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片上虫量测定:用于原位分析小型多细胞生物的创新技术。

Wormometry-on-a-chip: Innovative technologies for in situ analysis of small multicellular organisms.

机构信息

Department of Chemistry and MacDiarmid Institute for Advanced Materials and Nanotechnology, University of Auckland, Auckland, 1142, New Zealand.

出版信息

Cytometry A. 2011 Oct;79(10):799-813. doi: 10.1002/cyto.a.21070. Epub 2011 May 4.

DOI:10.1002/cyto.a.21070
PMID:21548078
Abstract

Small multicellular organisms such as nematodes, fruit flies, clawed frogs, and zebrafish are emerging models for an increasing number of biomedical and environmental studies. They offer substantial advantages over cell lines and isolated tissues, providing analysis under normal physiological milieu of the whole organism. Many bioassays performed on these alternative animal models mirror with a high level of accuracy those performed on inherently low-throughput, costly, and ethically controversial mammalian models of human disease. Analysis of small model organisms in a high-throughput and high-content manner is, however, still a challenging task not easily susceptible to laboratory automation. In this context, recent advances in photonics, electronics, as well as material sciences have facilitated the emergence of miniaturized bioanalytical systems collectively known as Lab-on-a-Chip (LOC). These technologies combine micro- and nanoscale sciences, allowing the application of laminar fluid flow at ultralow volumes in spatially confined chip-based circuitry. LOC technologies are particularly advantageous for the development of a wide array of automated functionalities. The present work outlines the development of innovative miniaturized chip-based devices for the in situ analysis of small model organisms. We also introduce a new term "wormometry" to collectively distinguish these up-and-coming chip-based technologies that go far beyond the conventional meaning of the term "cytometry."

摘要

小型多细胞生物,如线虫、果蝇、爪蟾和斑马鱼,正在成为越来越多的生物医学和环境研究的新兴模型。它们相对于细胞系和分离组织具有显著的优势,能够在整个生物体的正常生理环境下进行分析。许多在这些替代动物模型上进行的生物测定与在固有高通量、高成本和伦理争议的哺乳动物疾病模型上进行的测定高度准确地吻合。然而,以高通量和高内涵的方式分析小型模型生物仍然是一个具有挑战性的任务,不容易实现实验室自动化。在这种情况下,光子学、电子学以及材料科学的最新进展促进了微型化生物分析系统的出现,这些系统统称为芯片实验室 (LOC)。这些技术结合了微纳尺度科学,允许在空间受限的基于芯片的电路中以超低体积应用层流。LOC 技术对于开发广泛的自动化功能特别有利。本工作概述了用于原位分析小型模型生物的创新型微型芯片设备的开发。我们还引入了一个新术语“虫量测定法”,以统一区分这些新兴的基于芯片的技术,这些技术远远超出了“细胞计量学”一词的传统含义。

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