4.4 Article

A smart fully integrated micromachined separator with soft magnetic micro-pillar arrays for cell isolation

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出版社

IOP PUBLISHING LTD
DOI: 10.1088/0960-1317/20/11/115021

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资金

  1. Skjema for soknad om FoU-stipend og kompetanseheving pa Hogskolen i Vestfold
  2. Skjema for institusjonenes innstilling av soknader om sma driftsmidler Hogskolen i Vestfold [176641]
  3. Natural Science Foundation of Fujian Province, China [2007J0032]
  4. National Natural Science Foundation of China [50406019]

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A smart fully integrated micromachined separator with soft magnetic micro-pillar arrays has been developed and demonstrated, which can merely employ one independent lab-on-chip to realize cell isolation. The simulation, design, microfabrication and test for the new electromagnetic micro separator were executed. The simulation results of the electromagnetic field in the separator show that special soft magnetic micro-pillar arrays can amplify and redistribute the electromagnetic field generated by the micro-coils. The separator can be equipped with a strong magnetic field to isolate the target cells with a considerably low input current. The micro separator was fabricated by micro-processing technology. An electroplating bath was hired to deposit NiCo/NiFe to fabricate the micro-pillar arrays. An experimental system was set up to verify the function of the micro separator by isolating the lymphocytes, in which the human whole blood mixed with Dynabeads (R) FlowComp Flexi and monoclonal antibody MHCD2704 was used as the sample. The results show that the electromagnetic micro separator with an extremely low input current can recognize and capture the target lymphocytes with a high efficiency, the separation ratio reaching more than 90% at a lower flow rate. For the electromagnetic micro separator, there is no external magnetizing field required, and there is no extra cooling system because there is less Joule heat generated due to the lower current. The magnetic separator is totally reusable, and it can be used to separate cells or proteins with common antigens.

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