Biological and Life Sciences, School of Arts and Sciences, Ahmedabad University, Central Campus, Navrangpura, Ahmedabad, 380009, Gujarat, India.
Curr Drug Metab. 2019;20(6):430-445. doi: 10.2174/1389200220666181127102720.
BACKGROUND: Nanotechnology is gaining significant attention worldwide for the treatment of complex diseases such as AIDS (acquired immune deficiency syndrome), cancer and rheumatoid arthritis. Nanomedicine is the application of nanotechnology used for diagnosis and treatment for the disease that includes the preservation and improvement of human health by covering an area such as drug delivery using nanocarriers, nanotheranostics and nanovaccinology. The present article provides an insight into several aspects of nanomedicine such as usages of multiple types of nanocarriers, their status, advantages and disadvantages with reference to cancer and rheumatoid arthritis. METHODS: An extensive search was performed on the bibliographic database for research article on nanotechnology and nanomedicine along with looking deeply into the aspects of these diseases, and how all of them are co-related. We further combined all the necessary information from various published articles and briefed to provide the current status. RESULTS: Nanomedicine confers a unique technology against complex diseases which includes early diagnosis, prevention, and personalized therapy. The most common nanocarriers used globally are liposomes, polymeric nanoparticles, dendrimers, metallic nanoparticles, magnetic nanoparticles, solid lipid nanoparticles, polymeric micelles and nanotubes among others. CONCLUSION: Nanocarriers are used to deliver drugs and biomolecules like proteins, antibody fragments, DNA fragments, and RNA fragments as the base of cancer biomarkers.
背景:纳米技术在全球范围内受到广泛关注,可用于治疗艾滋病(获得性免疫缺陷综合征)、癌症和类风湿性关节炎等复杂疾病。纳米医学是将纳米技术应用于疾病的诊断和治疗,包括通过使用纳米载体、纳米治疗诊断和纳米疫苗学来进行药物输送等领域的人类健康的保护和改善。本文深入探讨了纳米医学的几个方面,如多种类型的纳米载体的用途、它们的现状、优缺点,并参考了癌症和类风湿性关节炎。
方法:我们在文献数据库中广泛搜索了有关纳米技术和纳米医学的研究文章,并深入研究了这些疾病的各个方面,以及它们之间的所有关联。我们进一步结合了来自各种已发表文章的所有必要信息,并进行了简要介绍,以提供当前的状况。
结果:纳米医学为复杂疾病提供了独特的技术,包括早期诊断、预防和个性化治疗。全球最常见的纳米载体包括脂质体、聚合物纳米粒子、树枝状大分子、金属纳米粒子、磁性纳米粒子、固体脂质纳米粒子、聚合物胶束和纳米管等。
结论:纳米载体用于输送药物和生物分子,如蛋白质、抗体片段、DNA 片段和 RNA 片段,作为癌症生物标志物的基础。
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