Investigation of the impact of lipid nanoparticle compositions on the delivery and T cell response of circRNA vaccine

IF 10.5 1区 医学 Q1 CHEMISTRY, MULTIDISCIPLINARY Journal of Controlled Release Pub Date : 2025-03-17 DOI:10.1016/j.jconrel.2025.113617
Yasir Alshehry, Xiang Liu, Yu Zhang, Guizhi Zhu
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Abstract

Circular RNA (circRNA) is an emerging class of vaccines for various diseases, such as cancer immunotherapy. For cancer therapeutic vaccines, it is critical to deliver circRNA to lymphoid tissues such as lymph nodes (LNs) and dendritic cells (DCs) and then elicit antigen-specific T cell responses. Lipid nanoparticles (LNPs) have shown great success for mRNA vaccines and may also have great potential as nanocarriers for circRNA vaccines. Here, we studied the impact of LNP composition on the efficiency of immune delivery, protein expression, and the T cell responses for circRNA vaccine. First, we used model mRNA and circRNA encoding firefly luciferase (mRNA-fLuc) to study protein expression and used two small circRNA vaccines to study T cell responses. We investigated a combination of six ionizable lipids, three helper lipids, and six different molar ratios of cholesterol and β-sitosterol for their impact on the physicochemical properties of RNA LNPs, in vitro DC transfection, in vivo protein expression in draining LNs, and antigen-specific T cell responses. Among these ionizable lipids, SM-102 was the most effective for DC transfection and enabling circRNA vaccines to elicit T cell responses. DOPE and β-sitosterol incorporation in LNPs resulted in efficient protein expression, albeit β-sitosterol incorporation appeared to be associated with reduced T cell response. Overall, circRNA was efficiently delivered to DCs and macrophages in mouse draining lymph nodes by LNPs of SM-102 (50 %), cholesterol (38.5 %), DOPE (10 %), and DMG-PEG2000 (1.5 %), resulting in the induction of potent antigen-specific CD8+ T cell response in mice. These findings may provide insights into designing the compositions of LNPs as the carrier for circRNA therapeutics and vaccines.

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环状 RNA(circRNA)是一类新兴的疫苗,可用于癌症免疫疗法等多种疾病。对于癌症治疗疫苗来说,将 circRNA 运送到淋巴结(LN)和树突状细胞(DC)等淋巴组织并激发抗原特异性 T 细胞反应至关重要。脂质纳米颗粒(LNPs)在 mRNA 疫苗方面取得了巨大成功,作为 circRNA 疫苗的纳米载体,它也可能具有巨大潜力。在此,我们研究了 LNP 成分对 circRNA 疫苗的免疫传递效率、蛋白质表达和 T 细胞反应的影响。首先,我们使用编码萤火虫荧光素酶(mRNA-fLuc)的mRNA和circRNA模型来研究蛋白质表达,并使用两种小型circRNA疫苗来研究T细胞反应。我们研究了六种可电离脂质、三种辅助脂质以及胆固醇和β-谷甾醇的六种不同摩尔比的组合,以了解它们对 RNA LNPs 的理化性质、体外 DC 转染、体内引流 LN 蛋白表达和抗原特异性 T 细胞反应的影响。在这些可离子化的脂质中,SM-102 对 DC 转染和使 circRNA 疫苗引起 T 细胞反应最有效。在 LNPs 中掺入 DOPE 和 β-谷甾醇可有效表达蛋白质,但掺入 β-谷甾醇似乎会降低 T 细胞反应。总之,SM-102(50%)、胆固醇(38.5%)、DOPE(10%)和 DMG-PEG2000 (1.5%)的 LNPs 能将 circRNA 有效地传递给小鼠引流淋巴结中的 DC 和巨噬细胞,从而诱导小鼠产生有效的抗原特异性 CD8+ T 细胞反应。这些发现可为设计作为 circRNA 治疗剂和疫苗载体的 LNPs 成分提供启示。
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来源期刊
Journal of Controlled Release
Journal of Controlled Release 医学-化学综合
CiteScore
18.50
自引率
5.60%
发文量
700
审稿时长
39 days
期刊介绍: The Journal of Controlled Release (JCR) proudly serves as the Official Journal of the Controlled Release Society and the Japan Society of Drug Delivery System. Dedicated to the broad field of delivery science and technology, JCR publishes high-quality research articles covering drug delivery systems and all facets of formulations. This includes the physicochemical and biological properties of drugs, design and characterization of dosage forms, release mechanisms, in vivo testing, and formulation research and development across pharmaceutical, diagnostic, agricultural, environmental, cosmetic, and food industries. Priority is given to manuscripts that contribute to the fundamental understanding of principles or demonstrate the advantages of novel technologies in terms of safety and efficacy over current clinical standards. JCR strives to be a leading platform for advancements in delivery science and technology.
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