Kallinteris Nikoletta L, Lu Xueqing, Blackwell Catherine E, von Hofe Eric, Humphreys Robert E, Xu Minzhen
Antigen Express, Inc., 100 Barber Avenue, MA 01606, USA.
Expert Opin Biol Ther. 2006 Dec;6(12):1311-21. doi: 10.1517/14712598.6.12.1311.
Life-threatening diseases, such as cancer and pandemic influenza, demand new efforts towards effective vaccine design. Peptides represent a simple, safe and adaptable basis for vaccine development; however, the potency of peptide vaccines is insufficient in most cases for significant therapeutic efficacy. Several methods, such as Ligand Epitope Antigen Presentation System and ISCOMATRIX, have been developed to enhance the potency of peptide vaccines. One way of increasing the loading of MHC class II peptides occurs through the use of Ii-Key technology. Ii-Key (LRMK), a portion of the MHC class II-associated invariant chain (Ii), facilitates the direct loading of epitopes to the MHC class II molecule groove. Linking the Ii-Key moiety via a simple polymethylene bridge to an MHC class II epitope, to generate an Ii-Key/MHC class II epitope hybrid, greatly enhances the vaccine potency of the tethered epitope. The combination of such Ii-Key/MHC class II epitope hybrids with MHC class I epitope-containing peptides might generate a potent peptide vaccine for malignancies and infectious diseases. The Ii-Key hybrid technology is compared with other methods that enhance the potency of a peptide vaccine.
诸如癌症和大流行性流感等危及生命的疾病,需要在有效疫苗设计方面做出新的努力。肽是疫苗开发的一种简单、安全且适应性强的基础;然而,在大多数情况下,肽疫苗的效力不足以产生显著的治疗效果。已经开发了几种方法,如配体表位抗原呈递系统和免疫刺激复合物(ISCOMATRIX),以提高肽疫苗的效力。增加MHC II类肽负载量的一种方法是通过使用Ii-Key技术。Ii-Key(LRMK)是MHC II类相关恒定链(Ii)的一部分,有助于将表位直接加载到MHC II类分子凹槽中。通过一个简单的亚甲基桥将Ii-Key部分与MHC II类表位连接起来,生成一个Ii-Key/MHC II类表位杂交体,可大大提高连接表位的疫苗效力。将这种Ii-Key/MHC II类表位杂交体与含MHC I类表位的肽相结合,可能会产生一种用于恶性肿瘤和传染病的强效肽疫苗。将Ii-Key杂交技术与其他提高肽疫苗效力的方法进行了比较。