混合淋巴药物输送载体作为靶向治疗的新途径:淋巴运输、应用、挑战和未来前景。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Gamaleldin I Harisa, Abdelrahman Y Sherif, Fars K Alanazi
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引用次数: 3

摘要

淋巴药物靶向是将免疫调节剂和化疗药物靶向到特定器官或细胞位置的一种有效方法。细胞、细胞旁和树突状细胞运输机制参与了治疗剂的淋巴运输。触发和混合淋巴给药系统(LDDS)的工程设计是对抗癌症转移和微生物大流行的一种很有前途的策略。通过将传统的LDDS与生物制剂嫁接,可以定制和开发混合淋巴给药系统。因此,混合LDDS可以收集传统和生物输送系统的优点。此外,触发LDDS的制造增加了药物在淋巴系统中的积累,以响应内部刺激,如pH,氧化还原状态或外部刺激,如磁场,温度和光。刺激反应性LDD系统防止有效载荷的过早释放并介导选择性药物生物分布。这提高了治疗效果,减少了抗癌、免疫调节和抗菌治疗的全身副作用。这篇综述强调了纳米级触发LDDS的挑战和未来前景,以及它们对治疗分子淋巴运输的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Hybrid Lymphatic Drug Delivery Vehicles as a New Avenue for Targeted Therapy: Lymphatic Trafficking, Applications, Challenges, and Future Horizons.

Hybrid Lymphatic Drug Delivery Vehicles as a New Avenue for Targeted Therapy: Lymphatic Trafficking, Applications, Challenges, and Future Horizons.

Hybrid Lymphatic Drug Delivery Vehicles as a New Avenue for Targeted Therapy: Lymphatic Trafficking, Applications, Challenges, and Future Horizons.

Hybrid Lymphatic Drug Delivery Vehicles as a New Avenue for Targeted Therapy: Lymphatic Trafficking, Applications, Challenges, and Future Horizons.

Lymphatic drug targeting is an effective approach for targeting immunomodulators, and chemotherapeutic drugs at a specific organ or cellular location. The cellular, paracellular, and dendritic cell trafficking machinery are involved in the lymphatic transport of therapeutic agents. The engineering of triggered and hybrid lymphatic drug delivery systems (LDDS) is a promising strategy to fight cancer metastasis and microbial pandemics. Hybrid lymphatic drug delivery systems can be tailored and developed by grafting the conventional LDDS with biological agents. Thus, hybrid LDDS could collect the benefits of conventional and biological delivery systems. Moreover, the fabrication of triggered LDDS increases drug accumulation in the lymphatic system in the response to an internal stimulus such as pH, and redox status or external such as magnetic field, temperature, and light. Stimuli-responsive LDD systems prevent premature release of payload and mediate selective drug biodistribution. This improves therapeutic impact and reduces the systemic side effect of anticancer, immunomodulatory, and antimicrobial therapeutics. This review highlights the challenges and future horizons of nanoscaled-triggered LDDS and their influence on the lymphatic trafficking of therapeutic molecules.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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