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基于双光子聚合的可重复使用母模板制备用于药物递送的聚合物微针。

Two-photon polymerization based reusable master template to fabricate polymer microneedles for drug delivery.

作者信息

Pillai Mamatha M, Ajesh Saranya, Tayalia Prakriti

机构信息

Department of Biosciences and Bioengineering, Indian Institute of Technology Bombay, India.

出版信息

MethodsX. 2023 Jan 22;10:102025. doi: 10.1016/j.mex.2023.102025. eCollection 2023.

Abstract

Microneedle patches have been widely used in a minimally invasive manner for various drug delivery applications. However, for developing these microneedle patches, master molds are required, which are generally made of metal and are very expensive. Two-photon polymerization (2PP) technique can be used for fabricating microneedles more precisely and at a much lower cost. This study reports a novel strategy for developing microneedle master templates using the 2PP method. The main advantage of this technique is that there is no requirement for post-processing after laser writing, and that for the fabrication of polydimethylsiloxane (PDMS) molds, harsh chemical treatments such as silanization are not required. This is a one-step process for manufacturing of microneedle templates which allows easy replication of negative PDMS molds. This is done by adding resin to the master-template and annealing at a specific temperature, thereby making the PDMS peel-off easy and allowing re-use of the master template multiple times. Using this PDMS mold, two types of polyvinyl alcohol (PVA)-rhodamine (RD) microneedle patches were developed, namely, dissolving (D-PVA) and hydrogel (H-PVA) patches and were characterized using suitable techniques. This technique is affordable, efficient and does not require post-processing for development of microneedle templates required for drug delivery applications.•Two photon polymerization can be used for cost-effective fabrication of polymer microneedles for transdermal drug delivery.•Post-processing or surface-modification procedures are not required for these master templates.•Using a simple annealing step, the master template becomes reusable and robust for peeling off polymers like PDMS.

摘要

微针贴片已以微创方式广泛用于各种药物递送应用。然而,在开发这些微针贴片时,需要母模,母模通常由金属制成且非常昂贵。双光子聚合(2PP)技术可用于更精确且成本低得多地制造微针。本研究报告了一种使用2PP方法开发微针母模板的新策略。该技术的主要优点是激光写入后无需后处理,并且在制造聚二甲基硅氧烷(PDMS)模具时,不需要诸如硅烷化之类的苛刻化学处理。这是制造微针模板的一步过程,允许轻松复制负性PDMS模具。这是通过将树脂添加到母模板并在特定温度下退火来完成的,从而使PDMS易于剥离并允许母模板多次重复使用。使用这种PDMS模具,开发了两种类型的聚乙烯醇(PVA)-罗丹明(RD)微针贴片,即溶解型(D-PVA)和水凝胶型(H-PVA)贴片,并使用合适的技术对其进行了表征。该技术价格实惠、效率高,并且在开发药物递送应用所需的微针模板时不需要后处理。

•双光子聚合可用于经济高效地制造用于透皮给药的聚合物微针。

•这些母模板不需要后处理或表面改性程序。

•通过简单的退火步骤,母模板可重复使用,并且对于剥离诸如PDMS之类的聚合物具有很强的耐用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39e5/9922965/d21153c2ba1c/ga1.jpg

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