Perspective on Microfluidic Cell Separation: A Solved Problem?
Open Access
- 10 November 2014
- journal article
- review article
- Published by American Chemical Society (ACS) in Analytical Chemistry
- Vol. 86 (23), 11481-11488
- https://doi.org/10.1021/ac5013283
Abstract
The purification and sorting of cells using microfluidic methodologies has been a remarkably active area of research over the past decade. Much of the scientific and technological work associated with microfluidic cell separation has been driven by needs in clinical diagnostics and therapeutic monitoring, most notably in the context of circulating tumor cells. The last several years have seen advances in a broad range of separation modalities ranging from miniaturized analogs of established techniques such as fluorescence- and magnetic-activated cell sorting (FACS and MACS, respectively), to more specialized approaches based on affinity, dielectrophoretic mobility, and inertial properties of cells. With several of these technologies nearing commercialization, there is a sense that the field of microfluidic cell separation has achieved a high level of maturity over an unusually short span of time. In this Perspective, we set the stage by describing major scientific and technological advances in this field and ask what the future holds. While many scientific questions remain unanswered and new compelling questions will undoubtedly arise, the relative maturity of this field poses some unique challenges.Keywords
Funding Information
- National Institute of Biomedical Imaging and Bioengineering (R01 EB009327)
This publication has 82 references indexed in Scilit:
- p38 Signaling and Receptor Recycling Events in a Microfluidic Endothelial Cell Adhesion AssayPLOS ONE, 2013
- Microfluidic: An innovative tool for efficient cell sortingMethods, 2012
- Tag-Free Microfluidic Separation of Cells against Multiple MarkersAnalytical Chemistry, 2012
- Biopolymer System for Cell Recovery from Microfluidic Cell Capture DevicesAnalytical Chemistry, 2012
- A direct comparison of CellSearch and ISET for circulating tumour-cell detection in patients with metastatic carcinomasBritish Journal of Cancer, 2011
- Engineered Alginate Hydrogels for Effective Microfluidic Capture and Release of Endothelial Progenitor Cells from Whole BloodLangmuir, 2011
- Label-free cell separation and sorting in microfluidic systemsAnalytical and Bioanalytical Chemistry, 2010
- Perspectives on Utilizing Unique Features of Microfluidics Technology for Particle and Cell SortingSLAS Technology, 2009
- Highly efficient capture and enumeration of low abundance prostate cancer cells using prostate‐specific membrane antigen aptamers immobilized to a polymeric microfluidic deviceElectrophoresis, 2009
- Highly Efficient Circulating Tumor Cell Isolation from Whole Blood and Label-Free Enumeration Using Polymer-Based Microfluidics with an Integrated Conductivity SensorJournal of the American Chemical Society, 2008