Guo Lei, Qiu Yuqin, Chen Jianmin, Zhang Suohui, Xu Bai, Gao Yunhua
Key Laboratory of Photochemical Conversion and Optoelectronic Materials, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing, 100190, China.
Biomed Microdevices. 2013 Dec;15(6):1077-85. doi: 10.1007/s10544-013-9799-z.
Transcutaneous immunization (TCI) has many advantages compared with needle-based administrations. But the conventional TCI shows poor permeation of antigens across the skin barrier. In this study, Functional MicroArray (FMA) system was used to poke the skin and increase the permeability, and the hydrogel patch formulation was used as the carrier for transdermal delivery of hepatitis B surface antigen (HBsAg) and cholera toxin B (CTB) as an adjuvant. In vitro permeation of antigen was studied using porcine ear skin and rat abdominal skin. The results showed that FMA system could significantly increase the permeation of HBsAg across skin compared with conventional TCI. HBsAg loaded hydrogel formulation exhibited better antigenic thermostability than the liquid formulation. In vivo immunization studies were performed in mice, and the serum IgG titer, IgG2a/IgG1 ratio were measured. The results showed that TCI with FMA induced more potent immune responses than the groups without FMA pretreatment. CTB adjuvanted TCI group could induce higher IgG titers compared with the group without CTB. Furthermore, TCI group can maintain a longer duration of stable IgG titers compared with the intramuscular injection (IM) group. In conclusion, the FMA/hydrogel system was proved to be a potential vaccination strategy against hepatitis B virus.
与基于针头的给药方式相比,经皮免疫(TCI)具有许多优势。但传统的经皮免疫显示抗原穿过皮肤屏障的渗透性较差。在本研究中,使用功能微阵列(FMA)系统刺破皮肤并增加渗透性,并使用水凝胶贴片制剂作为载体经皮递送乙型肝炎表面抗原(HBsAg)和霍乱毒素B(CTB)作为佐剂。使用猪耳皮肤和大鼠腹部皮肤研究了抗原的体外渗透性。结果表明,与传统经皮免疫相比,FMA系统可显著增加HBsAg穿过皮肤的渗透性。负载HBsAg的水凝胶制剂比液体制剂表现出更好的抗原热稳定性。在小鼠中进行了体内免疫研究,并测量了血清IgG滴度、IgG2a/IgG1比值。结果表明,与未进行FMA预处理的组相比,经FMA预处理的经皮免疫诱导了更强的免疫反应。与未使用CTB的组相比,CTB佐剂经皮免疫组可诱导更高的IgG滴度。此外,与肌肉注射(IM)组相比,经皮免疫组可维持更长时间的稳定IgG滴度。总之,FMA/水凝胶系统被证明是一种潜在的抗乙型肝炎病毒疫苗接种策略。