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Published on: September 30, 2021
Efficient Gene Delivery and Expression in Pancreas and Pancreatic Tumors by Capsid-Optimized AAV8 Vectors
Min Chen1, Kyungah Maeng1, Akbar Nawab1
11 Department of Anatomy and Cell Biology, University of Florida College of Medicine , Gainesville, Florida.
Abstract:
Despite efforts to use adeno-associated viral (AAV) vector-mediated gene therapy for treatment of pancreatic ductal adenocarcinoma (PDAC), transduction efficiency remains a limiting factor and thus improvement of AAV delivery would significantly facilitate the treatment of this malignancy. Site-directed mutagenesis of specific tyrosine (Y) residues to phenylalanine (F) on the surface of various AAV serotype capsids has been reported as a method for enhancing gene transfer efficiencies. In the present studies, we determine whether Y-to-F mutations could also enhance AAV8 gene transfer in the pancreas to facilitate gene therapy for PDAC. Three different Y-to-F mutant vectors (a single-mutant, Y733F; a double-mutant, Y447F+Y733F; and a triple-mutant, Y275F+Y447F+Y733F) and wild-type AAV8 (WT-AAV8) were administered by intraperitoneal or tail-vein routes to KrasG12D+/-, KrasG12D+/-/Pten+/-, and wild-type mice. The transduction efficiency of these vectors expressing the mCherry reporter gene was evaluated 2 weeks post administration in pancreas or PDAC and correlated with viral genome copy numbers. Our comparative and quantitative analyses of the transduction profiles demonstrated that the Y-to-F double-mutant exhibited the highest mCherry expression in pancreatic tissues (range 45-70%) compared with WT-AAV8 (7%; p < 0.01). We also detected a 7-fold higher level of vector genome copy numbers in normal pancreas following transduction with the double-mutant AAV8 compared with WT-AAV8 (10,285 vs. 1,500 vector copies/μg DNA respectively, p < 0.05). In addition, we observed that intraperitoneal injection of the double-mutant AAV8 led to a 15-fold enhanced transduction efficiency as compared to WT-AAV8 in mouse PDAC, with a corresponding ∼14-fold increase in vector genome copy numbers (26,575 vs. 2,165 copies/μg DNA respectively, p < 0.05). These findings indicate that the Y447+Y733F-AAV8 leads to a significant enhancement of transduction efficiency in both normal and malignant pancreatic tissues, suggesting the potential use of this vector in targeting pancreatic diseases in general, and PDAC in particular.
Insights
Modified adeno-associated viral (AAV) vectors show improved gene transfer efficiency in pancreatic tissues. A double-mutant AAV8 vector significantly enhances transduction for pancreatic ductal adenocarcinoma (PDAC) gene therapy.
Area of Science:
- * Gene Therapy
- * Virology
- * Oncology
Background:
- * Pancreatic ductal adenocarcinoma (PDAC) is a challenging malignancy with limited treatment options.
- * Adeno-associated viral (AAV) vector-mediated gene therapy holds promise for PDAC, but transduction efficiency is a major limitation.
- * Site-directed mutagenesis of tyrosine (Y) to phenylalanine (F) residues on AAV capsids can enhance gene transfer.
Purpose of the Study:
- * To investigate whether Y-to-F mutations on AAV8 capsids can enhance gene transfer efficiency in pancreatic tissues, including PDAC.
- * To evaluate the efficacy of different Y-to-F mutant AAV8 vectors compared to wild-type AAV8 (WT-AAV8) in mouse models.
Main Methods:
- * Three Y-to-F mutant AAV8 vectors (single, double, triple) and WT-AAV8 were constructed.
- * Vectors expressing the mCherry reporter gene were administered via intraperitoneal or tail-vein routes to mice with normal or PDAC conditions.
- * Transduction efficiency and viral genome copy numbers were quantified in pancreatic and PDAC tissues.
Main Results:
- * The double-mutant Y447+Y733F-AAV8 exhibited significantly higher mCherry expression (45-70%) in pancreatic tissues compared to WT-AAV8 (7%).
- * The double-mutant AAV8 showed a 7-fold increase in vector genome copy numbers in normal pancreas and a 14-fold increase in PDAC compared to WT-AAV8.
- * Intraperitoneal injection of the double-mutant AAV8 resulted in a 15-fold enhanced transduction efficiency in mouse PDAC.
Conclusions:
- * The Y447+Y733F-AAV8 double-mutant significantly enhances transduction efficiency in both normal and malignant pancreatic tissues.
- * This enhanced AAV8 vector demonstrates potential for improved gene therapy strategies targeting pancreatic diseases, particularly PDAC.
- * Further development of this modified AAV vector could overcome delivery limitations in PDAC gene therapy.
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