Chronakis Ioannis S, Jakob Alexandra, Hagström Bengt, Ye Lei
IFP Research, Swedish Institute for Fiber and Polymer Research, Box 104, SE 431 22 Mölndal, Sweden.
Langmuir. 2006 Oct 10;22(21):8960-5. doi: 10.1021/la0613880.
Molecularly imprinted nanoparticles are cross-linked polymer colloids containing tailor-made molecular recognition sites. In this study, molecularly imprinted nanoparticles were easily encapsulated within polymer nanofibers using an electrospinning technique to produce a new type of molecular recognition material. Poly(ethylene terephthalate) (PET) was used as the supporting nanofibers matrix to encapsulate theophylline and 17beta-estradiol imprinted nanoparticles. The composite nanofibers had an average diameter of 150-300 nm, depending on the content of molecularly imprinted nanoparticles. For the theophylline and 17beta-estradiol imprinted polymers, an optimal loading of molecularly imprinted nanoparticles was 25-37.5 wt % based on PET. The composite nanofibers prepared under these conditions had a well-defined morphology and displayed the best selective target recognition. Our approach of electrospinning-for-molecularly imprinted nanoparticles-encapsulation has unique advantages and opens new application opportunities for molecularly imprinted nanoparticles and electrospun nanofibers.
分子印迹纳米粒子是含有定制分子识别位点的交联聚合物胶体。在本研究中,采用静电纺丝技术可轻松将分子印迹纳米粒子封装在聚合物纳米纤维内,以制备新型分子识别材料。聚对苯二甲酸乙二酯(PET)用作支撑纳米纤维基质,以封装茶碱和17β-雌二醇印迹纳米粒子。复合纳米纤维的平均直径为150 - 300纳米,这取决于分子印迹纳米粒子的含量。对于茶碱和17β-雌二醇印迹聚合物,基于PET的分子印迹纳米粒子的最佳负载量为25 - 37.5 wt%。在这些条件下制备的复合纳米纤维具有明确的形态,并表现出最佳的选择性目标识别能力。我们的静电纺丝封装分子印迹纳米粒子的方法具有独特优势,为分子印迹纳米粒子和电纺纳米纤维开辟了新的应用机会。