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重新给药腺相关病毒载体并延长表面活性蛋白B缺乏小鼠生存期的新型免疫反应逃避策略

Novel Immune Response Evasion Strategy to Redose Adeno-associated Viral Vectors and Prolong Survival in Surfactant Protein-B Deficient Mice.

作者信息

Kang Martin H, Thomas Sylvia P, Westley Caralyn, Blouin Thomas, Xu Liqun, Chan Ying Kai, Lisk Erin, Allen Sarah, Vadivel Arul, Nangle Kennedy, Ramamurthy Janani, Pei Yanlong, Lewis Lunndon, Chiang Jessica J, Romeo Marty J, Vaena Silvia, O'Quinn Elizabeth C, Schrecker Henry D, Langdon Casey G, Nietert Paul J, Church George M, Whitsett Jeffrey A, Wootton Sarah K, Thébaud Bernard

机构信息

Medical University of South Carolina, Dr Charles P Darby Jr Department of Pediatrics, Charleston, South Carolina, United States;

University of Guelph, Pathobiology, Guelph, Ontario, Canada.

出版信息

Am J Respir Cell Mol Biol. 2025 Jan 13. doi: 10.1165/rcmb.2024-0247OC.


DOI:10.1165/rcmb.2024-0247OC
PMID:39805087
Abstract

Surfactant protein-B (SP-B) deficiency is a lethal neonatal respiratory disease with few therapeutic options. Gene therapy using adeno-associated viruses (AAV) to deliver human cDNA (AAV-hSPB) can improve survival in a mouse model of SP-B deficiency. However, the effect of this gene therapy wanes. Gene therapy efficacy could be prolonged if AAV vectors were able to be redosed, but readministering vectors is hindered by an immune response which includes toll like receptor 9 (TLR9) recognition of unmethylated CpG DNA motifs in the AAV genome. One strategy to mitigate TLR9 recognition of AAV is to incorporate decoy nucleotide sequences within the AAV genome. This work examined if AAV containing these TLR9 inhibitory oligonucleotide sequences (AAV-hSPB) could mitigate the immune response sufficiently to redose AAV in the lungs and prolong the survival of SP-B deficient mice. Indeed, AAV-hSPB was able to be redosed multiple times which significantly improved survival in our mouse model. This was partially a result of long-term increased RNA and SP-B protein expression. Conversely, redosing AAV-hSPB resulted in the rapid death of SP-B deficient mice after the second AAV dose. TLR9 inhibition enabled readministration by avoiding the broad stimulation of genes belonging to multiple pathways in the host immune and inflammatory responses, including components of the interferon pathways. Thus, redosing of AAV vectors in the lungs using TLR9 inhibitory sequences is a promising strategy for prolonging gene therapy efficacy, with a proof-of-concept for AAV readministration in a clinically relevant mouse model of SP-B deficiency.

摘要

表面活性蛋白B(SP - B)缺乏症是一种致命的新生儿呼吸系统疾病,治疗选择有限。利用腺相关病毒(AAV)递送人cDNA(AAV - hSPB)进行基因治疗可提高SP - B缺乏症小鼠模型的存活率。然而,这种基因治疗的效果会逐渐减弱。如果AAV载体能够重新给药,基因治疗的疗效可能会延长,但再次给药会受到免疫反应的阻碍,这种免疫反应包括Toll样受体9(TLR9)对AAV基因组中未甲基化CpG DNA基序的识别。减轻TLR9对AAV识别的一种策略是在AAV基因组中掺入诱饵核苷酸序列。这项研究探讨了含有这些TLR9抑制性寡核苷酸序列的AAV(AAV - hSPB)是否能够充分减轻免疫反应,以便在肺部重新给药AAV并延长SP - B缺乏症小鼠的存活时间。事实上,AAV - hSPB能够多次重新给药,这显著提高了我们小鼠模型的存活率。这部分是长期RNA和SP - B蛋白表达增加的结果。相反,再次给药AAV - hSPB导致第二次给药后SP - B缺乏症小鼠迅速死亡。TLR9抑制通过避免广泛刺激宿主免疫和炎症反应中属于多个途径的基因,包括干扰素途径的成分,实现了重新给药。因此,使用TLR9抑制序列在肺部重新给药AAV载体是一种有前景的延长基因治疗疗效的策略,在SP - B缺乏症的临床相关小鼠模型中为AAV重新给药提供了概念验证。

相似文献

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Novel Immune Response Evasion Strategy to Redose Adeno-associated Viral Vectors and Prolong Survival in Surfactant Protein-B Deficient Mice.

Am J Respir Cell Mol Biol. 2025-1-13

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引用本文的文献

[1]
Construction of an Indole-induced Transgenic System and Its Therapeutic Effects on Allergic Rhinitis.

Am J Respir Cell Mol Biol. 2025-8

[2]
The curious case of AAV immunology.

Mol Ther. 2025-5-7

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