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纳米复合材料的肿瘤靶向药物递送。

Tumor-targeted Drug Delivery by Nanocomposites.

机构信息

Nanomedicine & Nanobiotechnology Lab, Department of Biosciences, Integral University, Lucknow, 226026, India.

Clinical Biochemistry & Natural Product Research Lab, Department of Biosciences, Integral University, Lucknow, 226026, India.

出版信息

Curr Drug Metab. 2020;21(8):599-613. doi: 10.2174/1389200221666200520092333.

Abstract

BACKGROUND

Tumor-targeted delivery by nanoparticles is a great achievement towards the use of highly effective drug at very low doses. The conventional development of tumor-targeted delivery by nanoparticles is based on enhanced permeability and retention (EPR) effect and endocytosis based on receptor-mediated are very demanding due to the biological and natural complications of tumors as well as the restrictions on the design of the accurate nanoparticle delivery systems.

METHODS

Different tumor environment stimuli are responsible for triggered multistage drug delivery systems (MSDDS) for tumor therapy and imaging. Physicochemical properties, such as size, hydrophobicity and potential transform by MSDDS because of the physiological blood circulation different, intracellular tumor environment. This system accomplishes tumor penetration, cellular uptake improved, discharge of drugs on accurate time, and endosomal discharge.

RESULTS

Maximum drug delivery by MSDDS mechanism to target therapeutic cells and also tumor tissues and sub cellular organism. Poorly soluble compounds and bioavailability issues have been faced by pharmaceutical industries, which are resolved by nanoparticle formulation.

CONCLUSION

In our review, we illustrate different types of triggered moods and stimuli of the tumor environment, which help in smart multistage drug delivery systems by nanoparticles, basically a multi-stimuli sensitive delivery system, and elaborate their function, effects, and diagnosis.

摘要

背景

纳米粒子的肿瘤靶向递送是在非常低的剂量下使用高效药物的巨大成就。由于肿瘤的生物学和自然复杂性以及对准确纳米粒子递药系统设计的限制,基于增强的通透性和保留(EPR)效应和基于受体介导的内吞作用的常规肿瘤靶向递药的发展要求非常高。

方法

不同的肿瘤环境刺激物负责触发用于肿瘤治疗和成像的多阶段药物递送系统(MSDDS)。由于生理血液循环不同,细胞内肿瘤环境,MSDDS 的物理化学性质(如大小、疏水性和电位转化)会发生变化。该系统实现了肿瘤穿透、细胞摄取的改善、药物在准确时间的释放和内体的释放。

结果

MSDDS 机制将最大的药物递送到靶治疗细胞以及肿瘤组织和亚细胞生物体。制药行业面临着难溶性化合物和生物利用度问题,这些问题通过纳米粒子配方得到了解决。

结论

在我们的综述中,我们说明了肿瘤环境的不同类型的触发情绪和刺激,这些情绪和刺激有助于通过纳米粒子实现智能多阶段药物递送系统,这基本上是一种多刺激敏感的递送系统,并详细阐述了它们的功能、作用和诊断。

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