CAS Key Laboratory of Bio-inspired Materials and Interfacial Science, CAS Center for Excellence in Nanoscience, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing, 100190, P. R. China.
University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.
Adv Mater. 2018 Sep;30(39):e1803299. doi: 10.1002/adma.201803299. Epub 2018 Aug 13.
Porous polymer materials are extensively used for biomolecule separation. However, conventional homogeneous porous polymer materials cannot efficiently separate specific low-abundance biomolecules from complex samples. Here, particles fabricated by emulsion interfacial polymerization featuring heterostructured nanopores with tunable size are reported, which can be used to realize low-abundance glycopeptide (GP) separation from complex biofluids. The heterostructured surface inside the nanopores allows solvent-dependent local adsorption of biomolecules onto hydrophilic or hydrophobic regions. Low-abundance hydrophilic GPs in complex biofluids can be efficiently separated via the hydrophilic region of nanopores in low-polarity solvent after the hydrophobic region removes high-abundance hydrophobic proteins and non-glycopeptides in high-polarity solvent. It is expected that these particles with heterostructured nanopores can be used for separation of nucleic acids, saccharides, and proteins, and downstream clinical diagnosis.
多孔聚合物材料被广泛用于生物分子分离。然而,传统的均相多孔聚合物材料无法有效地从复杂样品中分离特定的低丰度生物分子。在这里,报道了通过乳液界面聚合制备的具有可调尺寸的杂化纳米孔颗粒,可用于实现从复杂生物流体中分离低丰度糖肽 (GP)。纳米孔内的杂化表面允许溶剂依赖性的生物分子局部吸附到亲水或疏水区域。在低极性溶剂中,通过纳米孔的亲水区域,可以有效分离复杂生物流体中的低丰度亲水性 GP,而疏水区则可以去除高极性溶剂中的高丰度疏水性蛋白质和非糖肽。预计这些具有杂化纳米孔的颗粒可用于分离核酸、糖类和蛋白质,并用于下游临床诊断。