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2'-O-甲基硫代磷酸酯和吗啉代反义寡核苷酸用于杜氏肌营养不良症外显子跳跃的体内比较。

In vivo comparison of 2'-O-methyl phosphorothioate and morpholino antisense oligonucleotides for Duchenne muscular dystrophy exon skipping.

作者信息

Heemskerk Hans A, de Winter Christa L, de Kimpe Sjef J, van Kuik-Romeijn Petra, Heuvelmans Niki, Platenburg Gerard J, van Ommen Gert-Jan B, van Deutekom Judith C T, Aartsma-Rus Annemieke

机构信息

DMD Genetic Therapy Group, Department of Human Genetics, Leiden University Medical Center, Leiden, The Netherlands.

出版信息

J Gene Med. 2009 Mar;11(3):257-66. doi: 10.1002/jgm.1288.

Abstract

BACKGROUND

Antisense-mediated exon skipping is a putative treatment for Duchenne muscular dystrophy (DMD). Using antisense oligonucleotides (AONs), the disrupted DMD reading frame is restored, allowing generation of partially functional dystrophin and conversion of a severe Duchenne into a milder Becker muscular dystrophy phenotype. In vivo studies are mainly performed using 2'-O-methyl phosphorothioate (2OMePS) or morpholino (PMO) AONs. These compounds were never directly compared.

METHODS

mdx and humanized (h)DMD mice were injected intramuscularly and intravenously with short versus long 2OMePS and PMO for mouse exon 23 and human exons 44, 45, 46 and 51.

RESULTS

Intramuscular injection showed that increasing the length of 2OMePS AONs enhanced skipping efficiencies of human exon 45, but decreased efficiency for mouse exon 23. Although PMO induced more mouse exon 23 skipping, PMO and 2OMePS were more comparable for human exons. After intravenous administration, exon skipping and novel protein was shown in the heart with both chemistries. Furthermore, PMO showed lower intramuscular concentrations with higher exon 23 skipping levels compared to 2OMePS, which may be due to sequestration in the extracellular matrix. Finally, two mismatches rendered 2OMePS but not PMO AONs nearly ineffective.

CONCLUSIONS

The results obtained in the present study indicate that increasing AON length improves skipping efficiency in some but not all cases. It is feasible to induce exon skipping and dystrophin restoration in the heart after injection of 2OMePS and unconjugated PMO. Furthermore, differences in efficiency between PMO and 2OMePS appear to be sequence and not chemistry dependent. Finally, the results indicate that PMOs may be less sequence specific than 2OMePS.

摘要

背景

反义介导的外显子跳跃是杜氏肌营养不良症(DMD)的一种潜在治疗方法。使用反义寡核苷酸(AON)可恢复中断的DMD阅读框,从而产生部分功能性的抗肌萎缩蛋白,并将严重的杜氏肌营养不良症转化为较轻的贝克型肌营养不良症表型。体内研究主要使用2'-O-甲基硫代磷酸酯(2OMePS)或吗啉代(PMO)AON进行。这些化合物从未进行过直接比较。

方法

对mdx和人源化(h)DMD小鼠进行肌肉注射和静脉注射,分别给予针对小鼠外显子23以及人外显子44、45、46和51的短链和长链2OMePS及PMO。

结果

肌肉注射显示,增加2OMePS AON的长度可提高人外显子45的跳跃效率,但会降低小鼠外显子23的效率。尽管PMO诱导更多的小鼠外显子23跳跃,但在人外显子方面,PMO和2OMePS更具可比性。静脉给药后,两种化学物质均在心脏中显示出外显子跳跃和新蛋白。此外,与2OMePS相比,PMO在肌肉中的浓度较低,但外显子23跳跃水平较高,这可能是由于在细胞外基质中被隔离所致。最后,两个错配使2OMePS而非PMO AON几乎无效。

结论

本研究获得的结果表明,增加AON长度在某些情况下可提高跳跃效率,但并非所有情况都如此。注射2OMePS和未缀合的PMO后,在心脏中诱导外显子跳跃和抗肌萎缩蛋白恢复是可行的。此外,PMO和2OMePS之间的效率差异似乎取决于序列而非化学性质。最后,结果表明PMO的序列特异性可能低于2OMePS。

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