Zheng Yanting, Ling Zhixin, Li Zhiming, Zhao Puxuan, Wen Xueyu, Qu Fengli, Yu Haining, Chang Hao
College of Pharmaceutical Sciences, Zhejiang University of Technology, Hangzhou, Zhejiang, 310014, China.
Hangzhou Institute of Medicine (HIM), Chinese Academy of Sciences, Hangzhou, Zhejiang, 310022, China.
Macromol Biosci. 2023 Dec;23(12):e2300253. doi: 10.1002/mabi.202300253. Epub 2023 Aug 16.
Dissolvable microneedles (DMNs) are an attractive alternative for vaccine delivery due to their user-friendly, skin-targeted, and minimally invasive features. However, vaccine waste and inaccurate dosage remain significant issues faced by DMNs, as the skin's elasticity makes it difficult to insert MNs completely. Here, a simple and reliable fabrication method are introduced based on two-casting micromolding with centrifugal drying to create a rapidly DMN patch made of hyaluronic acid. Ovalbumin (OVA), as the model antigens, is concentrated in the tip parts of the DMNs (60% of the needle height) to prevent antigen waste caused by skin elasticity. The time and temperature of the initial centrifugal drying significantly affect antigen distribution within the needle tips, with lower temperature facilitating antigen accumulation. The resulting DMN patch is able to penetrate the skin with enough mechanical strength and quickly release antigens into the skin tissue within 3 min. The in vivo study demonstrates that immunization of OVA with DMNs outperforms conventional vaccination routes, including subcutaneous and intramuscular injections, in eliciting both humoral and cellular immunity. This biocompatible DMN patch offers a promising and effective strategy for efficient and safe vaccination.
可溶解微针(DMNs)因其用户友好、靶向皮肤和微创的特点,是疫苗递送的一种有吸引力的替代方法。然而,疫苗浪费和剂量不准确仍然是可溶解微针面临的重大问题,因为皮肤的弹性使得难以完全插入微针。在此,基于二次浇铸微成型和离心干燥,引入了一种简单可靠的制造方法,以制备由透明质酸制成的快速溶解微针贴片。作为模型抗原的卵清蛋白(OVA)集中在微针的尖端部分(针高的60%),以防止因皮肤弹性导致的抗原浪费。初始离心干燥的时间和温度显著影响抗原在针尖内的分布,较低温度有利于抗原积累。所得的微针贴片能够以足够的机械强度穿透皮肤,并在3分钟内迅速将抗原释放到皮肤组织中。体内研究表明,用微针接种OVA在引发体液免疫和细胞免疫方面优于包括皮下和肌肉注射在内的传统疫苗接种途径。这种生物相容性微针贴片为高效安全的疫苗接种提供了一种有前景且有效的策略。