Codon-Optimized and de novo-Synthesized E-Selectin/AAV2 Dose-Response Study for Vascular Regeneration Gene Therapy
Francesca A Voza1, Barry J Byrne2, Yulexi Y Ortiz1
1DeWitt Daughtry Family Department of Surgery, University of Miami School of Medicine, Miami, FL.
Objective:
This study focuses on dose-response investigation using a codon-optimized and de novo-synthesized E-Selectin/AAV2 (E-Sel/AAV2) vector in preparation for Investigational New Drug enabling of subsequent clinical studies.
Background:
Gene therapy is a potential solution for patients suffering from chronic limb-threatening ischemia. Understanding the dose for effective gene delivery is crucial for future Investigational New Drug-enabling studies.
Methods:
Expression of the codon-optimized E-Selectin gene was assessed by flow cytometry following in vitro cell transfection assay and RT-qPCR for murine limbs injected in vivo with AAV-m-E-Selectin (E-Sel/AAV2). Dose-response studies involved 3 cohorts of FVB/NJ mice (n=6/group) with escalating log doses of E-Selectin/AAV2 injected intramuscularly in divided aliquots, ranging from 2 × 10 9 VG to 2 × 10 11 VG, into ischemic limbs created by left femoral artery/vein ligation/excision and administration of nitric oxide synthase inhibitor, L-NAME. Limb perfusion, extent of gangrene free limb, functional limb recovery, and therapeutic angiogenesis were assessed.
Results:
Codon-optimized E-Sel/AAV2 gene therapy exhibits a superior expression level than WT E-Sel/AAV2 gene therapy both in vitro and in vivo. Mice treated with a high dose (2 × 10 11 VG) of E-Sel/AAV2 showed significantly improved perfusion indices, lower Faber scores, increased running stamina, and neovascularization compared with lower doses tested with control groups, indicating a distinct dose-dependent response. No toxicity was detected in any of the animal groups studied.
Conclusions:
E-Sel/AAV2 Vascular Regeneration Gene Therapy holds promise for enhancing the recovery of ischemic hindlimb perfusion and function, with the effective dose identified in this study as 2 × 10 11 VG aliquots injected intramuscularly.
Insights
This study determined the optimal dose for E-Selectin/AAV2 gene therapy to treat chronic limb ischemia. A dose of 2 × 10^11 vector genomes per animal showed significant improvements in limb perfusion and function without toxicity.
Area of Science:
- Gene Therapy
- Vascular Biology
- Regenerative Medicine
Background:
- Chronic limb-threatening ischemia requires innovative treatments.
- Gene therapy offers a promising therapeutic avenue.
- Establishing optimal gene delivery doses is critical for clinical translation.
Purpose of the Study:
- To investigate the dose-response relationship of a codon-optimized E-Selectin/AAV2 vector.
- To prepare for Investigational New Drug (IND) enabling studies for clinical trials.
- To evaluate the efficacy and safety of E-Sel/AAV2 in a preclinical model of ischemia.
Main Methods:
- Developed and synthesized a codon-optimized E-Selectin/AAV2 (E-Sel/AAV2) vector.
- Assessed gene expression in vitro (flow cytometry) and in vivo (RT-qPCR).
- Conducted dose-response studies in mice with induced limb ischemia, testing doses from 2 × 10^9 VG to 2 × 10^11 VG.
Main Results:
- Codon-optimized E-Sel/AAV2 demonstrated superior expression compared to wild-type.
- The highest dose (2 × 10^11 VG) significantly improved limb perfusion, reduced gangrene, enhanced functional recovery, and promoted neovascularization.
- No significant toxicity was observed across all tested doses.
Conclusions:
- E-Sel/AAV2 vascular regeneration gene therapy is effective in improving ischemic hindlimb perfusion and function.
- The identified effective dose for E-Sel/AAV2 is 2 × 10^11 VG administered intramuscularly.
- This study provides crucial data for advancing E-Sel/AAV2 towards clinical application.
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