Lin Xiaojie, Konno Tomohiro, Ishihara Kazuhiko
Department of Materials Engineering and ‡Department of Bioengineering, School of Engineering, The University of Tokyo , 7-3-1, Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.
Biomacromolecules. 2014 Jan 13;15(1):150-7. doi: 10.1021/bm401430k. Epub 2013 Dec 17.
To enable the visualization of the distribution and dynamics of intracellular biomolecules and thereby understand the mechanisms of intracellular bioreactions, we developed a specific functional nanoprobe through the combination of a well-designed, cytocompatible phospholipid polymer and molecular beacons (MBs). A water-soluble, amphiphilic phospholipid polymer, poly[2-methacryloyloxyethyl phosphorylcholine (MPC)-co-n-butyl methacrylate (BMA)-co-N-succinimidyloxycarbonyl tetra(ethylene glycol) methacrylate] (PMBS), was synthesized and conjugated with MBs to form nanoprobes via a chemical reaction between the ester group of N-hydroxysuccinimide and the amine group of the MBs. Surface tension measurements indicated that the polymeric nanoprobes had different conformations in aqueous solution, specifically at a concentration of 1.0 mg/mL. The PMBS, containing the large, hydrophobic BMA, formed polymer aggregates. The carcinoma cells used to test the probes remained 100% viable after incubation with PMBS-MB probes. The polymeric nanoprobes demonstrated not only a high target specificity but also resistance to nonspecific adsorption of proteins compared with unconjugated MBs and were able to penetrate the cytoplasm of the cells, allowing the live imaging of mRNA. In summary, MPC polymer-MB nanoprobes have great potential for practical application for the noninvasive monitoring of intracellular biomolecules and bioreactions in real time.
为了实现细胞内生物分子分布和动态变化的可视化,从而理解细胞内生物反应的机制,我们通过将精心设计的、具有细胞相容性的磷脂聚合物与分子信标(MBs)相结合,开发了一种特定的功能性纳米探针。合成了一种水溶性两亲性磷脂聚合物聚[2-甲基丙烯酰氧乙基磷酰胆碱(MPC)-共-甲基丙烯酸正丁酯(BMA)-共-N-琥珀酰亚胺基氧羰基四(乙二醇)甲基丙烯酸酯](PMBS),并通过N-羟基琥珀酰亚胺的酯基与MBs的胺基之间的化学反应将其与MBs共轭以形成纳米探针。表面张力测量表明,聚合物纳米探针在水溶液中具有不同的构象,特别是在浓度为1.0 mg/mL时。含有大的疏水性BMA的PMBS形成聚合物聚集体。用于测试探针的癌细胞在与PMBS-MB探针孵育后仍保持100%的活力。与未共轭的MBs相比,聚合物纳米探针不仅表现出高靶向特异性,而且对蛋白质的非特异性吸附具有抗性,并且能够穿透细胞的细胞质,实现mRNA的实时成像。总之,MPC聚合物-MB纳米探针在实时无创监测细胞内生物分子和生物反应的实际应用中具有巨大潜力。