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Analysis of the impact of pluronic acid on the thermal stability and infectivity of AAV6.2FF

dc.contributor.authorThomas, Sylvia P.
dc.contributor.authorSpinelli, Marcus M.
dc.contributor.authorRghei, Amira D.
dc.contributor.authorLopes, Jordyn A.
dc.contributor.authorZielinska, Nicole
dc.contributor.authorMcLeod, Benjamin M.
dc.contributor.authorPei, Yanlong
dc.contributor.authorZhang, Wei
dc.contributor.authorThebaud, Bernard
dc.contributor.authorKarimi, Khalil
dc.contributor.authorWootton, Sarah K.
dc.date.accessioned2024-04-30T03:36:58Z
dc.date.available2024-04-30T03:36:58Z
dc.date.issued2024-04-25
dc.date.updated2024-04-30T03:36:58Z
dc.description.abstractAbstract Background The advancement of AAV vectors into clinical testing has accelerated rapidly over the past two decades. While many of the AAV vectors being utilized in clinical trials are derived from natural serotypes, engineered serotypes are progressing toward clinical translation due to their enhanced tissue tropism and immune evasive properties. However, novel AAV vectors require formulation and stability testing to determine optimal storage conditions prior to their use in a clinical setting. Results Here, we evaluated the thermal stability of AAV6.2FF, a rationally engineered capsid with strong tropism for lung and muscle, in two different buffer formulations; phosphate buffered saline (PBS), or PBS supplemented with 0.001% non-ionic surfactant Pluronic F68 (PF-68). Aliquots of AAV6.2FF vector encoding the firefly luciferase reporter gene (AAV6.2FF-ffLuc) were incubated at temperatures ranging from -20°C to 55°C for varying periods of time and the impact on infectivity and particle integrity evaluated. Additionally, the impact of several rounds of freeze-thaw treatments on the infectivity of AAV6.2FF was investigated. Vector infectivity was measured by quantifying firefly luciferase expression in HEK 293 cells and AAV particle integrity was measured by qPCR quantification of encapsidated viral DNA. Conclusions Our data demonstrate that formulating AAV6.2FF in PBS containing 0.001% PF-68 leads to increased stability and particle integrity at temperatures between -20℃ to 21℃ and protection against the destructive effects of freeze-thaw. Finally, AAV6.2FF-GFP formulated in PBS supplemented with 0.001% PF-68 displayed higher transduction efficiency in vivo in murine lung epithelial cells following intranasal administration than vector buffered in PBS alone further demonstrating the beneficial properties of PF-68.
dc.identifier.citationBMC Biotechnology. 2024 Apr 25;24(1):22
dc.identifier.urihttps://doi.org/10.1186/s12896-024-00853-6
dc.identifier.urihttp://hdl.handle.net/10393/46145
dc.language.rfc3066en
dc.rights.holderThe Author(s)
dc.titleAnalysis of the impact of pluronic acid on the thermal stability and infectivity of AAV6.2FF
dc.typeJournal Article

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