Imageable Antigen-Presenting Gold Nanoparticle Vaccines for Effective Cancer Immunotherapy In Vivo
Imageable Antigen-Presenting Gold Nanoparticle Vaccines for Effective Cancer Immunotherapy In Vivo
复制标题
DOI:
10.1002/anie.201203193
复制
发表时间:
2012-01-01
影响因子:
16.6
通讯作者:
Jon, Sangyong
中科院分区:
文献类型:
--
作者:
Lee, In-Hyun;Kwon, Ho-Keun;Jon, Sangyong
Vaccination with the aid of adjuvants is a highly effective therapeutic option for the prevention of various diseases.[1] However, development of vaccines against existing cancers and chronic viral diseases, such as hepatitis C and HIV, has proved difficult owing in large part to an inability to induce concerted and potent humoral and cellular immunity.[2] With the aim of overcoming this problem, much effort has gone into developing novel technologies for therapeutic cancer vaccines that enable long-lasting induction of strong, antigenspecific CD8+ Tcells, as well as induction of antibody responses to existing tumors.[3] A key consideration in developing such technology is how to achieve efficient antigen delivery to antigen-presenting cells (APCs) with subsequent activation and maturation of cells that maximize cross-presentation for inducing cytotoxic CD8+ T cell responses.[4] In that sense, vaccine delivery to a local lymph node (LN) might be an appropriate strategy, because the node would contain a high population of APCs (eg, resident dendritic cells, plasmacytoid dendritic cells, and macrophages) along with immune cells responsible for both humoral and cellular immunity.[5] To that end, nanoparticles of natural or synthetic origin have emerged as potential candidates for antigen delivery,[6] since they can be efficiently delivered to LNs through lymphatic vessels in a size-dependent manner.[5b, 7] Importantly, smaller nanoparticles (ca. 25 nm in diameter) could lead to significantly larger accumulation in a local LN than larger nanoparticles of approximately 100 nm in size.[5b]There are four key considerations when designing a nanoparticulate vaccine for targeting LNs: 1) for efficient delivery, the particle diameter should be below 50 nm; 2) the antigens and/or adjuvants should be versatile and easily accommodated to the nanoparticles; 3) after internalization, the vaccine must properly activate APCs to facilitate induction of humoral and cellular immunity; and 4) it is beneficial if the vaccine is traceable in a noninvasive manner to predict efficacy. For the following reasons, gold nanoparticles (AuNPs) may be one of the most suitable nanoparticles for the purpose. First, it is easy to control the size of AuNPs, which can range from approximately 1 nm to several hundred nm. Second, a variety of molecular species, including proteins,[8] peptides,[9] and oligonucleotides,[10] can be easily attached to the surface of AuNPs using simple chemistry. Third, AuNPs are biocompatible and nontoxic.[8b, d] Fourth, AuNPs can be tracked using computed tomography (CT) imaging, which is readily available at nearly all hospitals.[10, 11] With these considerations in mind, herein we, for the first time, report AuNP-based cancer vaccines that enable efficient delivery of an antigen to target LNs, tracking of the vaccines using noninvasive clinical imaging, and effective cancer prevention and therapy.