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Bi-specific splice-switching PMO oligonucleotides conjugated via a single peptide active in a mouse model of Duchenne muscular dystrophy

机译:通过在杜氏肌营养不良症小鼠模型中具有活性的单个肽偶联的双特异性剪接转换PMO寡核苷酸

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The potential for therapeutic application of splice-switching oligonucleotides (SSOs) to modulate pre-mRNA splicing is increasingly evident in a number of diseases. However, the primary drawback of this approach is poor cell and in vivo oligonucleotide uptake efficacy. Biological activities can be significantly enhanced through the use of synthetically conjugated cationic cell penetrating peptides (CPPs). Studies to date have focused on the delivery of a single SSO conjugated to a CPP, but here we describe the conjugation of two phosphorodiamidate morpholino oligonucleotide (PMO) SSOs to a single CPP for simultaneous delivery and pre-mRNA targeting of two separate genes, exon 23 of the Dmd gene and exon 5 of the Acvr2b gene, in a mouse model of Duchenne muscular dystrophy. Conjugations of PMOs to a single CPP were carried out through an amide bond in one case and through a triazole linkage ('click chemistry') in the other. The most active bi-specific CPP-PMOs demonstrated comparable exon skipping levels for both pre-mRNA targets when compared to individual CPP-PMO conjugates both in cell culture and in vivo in the mdx mouse model. Thus, two SSOs with different target sequences conjugated to a single CPP are biologically effective and potentially suitable for future therapeutic exploitation.
机译:在许多疾病中,治疗性应用剪接切换寡核苷酸(SSO)调节mRNA前剪接的潜力越来越明显。然而,该方法的主要缺点是差的细胞和体内寡核苷酸吸收功效。通过使用合成偶联的阳离子细胞穿透肽(CPP),可以显着增强生物活性。迄今为止的研究集中在与CPP偶联的单个SSO的递送上,但在这里我们描述了两个磷酸二酰胺吗啉代寡核苷酸(PMO)SSO与单个CPP的偶联,用于同时递送和靶向两个独立基因exon的pre-mRNA在Duchenne肌肉营养不良的小鼠模型中,Dmd基因的23个和Acvr2b基因的第5外显子。在一种情况下,通过酰胺键将PMO与单个CPP偶联,在另一种情况下,通过三唑键(“点击化学”)进行。当在mdx小鼠模型中的细胞培养和体内实验中,与单个CPP-PMO偶联物相比时,最活跃的双特异性CPP-PMOs对两个pre-mRNA靶标表现出相当的外显子跳跃水平。因此,具有与单个CPP缀合的不同靶序列的两个SSO在生物学上是有效的,并且潜在地适合于将来的治疗利用。

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