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本文引用的文献

1
Novel Hollow Polymer Shells by Colloid-Templated Assembly of Polyelectrolytes.通过聚电解质的胶体模板组装制备新型中空聚合物壳层
Angew Chem Int Ed Engl. 1998 Sep 4;37(16):2201-2205. doi: 10.1002/(SICI)1521-3773(19980904)37:16<2201::AID-ANIE2201>3.0.CO;2-E.
2
Parallel monitoring of pH in gill capillaries and muscles of fishes using microencapsulated biomarkers.使用微囊化生物标志物对鱼类鳃毛细血管和肌肉中的pH值进行并行监测。
Biol Open. 2017 May 15;6(5):673-677. doi: 10.1242/bio.024380.
3
Remote in vivo stress assessment of aquatic animals with microencapsulated biomarkers for environmental monitoring.利用微囊化生物标志物对水生动物进行远程活体应激评估,用于环境监测。
Sci Rep. 2016 Nov 3;6:36427. doi: 10.1038/srep36427.
4
Multifunctional polyelectrolyte microcapsules as a contrast agent for photoacoustic imaging in blood.多功能聚电解质微胶囊作为血液中光声成像的造影剂。
J Biophotonics. 2016 Aug;9(8):792-9. doi: 10.1002/jbio.201500293. Epub 2016 Feb 23.
5
Rodent Brain Microinjection to Study Molecular Substrates of Motivated Behavior.通过啮齿动物脑内微注射研究动机行为的分子基础
J Vis Exp. 2015 Sep 16(103):53018. doi: 10.3791/53018.
6
Zebrafish Renal Pathology: Emerging Models of Acute Kidney Injury.斑马鱼肾脏病理学:急性肾损伤的新兴模型
Curr Pathobiol Rep. 2015;3(2):171-181. doi: 10.1007/s40139-015-0082-2.
7
A time differential staining technique coupled with full bilateral gill denervation to study ionocytes in fish.一种时间差染色技术与双侧鳃完全去神经支配相结合,用于研究鱼类的离子细胞。
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Nanoparticles and microparticles of polymers and polysaccharides to administer fish vaccines.用于接种鱼类疫苗的聚合物和多糖纳米颗粒及微粒
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9
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Dissection of the adult zebrafish kidney.成年斑马鱼肾脏的解剖
J Vis Exp. 2011 Aug 29(54):2839. doi: 10.3791/2839.

通过肾脏注射对小鱼循环系统中的微粒进行简单有效的给药与可视化

Simple and Effective Administration and Visualization of Microparticles in the Circulatory System of Small Fishes Using Kidney Injection.

作者信息

Borvinskaya Ekaterina, Gurkov Anton, Shchapova Ekaterina, Karnaukhov Dmitry, Sadovoy Anton, Meglinski Igor, Timofeyev Maxim

机构信息

Institute of Biology at Irkutsk State University; Institute of Biology at Karelian Research Centre of Russian Academy of Sciences.

Institute of Biology at Irkutsk State University; Baikal Research Centre.

出版信息

J Vis Exp. 2018 Jun 17(136):57491. doi: 10.3791/57491.

DOI:10.3791/57491
PMID:29985336
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6101761/
Abstract

The systemic administration of micro-size particles into a living organism can be applied for vasculature visualization, drug and vaccine delivery, implantation of transgenic cells and tiny optical sensors. However, intravenous microinjections into small animals, which are mostly used in biological and veterinary laboratories, are very difficult and require trained personnel. Herein, we demonstrate a robust and efficient method for the introduction of microparticles into the circulatory system of adult zebrafish (Danio rerio) by injection into the fish kidney. To visualize the introduced microparticles in the vasculature, we propose a simple intravital imaging technique in fish gills. In vivo monitoring of the zebrafish blood pH was accomplished using an injected microencapsulated fluorescent probe, SNARF-1, to demonstrate one of the possible applications of the described technique. This article provides a detailed description of the encapsulation of pH-sensitive dye and demonstrates the principles of the quick injection and visualization of the obtained microcapsules for in vivo recording of the fluorescent signal. The proposed method of injection is characterized by a low mortality rate (0-20%) and high efficiency (70-90% success), and it is easy to institute using commonly available equipment. All described procedures can be performed on other small fish species, such as guppies and medaka.

摘要

将微米级颗粒全身给药至生物体可用于血管可视化、药物和疫苗递送、转基因细胞植入以及微型光学传感器。然而,在生物和兽医实验室中大多使用的对小动物进行静脉微注射非常困难,且需要训练有素的人员。在此,我们展示了一种通过向成年斑马鱼(Danio rerio)肾脏注射将微粒引入其循环系统的强大且高效的方法。为了在脉管系统中可视化引入的微粒,我们提出了一种在鱼鳃中进行的简单活体成像技术。使用注射的微囊化荧光探针SNARF-1实现了对斑马鱼血液pH值的体内监测,以证明所述技术的一种可能应用。本文详细描述了pH敏感染料的包封,并展示了快速注射和可视化所获得的微囊以用于体内记录荧光信号的原理。所提出的注射方法具有低死亡率(0 - 20%)和高效率(70 - 90%成功率)的特点,并且使用常用设备易于实施。所有所述程序均可在其他小型鱼类物种(如孔雀鱼和青鳉)上进行。