Department of Physical Chemistry and Microreaction Technology, Technical University of Ilmenau, Weimarer Strasse 32, 98693, Ilmenau, Germany.
Small. 2015 Dec 22;11(48):6435-43. doi: 10.1002/smll.201502364. Epub 2015 Oct 30.
Potential biomedical applications such as controlled delivery with sustained drug release profile demand for multifunctional polymeric particles of precise chemical composition and with welldefined physicochemical properties. The real challenge is to obtain the reproducible and homogeneous nanoparticles in a minimum number of preparation steps. Here, single-step nanoarchitectures of soft surface layered copolymer nanoparticles with a regular tuning in the size via micro flow-through assisted synthesis are reported. Interfacial copolymerization induces the controlled compartmentalization where a hydrophobic core adopts spherical shape in order to minimize the surface energy and simultaneously shelter in the hydrophilic shelllike surface layer. Surface layer can swell in the aqueous medium and allow controlled entrapping of functional hydrophobic nanoparticles in the hydrophilic interior via electrostatic interaction which can be particularly interesting for combined fluorescence activity. Furthermore, the nanoarchitecture of size and concentration controlled polymer-metal nanoassembly particles can be implemented as an ideal surface-enhanced Raman scattering substrate for detection of the trace amounts of various analytes.
潜在的生物医学应用,如具有持续药物释放特性的控制释放,需要具有精确化学组成和良好定义的物理化学性质的多功能聚合物粒子。真正的挑战是在尽可能少的制备步骤中获得可重复且均匀的纳米粒子。在这里,报道了通过微流动辅助合成,具有规则尺寸可调的软表面层状共聚物纳米粒子的单步纳米结构。界面共聚诱导了受控的分区化,其中疏水核采用球形以最小化表面能,同时在亲水壳状表面层中遮蔽。表面层可以在水介质中溶胀,并允许通过静电相互作用将功能性疏水性纳米粒子受控地包埋在亲水性内部,这对于组合荧光活性可能特别有趣。此外,尺寸和浓度可控的聚合物-金属纳米组装粒子的纳米结构可以用作表面增强拉曼散射的理想基底,用于检测各种分析物的痕量。