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A Flow Cytometry-Based Cell Surface Protein Binding Assay for Assessing Selectivity and Specificity of an Anticancer Aptamer
Published on: September 13, 2022
Aptamer Targets Triple-Negative Breast Cancer through Specific Binding to Surface CD49c
Quanyuan Wan1, Zihua Zeng1, Jianjun Qi1
1Department of Pathology and Genomic Medicine, Houston Methodist Hospital, Houston, TX 77030, USA.
Abstract:
Although targeted cancer therapy can induce higher therapeutic efficacy and cause fewer side effects in patients, the lack of targetable biomarkers on triple-negative breast cancer (TNBC) cells limits the development of targeted therapies by antibody technology. Therefore, we investigated an alternative approach to target TNBC by using the PDGC21T aptamer, which selectively binds to poorly differentiated carcinoma cells and tumor tissues, although the cellular target is still unknown. We found that synthetic aptamer probes specifically bound cultured TNBC cells in vitro and selectively targeted TNBC xenografts in vivo. Subsequently, to identify the target molecule on TNBC cells, we performed aptamer-mediated immunoprecipitation in lysed cell membranes followed by liquid chromatography tandem mass spectrometry (LC-MS/MS). Sequencing analysis revealed a highly conserved peptide sequence consistent with the cell surface protein CD49c (integrin α3). For target validation, we stained cultured TNBC and non-TNBC cells with an aptamer probe or a CD49c antibody and found similar cell staining patterns. Finally, competition cell-binding assays using both aptamer and anti-CD49c antibody revealed that CD49c is the biomarker targeted by the PDGC21T aptamer on TNBC cells. Our findings provide a molecular foundation for the development of targeted TNBC therapy using the PDGC21T aptamer as a targeting ligand.
Insights
Researchers identified CD49c as the target biomarker for the PDGC21T aptamer on triple-negative breast cancer (TNBC) cells. This discovery paves the way for developing novel aptamer-based targeted therapies for TNBC.
Area of Science:
- Biochemistry
- Oncology
- Molecular Biology
Background:
- Targeted cancer therapies offer improved efficacy and reduced side effects.
- Triple-negative breast cancer (TNBC) lacks specific biomarkers, hindering antibody-based targeted therapy development.
Purpose of the Study:
- To identify the molecular target of the PDGC21T aptamer on TNBC cells.
- To validate CD49c as a potential biomarker for TNBC-targeted therapy.
Main Methods:
- Aptamer-mediated immunoprecipitation followed by LC-MS/MS to identify the aptamer's binding target.
- Cell staining assays using aptamer probes and CD49c antibodies for target validation.
- Competition cell-binding assays to confirm aptamer-CD49c interaction.
Main Results:
- The PDGC21T aptamer selectively binds to cultured TNBC cells and in vivo xenografts.
- LC-MS/MS analysis identified CD49c (integrin α3) as the target protein.
- Aptamer and anti-CD49c antibody staining showed similar patterns on TNBC cells.
- Competition assays confirmed CD49c as the specific target of the PDGC21T aptamer.
Conclusions:
- CD49c is identified as the molecular biomarker targeted by the PDGC21T aptamer on TNBC cells.
- This finding provides a basis for developing PDGC21T aptamer-based targeted therapies for TNBC.
- The study highlights the potential of aptamers in overcoming biomarker limitations in cancer therapy.
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