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利用 3D 打印微流控微混合器连续制备载有 melatonin 的 SNEDDS,提高抗氧化活性和皮肤渗透性。

Leveraging 3D-printed microfluidic micromixers for the continuous manufacture of melatonin loaded SNEDDS with enhanced antioxidant activity and skin permeability.

机构信息

Department of Pharmaceutics and Food Technology, School of Pharmacy, Complutense University of Madrid, 28040 Madrid, Spain.

Department of Biomolecular Sciences, School of Pharmacy, University of Urbino Carlo Bo, Piazza del Rinascimento 6, 61029 Urbino, Italy.

出版信息

Int J Pharm. 2024 Sep 30;663:124536. doi: 10.1016/j.ijpharm.2024.124536. Epub 2024 Jul 27.

Abstract

Vesicants are chemical warfare agents (CWAs) capable of causing severe skin damage and systemic toxicity. Melatonin, known for its anti-inflammatory and antioxidant properties, can mitigate the effects of these agents. Self-nano-emulsifying drug delivery systems (SNEDDS) containing a high melatonin concentration (5 %, 50 mg/g) were optimized using a quality-by-design approach from biocompatible, non-irritant excipients with a particle size of about 100 nm. The melatonin-loaded SNEDDS showed a 43-fold greater permeability than a conventional melatonin cream. Chemical stability at ambient temperature (25 °C) was maintained for one year. The preparation of optimised melatonin-loaded SNEDDS using a simple mixing method was compared to microfluidic micromixers. Mixing was successfully achieved using a 3D-printed (fused deposition modeling or stereolithography) T-shaped toroidal microfluidic chip (with a channel geometry optimized by computational fluid dynamics), resulting in a scalable, continuous process for the first time with a substantial reduction in preparation time compared to other conventional mixing approaches. No statistically significant differences were observed in the key quality attributes, such as particle size and melatonin loading, between mixing method till kinetic equilibrium solubility is reached and mixing using the 3D-printed micromixers. This scalable, continuous, cost-effective approach improves the overall efficiency of SNEDDS production, reduces the cost of quality control for multiple batches, and demonstrates the potential of continuous microfluidic manufacture with readily customizable 3D-printed micromixers at points of care, such as military bases.

摘要

作为一种化学战剂 (CWA),水疱剂能够造成严重的皮肤损伤和全身毒性。褪黑素具有抗炎和抗氧化特性,能够减轻这些制剂的作用。使用质量源于设计的方法,从具有生物相容性、非刺激性赋形剂中优化了含有高浓度褪黑素(5%,50mg/g)的自微乳化药物传递系统(SNEDDS),粒径约为 100nm。载有褪黑素的 SNEDDS 的渗透性比常规褪黑素乳膏高 43 倍。在环境温度(25°C)下,化学稳定性可保持一年。使用简单的混合方法制备优化的载有褪黑素的 SNEDDS,并与微流控微混合器进行比较。使用 3D 打印(熔融沉积建模或立体光刻)的 T 形环形微流控芯片(通过计算流体动力学优化通道几何形状)成功实现了混合,首次实现了可扩展的连续工艺,与其他常规混合方法相比,大大缩短了制备时间。在达到动力学平衡溶解度之前,混合方法和使用 3D 打印微混合器进行混合,在关键质量属性(如粒径和褪黑素负载)方面没有观察到统计学上的显著差异。这种可扩展、连续、具有成本效益的方法提高了 SNEDDS 生产的整体效率,降低了多批质量控制的成本,并展示了在军事基地等护理点使用可定制的 3D 打印微混合器进行连续微流控制造的潜力。

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