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Development of Nano/Micro Probes for Femtoliter Volume and Single Cell Measurements.

机译:用于飞升体积和单细胞测量的纳米/微型探针的开发。

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摘要

Single cell analysis has recently emerged as an important field of biomedical re- search. It is now clear that heterogeneity of cell metabolism functions in complex biological systems is correlated to changes in biological function and disease processes. A variety of nano/micro probes were developed to enable investigation of cells properties such as membrane stiffness, pH value. However, very few designs were focused on single cell metabolic function studies. There is a critical need for technologies that provide analysis of heterogeneity of cell metabolic functions, especially on metabolism. Nevertheless, the few existing approaches suffer from fundamental defects and need to be improved.;This work focused on developing nano/micro probes that are suitable for single cell functionality investigation. Both types of probes are designed to measure cell-to-cell/time-to-time heterogeneity in metabolic functions over a long period of time. Lab-made carbon nanoprobes were developed especially for electro-physiological measurement. The unique structure of the carbon nanoprobes makes them suitable for important intracellular applications like trans-membrane potential measurements and various electrochemical measurement for cell function studies. While it is important of have ability to carry out intracellular measure, there are also occasions where the information of a cell as a whole is collected. One of the most important indicator of a cells metabolic functions is cell respiration rate/oxygen consumption rate. A micro-perfusion based multi-functional single cell sensing probe was the developed to carry out measurements on cell as a whole. Formed by a double-barrel theta pipette, the perfusion flow enables the direct measurement of the metabolic flux for example oxygen consumption rate.;In conclusion, this work developed nano/micro-probes as novel single cell investigation tools. The data acquired from these tools could provide valuable assistance on applications including cell metabolism studies, cancer diagnoses, and therapy evaluations.
机译:最近,单细胞分析已成为生物医学研究的重要领域。现在清楚的是,复杂生物系统中细胞代谢功能的异质性与生物学功能和疾病过程的变化相关。开发了多种纳米/微探针,以能够研究细胞特性,例如膜的硬度,pH值。但是,很少有设计专注于单细胞代谢功能研究。迫切需要能够提供细胞代谢功能异质性分析的技术,尤其是在代谢方面。尽管如此,现有的几种方法仍存在一些基本缺陷,需要加以改进。这项工作集中在开发适用于单细胞功能研究的纳米/微探针上。两种类型的探针均设计用于长时间测量代谢功能中的细胞间/时间异质性。实验室制造的碳纳米探针是专门为电生理测量而开发的。碳纳米探针的独特结构使其适用于重要的细胞内应用,例如跨膜电势测量和用于细胞功能研究的各种电化学测量。具有进行细胞内测量的能力很重要,但有时也需要收集整个细胞的信息。细胞代谢功能的最重要指标之一是细胞呼吸速率/氧气消耗速率。开发了一种基于微灌流的多功能单细胞传感探针,可以对整个细胞进行测量。由双桶theta移液器形成的灌注流能够直接测量代谢通量,例如耗氧率。总之,这项工作开发了纳米/微探针作为新型单细胞研究工具。从这些工具获得的数据可以为包括细胞代谢研究,癌症诊断和治疗评估在内的应用提供有价值的帮助。

著录项

  • 作者

    Gao, Yang.;

  • 作者单位

    Drexel University.;

  • 授予单位 Drexel University.;
  • 学科 Nanotechnology.;Analytical chemistry.;Biophysics.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 149 p.
  • 总页数 149
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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