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Development of a novel drug targeting delivery system for cervical cancer therapy
1Laboratory of Tumor Molecular and Cellular Biology, College of Life Sciences, Shaanxi Normal University, 620 West Chang'an Avenue, Xi'an, Shaanxi 710119, People's Republic of China.
Abstract:
'Targeting peptides' have demonstrated their value in diagnostic imaging and therapy and novel peptide probes specific to cervical cancer were developed. In the M13KE phage dodecapeptide (12-mer) peptide library, the phage clone S7 showed the best binding to the cancer cells as confirmed by immunofluorescence and flow cytometry assays, and was selected for continued studies. Its binding peptide, CSP3, was synthesized from the sequence of S7's 12-mer at the N-terminus of the minor coat protein pIII of this M13KE phage vector. The peptide's binding was analyzed by the same assays used for S7. It was also assessed using competitive inhibition and binding to a tissue chip. The results demonstrated that the CSP3 peptide bound to cervical carcinoma cells with high sensitivity and specificity. The positive results indicated that the peptide CSP3, conjugated with nanomaterials and chemotherapeutics, may be developed as a targeting vehicle for therapeutic drug delivery against cervical cancer, especially cervical cancer with multiple drug resistance. For this aim, we prepared a CSP3 conjugated liposome drug delivery system containing doxorubicin (DOX) and microRNA101 (miR101) expression plasmids (CSP3-Lipo-DOX-miR101), and the primary result showed that the system demonstrated significantly enhanced cytotoxicity to SiHa cells and DOX resistant SiHa cells, SiHa/ADR. Our results showed that CSP3 is a cervical cancer targeting 12aa peptide with high specificity and sensitivity, and the CSP3 conjugated drug delivery system, CSP3-Lipo-DOX-miR101 has promising potential for development as an efficient drug system for the therapy of cervical cancer.
Insights
A novel peptide, CSP3, specifically targets cervical cancer cells. This peptide, when conjugated to a drug delivery system with doxorubicin and microRNA101, shows enhanced effectiveness against cervical cancer, including drug-resistant types.
Area of Science:
- Biotechnology
- Oncology
- Nanomedicine
Background:
- Targeting peptides are valuable tools in cancer diagnostics and therapeutics.
- Developing specific probes for cervical cancer is crucial for effective treatment.
Purpose of the Study:
- To identify and characterize a novel peptide targeting cervical cancer.
- To develop and evaluate a peptide-conjugated drug delivery system for cervical cancer therapy.
Main Methods:
- Screening of a phage display dodecapeptide library (M13KE) to identify cancer-specific clones.
- Synthesis and characterization of the binding peptide CSP3.
- Assessment of CSP3 binding specificity and sensitivity using immunofluorescence, flow cytometry, competitive inhibition, and tissue chip assays.
- Preparation and in vitro evaluation of a CSP3-conjugated liposome drug delivery system (CSP3-Lipo-DOX-miR101) containing doxorubicin and microRNA101.
Main Results:
- Phage clone S7 exhibited significant binding to cervical cancer cells, leading to the selection of its peptide CSP3.
- CSP3 demonstrated high sensitivity and specificity for binding to cervical carcinoma cells.
- The CSP3-conjugated liposome system (CSP3-Lipo-DOX-miR101) exhibited enhanced cytotoxicity against both standard and doxorubicin-resistant cervical cancer cells (SiHa and SiHa/ADR).
Conclusions:
- CSP3 is a highly specific and sensitive 12-amino acid peptide for targeting cervical cancer.
- The CSP3-conjugated drug delivery system shows significant potential for developing efficient therapeutic strategies against cervical cancer, including multidrug-resistant cases.
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