Ostberg J R, Kabingu E, Repasky E A
Department of Immunology, Roswell Park Cancer Institute, Buffalo, NY 14263, USA.
Int J Hyperthermia. 2003 Sep-Oct;19(5):520-33. doi: 10.1080/02656730310001607986.
Dendritic cells (DCs) in the skin rapidly take up antigen and migrate out of the skin to draining lymph nodes for antigen presentation. As a result, these cells play an important role in generating specific immune responses against infectious agents that enter the skin and against antigens delivered as vaccines. Previous efforts revealed that fever-like elevations in body temperature enhance antigen-dependent immune responses initiated at the site of the skin and stimulate the migration of epidermal DCs to draining lymph nodes. Collectively, these data have led to the hypothesis that the activation of epidermal DCs is sensitive to physiological thermal stimuli. In this study, ear skin explants derived from BALB/c mice were either maintained at 37 degrees C or incubated at 40 degrees C for the first 6.5 h before being placed at 37 degrees C. This heating protocol altered the density and morphology of the epidermal DCs in a manner suggestive of an increased kinetics of activation-associated DC migration. Flow cytometric analysis of the emigrated cells also indicated that mild heating enhanced the migration kinetics of DCs and increased the DC expression of MHC class II and the activation marker CD86. Importantly, these migrated cells displayed higher stimulatory capacity in a mixed lymphocyte reaction compared to those of controls. Overall, these results suggest that mild thermal stimuli can enhance DC activation and function and that strategic applications of heat could enhance the potency of vaccines consisting of relatively weak antigens, such as cancer vaccines.
皮肤中的树突状细胞(DCs)能迅速摄取抗原,并从皮肤迁移至引流淋巴结进行抗原呈递。因此,这些细胞在针对进入皮肤的感染因子以及作为疫苗递送的抗原产生特异性免疫反应中发挥着重要作用。先前的研究表明,体温类似发烧的升高会增强在皮肤部位启动的抗原依赖性免疫反应,并刺激表皮DCs向引流淋巴结迁移。总体而言,这些数据催生了一个假说,即表皮DCs的激活对生理热刺激敏感。在本研究中,从BALB/c小鼠获取的耳部皮肤外植体要么维持在37℃,要么在最初的6.5小时于40℃孵育,之后再置于37℃。这种加热方案改变了表皮DCs的密度和形态,提示激活相关的DC迁移动力学增加。对迁出细胞的流式细胞术分析还表明,轻度加热增强了DCs的迁移动力学,并增加了MHC II类分子和激活标记CD86在DCs上的表达。重要的是,与对照组相比,这些迁移细胞在混合淋巴细胞反应中表现出更高的刺激能力。总体而言,这些结果表明轻度热刺激可增强DCs的激活和功能,并且热的策略性应用可以增强由相对较弱抗原组成的疫苗的效力,如癌症疫苗。