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用于流式细胞术的固态黄色和橙色激光器。

Solid state yellow and orange lasers for flow cytometry.

作者信息

Kapoor Veena, Karpov Vladimir, Linton Claudette, Subach Fedor V, Verkhusha Vladislav V, Telford William G

机构信息

Experimental Transplantation and Immunology Branch, NCI-NIH, Bethesda, Maryland 20892, USA.

出版信息

Cytometry A. 2008 Jun;73(6):570-7. doi: 10.1002/cyto.a.20563.

DOI:10.1002/cyto.a.20563
PMID:18449918
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7410328/
Abstract

Diode and DPSS lasers emitting a variety of wavelengths are now commonly incorporated into flow cytometers, greatly increasing our capacity to excite a wide variety of fluorochromes. Until recently, however, virtually no practical technology existed for generating yellow or orange laser light for flow cytometry that was compatible with smaller instrumentation. In this study, we evaluate several new solid state laser systems that emit from the 570 to 600 nm as excitation sources for flow cytometry. DPSS 580, 589, and 592 nm sources were integrated into a cuvette-based flow cytometer (BD LSR II) and a stream-in-air cell sorter (FACSVantage DiVa), and used to excite a variety of yellow, orange, and red excited fluorochromes, including Texas Red, APC, and its tandem conjugates, and the genetically encoded red fluorescent protein HcRed and the more recently developed Katushka. All laser sources were successfully incorporated into the indicated flow cytometry platforms. The yellow and orange sources (particularly 592 nm) were ideal for exciting Texas Red, and provided excitation of APC and its tandems that was comparable to a traditional red laser source, albeit at higher power levels than red sources. Yellow and orange laser light was optimal for exciting HcRed and Katushka. Practical yellow and orange laser sources are now available for flow cytometry. This technology fills an important gap in the laser wavelengths available for flow, now almost any fluorochrome requiring visible light excitation can be accommodated.

摘要

发射多种波长的二极管和二极管泵浦固体(DPSS)激光器现在通常被整合到流式细胞仪中,极大地提高了我们激发多种荧光染料的能力。然而,直到最近,实际上还没有实用的技术可用于产生适用于流式细胞术的黄色或橙色激光,且与小型仪器兼容。在本研究中,我们评估了几种发射波长在570至600纳米之间的新型固态激光系统,作为流式细胞术的激发光源。将DPSS 580、589和592纳米光源整合到基于比色皿的流式细胞仪(BD LSR II)和空气流细胞分选仪(FACSVantage DiVa)中,并用于激发多种黄色、橙色和红色激发荧光染料,包括德克萨斯红、别藻蓝蛋白(APC)及其串联偶联物,以及基因编码的红色荧光蛋白HcRed和最近开发的Katushka。所有激光源都成功整合到了指定的流式细胞术平台中。黄色和橙色光源(特别是592纳米)是激发德克萨斯红的理想选择,并且提供了与传统红色激光源相当的对APC及其串联偶联物的激发效果,尽管功率水平高于红色光源。黄色和橙色激光对于激发HcRed和Katushka是最佳的。现在有适用于流式细胞术的实用黄色和橙色激光源。这项技术填补了流式可用激光波长方面的一个重要空白,现在几乎任何需要可见光激发的荧光染料都能得到满足。

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