Department of Chemistry, Bogazici University , 34342 Bebek, Istanbul, Turkey.
Center for Life Sciences and Technologies, Bogazici University , 34342 Bebek, Istanbul, Turkey.
Biomacromolecules. 2017 Feb 13;18(2):490-497. doi: 10.1021/acs.biomac.6b01576. Epub 2017 Jan 25.
Multifunctionalizable nanogels are fabricated using thermally driven self-assembly and cross-linking of reactive thermoresponsive copolymers. Nanogels thus fabricated can be easily conjugated with various appropriately functionalized small molecules and/or ligands to tailor them for various applications in delivery and imaging. In this study, a poly(ethylene glycol)-methacrylate-based maleimide-bearing copolymer was cross-linked with a dithiol-based cross-linker to synthesize nanogels. Because of lower critical solution temperature (LCST) around 55 °C in aqueous media, these copolymers assemble into nanosized aggregates when heated to this temperature, and they are cross-linked using the thiol-maleimide conjugation. Nanogels thus fabricated contain both thiol and maleimide groups in the same cross-linked nanogels. Postgelation functionalization of the residual maleimide and thiol groups is demonstrated through conjugation of a thiol-bearing hydrophobic dye (BODIPY-SH) and N-(fluoresceinyl) maleimide, respectively. In addition, to demonstrate the utility of multifunctionality of these nanogels, a thiol-bearing cyclic-peptide-based targeting group, cRGDfC, and N-(fluoresceinyl)-maleimide-based fluorescent tag was conjugated to nanogels in aqueous media. Upon treatment with breast cancer cell lines, MDA-MB-231, it was deduced from cellular internalization studies using fluorescence microscopy and flow cytometry that the peptide carrying constructs were preferentially internalized. Overall, a facile synthesis of multifunctionalizable nanogels that can be tailored using effective conjugation chemistry under mild conditions can serve as promising candidates for various applications.
采用热驱动的自组装和反应性温敏共聚物的交联制备多功能纳米凝胶。由此制备的纳米凝胶可以很容易地与各种适当功能化的小分子和/或配体偶联,以根据各种应用(如输送和成像)对其进行定制。在这项研究中,使用马来酰亚胺基聚乙二醇-甲基丙烯酸酯基的共聚物与二硫醇基交联剂交联,合成纳米凝胶。由于在水性介质中的低临界溶液温度(LCST)约为 55°C,当加热到该温度时,这些共聚物组装成纳米尺寸的聚集体,并使用硫醇-马来酰亚胺键合进行交联。由此制备的纳米凝胶在相同的交联纳米凝胶中包含硫醇和马来酰亚胺基团。通过分别与带有巯基的疏水性染料(BODIPY-SH)和 N-(荧光素基)马来酰亚胺进行接枝,证明了残留马来酰亚胺和巯基的接枝后功能化。此外,为了证明这些纳米凝胶多功能性的实用性,在水性介质中将带有巯基的环状肽基靶向基团 cRGDfC 和 N-(荧光素基)马来酰亚胺基荧光标记物接枝到纳米凝胶上。在用乳腺癌细胞系 MDA-MB-231 进行处理后,通过荧光显微镜和流式细胞术进行的细胞内吞研究推断,携带肽的构建物优先被内吞。总之,这种简便的多功能纳米凝胶的合成方法可以在温和条件下使用有效的偶联化学进行定制,有望成为各种应用的候选材料。