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Prolonged Expression of Secreted Enzymes in Dogs After Liver-Directed Delivery of Sleeping Beauty Transposons: Implications for Non-Viral Gene Therapy of Systemic Disease

机译:肝脏定向递送的睡眠美容转座子后分泌酶在狗中的延长表达:对系统疾病的非病毒基因治疗的意义

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摘要

The non-viral, integrating Sleeping Beauty (SB) transposon system is efficient in treating systemic monogenic disease in mice, including hemophilia A and B caused by deficiency of blood clotting factors and mucopolysaccharidosis types I and VII caused by α-L-iduronidase (IDUA) and β-glucuronidase (GUSB) deficiency, respectively. Modified approaches of the hydrodynamics-based procedure to deliver transposons to the liver in dogs were recently reported. Using the transgenic canine reporter secreted alkaline phosphatase (cSEAP), transgenic protein in the plasma was demonstrated for up to 6 weeks post infusion. This study reports that immunosuppression of dogs with gadolinium chloride (GdCl3) prolonged the presence of cSEAP in the circulation up to 5.5 months after a single vector infusion. Transgene expression declined gradually but appeared to stabilize after about 2 months at approximately fourfold baseline level. Durability of transgenic protein expression in the plasma was inversely associated with transient increase of liver enzymes alanine transaminase and aspartate transaminase in response to the plasmid delivery procedure, which suggests a deleterious effect of hepatocellular toxicity on transgene expression. GdCl3 treatment was ineffective for repeat vector infusions. In parallel studies, dogs were infused with potentially therapeutic transposons. Activities of transgenic IDUA and GUSB in plasma peaked at 50–350% of wildtype, but in the absence of immunosuppression lasted only a few days. Transposition was detectable by excision assay only when the most efficient transposase, SB100X, was used. Dogs infused with transposons encoding canine clotting factor IX (cFIX) were treated with GdCl3 and showed expression profiles similar to those in cSEAP-infused dogs, with expression peaking at 40% wt (2 μg/mL). It is concluded that GdCl3 can support extended transgene expression after hydrodynamic introduction of SB transposons in dogs, but that alternative regimens will be required to achieve therapeutic levels of transgene products.
机译:这种非病毒性,整合性的Sleeping Beauty(SB)转座子系统可有效治疗小鼠全身性单基因疾病,包括由凝血因子缺乏和由α-L-杜鹃糖苷酶(IDUA)引起的I型和VII型黏多糖贮积症引起的血友病A和B )和β-葡萄糖醛酸苷酶(GUSB)缺乏症。最近报道了基于水动力学的方法的改良方法,以将转座子递送至犬的肝脏。使用转基因犬报道分子分泌的碱性磷酸酶(cSEAP),可在输注后长达6周的时间内证明血浆中的转基因蛋白。这项研究报告说,用氯化g(GdCl3)对狗进行免疫抑制后,单次输注载体后,循环中cSEAP的存在可延长至5.5个月。转基因表达逐渐下降,但在约2个月后似乎稳定在基线水平的四倍。血浆中转基因蛋白表达的持久性与肝脏酶丙氨酸转氨酶和天冬氨酸转氨酶在质粒传递过程中的瞬时增加成反比,这表明肝细胞毒性对转基因表达具有有害作用。 GdCl3处理对于重复的载体输注无效。在平行研究中,给狗灌输了潜在的治疗性转座子。血浆中转基因IDUA和GUSB的活性最高达到野生型的50-350%,但是在没有免疫抑制的情况下仅持续了几天。仅当使用最有效的转座酶SB100X时,才能通过切除分析检测到转座。用GdCl3处理注入了编码犬凝血因子IX的转座子的狗,并显示了与注入cSEAP的狗相似的表达谱,表达峰值达到40%wt(2μg/ mL)。结论是,在狗中将SB转座子水动力引入后,GdCl3可以支持扩展的转基因表达,但是将需要替代方案以达到治疗水平的转基因产物。

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