一种用于细胞定位和捕获的包含侧壁微槽的微流控平台。

Q1 Engineering
Nanobiomedicine Pub Date : 2015-01-01 DOI:10.5772/60562
Masoud Khabiry, Nader Jalili
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引用次数: 3

摘要

微流控通道能够控制细胞定位和捕获细胞,用于高通量筛选和其他细胞应用。本文提出了一种简单的微流控平台,用于利用侧壁微槽捕获小体积细胞。研究了含侧壁微槽的通道中细胞对接模式。在包含三种不同宽度(即50、100和200 μm)的侧壁微槽的通道中进行了数值和实验研究。观察到含有侧壁微槽的通道在调节细胞定位和模式中起重要作用。结果表明,在200 μm宽的侧壁通道内分布有10 ~ 14个细胞,在100 μm宽的侧壁通道内分布有2 ~ 5个细胞,在50 μm宽的侧壁通道内分布有1 ~ 2个细胞。粒子模型对侧壁微槽内的细胞定位进行了预测。细胞停靠在微沟槽通道内的位置也被量化。此外,侧壁微沟槽内的剪切应力变化与细胞定位存在相关性。因此,这些含有侧壁微槽的通道可能对调节细胞在二维表面、三维微环境和高通量筛选上的定位和图案有潜在的用处。细胞图谱和定位在许多生物学应用中具有重要意义,如药物筛选和基于细胞的生物传感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A Microfluidic Platform Containing Sidewall Microgrooves for Cell Positioning and Trapping.

A Microfluidic Platform Containing Sidewall Microgrooves for Cell Positioning and Trapping.

A Microfluidic Platform Containing Sidewall Microgrooves for Cell Positioning and Trapping.

A Microfluidic Platform Containing Sidewall Microgrooves for Cell Positioning and Trapping.

Microfluidic channels enable the control of cell positioning and the capturing of cells for high-throughput screening and other cellular applications. In this paper, a simple microfluidic platform is proposed for capturing small volumes of cells using sidewall microgrooves. The cell docking patterns in the channels containing sidewall microgroove are also studied. Both numerical and experimental investigations are performed within channels containing sidewall microgrooves of three different widths (i.e., 50, 100 and 200 μm). It is observed that channels containing sidewall microgrooves play an important role in regulating cell positioning and patterning. The obtained results revealed that 10 to 14 cells were positioned inside the sidewall channels of 200 μm width, two to five cells were positioned within the channels of 100 μm width, and one to two individual cells were docked within the sidewall channel of 50 μm width. Particle modelling shows the prediction of cell positioning within sidewall microgrooves. The positions of cells docked within microgroove-containing channels were also quantified. Furthermore, the shear stress variation and cell positioning in the sidewall microgrooves were correlated. Therefore, these sidewall microgroove-containing channels could be potentially useful for regulating cell positioning and patterning on two-dimensional surfaces, three-dimensional microenvironments and high-throughput screening. Cell patterning and positioning are of great importance in many biological applications, such as drug screening and cell-based biosensing.

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来源期刊
Nanobiomedicine
Nanobiomedicine Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
6.80
自引率
0.00%
发文量
1
审稿时长
14 weeks
期刊介绍: Nanobiomedicine is an international, peer-reviewed, open access scientific journal that publishes research in nanotechnology as it interfaces with fundamental studies in biology, as well as its application to the fields of medicine. Nanobiomedicine covers all key aspects of this research field, including, but not limited to, bioengineering, biophysics, physical and biological chemistry, and physiology, as well as nanotechnological applications in diagnostics, therapeutic application, preventive medicine, drug delivery, and monitoring of human disease. Additionally, theoretical and modeling studies covering the nanobiomedicine fields will be considered. All submitted articles considered suitable for Nanobiomedicine are subjected to rigorous peer review to ensure the highest levels of quality. The review process is carried out as quickly as possible to minimize any delays in the online publication of articles. Submissions are encouraged on all topics related to nanobiomedicine, and its clinical applications including but not limited to: Nanoscale-structured biomaterials, Nanoscale bio-devices, Nanoscale imaging, Nanoscale drug delivery, Nanobiotechnology, Nanorobotics, Nanotoxicology, Nanoparticles, Nanocarriers, Nanofluidics, Nanosensors (nanowires, nanophotonics), Nanosurgery (dermatology, gastroenterology, ophthalmology, etc), Nanocarriers commercialization of nanobiomedical technologies, Market trends in the nanobiomedicine space, Ethics and regulatory aspects of nanobiomedicine approval, New perspectives of nanobiomedicine in clinical diagnostics, BioMEMS, Nano-coatings, Plasmonics, Nanoscale visualization.
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