Optimized lipid nanoparticles enable effective CRISPR/Cas9-mediated gene editing in dendritic cells for enhanced immunotherapy

IF 14.6 1区 医学 Q1 PHARMACOLOGY & PHARMACY Acta Pharmaceutica Sinica. B Pub Date : 2025-01-01 Epub Date: 2024-10-11 DOI:10.1016/j.apsb.2024.08.030
Kuirong Mao , Huizhu Tan , Xiuxiu Cong , Ji Liu , Yanbao Xin , Jialiang Wang , Meng Guan , Jiaxuan Li , Ge Zhu , Xiandi Meng , Guojiao Lin , Haorui Wang , Jing Han , Ming Wang , Yong-Guang Yang , Tianmeng Sun
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Abstract

Immunotherapy has emerged as a revolutionary approach to treat immune-related diseases. Dendritic cells (DCs) play a pivotal role in orchestrating immune responses, making them an attractive target for immunotherapeutic interventions. Modulation of gene expression in DCs using genome editing techniques, such as the CRISPR-Cas system, is important for regulating DC functions. However, the precise delivery of CRISPR-based therapies to DCs has posed a significant challenge. While lipid nanoparticles (LNPs) have been extensively studied for gene editing in tumor cells, their potential application in DCs has remained relatively unexplored. This study investigates the important role of cholesterol in regulating the efficiency of BAMEA-O16B lipid-assisted nanoparticles (BLANs) as carriers of CRISPR/Cas9 for gene editing in DCs. Remarkably, BLANs with low cholesterol density exhibit exceptional mRNA uptake, improved endosomal escape, and efficient single-guide RNA release capabilities. Administration of BLANmCas9/gPD-L1 results in substantial PD-L1 gene knockout in conventional dendritic cells (cDCs), accompanied by heightened cDC1 activation, T cell stimulation, and significant suppression of tumor growth. The study underscores the pivotal role of cholesterol density within LNPs, revealing potent influence on gene editing efficacy within DCs. This strategy holds immense promise for the field of cancer immunotherapy, offering a novel avenue for treating immune-related diseases.

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优化的脂质纳米颗粒能够有效地在树突状细胞中进行CRISPR/ cas9介导的基因编辑,以增强免疫治疗
免疫疗法已成为治疗免疫相关疾病的一种革命性方法。树突状细胞(dc)在协调免疫反应中起着关键作用,使其成为免疫治疗干预的一个有吸引力的靶点。使用基因组编辑技术(如CRISPR-Cas系统)调节DC中的基因表达对于调节DC功能非常重要。然而,将基于crispr的治疗方法精确地传递给dc带来了重大挑战。虽然脂质纳米颗粒(LNPs)已经被广泛研究用于肿瘤细胞的基因编辑,但它们在dc中的潜在应用仍然相对未被探索。本研究探讨了胆固醇在调节BAMEA-O16B脂质辅助纳米颗粒(BLANs)作为CRISPR/Cas9载体在dc中进行基因编辑的效率中的重要作用。值得注意的是,具有低胆固醇密度的BLANs表现出异常的mRNA摄取,改善的内体逃逸和有效的单导RNA释放能力。在常规树突状细胞(cdc)中,给药blmcas9 /gPD-L1导致大量PD-L1基因敲除,同时伴有cDC1活化增强、T细胞刺激和肿瘤生长的显著抑制。该研究强调了胆固醇密度在LNPs中的关键作用,揭示了对dc内基因编辑功效的潜在影响。这一策略为癌症免疫治疗领域提供了巨大的希望,为治疗免疫相关疾病提供了新的途径。
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来源期刊
Acta Pharmaceutica Sinica. B
Acta Pharmaceutica Sinica. B Pharmacology, Toxicology and Pharmaceutics-General Pharmacology, Toxicology and Pharmaceutics
CiteScore
22.40
自引率
5.50%
发文量
1051
审稿时长
19 weeks
期刊介绍: The Journal of the Institute of Materia Medica, Chinese Academy of Medical Sciences, and the Chinese Pharmaceutical Association oversees the peer review process for Acta Pharmaceutica Sinica. B (APSB). Published monthly in English, APSB is dedicated to disseminating significant original research articles, rapid communications, and high-quality reviews that highlight recent advances across various pharmaceutical sciences domains. These encompass pharmacology, pharmaceutics, medicinal chemistry, natural products, pharmacognosy, pharmaceutical analysis, and pharmacokinetics. A part of the Acta Pharmaceutica Sinica series, established in 1953 and indexed in prominent databases like Chemical Abstracts, Index Medicus, SciFinder Scholar, Biological Abstracts, International Pharmaceutical Abstracts, Cambridge Scientific Abstracts, and Current Bibliography on Science and Technology, APSB is sponsored by the Institute of Materia Medica, Chinese Academy of Medical Sciences, and the Chinese Pharmaceutical Association. Its production and hosting are facilitated by Elsevier B.V. This collaborative effort ensures APSB's commitment to delivering valuable contributions to the pharmaceutical sciences community.
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