4.7 Article

Surface-Micromachined Microfiltration Membranes for Efficient Isolation and Functional Immunophenotyping of Subpopulations of Immune Cells

期刊

ADVANCED HEALTHCARE MATERIALS
卷 2, 期 7, 页码 965-975

出版社

WILEY
DOI: 10.1002/adhm.201200378

关键词

biomedical applications; microfluidics; immune cell; cell separation; immunophenotyping

资金

  1. National Science Foundation [ECCS 1231826, ECCS 0601237]
  2. UM-SJTU Collaboration on Biomedical Technologies
  3. UM Comprehensive Cancer Center Prostate SPORE Pilot Project
  4. Michigan Institute for Clinical & Health Research (MICHR) Pilot Program [CTSA UL1RR024986]
  5. Coulter Foundation
  6. National Institute of Health [R01HL097361, K08HD062142, K12HD047349]
  7. University of Michian Rackham Predoctoral Fellowship
  8. National Science Foundation
  9. Directorate For Engineering [1231826] Funding Source: National Science Foundation
  10. Div Of Electrical, Commun & Cyber Sys [1231826] Funding Source: National Science Foundation

向作者/读者索取更多资源

An accurate measurement of the immune status in patients with immune system disorders is critical in evaluating the stage of diseases and tailoring drug treatments. The functional cellular immunity test is a promising method to establish the diagnosis of immune dysfunctions. The conventional functional cellular immunity test involves measurements of the capacity of peripheral blood mononuclear cells to produce pro-inflammatory cytokines when stimulated ex vivo. However, this bulk assay measures the overall reactivity of a population of lymphocytes and monocytes, making it difficult to pinpoint the phenotype or real identity of the reactive immune cells involved. In this research, we develop a large surface micromachined poly-dimethylsiloxane (PDMS) microfiltration membrane (PMM) with high porosity, which is integrated in a microfluidic microfiltration platform. Using the PMM with functionalized microbeads conjugated with antibodies against specific cell surface proteins, we demonstrated rapid, efficient and high-throughput on-chip isolation, enrichment, and stimulation of subpopulations of immune cells from blood specimens. Furthermore, the PMM-integrated microfiltration platform, coupled with a no-wash homogeneous chemiluminescence assay (AlphaLISA), enables us to demonstrate rapid and sensitive on-chip immunophenotyping assays for subpopulations of immune cells isolated directly from minute quantities of blood samples.

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