Guidelines for establishing a cytometry laboratory

IF 2.5 4区 生物学 Q3 BIOCHEMICAL RESEARCH METHODS Cytometry Part A Pub Date : 2023-11-08 DOI:10.1002/cyto.a.24807
Anna C. Belkina, Caroline E. Roe, Vera A. Tang, Jessica B. Back, Claudia Bispo, Alexis Conway, Uttara Chakraborty, Kathleen T. Daniels, Gelo de la Cruz, Laura Ferrer-Font, Andrew Filby, David M. Gravano, Michael D. Gregory, Christopher Hall, Christian Kukat, André Mozes, Diana Ordoñez-Rueda, Eva Orlowski-Oliver, Isabella Pesce, Ziv Porat, Nicole J. Poulton, Kristen M. Reifel, Aja M. Rieger, Rachael T. C. Sheridan, Gert Van Isterdael, Rachael V. Walker
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Abstract

The purpose of this document is to provide guidance for establishing and maintaining growth and development of flow cytometry shared resource laboratories. While the best practices offered in this manuscript are not intended to be universal or exhaustive, they do outline key goals that should be prioritized to achieve operational excellence and meet the needs of the scientific community. Additionally, this document provides information on available technologies and software relevant to shared resource laboratories. This manuscript builds on the work of Barsky et al. 2016 published in Cytometry Part A and incorporates recent advancements in cytometric technology. A flow cytometer is a specialized piece of technology that require special care and consideration in its housing and operations. As with any scientific equipment, a thorough evaluation of the location, space requirements, auxiliary resources, and support is crucial for successful operation. This comprehensive resource has been written by past and present members of the International Society for Advancement of Cytometry (ISAC) Shared Resource Laboratory (SRL) Emerging Leaders Program https://isac-net.org/general/custom.asp?page=SRL-Emerging-Leaders with extensive expertise in managing flow cytometry SRLs from around the world in different settings including academia and industry. It is intended to assist in establishing a new flow cytometry SRL, re-purposing an existing space into such a facility, or adding a flow cytometer to an individual lab in academia or industry. This resource reviews the available cytometry technologies, the operational requirements, and best practices in SRL staffing and management.

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建立细胞仪实验室的指南。
本文件旨在为建立和维持流式细胞仪共享资源实验室的成长和发展提供指导。虽然这份手稿中提供的最佳实践并非旨在具有普遍性或详尽无遗,但它们确实概述了应优先考虑的关键目标,以实现卓越的运营并满足科学界的需求。此外,本文件还提供了与共享资源实验室相关的可用技术和软件的信息。这份手稿建立在Barsky等人的工作基础上。2016年发表在《细胞测量学A部分》上,并结合了细胞测量技术的最新进展。流式细胞仪是一种特殊的技术,在其外壳和操作中需要特别小心和考虑。与任何科学设备一样,对位置、空间要求、辅助资源和支持进行彻底评估对成功运行至关重要。本综合资源由国际细胞测量学促进会(ISAC)共享资源实验室(SRL)新兴领导者计划的过去和现在的成员撰写https://isac-net.org/general/custom.asp?page=SRL-在管理流式细胞术SRL方面拥有广泛专业知识的新兴领导者,来自世界各地的不同环境,包括学术界和工业界。它旨在帮助建立一种新的流式细胞术SRL,将现有空间重新用于此类设施,或在学术界或工业界的单个实验室中添加流式细胞仪。本资源回顾了可用的细胞仪技术、操作要求以及SRL人员配置和管理方面的最佳实践。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cytometry Part A
Cytometry Part A 生物-生化研究方法
CiteScore
8.10
自引率
13.50%
发文量
183
审稿时长
4-8 weeks
期刊介绍: Cytometry Part A, the journal of quantitative single-cell analysis, features original research reports and reviews of innovative scientific studies employing quantitative single-cell measurement, separation, manipulation, and modeling techniques, as well as original articles on mechanisms of molecular and cellular functions obtained by cytometry techniques. The journal welcomes submissions from multiple research fields that fully embrace the study of the cytome: Biomedical Instrumentation Engineering Biophotonics Bioinformatics Cell Biology Computational Biology Data Science Immunology Parasitology Microbiology Neuroscience Cancer Stem Cells Tissue Regeneration.
期刊最新文献
Issue Information - TOC Volume 105A, Number 12, December 2024 Cover Image Autofluorescence lifetime flow cytometry rapidly flows from strength to strength. Flow cytometry-based method to detect and separate Mycoplasma hyorhinis in cell cultures. The consequence of mismatched buffers in purity checks when spectral cell sorting
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