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纳米颗粒技术在精准肿瘤学与个体化疫苗开发中的应用:挑战与进展

英文原题:Nanoparticle technologies in precision oncology and personalized vaccine development: Challenges and advances.

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Nanoparticle technologies in precision oncology and personalized vaccine development: Challenges and advances.

PubMed 2025/07/05(内容时间) Int J Pharm X Q1 · IF 7.9(JCR 2025)

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中文摘要

纳米颗粒(NPs)正在通过为患者提供靶向递送、免疫调节和个性化治疗的手段,改变精准肿瘤学的范式。为此,药物递送系统(DDS)提高了精准医学的精准度,并通过使用NPs改善了免疫干预的设计、递送和靶向。本综述旨在讨论最具临床相关性的NP平台,包括脂质(LNPs)、聚合物(PNPs)、金属基(MNPs)、陶瓷(CNPs)、碳基(CBNs)、适配体偶联(ANPs)和量子点(QDs),并综述其作为潜在治疗和诊断应用及其在肿瘤学中的效用。

此外,我们将涉及下一代系统,包括混合NPs(HNPs)、刺激响应NPs(SRNPs)和人工智能(AI)导向的NPs(AI-NPs),这些系统具有可编程和自适应特性,并具备用于癌症疫苗和免疫治疗的精准工程化能力。

我们将讨论NPs如何作为DDS发挥作用,以及这些系统如何促进受控抗原释放、更好地递送至抗原呈递细胞,以及递送基于新抗原的免疫疗法。本文还探讨了NPs支持基于细胞的疗法(包括CAR-T 细胞)以及帮助克服多药耐药(MDR)的能力。尽管在开发可扩展、安全且获监管批准的治疗方面仍存在障碍,但纳米医学领域的持续进展表明,新策略能够实现高效个性化抗癌疗法的递送,为癌症患者带来临床获益。

展开英文摘要原文

Nanoparticles (NPs) are changing the paradigm of precision oncology by providing means for targeted delivery, immune modulation, and personalized therapies for patients. To this end, drug delivery systems (DDS) have improved the precision in precision medicine and improved the design, delivery, and targeting of immune interventions through the use of NPs.

This review aims to address the most clinically relevant NP platforms, including lipid (LNPs), polymeric (PNPs), metal-based (MNPs), ceramic (CNPs), carbon-based (CBNs), aptamer conjugated (ANPs), and quantum dots (QDs), and reviewed as potential therapeutic and diagnostic applications and their utility in oncology.

Further, we will touch on next-generation systems, including hybrid NPs (HNPs), stimulus-response NPs (SRNPs), and artificial-intelligence (AI) directed NPs (AI-NPs) that are programmable and adaptive with precision-engineered capabilities for cancer vaccinations and immunotherapy.

We will discuss how NPs function as a DDS and how these systems facilitate controlled antigen release, better delivery to antigen-presenting cells, and the delivery of neoantigen-based immunotherapies. The ability of NPs to support cell-based therapies, including CAR-T cells, and help overcome multi-drug resistant (MDR) is also explored.

Although obstacles remain regarding the development of scalable, safe, and regulatory approved therapies, the ongoing progress in the field of nanomedicine suggests new strategies enabling the delivery of efficient personalized anticancer therapies with clinical benefits for cancer patients.

论文信息

作者
Imani S、Moradi S、Faraj TA、Hassanpoor P、Musapour N、Najmaldin SK、Abdulhamd AH、Mohammadi AT
第一作者单位
Shulan International Medical College, Zhejiang Shuren University, Hangzhou, Zhejiang, China.China
通讯作者单位
Department of Molecular Genetics, Faculty of Biological Sciences, Tarbiat Modares University, Tehran, Iran.Iran
文献类型
综述
期刊
International journal of pharmaceutics: X2025 Dec
原文标识
PubMed 40688030 · DOI 10.1016/j.ijpx.2025.100353