Department of Pharmacy, Università di Genova, 16147 Genova, Italy.
Department of Life and Environmental Sciences (DiSVA), Università di Cagliari, 09124 Cagliari, Italy.
J Nanosci Nanotechnol. 2021 May 1;21(5):2793-2807. doi: 10.1166/jnn.2021.19065.
Inflammation underlays the onset and supports the development of several worldwide diffused pathologies, therefore in the last decades inflammatory markers have attracted a great deal of interest as diagnostic and therapeutic targets. Adhesion molecules are membrane proteins expressed by endotheliocytes and leukocytes, acting as mediators in the process of tethering, rolling, firm adhesion and diapedesis that leads the immune cells to reach an inflamed tissue. Among them, the adhesion molecule VCAM-1 has been investigated as a potential target because of its low constitutive expression and easy accessibility on the endothelium. Moreover, VCAM-1 is involved in the early stages of development of several pathologies like, among others, atherosclerosis, cancer, Alzheimer's and Parkinson's diseases, so a diagnostic or therapeutic tool directed to this protein would allow specific detection and efficacious intervention. The availability of monoclonal antibodies against VCAM-1 has recently fostered the development of various targeting technologies potentially suitable for imaging and drug delivery in VCAM-1 overexpressing pathologies. In this review we initially focus on the structure and functions of VCAM-1, giving also a brief overview of antibodies origin, structure and function; then, we summarize some of the VCAM-1 targeting nanosystems based on antibodies, gathered according to the carrier used, for diagnosis or therapeutic treatment of different inflammatory based pathologies.
炎症是多种全球性弥漫性疾病的发病基础和支持因素,因此在过去几十年中,炎症标志物作为诊断和治疗靶点引起了极大的关注。黏附分子是内皮细胞和白细胞表达的膜蛋白,作为连接、滚动、牢固黏附和渗出过程的介质,使免疫细胞到达炎症组织。其中,黏附分子 VCAM-1 因其低组成性表达和内皮细胞易于接近而被作为潜在的治疗靶点。此外,VCAM-1 参与了多种疾病的早期发展,如动脉粥样硬化、癌症、阿尔茨海默病和帕金森病等,因此针对这种蛋白的诊断或治疗工具将允许进行特异性检测和有效的干预。针对 VCAM-1 的单克隆抗体的出现最近促进了各种靶向技术的发展,这些技术可能适用于 VCAM-1 过表达疾病的成像和药物输送。在这篇综述中,我们首先关注 VCAM-1 的结构和功能,并简要概述了抗体的起源、结构和功能;然后,我们根据所用载体,根据载体总结了一些基于抗体的 VCAM-1 靶向纳米系统,用于不同炎症相关疾病的诊断或治疗。