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低肝脏蓄积脂质纳米颗粒增强 HPV 治疗性肿瘤疫苗的疗效和安全性

英文原题:Low-liver-accumulation lipid nanoparticles enhance the efficacy and safety of HPV therapeutic tumor vaccines.

查看英文原题

Low-liver-accumulation lipid nanoparticles enhance the efficacy and safety of HPV therapeutic tumor vaccines.

PubMed 2025/08/11(内容时间) J Transl Med Q1 · IF 9.7(JCR 2025)

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研究概要

通过采用一种新型、非专利的可电离脂质设计,本研究平衡了递送效率与生物安全性,Lipid 7 为 HPV 相关癌症提供了一种高效、低毒的治疗策略。

研究思路结论见上方概要

脂质纳米颗粒(LNPs)在疫苗和癌症治疗中具有重要潜力,但传统LNPs常因肝脏蓄积而导致肝毒性和疗效降低。

合成了具有不同尾链长度的LNP分子。通过流式细胞术在体外评估转染效率。采用BALB/c模型评估LNP的体内递送效率。采用C57BL/6小鼠模型评估体内抗肿瘤药效学,同时检测肿瘤浸润免疫细胞和血清炎症细胞因子。采用Sprague Dawley(SD)大鼠模型对候选LNP进行毒性测试。

Lipid 7在注射部位的mRNA表达效率提高了三倍,同时最大限度地减少了肝脏滞留。在HPV肿瘤模型中,Lipid 7实现了与基于SM-102的LNP相当的肿瘤抑制效果,但在重塑肿瘤微环境方面表现更优(树突状细胞:12.1% vs. 5.1%;NK 细胞:1.1% vs. 0.5%),并提高了血清免疫细胞因子(TNF-α、IL-1β等,高出1.2-1.8倍)。关键的是,Lipid 7减少了心脏、肝脏、脾脏、肺和肾脏中的脱靶mRNA积累,降低了与传统LNP相关的肝毒性风险。

展开英文摘要原文

Lipid nanoparticles (LNPs) hold significant potential in vaccine and cancer therapy, but conventional LNPs often cause hepatotoxicity and reduced efficacy due to liver accumulation.

LNP molecules with varying tail lengths were synthesized in vitro. Transfection efficiency was assessed in vitro via flow cytometry. The BALB/c model was used to evaluate in vivo delivery efficiency of the LNPs. The C57BL/6 mouse model was used to evaluate in vivo anti-tumor pharmacodynamics, along with tumor-infiltrating immune cells and serum inflammatory cytokines. The Sprague Dawley (SD) rat model was used for toxicity testing of the candidate LNP.

Lipid 7 demonstrated threefold higher mRNA expression efficiency at the injection site while minimizing liver retention. In an HPV tumor model, Lipid 7 achieved tumor suppression comparable to SM-102-based LNP but outperformed in remodeling the tumor microenvironment (dendritic cells: 12.1% vs. 5.1%; natural killer cells: 1.1% vs. 0.5%) and elevating serum immune cytokines (TNF-α, IL-1β, etc., 1.2-1.8-fold higher). Critically, Lipid 7 reduced off-target mRNA accumulation in the heart, liver, spleen, lungs, and kidneys, mitigating hepatotoxicity risks associated with traditional LNPs.

By employing a novel, non-patented ionizable lipid design, this work balances delivery efficiency and biosafety, Lipid 7 offers a high-efficacy, low-toxicity therapeutic strategy for HPV-related cancers.

论文信息

作者
Wang X、Tian Z、Wang M、Cai X、Yang S、Zeng J、Fang Y、Bai X
第一作者单位
School of Medicine, Shanghai University, Shanghai, 200444, China.China
通讯作者单位
School of Medicine, Shanghai University, Shanghai, 200444, China. qianqj@shu.edu.cn.China
文献类型
非美国政府资助研究
期刊
Journal of translational medicine2025 Aug 11
原文标识
PubMed 40790751 · DOI 10.1186/s12967-025-06924-2