氧化纳米颗粒从药物输送到免疫调节:进展和挑战
Marzia Conte1, Veronica Vighetto1, Valentina Cauda1
1Department of Applied Science and Technology, Politecnico di Torino, Turin, Italy.
Expert opinion on drug delivery
|February 25, 2026
概括
氧化纳米颗粒 (ZnO NPs) 通过提供药物和增强免疫系统,在癌症治疗中表现有前途. 对于临床使用,需要进一步的研究.
科学领域:
- 纳米医学是一种纳米医学.
- 生物医学工程 生物医学工程
- 在瘤学瘤学.
背景情况:
- 氧化纳米颗粒 (ZnO NPs) 越来越多地被认为是其在各种生物医学应用中的潜力.
- 它们的独特特性使得它们适合于先进的癌症治疗策略.
- 本综述侧重于ZnO NP在癌症治疗中的应用.
研究的目的:
- 批判性地审查ZnONP在癌症治疗中的主要用途.
- 突出它们在药物输送,刺激反应系统和免疫调节治疗中的作用.
- 讨论它们在向瘤组织方面的潜力.
主要方法:
- 分析ZnO NP的特性,包括在酸性瘤微环境中的溶解和激进氧物种的生成.
- 工程多式纳米平台的审查,将ZnONP与化疗,免疫疗法,光动力学和声动力学疗法相结合.
- 评估ZnO NP的免疫调节能力,包括T细胞激活和树突细胞成熟.
主要成果:
- ZnO NPs通过瘤微环境中的代谢失调诱导癌细胞亡.
- 多模纳米平台与ZnONP实现协同抗瘤效应,解决当前治疗方法的局限性.
- ZnO NPs具有强大的免疫调节能力,有可能逆转"冷"瘤微环境.
结论:
- ZnO NPs为新的抗癌治疗提供了革命性的治疗前景.
- 它们增强药物递送,创造刺激反应系统和调节免疫反应的能力是显著的.
- 解决长期稳定性和可控降解性的挑战对于临床翻译至关重要.
关键词:
ZnO ZnO ZnO ZnO ZnO ZnO ZnO ZnO ZnO ZnO ZnO ZnO药物输送是药物输送的过程.免疫调节 免疫调节 免疫调节声动力学疗法 声动力学疗法刺激响应疗法是一种刺激响应疗法.更多相关视频
05:06Author Spotlight: Advancements in Nanoparticle Technology for Drug Delivery and Immunotherapy
Published on: November 10, 2023
1.6K
09:36Polyethyleneimine-coated Iron Oxide Nanoparticles as a Vehicle for the Delivery of Small Interfering RNA to Macrophages In Vitro and In Vivo
Published on: February 5, 2019
9.4K
相关概念视频
Site-Targeted Drug Delivery Systems: Polymeric Carriers
57
Polymeric carriers enhance targeted drug delivery by increasing efficacy while minimizing off-target effects. These carriers comprise a biodegradable polymeric backbone integrated with functional elements that enable targeting, improve physicochemical properties, and regulate drug release.Targeting MechanismsThe targeting ability of polymeric carriers is mediated by a homing device, which is a molecular recognition component designed to selectively bind to specific tissues or cells. Monoclonal...
57
Modified-Release Drug Delivery Systems: Overview
53
Modified-release dosage forms are designed to address the limitations of drugs with short biological half-lives. These forms maintain stable therapeutic drug concentrations over extended periods, reducing the need for frequent dosing. A consistent drug level helps minimize peak-trough fluctuations, which can reduce adverse effects, lower the risk of drug resistance, and improve overall treatment effectiveness.One common type of modified-release form is the extended-release (ER) formulation. ER...
53
Drug Delivery: Overview
999
The selection of a drug's delivery route depends upon its physicochemical properties, including lipid or water solubility and ionization, as well as the therapeutic requirement, such as immediate or sustained effect. These routes can be divided into three primary categories: enteral, parenteral, and topical.
Enteral delivery involves administering drugs directly through swallowing, sublingual placement, or buccal application. Orally administered drugs predominantly navigate the...
Enteral delivery involves administering drugs directly through swallowing, sublingual placement, or buccal application. Orally administered drugs predominantly navigate the...
999
Drug Delivery: Miscellaneous Routes
883
Drug delivery methods like oral inhalation, nasal sprays, transdermal patches, eye drops, intravitreal injection, and rectal administration provide localized effects with reduced toxicity.
Oral inhalation and nasal sprays swiftly transfer drugs across the respiratory epithelium's mucosal layer. Inhaled glucocorticoids and bronchodilators directly target lung conditions such as asthma, while fluticasone nasal spray mitigates allergic rhinitis.
Transdermal patches transport drugs...
Oral inhalation and nasal sprays swiftly transfer drugs across the respiratory epithelium's mucosal layer. Inhaled glucocorticoids and bronchodilators directly target lung conditions such as asthma, while fluticasone nasal spray mitigates allergic rhinitis.
Transdermal patches transport drugs...
883
