Pharmaceutical Nanotechnology Department, Shiraz University of Medical Sciences, Shiraz 71345, Iran.
Pharmaceutical Nanotechnology Department and Center for Nanotechnology in Drug Delivery, Shiraz University of Medical Sciences, Shiraz 71345, Iran.
Biomater Sci. 2019 Oct 1;7(10):4000-4016. doi: 10.1039/c9bm00931k. Epub 2019 Jul 29.
Recent advances in nanotechnology, such as the development of various types of nanoparticles and hybrid nanomaterials, have revolutionized nanomedicine. The small size, customizable surface, enhanced solubility, and multi-functionality endow the nanoparticles with an ability to interact with complex cellular and biological functions in new ways. Furthermore, these systems can deliver drugs to specific tissues and provide a targeted therapy. For this purpose, different categories of molecules, particularly antibodies, have been used as ligands. Antibody-conjugated nanomaterials can significantly enhance the efficiency of nanomedicines, especially in the field of cancer. This review is focused on three major medical applications of antibody-conjugated nanomaterials, namely, therapeutic, diagnostic and theranostic applications. To provide comprehensive information on the topic and an overview of these hybrid nanomaterials for biomedical applications, a brief summary of nanomaterials and antibodies is given. Moreover, the review has depicted the potential applications of antibody-conjugated nanomaterials in different fields and their capabilities to empower nanomedicine, particularly in relation to the treatment and detection of malignancies.
近年来,纳米技术的发展取得了许多进展,例如各种类型的纳米粒子和杂化纳米材料的开发,彻底改变了纳米医学。这些纳米粒子具有小尺寸、可定制的表面、增强的溶解性和多功能性,能够以新的方式与复杂的细胞和生物功能相互作用。此外,这些系统可以将药物递送到特定的组织并提供靶向治疗。为此,已经使用了不同类别的分子,特别是抗体作为配体。抗体偶联的纳米材料可以显著提高纳米药物的效率,特别是在癌症领域。本综述主要关注抗体偶联纳米材料的三种主要医学应用,即治疗、诊断和治疗应用。为了提供有关该主题的全面信息并概述这些用于生物医学应用的杂化纳米材料,简要介绍了纳米材料和抗体。此外,本综述还描述了抗体偶联纳米材料在不同领域的潜在应用及其使纳米医学赋权的能力,特别是在治疗和检测恶性肿瘤方面。