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Dielectrophoresis-based microfluidic platforms for cancer diagnostics.

Jun Yuan ChanAminuddin Bin Ahmad KayaniMohd Anuar Mohd AliChee Kuang KokBurhanuddin Yeop MajlisSusan Ling Ling HoeMarini MarzukiAlan Soo-Beng KhooKostya Ken OstrikovMd Ataur RahmanSharath Sriram
Published in: Biomicrofluidics (2018)
The recent advancement of dielectrophoresis (DEP)-enabled microfluidic platforms is opening new opportunities for potential use in cancer disease diagnostics. DEP is advantageous because of its specificity, low cost, small sample volume requirement, and tuneable property for microfluidic platforms. These intrinsic advantages have made it especially suitable for developing microfluidic cancer diagnostic platforms. This review focuses on a comprehensive analysis of the recent developments of DEP enabled microfluidic platforms sorted according to the target cancer cell. Each study is critically analyzed, and the features of each platform, the performance, added functionality for clinical use, and the types of samples, used are discussed. We address the novelty of the techniques, strategies, and design configuration used in improving on existing technologies or previous studies. A summary of comparing the developmental extent of each study is made, and we conclude with a treatment of future trends and a brief summary.
Keyphrases
  • high throughput
  • papillary thyroid
  • circulating tumor cells
  • single cell
  • squamous cell
  • low cost
  • risk assessment
  • climate change