Aptamer-drug conjugates-loaded bacteria for pancreatic cancer synergistic therapy
1Institute of Molecular Medicine (IMM), State Key Laboratory of Oncogenes and Related Genes, Shanghai Cancer Institute, Department of Oncology, Renji Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai, China.
Abstract:
Pancreatic cancer is one of the most malignant tumors with the highest mortality rates, and it currently lacks effective drugs. Aptamer-drug conjugates (ApDC), as a form of nucleic acid drug, show great potential in cancer therapy. However, the instability of nucleic acid-based drugs in vivo and the avascularity of pancreatic cancer with dense stroma have limited their application. Fortunately, VNP20009, a genetically modified strain of Salmonella typhimurium, which has a preference for anaerobic environments, but is toxic and lacks specificity, can potentially serve as a delivery vehicle for ApDC. Here, we propose a synergistic therapy approach that combines the penetrative capability of bacteria with the targeting and toxic effects of ApDC by conjugating ApDC to VNP20009 through straightforward, one-step click chemistry. With this strategy, bacteria specifically target pancreatic cancer through anaerobic chemotaxis and subsequently adhere to tumor cells driven by the aptamer's specific binding. Results indicate that this method prolongs the serum stability of ApDC up to 48 h and resulted in increased drug concentration at tumor sites compared to the free drugs group. Moreover, the aptamer's targeted binding to cancer cells tripled bacterial colonization at the tumor site, leading to increased death of tumor cells and T cell infiltration. Notably, by integrating chemotherapy and immunotherapy, the effectiveness of the treatment is significantly enhanced, showing consistent results across various animal models. Overall, this strategy takes advantage of bacteria and ApDC and thus presents an effective synergistic strategy for pancreatic cancer treatment.
Insights
This study developed a novel aptamer-drug conjugate (ApDC) delivery system using Salmonella typhimurium bacteria for pancreatic cancer. This synergistic therapy enhances drug stability and tumor targeting, improving treatment effectiveness.
Area of Science:
- Biomedical Engineering
- Oncology
- Drug Delivery Systems
Background:
- Pancreatic cancer exhibits high mortality and lacks effective treatments.
- Aptamer-drug conjugates (ApDCs) show therapeutic potential but face challenges with in vivo instability and pancreatic tumor microenvironments.
- Genetically modified Salmonella typhimurium (VNP20009) offers potential as a delivery vehicle due to its anaerobic preference.
Purpose of the Study:
- To develop a synergistic therapy combining bacteria-mediated delivery with aptamer-drug conjugates for pancreatic cancer.
- To enhance the stability and tumor-specific delivery of aptamer-drug conjugates.
- To evaluate the therapeutic efficacy of this combined approach in pancreatic cancer models.
Main Methods:
- Conjugating aptamer-drug conjugates (ApDCs) to VNP20009 using click chemistry.
- Utilizing VNP20009's anaerobic chemotaxis for pancreatic tumor targeting.
- Assessing serum stability, tumor drug concentration, bacterial colonization, tumor cell death, and T cell infiltration in animal models.
Main Results:
- The VNP20009-ApDC conjugate significantly prolonged ApDC serum stability to 48 hours.
- Increased drug concentration was observed at tumor sites compared to free drugs.
- Aptamer-mediated targeting tripled bacterial colonization, enhancing tumor cell death and T cell infiltration.
Conclusions:
- The VNP20009-ApDC conjugate represents an effective synergistic strategy for pancreatic cancer treatment.
- This approach overcomes limitations of nucleic acid drug instability and pancreatic tumor avascularity.
- Integration of chemotherapy and immunotherapy via this system significantly enhances therapeutic outcomes.
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