Interactions between nanoparticles and lymphatic systems: Mechanisms and applications in drug delivery

IF 15.2 1区 医学 Q1 PHARMACOLOGY & PHARMACY
Yisi Tang , Bao Liu , Yuting Zhang , Yuling Liu , Yongzhuo Huang , Wufa Fan
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引用次数: 0

Abstract

The lymphatic system has garnered significant attention in drug delivery research due to the advantages it offers, such as enhancing systemic exposure and enabling lymph node targeting for nanomedicines via the lymphatic delivery route. The journey of drug carriers involves transport from the administration site to the lymphatic vessels, traversing the lymph before entering the bloodstream or targeting specific lymph nodes. However, the anatomical and physiological barriers of the lymphatic system play a pivotal role in influencing the behavior and efficiency of carriers. To expedite research and subsequent clinical translation, this review begins by introducing the composition and classification of the lymphatic system. Subsequently, we explore the routes and mechanisms through which nanoparticles enter lymphatic vessels and lymph nodes. The review further delves into the interactions between nanomedicine and body fluids at the administration site or within lymphatic vessels. Finally, we provide a comprehensive overview of recent advancements in lymphatic delivery systems, addressing the challenges and opportunities inherent in current systems for delivering macromolecules and vaccines.

Abstract Image

Abstract Image

纳米颗粒与淋巴系统之间的相互作用:给药机制与应用
淋巴系统在给药研究中备受关注,因为它具有多种优势,例如可提高全身暴露率,通过淋巴给药途径实现纳米药物的淋巴结靶向。药物载体的运输过程包括从给药部位到淋巴管,在进入血液或靶向特定淋巴结之前穿越淋巴。然而,淋巴系统的解剖和生理障碍对载体的行为和效率有着举足轻重的影响。为了加快研究和随后的临床转化,本综述首先介绍了淋巴系统的组成和分类。随后,我们探讨了纳米颗粒进入淋巴管和淋巴结的途径和机制。本综述进一步探讨了纳米药物在给药部位或淋巴管内与体液之间的相互作用。最后,我们全面概述了淋巴给药系统的最新进展,探讨了当前大分子和疫苗给药系统固有的挑战和机遇。
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来源期刊
CiteScore
28.10
自引率
5.00%
发文量
294
审稿时长
15.1 weeks
期刊介绍: The aim of the Journal is to provide a forum for the critical analysis of advanced drug and gene delivery systems and their applications in human and veterinary medicine. The Journal has a broad scope, covering the key issues for effective drug and gene delivery, from administration to site-specific delivery. In general, the Journal publishes review articles in a Theme Issue format. Each Theme Issue provides a comprehensive and critical examination of current and emerging research on the design and development of advanced drug and gene delivery systems and their application to experimental and clinical therapeutics. The goal is to illustrate the pivotal role of a multidisciplinary approach to modern drug delivery, encompassing the application of sound biological and physicochemical principles to the engineering of drug delivery systems to meet the therapeutic need at hand. Importantly the Editorial Team of ADDR asks that the authors effectively window the extensive volume of literature, pick the important contributions and explain their importance, produce a forward looking identification of the challenges facing the field and produce a Conclusions section with expert recommendations to address the issues.
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