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聚乙二醇包被的中空聚电解质微胶囊引入斑马鱼循环系统和肌肉后的分布情况。

Distribution of PEG-coated hollow polyelectrolyte microcapsules after introduction into the circulatory system and muscles of zebrafish.

作者信息

Borvinskaya Ekaterina, Gurkov Anton, Shchapova Ekaterina, Baduev Boris, Meglinski Igor, Timofeyev Maxim

机构信息

Institute of Biology at Irkutsk State University, Irkutsk 664003, Russia.

Institute of Biology at Karelian Research Centre of Russian Academy of Sciences, Petrozavodsk 185035, Russia.

出版信息

Biol Open. 2018 Jan 5;7(1):bio030015. doi: 10.1242/bio.030015.

Abstract

The use of polyelectrolyte multilayer microcapsules as carriers for fluorescent molecular probes is a prospective technique for monitoring the physiological characteristics of animal vasculature and interstitial environment Polyelectrolyte microcapsules have many features that favor their use as implantable carriers of optical sensors, but little information is available on their interactions with complex living tissues, distribution or residence time following different routes of administration in the body of vertebrates. Using the common fish model, the zebrafish , we studied the distribution of non-biodegradable microcapsules covered with polyethylene glycol (PEG) over time in the adults and evaluated potential side effects of their delivery into the fish bloodstream and muscles. Fluorescent microcapsules administered into the bloodstream and interstitially (in concentrations that were sufficient for visualization and spectral signal recording) both showed negligible acute toxicity to the fishes during three weeks of observation. The distribution pattern of microcapsules delivered into the bloodstream was stable for at least one week, with microcapsules prevalent in capillaries-rich organs. However, after intramuscular injection, the phagocytosis of the microcapsules by immune cells was manifested, indicating considerable immunogenicity of the microcapsules despite PEG coverage. The long-term negative effects of chronic inflammation were also investigated in fish muscles by histological analysis.

摘要

使用聚电解质多层微胶囊作为荧光分子探针的载体是监测动物血管系统和间质环境生理特征的一项前瞻性技术。聚电解质微胶囊具有许多有利于其用作光学传感器可植入载体的特性,但关于它们与复杂活体组织的相互作用、在脊椎动物体内不同给药途径后的分布或停留时间的信息却很少。利用常见的鱼类模型斑马鱼,我们研究了覆盖有聚乙二醇(PEG)的不可生物降解微胶囊在成年斑马鱼体内随时间的分布情况,并评估了将其注入鱼的血液和肌肉中的潜在副作用。在为期三周的观察期内,注入血液和间质(浓度足以进行可视化和光谱信号记录)的荧光微胶囊对鱼均显示出可忽略不计的急性毒性。注入血液中的微胶囊分布模式至少在一周内保持稳定,微胶囊在富含毛细血管的器官中占主导。然而,肌肉注射后,免疫细胞对微胶囊的吞噬作用明显,这表明尽管有PEG覆盖,微胶囊仍具有相当大的免疫原性。还通过组织学分析研究了鱼类肌肉中慢性炎症的长期负面影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2984/5829502/024da5d16a72/biolopen-7-030015-g1.jpg

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