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按需滴注精密微分配技术制备个性化口崩片的打印。

Drop-on-demand printing of personalised orodispersible films fabricated by precision micro-dispensing.

机构信息

School of Pharmacy, University of East Anglia, Norwich, UK.

School of Engineering, University of East Anglia, Norwich, UK.

出版信息

Int J Pharm. 2021 Dec 15;610:121279. doi: 10.1016/j.ijpharm.2021.121279. Epub 2021 Nov 10.

Abstract

Personalised orodispersible films (ODFs) manufactured at the point of care offer the possibility of adapting the dosing requirements for individual patients. Inkjet printing was extensively explored as a tool to produce personalised ODFs, but it is extensively limited to dispensing liquid with low viscosity and the interaction between ink and edible substrate complicates the fabrication process. In this study, we evaluated the feasibility of using a micro-dispensing (MD) jet system capable of accurately dispensing viscous liquid to fabricate substrate-free ODFs on-demand. The model inks containing hydroxypropyl methylcellulose (HPMC) and paracetamol were used to prepare personalised ODFs by expanding the film area. Cast films were used as the control sample to benchmark the mechanical properties, disintegration time, and dosing accuracy of MD printed ODFs. Both the cast and printed films showed smooth surface morphology without any bubbles. No significant difference was found in the disintegration time of the MD printed films compared to the cast films. High precision in dosing by MD printing was achieved. The dose of paracetamol had a linear correlation with the dimension of the printed films (R = 0.995). The results provide clear evidence of the potential of MD printing to fabricate ODFs and the knowledge foundation of advancing MD printing to a point-of-care small-batch manufacturing technology of personalised ODFs.

摘要

在医疗保健点制造的个性化口腔分散片 (ODF) 为适应个别患者的剂量要求提供了可能性。喷墨打印被广泛探索用于制造个性化 ODF,但它广泛限于分配低粘度的液体,并且墨水和可食用基质之间的相互作用使制造过程复杂化。在这项研究中,我们评估了使用能够准确分配粘性液体的微分配 (MD) 喷射系统来按需制造无基质 ODF 的可行性。含有羟丙基甲基纤维素 (HPMC) 和扑热息痛的模型墨水被用于通过扩展薄膜面积来制备个性化 ODF。铸膜被用作对照样品,以基准测试 MD 打印 ODF 的机械性能、崩解时间和剂量准确性。铸膜和打印膜的表面形貌都很光滑,没有任何气泡。与铸膜相比,MD 打印膜的崩解时间没有明显差异。MD 打印在剂量方面具有高精度。扑热息痛的剂量与打印膜的尺寸呈线性相关 (R = 0.995)。研究结果为 MD 打印制造 ODF 的潜力提供了明确的证据,并为将 MD 打印技术推进到个性化 ODF 的医疗保健点小批量制造技术奠定了知识基础。

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