Suppr超能文献

用亲水性聚合物包覆用于成像的持久发光纳米颗粒。

Coating Persistent Luminescence Nanoparticles With Hydrophilic Polymers for Imaging.

作者信息

Liu Jianhua, Kotrchová Lenka, Lécuyer Thomas, Corvis Yohann, Seguin Johanne, Mignet Nathalie, Etrych Tomáš, Scherman Daniel, Randárová Eva, Richard Cyrille

机构信息

Unité de Technologies Chimiques et Biologiques pour la Santé (UTCBS), CNRS UMR8258, Inserm U1267, Université de Paris, Paris, France.

Institute of Macromolecular Chemistry, Czech Academy of Sciences, Prague, Czechia.

出版信息

Front Chem. 2020 Sep 24;8:584114. doi: 10.3389/fchem.2020.584114. eCollection 2020.

Abstract

Persistent luminescence nanoparticles (PLNPs) are innovative nanomaterials highly useful for bioimaging applications. Indeed, due to their particular optical properties, i.e., the ability to store the excitation energy before slowly releasing it for a prolonged period of time, they allow imaging without auto-fluorescence and with a high target to background ratio. However, as for most nanoparticles (NPs), without any special surface coating, they are rapidly opsonized and captured by the liver after systemic injection into small animals. To overcome this issue and prolong nanoparticle circulation in the bloodstream, a new stealth strategy was developed by covering their surface with poly(-2-hydroxypropyl)methacrylamide (pHPMA), a highly hydrophilic polymer widely used in nanomedicine. Preliminary imaging results demonstrated the possibility of pHPMA as an alternative strategy to cover ZnGaO:Cr NPs to delay their capture by the liver, thereby providing a new perspective for the formulation of stealth NPs.

摘要

持久发光纳米颗粒(PLNPs)是对生物成像应用非常有用的创新型纳米材料。实际上,由于其特殊的光学性质,即能够在长时间缓慢释放之前储存激发能量,它们能够实现无自发荧光且具有高靶本底比的成像。然而,与大多数纳米颗粒(NPs)一样,在没有任何特殊表面涂层的情况下,将它们全身注射到小动物体内后会迅速被肝脏调理素化并捕获。为了克服这个问题并延长纳米颗粒在血液中的循环时间,通过用聚(甲基丙烯酸-2-羟丙酯)(pHPMA)覆盖其表面开发了一种新的隐形策略,pHPMA是一种在纳米医学中广泛使用的高度亲水聚合物。初步成像结果表明,pHPMA作为覆盖ZnGaO:Cr NPs以延迟其被肝脏捕获的替代策略具有可能性,从而为隐形NPs的制剂提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/724d/7542242/1f5044841ee6/fchem-08-584114-g0001.jpg

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