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Dissolvable layered microneedles with core-shell structures for transdermal drug delivery

机译:具有核-壳结构的可溶分层微针,用于透皮给药

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摘要

Microneedle (MN) systems for painless transdermal drug delivery have been developed in the past few years to overcome the issues of hypodermic injections. This study introduces a novel dissolvable layered microneedle (LMN) with core-shell structure for efficient transdermal drug delivery. Fabricated by three-step-casting method, the LMNs encapsulated the drug into the HA layer as a "shell", which is supported by PVA layer as core and base. When the LMNs are inserted into the skin, the drug would be released immediately once the HA layer were separated or dissolved. What's more, little drug would be wasted on the residual base after insertion. It is demonstrated that the mechanical property of LMNs is kept well with 100% insertion percentage at 60% relative humidity. Moreover, in the transdermal delivery in vivo test, almost 90% of drug in LMNs could be successful delivered into the skin with 10 s, while the homogeneous HA MNs with wide drug distribution need more than 120 s to reach the same efficiency. Owing to the advantages of stable mechanical property and rapid efficient drug delivery, the LMNs are more reliable and satisfied for the self-administration in the future.
机译:在过去的几年中,已经开发出了用于无痛透皮给药的微针(MN)系统,以克服皮下注射的问题。这项研究介绍了一种新型的可溶层状微针(LMN),具有核-壳结构,可有效地透皮给药。 LMN通过三步浇铸法制造,将药物作为“壳”封装在HA层中,并由PVA层作为核心和基础支撑。将LMN插入皮肤后,一旦HA层分离或溶解,药物将立即释放。更重要的是,插入后几乎没有药物会浪费在残留的基质上。结果表明,在60%的相对湿度下,插入率为100%的情况下,LMN的机械性能保持良好。此外,在体内透皮递送测试中,LMN中几乎90%的药物都可以在10 s内成功递送到皮肤中,而具有广泛药物分布的均质HA MN需要超过120 s才能达到相同的效率。由于具有稳定的机械性能和快速有效的药物输送的优势,LMN在未来的自我管理方面更加可靠和令人满意。

著录项

  • 来源
    《Materials science & engineering》 |2018年第2期|143-147|共5页
  • 作者单位

    Beijing Laboratory of Biomedical Materials, College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, PR China;

    Beijing Laboratory of Biomedical Materials, College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, PR China;

    Beijing Laboratory of Biomedical Materials, College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, PR China;

    Beijing Laboratory of Biomedical Materials, College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Layered microneedle; Core-shell; Mechanical property; Drug delivery;

    机译:分层微针;核 - 壳;机械性能药物输送;

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