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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
Neocarzinostatin, Aptamer Conjugates for Targeting EpCAM-positive Tumor Cells
Prasanna Kumar Athyala1,2, Jagat Rakesh Kanwar2, Srujana Chitipothu3
1Department of Nanobiotechnology, Kamalnayan Bajaj Institute for Research in Vision and Ophthalmology, Vision Research Foundation, Chennai, India.
Background/Aim:
The aim of this study was to investigate the role of Neocarzinostatin (NCS) conjugated with epithelial cell adhesion molecule (EpCAM) aptamer in EpCAM-positive cancer cells. NCS is an antitumor antibiotic protein chromophore that has the ability to cleave double stranded DNA and can be used as a potential drug for the treatment of EpCAM-positive cancers. EpCAM aptamer is an oligonucleotide ligand that binds specifically to EpCAM, a protein overexpressed in tumor cells.
Materials And Methods:
NCS was conjugated with EpCAM aptamer using Sulfo-Succinimidyl 6-(3-(2-pyridyldithio) - propionamide hexanoate) LC-(SPDP) cross-linker to deliver it to EpCAM-positive tumor cells. The conjugates were characterized using polyacrylamide gel electrophoresis (PAGE) and high-performance liquid chromatography (HPLC). Flow cytometry was used to study the binding efficiency of the aptamer and the conjugates in cancer cells. The effect of the conjugate on cancer cells was studied using propidium iodide (PI) to analyze the cell cycle phase changes. The apoptosis assay was performed using the IC50 concentration of NCS. Microarrays were performed to study the gene level changes in cancer cells upon treatment with NCS and the conjugate.
Results:
Flow cytometry revealed significant binding of aptamer and conjugate in the MCF-7 and WERI-Rb1 cell lines. Briefly, 62% in MCF and 30% in WERI-Rb1 cells with conjugate treated cells (p<0.005). The cell-cycle analysis indicated G2 phase arrest in MCF-7 cells and S phase arrest in WERI-Rb1 cells (p<0.005). Microarray analysis showed differentially expressed genes involved in cell cycle, DNA damage, and apoptosis. The BrDU assay and the apoptosis assay showed that the expression of BrDU was reduced in conjugate-treated cells and the PARP levels were increased confirming the double stranded DNA breaks (p<0.005). In MCF-7 and WERI-Rb1 cells, most of the cells underwent necrosis (p<0.005).
Conclusion:
The EpCAM aptamer conjugated NCS showed specificity to EpCAM-positive cells. The effect of the conjugates on cancer cells were impressive as the conjugate arrested the cell cycle and promoted apoptosis and necrosis. The high levels of PARP expression confirmed the DNA breaks upon conjugate treatment. Our study demonstrates that the NCS conjugated with EpCAM can be targeted to cancer cells sparing normal cells.
Insights
Neocarzinostatin (NCS) conjugated with an epithelial cell adhesion molecule (EpCAM) aptamer effectively targets EpCAM-positive cancer cells, inducing cell cycle arrest, apoptosis, and necrosis. This targeted drug delivery system shows promise for cancer treatment by specifically affecting tumor cells.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- Neocarzinostatin (NCS) is an antitumor antibiotic with DNA-cleaving properties.
- Epithelial cell adhesion molecule (EpCAM) is overexpressed in various tumor cells.
- Targeted drug delivery aims to enhance efficacy and reduce side effects.
Purpose of the Study:
- To investigate the efficacy of NCS conjugated with an EpCAM aptamer for targeting EpCAM-positive cancer cells.
- To evaluate the drug's impact on cancer cell cycle, apoptosis, and gene expression.
- To confirm targeted delivery and DNA damage induction.
Main Methods:
- Conjugation of NCS with EpCAM aptamer using SPDP cross-linker.
- Characterization via PAGE and HPLC.
- Binding efficiency assessed by flow cytometry.
- Cell cycle analysis using propidium iodide (PI).
- Apoptosis and gene expression analyzed via microarrays and specific assays (BrDU, PARP).
Main Results:
- Significant binding of the aptamer-NCS conjugate to MCF-7 and WERI-Rb1 cancer cells.
- Induction of G2 and S phase cell cycle arrest in treated cells.
- Differential gene expression related to cell cycle, DNA damage, and apoptosis.
- Increased PARP levels and reduced BrDU expression confirmed DNA breaks.
- High rates of necrosis observed in treated cancer cells.
Conclusions:
- EpCAM aptamer-conjugated NCS demonstrates specific targeting of EpCAM-positive cancer cells.
- The conjugate effectively induces cell cycle arrest, apoptosis, and necrosis.
- High PARP expression confirms DNA double-strand breaks, validating the mechanism of action.
- This targeted approach offers potential for selective cancer therapy, sparing normal cells.
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