产品展厅收藏该商铺

您好 登录 注册

当前位置:
上海腾拔仪器科技有限公司>资料下载>上海腾拔质构仪用于微针力学强度测试

资料下载

上海腾拔质构仪用于微针力学强度测试

阅读:690          发布时间:2023-8-7
提 供 商 上海腾拔仪器科技有限公司 资料大小 4.2MB
资料图片 下载次数 14次
资料类型 PDF 文件 浏览次数 690次
免费下载 点击下载    

Abstract: Silicon microneedle (Si-MN) systems are a promising strategy for transdermal drug delivery due to their minimal invasiveness and ease of processing and application. Traditional Si-MN arrays are usually fabricated by using micro-electro-mechanical system (MEMS) processes, which are expensive and not suitable for large-scale manufacturing and applications. In addition, Si-MNs have a smooth surface, making it difficult for them to achieve high-dose drug delivery. Herein, we

demonstrate a solid strategy to prepare a novel black silicon microneedle (BSi-MN) patch with ultrahydrophilic surfaces for high drug loading. The proposed strategy consists of a simple fabrication of plain Si-MNs and a subsequent fabrication of black silicon nanowires. First, plain Si-MNs were prepared via a simple method consisting of laser patterning and alkaline etching. The nanowire structures were then prepared on the surfaces of the plain Si-MNs to form the BSi-MNs through Ag-catalyzed chemical etching. The effects of preparation parameters, including Ag+ and HF concentrations during Ag nanoparticle deposition and [HF/(HF + H2O2)] ratio during Ag-catalyzed chemical etching, on the morphology and properties of the BSi-MNs were investigated in detail. The results show that the final prepared BSi-MN patches exhibit an excellent drug loading capability, more than twice that of plain Si-MN patches with the same area, while maintaining comparable mechanical properties for practical skin piercing applications. Moreover, the BSi-MNs exhibit a certain antimicrobial activity that is expected to prevent bacterial growth and disinfect the affected area when applied to the skin.



收藏该商铺

登录 后再收藏

提示

您的留言已提交成功!我们将在第一时间回复您~

对比框

产品对比 产品对比 联系电话 二维码 意见反馈 在线交流

扫一扫访问手机商铺
021-54397372
在线留言