Verkhovskii Roman A, Kozlova Anastasiia A, Sindeeva Olga A, Kozhevnikov Ilya O, Prikhozhdenko Ekaterina S, Mayorova Oksana A, Grishin Oleg V, Makarkin Mikhail A, Ermakov Alexey V, Abdurashitov Arkady S, Tuchin Valery V, Bratashov Daniil N
Saratov State University, 83 Astrakhanskaya str., Saratov 410012, Russia.
Skolkovo Innovation Center, 3 Nobel str., Moscow 121205, Russia.
Biomed Opt Express. 2020 Dec 15;12(1):380-394. doi: 10.1364/BOE.413845. eCollection 2021 Jan 1.
Detection and extraction of circulating tumor cells and other rare objects in the bloodstream are of great interest for modern diagnostics, but devices that can solve this problem for the whole blood volume of laboratory animals are still rare. Here we have developed SPIM-based lightsheet flow cytometer for the detection of fluorescently-labeled objects in whole blood. The bypass channel between two blood vessels connected with the external flow cell was used to visualize, detect, and magnetically separate fluorescently-labeled objects without hydrodynamic focusing. Carriers for targeted drug delivery were used as model objects to test the device performance. They were injected into the bloodstream of the rat, detected fluorescently, and then captured from the bloodstream by a magnetic separator prior to filtration in organs. Carriers extracted from the whole blood were studied by a number of methods.
检测和提取血液中的循环肿瘤细胞及其他罕见物质对现代诊断具有重大意义,但能够针对实验动物全血量解决这一问题的设备仍然稀少。在此,我们开发了一种基于选择性平面照明显微镜(SPIM)的光片流式细胞仪,用于检测全血中荧光标记的物质。连接外部流动池的两条血管之间的旁路通道用于在无流体动力聚焦的情况下可视化、检测和磁性分离荧光标记的物质。将靶向药物递送载体用作模型对象来测试设备性能。将它们注入大鼠的血液中,进行荧光检测,然后在器官过滤之前通过磁分离器从血液中捕获。通过多种方法对从全血中提取的载体进行了研究。