配备微柱体的空心微针,用于改进针头插入和药液注射

IF 3.5 3区 医学 Q2 CHEMISTRY, MULTIDISCIPLINARY Pharmaceutical Research Pub Date : 2024-03-05 DOI:10.1007/s11095-024-03681-7
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引用次数: 0

摘要

摘要 目的 空心微针(hMNs)是一种很有前途的皮内有效给药装置。要获得生物利用度或恒定疗效,就必须实现针头完全插入皮肤并在不渗漏的情况下给药。在本研究中,我们研究了几种类型的 hMN,这些 hMN 在空心针头周围带有或不带有可抑制皮肤变形的圆形钝尖微柱,并研究了它们对成功插入针头和给药的影响。使用了六种不同类型的 hMN,针长分别为 1000、1300 和 1500 µm,带或不带微柱体。 方法 研究了针的插入和药物在大鼠皮肤中的分布。此外,还使用带人工膜的纹理分析仪研究了使用 hMNs 期间的位移-力曲线,通过与体内结果进行比较,研究影响针头成功插入和给药的因素。 结果 根据碘的药物分布结果,带有微柱的 hMN1300 能够成功地将药液注入皮内部位,成功率很高。此外,人工膜的位移-力曲线结果表明,微柱可有效控制注射溶液的深度,并防止 hMN 基座与变形膜之间的接触。 结论 在本研究中,hMN1300S 能有效地将溶液输送到皮内部位。特别是,微柱可有效控制注射溶液的深度,并防止 hMN 基座与变形膜接触。这些结果将有助于设计和开发能确保成功注射药物的 hMN。
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A Hollow Microneedle Equipped with a Micropillar for Improved Needle Insertion and Injection of Drug Solution

Abstract

Purpose

Hollow-type microneedles (hMNs) are a promising device for the effective administration of drugs into intradermal sites. Complete insertion of the needle into the skin and administration of the drug solution without leakage must be achieved to obtain bioavailability or a constant effect. In the present study, several types of hMN with or without a rounded blunt tip micropillar, which suppresses skin deformation, around a hollow needle, and the effect on successful needle insertion and administration of a drug solution was investigated. Six different types of hMNs with needle lengths of 1000, 1300, and 1500 µm with or without a micropillar were used.

Methods

Needle insertion and the disposition of a drug in rat skin were investigated. In addition, the displacement-force profile during application of hMNs was also investigated using a texture analyzer with an artificial membrane to examine needle factors affecting successful insertion and administration of a drug solution by comparing with in vivo results.

Results

According to the results with the drug distribution of iodine, hMN1300 with a micropillar was able to successfully inject drug solution into an intradermal site with a high success rate. In addition, the results of displacement-force profiles with an artificial membrane showed that a micropillar can be effective for depth control of the injected solution as well as the prevention of contact between the hMN pedestal and the deformed membrane.

Conclusion

In the present study, hMN1300S showed effective solution delivery into an intradermal site. In particular, a micropillar can be effective for depth control of the injected solution as well as preventing contact between the hMN pedestal and the deformed membrane. The obtained results will help in the design and development of hMNs that ensure successful injection of an administered drug.

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来源期刊
Pharmaceutical Research
Pharmaceutical Research 医学-化学综合
CiteScore
6.60
自引率
5.40%
发文量
276
审稿时长
3.4 months
期刊介绍: Pharmaceutical Research, an official journal of the American Association of Pharmaceutical Scientists, is committed to publishing novel research that is mechanism-based, hypothesis-driven and addresses significant issues in drug discovery, development and regulation. Current areas of interest include, but are not limited to: -(pre)formulation engineering and processing- computational biopharmaceutics- drug delivery and targeting- molecular biopharmaceutics and drug disposition (including cellular and molecular pharmacology)- pharmacokinetics, pharmacodynamics and pharmacogenetics. Research may involve nonclinical and clinical studies, and utilize both in vitro and in vivo approaches. Studies on small drug molecules, pharmaceutical solid materials (including biomaterials, polymers and nanoparticles) biotechnology products (including genes, peptides, proteins and vaccines), and genetically engineered cells are welcome.
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