AI Article Synopsis

  • A new lab-on-a-chip technology called DEParray uses dielectrophoresis to manipulate single biological cells and objects, enabling detailed study and interaction.
  • The platform features an array of electrodes creating over 10,000 DEP cages, allowing for precise movement and targeting of cells, and can carry out various functions like cell interaction and immunophenotyping.
  • DEParray can quickly assess immune responses and cell characteristics in real-time with minimal cell quantities, making it a promising tool for discovering new cell interactions without prior knowledge of their properties.

Article Abstract

Manipulating single biological objects is a major unmet challenge of biomedicine. Herein, we describe a lab-on-a-chip platform based on dielectrophoresis (DEP). The DEParray is a prototypal version consisting of 320 × 320 arrayed electrodes generating >10,000 spherical DEP cages. It allows the capture and software-guided movement to predetermined spatial coordinates of single biological objects. With the DEParray we demonstrate (a) forced interaction between a single, preselected target cell and a programmable number of either microspheres or natural killer (NK) cells, (b) on-chip immunophenotypic discrimination of individual cells based on differential rosetting with microspheres functionalized with monoclonal antibodies to an inhibitory NK cell ligand (HLA-G), (c) on-chip, real-time (few minutes) assessment of immune lysis by either visual inspection or semiautomated, time-lapse reading of a fluorescent dye released from NK cell-sensitive targets, and (d) manipulation and immunophenotyping with limiting amounts (about 500) cells. To our knowledge, this is the first report describing a DEP-based lab-on-a-chip platform for the quick, arrayed, software-guided binding of individually moved biological objects, the targeting of single cells with microspheres, and the real-time characterization of immunophenotypes. The DEParray candidates as a discovery tool for novel cell:cell interactions with no prior (immuno)phenotypic knowledge.

Download full-text PDF

Source
http://dx.doi.org/10.1021/ac401296mDOI Listing

Publication Analysis

Top Keywords

biological objects
12
single biological
8
lab-on-a-chip platform
8
single
5
programmable interactions
4
interactions functionalized
4
functionalized single
4
single bioparticles
4
bioparticles dielectrophoresis-based
4
dielectrophoresis-based microarray
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!