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Generic Delivery of Payload of Nanoparticles Intracellularly via Hybrid Polymer Capsules for Bioimaging Applications

机译:通过生物聚合物应用中的混合聚合物胶囊在细胞内有效递送纳米粒子的有效载荷。

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摘要

Towards the goal of development of a generic nanomaterial delivery system and delivery of the ‘as prepared’ nanoparticles without ‘further surface modification’ in a generic way, we have fabricated a hybrid polymer capsule as a delivery vehicle in which nanoparticles are loaded within their cavity. To this end, a generic approach to prepare nanomaterials-loaded polyelectrolyte multilayered (PEM) capsules has been reported, where polystyrene sulfonate (PSS)/polyallylamine hydrochloride (PAH) polymer capsules were employed as nano/microreactors to synthesize variety of nanomaterials (metal nanoparticles; lanthanide doped inorganic nanoparticles; gadolinium based nanoparticles, cadmium based nanoparticles; different shapes of nanoparticles; co-loading of two types of nanoparticles) in their hollow cavity. These nanoparticles-loaded capsules were employed to demonstrate generic delivery of payload of nanoparticles intracellularly (HeLa cells), without the need of individual nanoparticle surface modification. Validation of intracellular internalization of nanoparticles-loaded capsules by HeLa cells was ascertained by confocal laser scanning microscopy. The green emission from Tb3+ was observed after internalization of LaF3:Tb3+(5%) nanoparticles-loaded capsules by HeLa cells, which suggests that nanoparticles in hybrid capsules retain their functionality within the cells. In vitro cytotoxicity studies of these nanoparticles-loaded capsules showed less/no cytotoxicity in comparison to blank capsules or untreated cells, thus offering a way of evading direct contact of nanoparticles with cells because of the presence of biocompatible polymeric shell of capsules. The proposed hybrid delivery system can be potentially developed to avoid a series of biological barriers and deliver multiple cargoes (both simultaneous and individual delivery) without the need of individual cargo design/modification.
机译:为了达到开发通用纳米材料传输系统和以“通用方式”进行无需“进一步表面改性”的“已制备”纳米颗粒的传输的目标,我们制造了一种杂化聚合物胶囊作为一种传输载体,其中纳米颗粒被装入腔体内。为此,已经报道了制备载有纳米材料的聚电解质多层(PEM)胶囊的通用方法,其中将聚苯乙烯磺酸盐(PSS)/聚烯丙胺盐酸盐(PAH)聚合物胶囊用作纳米/微反应器,以合成各种纳米材料(金属纳米颗粒) ;镧系元素掺杂的无机纳米粒子; g基纳米粒子,镉基纳米粒子;不同形状的纳米粒子;两种类型纳米粒子的共同加载)。这些负载纳米粒子的胶囊被用来证明细胞内(HeLa细胞)纳米粒子有效载荷的一般传递,而无需进行单个纳米粒子表面修饰。通过共聚焦激光扫描显微镜确定了HeLa细胞对纳米颗粒负载胶囊的细胞内内化作用的验证。在LaLa3:Tb 3 + (5%)纳米粒负载的胶囊被HeLa细胞内化后,观察到Tb 3 + 的绿色发射,这表明杂化胶囊中的纳米粒子在单元中保留其功能。与空白胶囊或未处理的细胞相比,这些纳米颗粒负载的胶囊的体外细胞毒性研究显示较少/没有细胞毒性,因此由于存在胶囊的生物相容性聚合物壳,提供了一种避免纳米颗粒与细胞直接接触的方法。所提议的混合运输系统可以潜在地开发,以避免一系列的生物障碍,并在无需单独设计/修改单个货物的情况下交付多批货物(同时交付和单独交付)。

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