A dual-targeting drug co-delivery system for tumor chemo- and gene combined therapy
Fangrong Zhang1, Min Li1, Yujie Su1
1State Key Laboratory of Natural Medicines, Department of Pharmaceutics, China Pharmaceutical University, 24 Tongjiaxiang, Nanjing 210009, China.
Abstract:
Regulation of gene expression using p53 is a promising strategy for treatment of numerous cancers, and chemotherapeutic drug dichloroacetate (DCA) induces apoptosis and growth inhibition in tumor, without apparent toxicity in normal tissues. Combining DCA and p53 gene could be an effective way to treat tumors. The progress towards broad applications of DCA/p53 combination requires the development of safe and efficient vectors that target to specific cells. In this study, we developed a DSPE-PEG-AA (1,2-distearoryl-sn-glycero-3-phosphoethanolamine-N-[methoxy(polyethyleneglycol-2000)] ammonium salt-anisamide) modified reconstituted high-density lipoprotein-based DCA/p53-loaded nanoparticles (DSPE-PEG-AA/rHDL/DCA-PEI/p53 complexes), which was fabricated as a drug/gene dual-targeting co-delivery system for potential cancer therapy. Here, DCA-PEI was utilized to effectively condense the p53 plasmid, to incorporate the plasmid into rHDL and to act as an antitumor drug to inhibit tumor cell growth. The DSPE-PEG-AA/rHDL/DCA-PEI/p53 complexes exhibited desirable and homogenous particle size, neutral surface charge and low cytotoxicity for normal cells in vitro. The results of confocal laser scanning microscopy (CLSM) and flow cytometry confirmed that the scavenger receptor class B type I (SR-BI) and sigma receptor mediated dual-targeting function of the complexes inducing efficient cytoplasmic drug delivery and gene transfection in human lung adenocarcinoma cell line A549. And in vivo investigation on nude mice bearing A549 tumor xenografts revealed that DSPE-PEG-AA/rHDL/DCA-PEI/p53 complexes possessed specific tumor targeting and strong antitumor activity. The work described here demonstrated that the DSPE-PEG-AA/rHDL/DCA-PEI/p53 complexes might offer a promising tool for effective cancer therapy.
Insights
This study developed novel nanoparticles combining dichloroacetate (DCA) and p53 gene therapy for cancer treatment. These dual-targeting nanoparticles show promise for effective tumor inhibition with low toxicity.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Cancer Therapy
Background:
- p53 gene therapy and dichloroacetate (DCA) show anti-cancer potential.
- Effective and safe delivery systems are crucial for combined DCA/p53 cancer treatment.
- Targeted delivery enhances therapeutic efficacy while minimizing side effects.
Purpose of the Study:
- To develop a dual-drug/gene co-delivery system for cancer therapy.
- To fabricate DSPE-PEG-AA modified reconstituted high-density lipoprotein (rHDL)-based nanoparticles for DCA and p53.
- To evaluate the targeting efficiency and anti-tumor activity of the developed nanoparticles.
Main Methods:
- Fabrication of DSPE-PEG-AA/rHDL/DCA-PEI/p53 complexes for dual drug/gene delivery.
- In vitro characterization of nanoparticle size, charge, and cytotoxicity.
- Confocal laser scanning microscopy (CLSM) and flow cytometry for cellular uptake and gene transfection studies.
- In vivo tumor targeting and anti-tumor efficacy evaluation in nude mice xenografts.
Main Results:
- The DSPE-PEG-AA/rHDL/DCA-PEI/p53 complexes exhibited optimal particle size, neutral charge, and low in vitro cytotoxicity.
- Dual-targeting mediated by scavenger receptor class B type I (SR-BI) and sigma receptor was confirmed.
- Efficient cytoplasmic drug delivery and gene transfection were observed in A549 cells.
- In vivo studies demonstrated specific tumor targeting and significant anti-tumor activity.
Conclusions:
- DSPE-PEG-AA/rHDL/DCA-PEI/p53 complexes represent a promising dual-targeting co-delivery system for cancer therapy.
- The developed nanoparticles offer a potential strategy for effective cancer treatment by combining DCA and p53.
- Further research may lead to clinical applications of this novel nanomedicine approach.
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