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Published on: October 27, 2009
A microfluidic competitive immuno-aggregation assay for high sensitivity cell secretome detection
Fan Liu1, Pawan Kc2, Liwei Ni1
1a Department of Mechanical Engineering , The University of Akron , Akron , Ohio , United States.
Insights
A new assay uses competitive immuno-aggregation and a micro-Coulter counter for sensitive cell secretome detection. This method accurately quantifies proteins like vascular endothelial growth factor (VEGF) in biological samples.
Area of Science:
- Biochemistry
- Analytical Chemistry
- Biotechnology
Background:
- Cell secretomes contain vital proteins regulating biological processes.
- Accurate quantification of secretome proteins is crucial for disease diagnosis and research.
- Existing detection methods may lack sensitivity or require complex procedures.
Purpose of the Study:
- To develop a high-sensitivity method for detecting and quantifying cell secretome proteins.
- To utilize competitive immuno-aggregation and micro-Coulter counter technology for this purpose.
- To demonstrate the assay's efficacy using vascular endothelial growth factor (VEGF) as a target.
Main Methods:
- Competitive immuno-aggregation assay involving biotinylated antibodies and anti-biotin microparticles.
- Micro-Coulter counter for measuring changes in microparticle aggregate volume.
- Quantification of VEGF in cell secretome samples from human mesenchymal stem cells (hMSCs).
Main Results:
- The assay demonstrated a detection range of 0.01 ng/mL to 100.00 ng/mL for VEGF.
- Accurate quantification of VEGF in hMSC secretome samples was achieved.
- Results correlated well with traditional enzyme-linked immunoabsorbent assay (ELISA) methods, confirming specificity and reliability.
Conclusions:
- The developed assay offers high sensitivity and reliability for cell secretome analysis.
- The method is simple, requires minimal sample preparation, and is adaptable for detecting various secretome proteins.
- This technique holds potential for advancing diagnostics and research in cell biology and medicine.
Abstract:
We report a high-sensitivity cell secretome detection method using competitive immuno-aggregation and a micro-Coulter counter. A target cell secretome protein competes with anti-biotin-coated microparticles (MPs) to bind with a biotinylated antibody (Ab), causing decreased aggregation of the functionalized MPs and formation of a mixture of MPs and aggregates. In comparison, without the target cell secretome protein, more microparticles are functionalized, and more aggregates are formed. Thus, a decrease in the average volume of functionalized microparticles/aggregates indicates an increase in cell secretome concentration. This volume change is measured by the micro-Coulter counter, which is used to quantitatively estimate the cell secretome concentration. Vascular endothelial growth factor (VEGF), one of the key cell secretome proteins that regulate angiogenesis and vascular permeabilization, was used as the target protein to demonstrate the sensing principle. A standard calibration curve was generated by testing samples with various VEGF concentrations. A detection range from 0.01 ng/mL to 100.00 ng/mL was achieved. We further demonstrated the quantification of VEGF concentration in exogenous samples collected from the secretome of human mesenchymal stem cells (hMSCs) at different incubation times. The results from the assay agree well with the results of a parallel enzyme-linked immunoabsorbent assay (ELISA) test, indicating the specificity and reliability of the competitive immuno-aggregation assay. With its simple structure and easy sample preparation, this assay not only enables high sensitivity detection of VEGF but also can be readily extended to other types of cell secretome analysis as long as the specific Ab is known.
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