrophobic branched segments, have been screened by cryogenic transmission electron microscopy, revealing a rich palette of morphologies in water, including vesicles, denoted dendrimersomes, cubosomes, disks, tubular vesicles, and helical ribbons. Dendrimersomes marry the stability and mechanical strength obtainable from polymersomes with the biological function of stabilized phospholipid liposomes, plus superior uniformity of size, ease of formation, and chemical functionalization. This modular synthesis strategy provides access to systematic tuning of molecular structure and of self-assembled architecture.
自组装纳米结构来源于天然和合成两亲分子,可作为生物膜的模拟物,使药物、蛋白质、基因和成像剂得以递送。然而,这些功能所需的精确分子排列很难实现。通过简便地偶联定制的亲水和疏水支化段制备的 Janus 树状大分子库,已经通过低温传输电子显微镜进行了筛选,揭示了在水中包括囊泡(称为树状大分子囊泡)、立方相、圆盘、管状囊泡和螺旋带在内的丰富形态。树状大分子囊泡将聚合物囊泡的稳定性和机械强度与稳定磷脂脂质体的生物学功能相结合,并且具有更好的尺寸均一性、易于形成和化学功能化。这种模块化合成策略可实现对分子结构和自组装结构的系统调谐。