基于智能纳米载体的癌症治疗。

Uzma Azeem Awan, Muhammad Naeem, Rida Fatima Saeed, Sara Mumtaz, Nosheen Akhtar
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引用次数: 0

摘要

在癌症领域取得了相当大的进展;然而,这些并没有转化为类似的临床进展,导致世界范围内的高患病率和癌症相关死亡率增加。现有的治疗方法存在一些挑战,如脱靶副作用、非特异性长期潜在生物破坏、耐药性、总体反应率不足和复发率高。独立癌症诊断和治疗的局限性可以通过新兴的纳米肿瘤学跨学科研究领域最小化,其中包括使用纳米颗粒成功地将单一药物的诊断和治疗整合在一起。这可能为开发创新策略提供一个强有力的工具,以实现癌症诊断和治疗的“个性化医疗”。纳米粒子已被证明是癌症诊断、治疗和预防的强有力的成像工具或有力的试剂。纳米治疗提供了微创的药物在靶点的生物分布和积累的体内可视化,并实时监测治疗结果。本章旨在涵盖纳米颗粒介导的癌症治疗领域的几个重要方面和进展,包括纳米载体开发、药物/基因递送、内在活性纳米颗粒、肿瘤微环境和纳米毒性。本章概述了与癌症治疗相关的挑战,纳米技术在癌症治疗中的合理性,多功能纳米材料在癌症治疗中的新概念,以及它们的分类和在不同癌症中的临床前景。特别关注的是纳米技术:癌症治疗药物开发的监管视角。本文还讨论了阻碍纳米材料介导的癌症治疗进一步发展的障碍。总的来说,本章的目的是提高我们对纳米技术用于癌症治疗的设计和开发的认识。
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Smart Nanocarrier-Based Cancer Therapeutics.

Considerable advances in the field of cancer have been made; however, these have not been translated into similar clinical progress which results in the high prevalence and increased cancer-related mortality rate worldwide. Available treatments have several challenges such as off-target side effects, non-specific long-term potential biodisruption, drug resistance, and overall inadequate response rates and high probability of recurrence. The limitations associated with independent cancer diagnosis and therapy can be minimized by an emerging interdisciplinary research field of nanotheranostics which include successful integration of diagnosis and therapy on a single agent using nanoparticles. This may offer a powerful tool in developing innovative strategies to enable "personalized medicine" for diagnosis and treatment of cancer. Nanoparticles have been proven to be powerful imaging tools or potent agents for cancer diagnosis, treatment, and prevention. The nanotheranostic provides minimally invasive in vivo visualization of drug biodistribution and accumulation at the target site with real-time monitoring of therapeutic outcome. This chapter intends to cover several important aspects and the advances in the field of nanoparticles-mediated cancer therapeutics including nanocarrier development, drug/gene delivery, intrinsically active nanoparticles, tumor microenvironment, and nanotoxicity. The chapter represents an overview of challenges associated with cancer treatment, rational for nanotechnology in cancer therapeutics, novel concepts of multifunctional nanomaterials for cancer therapy along with their classification and their clinical prospective in different cancers. A special focus is on the nanotechnology: regulatory perspective for drug development in cancer therapeutics. Obstacles hindering further development of nanomaterials-mediated cancer therapy are also discussed. In general, the objective of this chapter is to improve our perceptive in the design and development of nanotechnology for cancer therapeutics.

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来源期刊
Cancer treatment and research
Cancer treatment and research Medicine-Oncology
CiteScore
1.00
自引率
0.00%
发文量
11
期刊最新文献
Cancer Prevention and Treatment Based on Lifestyles. Diet, Gut Microbes, and Cancer. Dietary Pattern and Cancer. Introduction to Nutrition and Cancer. Metabolic Carcinogenesis.
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