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Influence of side chain length on fluorescence intensity of ROMP-based polymeric nanoparticles and their tumor specificity in in-vivo tumor imaging

机译:侧链长度对基于ROMP的聚合物纳米粒子的荧光强度及其在体内肿瘤成像中的肿瘤特异性的影响

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摘要

In this study, amphiphilic brush-like copolymers conjugated with short alkyl or long polymeric chains of various lengths are synthesized using ring-opening metathesis polymerization (ROMP) of substituted norbornadiene monomers followed by chemical transformations. These amphiphilic copolymers form spherical self-assemblies in aqueous media with diameters of 132-244 nm. The low critical aggregation concentration of these assemblies (2.5 × 10 ~(-3)-1.4 × 10 ~(-5) g/L) indicates that they are quite stable in dilute conditions. An appropriate length of polymer side chain that conjugates the polymer backbone with a hydrophobic ICG (indocyanine green) moiety enhanced the fluorescence intensities of these self-assemblies in aqueous solution as well as in tumor-bearing mice. A longer side chain conjugated with tumor targeting agents could significantly affect the tumor specificity of self-assemblies to a greater extent. The self-assemblies bearing hydrophilic tumor targeting agents, such as a glucosamine molecule and a cyclic RGD (arginine-glycine-asparatic acid) peptide, accumulated in tumor tissues with high selectivity, while those having a hydrophobic targeting agent, such as folate moieties, accumulated in tumor sites with low selectivity. The results demonstrated here unambiguously indicate that the fluorescence intensity and tumor specificity of self-assemblies are strongly affected by the length of side chains that conjugate with dyes and targeting agents.
机译:在这项研究中,使用取代的降冰片二烯单体的开环易位聚合反应(ROMP),然后进行化学转化,合成了短链烷基或长短不一的长聚合物链共轭的两亲刷状共聚物。这些两亲共聚物在直径为132-244 nm的水性介质中形成球形自组装体。这些组件的临界聚集浓度低(2.5×10〜(-3)-1.4×10〜(-5)g / L)表明它们在稀薄条件下相当稳定。将聚合物主链与疏水性ICG(吲哚菁绿)部分缀合的适当长度的聚合物侧链增强了这些自组装在水溶液中以及在荷瘤小鼠中的荧光强度。与肿瘤靶向剂缀合的较长侧链可在更大程度上显着影响自组装的肿瘤特异性。具有亲水性肿瘤靶向剂(例如葡糖胺分子和环状RGD(精氨酸-甘氨酸-天冬氨酸)肽)的自组装体在肿瘤组织中积累的选择性高,而具有疏水性靶向剂(例如叶酸部分)的自组装体,低选择性地聚集在肿瘤部位。此处明确表明的结果表明,自组装的荧光强度和肿瘤特异性受与染料和靶向剂缀合的侧链长度的强烈影响。

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