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Intraocular biodistribution of intravitreal injected chitosan/gelatin nanoparticles

机译:玻璃体内注射壳聚糖/明胶纳米粒子的眼内生物分布

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The aim of this study was to evaluate intraocular biodistribution of a fluorescent polymeric nanosystem composed of chitosan and gelatin after intravitreal administration in rat eyes. The nanoparticles based on chitosan and gelatin were synthesized using a reverse emulsion-double cross-linking technique (ionic and covalent) and their structural characteristics are presented. Two units of 1% suspension of fluorescein-labeled nanoparticles in saline solution were injected intravitreal in rat eyes. The histological cross-sections obtained at 24 and 72 hours were analyzed by confocal microscopy and compared to a similar number of control cross-sections. The scanning electron microscopy of the nanoparticles obtained by double cross-linking in reverse emulsion technique revealed spherical, smooth, highly porous particles with no tendency to form aggregates. The chitosan-fluorescein conjugate was present in all the ocular tissues both at 24 and at 72 hours. The nanoparticles were present in the retina in a larger quantity and persisted longer than in the other ocular tissues. They were mainly fixed paravascular. The double cross-linking in reverse emulsion technique was efficient in synthesizing a biocompatible polymeric nanosystem. The in vivo study of intraocular biodistribution of fluorescein-labeled nanoparticles revealed their affinity for the retina after intravitreal administration.
机译:这项研究的目的是评估玻璃体内给药后在大鼠眼中由壳聚糖和明胶组成的荧光聚合物纳米系统的眼内生物分布。使用反向乳液-双交联技术(离子和共价)合成了基于壳聚糖和明胶的纳米粒子,并提出了其结构特征。将两个单位的荧光素标记的纳米颗粒在盐溶液中的1%悬浮液注射到大鼠眼玻璃体内。通过共聚焦显微镜分析在24小时和72小时获得的组织学横截面,并与相似数量的对照横截面进行比较。通过反向乳液技术中的双交联获得的纳米粒子的扫描电子显微镜显示球形,光滑,高度多孔的粒子,没有形成聚集体的趋势。壳聚糖-荧光素结合物在24小时和72小时都存在于所有的眼组织中。与其他眼组织相比,纳米颗粒以更大的量存在于视网膜中,并且持续时间更长。它们主要是固定的血管旁的。反向乳液双重交联技术在合成生物相容性聚合物纳米系统方面非常有效。荧光素标记的纳米颗粒的眼内生物分布的体内研究表明,玻璃体内给药后它们对视网膜具有亲和力。

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