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通过多样化文库聚类和结构参数化发现用于治疗性 mRNA 递送的肽核酸基纳米颗粒平台。

Discovery of a Peptoid-Based Nanoparticle Platform for Therapeutic mRNA Delivery via Diverse Library Clustering and Structural Parametrization.

机构信息

Nutcracker Therapeutics, 5980 Horton Street Suite 350, Emeryville, California 94608, United States.

Molecular Foundry, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United States.

出版信息

ACS Nano. 2024 Aug 20;18(33):22181-22193. doi: 10.1021/acsnano.4c05513. Epub 2024 Aug 6.

Abstract

Nanoparticle-mediated mRNA delivery has emerged as a promising therapeutic modality, but its growth is still limited by the discovery and optimization of effective and well-tolerated delivery strategies. Lipid nanoparticles containing charged or ionizable lipids are an emerging standard for in vivo mRNA delivery, so creating facile, tunable strategies to synthesize these key lipid-like molecules is essential to advance the field. Here, we generate a library of N-substituted glycine oligomers, peptoids, and undertake a multistage down-selection process to identify lead candidate peptoids as the ionizable component in our Nutshell nanoparticle platform. First, we identify a promising peptoid structural motif by clustering a library of >200 molecules based on predicted physical properties and evaluate members of each cluster for reporter gene expression in vivo. Then, the lead peptoid motif is optimized using design of experiments methodology to explore variations on the charged and lipophilic portions of the peptoid, facilitating the discovery of trends between structural elements and nanoparticle properties. We further demonstrate that peptoid-based Nutshells leads to expression of therapeutically relevant levels of an anti-respiratory syncytial virus antibody in mice with minimal tolerability concerns or induced immune responses compared to benchmark ionizable lipid, DLin-MC3-DMA. Through this work, we present peptoid-based nanoparticles as a tunable delivery platform that can be optimized toward a range of therapeutic programs.

摘要

纳米颗粒介导的 mRNA 递呈技术已成为一种很有前途的治疗方法,但它的发展仍然受到有效且耐受良好的递呈策略的发现和优化的限制。含有带电荷或可离子化脂质的脂质纳米颗粒是体内 mRNA 递呈的新兴标准,因此,开发简便、可调节的合成这些关键类脂分子的策略对于推进该领域至关重要。在这里,我们生成了一系列 N-取代甘氨酸寡聚物、肽核酸,并采用多阶段降选过程来鉴定作为我们的 Nutshell 纳米颗粒平台中可离子化成分的先导候选肽核酸。首先,我们通过基于预测物理性质对 >200 种分子的文库进行聚类,确定了一种有前途的肽核酸结构基序,并评估了每个簇的成员在体内报告基因表达中的作用。然后,我们使用实验设计方法对先导肽核酸基序进行优化,以探索肽核酸的带电和亲脂部分的变化,从而发现结构元素与纳米颗粒特性之间的趋势。我们进一步证明,与基准可离子化脂质 DLin-MC3-DMA 相比,基于肽核酸的 Nutshell 可导致小鼠中治疗相关水平的抗呼吸道合胞病毒抗体的表达,且最小化耐受性问题或诱导免疫反应。通过这项工作,我们提出了基于肽核酸的纳米颗粒作为一种可调适的递呈平台,可以针对一系列治疗方案进行优化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d36b/11342374/f6a4472bec05/nn4c05513_0001.jpg

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