首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Near-infrared-emissive polymersomes: Self-assembled soft matter for in vivo optical imaging
【24h】

Near-infrared-emissive polymersomes: Self-assembled soft matter for in vivo optical imaging

机译:近红外发射聚合物囊泡:用于体内光学成像的自组装软物质

获取原文
获取原文并翻译 | 示例
       

摘要

We demonstrate that synthetic soft materials can extend the utility of natural vesicles, from predominantly hydrophilic reservoirs to functional colloidal carriers that facilitate the biomedical application of large aqueous-insoluble compounds. Near-infrared (NIR)-emissive polymersomes (50-nm- to 50-μm-diameter polymer vesicles) were generated through cooperative self assembly of amphiphilic diblock copolymers and conjugated multi(porphyrin)-based NIR fluorophores (NIRFs). When compared with natural vesicles comprised of phospholipids, polymersomes were uniquely capable of incorporating and uniformly distributing numerous large hydrophobic NIRFs exclusively in their lamellar membranes. Within these sequestered compartments, long polymer chains regulate the mean fluorophore-fluorophore interspatial separation as well as the fluorophore-localized electronic environment. Porphyrin-based NIRFs manifest photophysical properties within the polymersomal matrix akin to those established for these high-emission dipole strength fluorophores in organic solvents, thereby yielding uniquely emissive vesicles. Furthermore, the total fluorescence emanating from the assemblies gives rise to a localized optical signal of sufficient intensity to penetrate through the dense tumor tissue of a live animal. Robust NIR-emissive polymersomes thus define a soft matter platform with exceptional potential to facilitate deep-tissue fluorescence-based imaging for in vivo diagnostic and drug-delivery applications.
机译:我们证明合成的软材料可以扩展天然囊泡的用途,从主要是亲水性储库到功能性胶体载体,这些载体有利于大型水不溶性化合物的生物医学应用。通过两亲性二嵌段共聚物和共轭多卟啉基近红外荧光团(NIRF)的协同自组装产生近红外(NIR)发射聚合物囊泡(直径为50nm至50μm的聚合物囊泡)。当与由磷脂组成的天然囊泡相比时,聚合物囊泡独特地能够将许多大的疏水性NIRF掺入并均匀地分布在它们的层状膜中。在这些隔离的隔室内,长的聚合物链调节平均的荧光团-荧光团之间的间隔以及荧光团定位的电子环境。基于卟啉的NIRFs在聚合物体基质中表现出类似于在有机溶剂中为这些高发射偶极强度荧光团建立的那些的光物理特性,从而产生独特的发射囊泡。此外,从组件发出的总荧光产生足够强度的局部光信号,以穿透活动物的致密肿瘤组织。稳健的近红外发射聚合物囊泡因此定义了一种软物质平台,具有卓越的潜力,可促进基于深层组织荧光的成像在体内诊断和药物递送应用中的应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号