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在微针中利用新型创新的热响应聚合物进行靶向皮内沉积。

Leveraging novel innovative thermoresponsive polymers in microneedles for targeted intradermal deposition.

作者信息

Roussel Sabrina, Udabe Jakes, Bin Sabri Akmal, Calderón Marcelo, Donnelly Ryan

机构信息

Faculty of Pharmacy, CHU de Quebec Research Center, Université Laval, 2705 Laurier Blvd, Quebec G1V 4G2, Canada; School of Pharmacy, Queen's University Belfast, 97 Lisburn Road, Belfast BT9 7BL, UK.

School of Pharmacy, Queen's University Belfast, 97 Lisburn Road, Belfast BT9 7BL, UK; POLYMAT, Applied Chemistry Department, Faculty of Chemistry, University of the Basque Country UPV/EHU, Donostia - San Sebastián, Spain.

出版信息

Int J Pharm. 2024 Mar 5;652:123847. doi: 10.1016/j.ijpharm.2024.123847. Epub 2024 Jan 22.

Abstract

Microneedles have garnered considerable attention over the years as a versatile pharmaceutical platform that could be leveraged to deliver drugs into and across the skin. In the current work, poly (N-isopropylacrylamide) (PNIPAm) is synthesized and characterized as a novel material for the development of a physiologically responsive microneedle-based drug delivery system. Typically, this polymer transitions reversibly between a swell state at lower temperatures and a more hydrophobic state at higher temperatures, enabling precise drug release. This study demonstrates that dissolving microneedles patches made from PNIPAm, incorporating BIS-PNIPAm, a crosslinked polymer variant, exhibit enhanced mechanical properties, evident from a smaller height reduction in microneedle (∼10 %). Although microneedles using PNIPAm alone were achievable, it displayed poor mechanical strength, requiring the inclusion of additional polymeric excipients like PVA to enhance mechanical properties. In addition, the incorporation of a thermoresponsive polymer did not have a significant (p > 0.05) impact on the insertion properties of the needles as all formulations inserted to a similar depth of 500 µm into ex vivo skin. Furthering this, the needles were loaded with a model payload, 1,1'-dioctadecyl-3,3,3',3'-tetramethylindodicarbocyanine perchlorate (DID) and the deposition of the cargo was monitored via multiphoton microscopy that showed that a deposit is formed at a depth of ≈200 µm. Also, it was revealed that crosslinked-PNIPAm (Bis-PNIPAm) formulations exhibited notable skin accumulationof the dye only after 4 h, independent of the excipient matrix used. This phenomenon was absent in non-crosslinked PNIPAm formulations, indicating a deposit formation in Bis-PNIPAm microneedle formulation. Collectively, this proof-of-concept study has advanced our understanding on the possibility to use PNIPAm for dissolving microneedle fabrication which could be harnessed for the deposition of nanoparticles into the dermis, for extended drug release within the skin.

摘要

多年来,微针作为一种多功能药物平台备受关注,可用于将药物输送到皮肤内并穿透皮肤。在当前的工作中,合成了聚(N-异丙基丙烯酰胺)(PNIPAm)并将其表征为一种新型材料,用于开发基于生理响应的微针药物递送系统。通常,这种聚合物在较低温度下的溶胀状态和较高温度下的更疏水状态之间可逆转变,从而实现精确的药物释放。本研究表明,由PNIPAm制成的溶解微针贴片,加入交联聚合物变体BIS-PNIPAm后,机械性能增强,微针高度降低较小(约10%)即可明显看出。虽然单独使用PNIPAm的微针是可行的,但它的机械强度较差,需要加入额外的聚合物辅料如PVA来增强机械性能。此外,加入热响应聚合物对针的插入性能没有显著(p>0.05)影响,因为所有制剂在离体皮肤中插入的深度相似,均为500μm。进一步研究发现,针中装载了模型负载1,1'-二辛基-3,3,3',3'-四甲基吲哚二碳菁高氯酸盐(DID),并通过多光子显微镜监测货物的沉积情况,结果显示在约200μm深度处形成了沉积物。此外,还发现交联PNIPAm(Bis-PNIPAm)制剂仅在4小时后才表现出染料在皮肤中的显著积累,与所用的辅料基质无关。非交联PNIPAm制剂中不存在这种现象,表明Bis-PNIPAm微针制剂中形成了沉积物。总的来说,这项概念验证研究增进了我们对使用PNIPAm制造溶解微针可能性的理解,这种微针可用于将纳米颗粒沉积到真皮中,以实现皮肤内药物的长效释放。

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