4.8 Article

A flow-proteometric platform for analyzing protein concentration (FAP): Proof of concept for quantification of PD-L1 protein in cells and tissues

期刊

BIOSENSORS & BIOELECTRONICS
卷 117, 期 -, 页码 97-103

出版社

ELSEVIER ADVANCED TECHNOLOGY
DOI: 10.1016/j.bios.2018.05.053

关键词

Protein concentration; Quantified immunohistochemistry; Microfluidics; Single molecule; Standard free

资金

  1. National Institutes of Health [CCSG P30 CA 016672]
  2. Cancer Prevention & Research Institutes of Texas [RP160710, DP150052]
  3. Breast Cancer Research Foundation [BCRF-17-069]
  4. National Breast Cancer Foundation, Inc.
  5. Patel Memorial Breast Cancer Endowment Fund
  6. University of Texas MD Anderson-China Medical University
  7. University of Texas MD Anderson-Hospital Sister Institution Fund
  8. Ministry of Health and Welfare, China Medical University Hospital Cancer Research Center of Excellence [MOHW107-TDU-B-212-114024, MOHW107-TDU-B-212-112015]
  9. Center for Biological Pathways
  10. Robert A. Welch Foundation [F-1833]
  11. NIH [CA193038]
  12. NSF [1611451]
  13. Division Of Chemistry
  14. Direct For Mathematical & Physical Scien [1611451] Funding Source: National Science Foundation

向作者/读者索取更多资源

Protein expression level is critically related to the cell physiological function. However, current methodologies such as Western blot (WB) and Immunohistochemistry (IHC) in analyzing the protein level are rather semi quantitative and without the information of actual protein concentration. We have developed a microfluidic technique termed a flow-proteometric platform for analyzing protein concentration (FAP) that can measure the concentration of a target protein in cells or tissues without the requirement of a calibration standard, e.g., the purified target molecules. To validate our method, we tested a number of control samples with known target protein concentrations and showed that the FAP measurement resulted in concentrations that well matched the actual concentrations in the control samples (coefficient of determination [R-2], 0.998), demonstrating a dynamic range of concentrations from 0.13 to 130 pM of a detection for 2 min. We successfully determined a biomarker protein (for predicting the treatment response of cancer immune check-point therapy) PD-L1 concentration in cancer cell lines (HeLa PD-L1 and MDA-MB-231) and breast cancer patient tumor tissues without any prior process of sample purification and standard line construction. Therefore, FAP is a simple, faster, and reliable method to measure the protein concentration in cells and tissues, which can support the conventional methods such as WB and IHC to determine the actual protein level.

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