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Synergism of dual AAV gene therapy and rapamycin rescues GSDIII phenotype in muscle and liver
Louisa Jauze, Mallaury Vie, Quentin Miagoux, Lucille Rossiaud, Patrice Vidal, Valle Montalvo-Romeral, Hanadi Saliba, Margot Jarrige, Helene Polveche, Justine Nozi, Pierre-Romain Le Brun, Luca Bocchialini, Amandine Francois, Jérémie Cosette, Jérémy Rouillon, Fanny Collaud, Fanny Bordier, Emilie Bertil-Froidevaux, Christophe Georger, Laetitia van Wittenberghe, Adeline Miranda, Nathalie F. Daniele, David-Alexandre Gross, Lucile Hoch, Xavier Nissan, Giuseppe Ronzitti
Louisa Jauze, Mallaury Vie, Quentin Miagoux, Lucille Rossiaud, Patrice Vidal, Valle Montalvo-Romeral, Hanadi Saliba, Margot Jarrige, Helene Polveche, Justine Nozi, Pierre-Romain Le Brun, Luca Bocchialini, Amandine Francois, Jérémie Cosette, Jérémy Rouillon, Fanny Collaud, Fanny Bordier, Emilie Bertil-Froidevaux, Christophe Georger, Laetitia van Wittenberghe, Adeline Miranda, Nathalie F. Daniele, David-Alexandre Gross, Lucile Hoch, Xavier Nissan, Giuseppe Ronzitti
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Research Article Therapeutics

Synergism of dual AAV gene therapy and rapamycin rescues GSDIII phenotype in muscle and liver

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Abstract

Glycogen storage disease type III (GSDIII) is a rare metabolic disorder due to glycogen debranching enzyme (GDE) deficiency. Reduced GDE activity leads to pathological glycogen accumulation responsible for impaired hepatic metabolism and muscle weakness. To date, there is no curative treatment for GSDIII. We previously reported that 2 distinct dual AAV vectors encoding for GDE were needed to correct liver and muscle in a GSDIII mouse model. Here, we evaluated the efficacy of rapamycin in combination with AAV gene therapy. Simultaneous treatment with rapamycin and a potentially novel dual AAV vector expressing GDE in the liver and muscle resulted in a synergic effect demonstrated at biochemical and functional levels. Transcriptomic analysis confirmed synergy and suggested a putative mechanism based on the correction of lysosomal impairment. In GSDIII mice livers, dual AAV gene therapy combined with rapamycin reduced the effect of the immune response to AAV observed in this disease model. These data provide proof of concept of an approach exploiting the combination of gene therapy and rapamycin to improve efficacy and safety and to support clinical translation.

Authors

Louisa Jauze, Mallaury Vie, Quentin Miagoux, Lucille Rossiaud, Patrice Vidal, Valle Montalvo-Romeral, Hanadi Saliba, Margot Jarrige, Helene Polveche, Justine Nozi, Pierre-Romain Le Brun, Luca Bocchialini, Amandine Francois, Jérémie Cosette, Jérémy Rouillon, Fanny Collaud, Fanny Bordier, Emilie Bertil-Froidevaux, Christophe Georger, Laetitia van Wittenberghe, Adeline Miranda, Nathalie F. Daniele, David-Alexandre Gross, Lucile Hoch, Xavier Nissan, Giuseppe Ronzitti

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Figure 2

One-month daily rapamycin treatment fails at rescuing liver and muscle impairment in Agl–/– mice.

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One-month daily rapamycin treatment fails at rescuing liver and muscle i...
(A) Six-month-old Agl−/− mice received daily i.p. injections of rapamycin at 1.5 mg/kg for a month (n = 5 per group). Vehicle-injected Agl+/+ (n = 5) and Agl−/− (n = 5) mice were used as controls. (B) Glycogen content measured in liver and quadriceps at the end of the treatment. (C) Glycemia measured at the end of the treatment. (D) Liver weight measured at the end of the treatment. (E) H&E, Periodic Acid Schiff (PAS), and Sirius red staining performed in liver sections. Scale bar: 100 μm. (F) H&E and Periodic Acid Schiff (PAS) staining performed in quadriceps sections. Scale bar: 100 μm. (G) Western blot analysis of p62 in liver and triceps. Quantifications of p62 proteins bands are plotted next to the Western blot and expressed as ratio to vinculin. Data shown as mean ± SD. Statistical analyses were performed by 1-way ANOVA with Tukey post hoc test. Significance was indicated with * vs. Agl–/– and # vs. Agl+/+. * and #P < 0.05, ** and ##P < 0.01, ***P < 0.001, and **** and ####P < 0.0001.

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