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A high-precision robot-aided single-cell biopsy system

Adnan Shakoor, Tao Luo, Shuxun Chen, Mingyang Xie, James K. Mills, Dong Sun

Year
2017
Citations
17

Abstract

In this paper, we present a precise robot-aided single-cell surgery system to perform single-cell biopsy for cells <25 μm in diameter. A microfluidic chip is designed to arrange upto 100 individual cells in an array. A micropipette mounted onto a 3-DOF micromanipulator and a computer mouse-operated high-precision XY stage is developed to perform high-precision and high-throughput single-cell biopsy. The system is evaluated experimentally by extracting two organelles from adherent cells patterned in a microfluidic chip. The fluorescent-labeled nucleus and mitochondria of human foreskin fibroblast cells are biopsied to demonstrate the capability of the proposed system. The survival rate of the semi-automated biopsy is 73% and 45% for mitochondrial and nucleus biopsies, respectively.

Keywords

MicromanipulatorPipetteForeskinBiopsyCellOrganelleBiomedical engineeringFibroblastRobotMicrofluidics

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