De Piano Raffaella, Caccavo Diego, Lamberti Gaetano, Remaut Katrien, Seynaeve Hanne, Barba Anna Angela
Dipartimento di Ingegneria Industriale, Università degli Studi di Salerno, Via Giovanni Paolo II n.132, 84084 Fisciano, Italy.
Eng4Life srl, University Spin-Off, Via Circumvallazione n.39, 83100 Avellino, Italy.
Pharmaceutics. 2023 Mar 16;15(3):959. doi: 10.3390/pharmaceutics15030959.
The use of natural resources and the enhancing of technologies are outlining the strategies of modern scientific-technological research for sustainable health products manufacturing. In this context, the novel simil-microfluidic technology, a mild production methodology, is exploited to produce liposomal curcumin as potential powerful dosage system for cancer therapies and for nutraceutical purposes. Through simil-microfluidic technology, based on interdiffusion phenomena of a lipid-ethanol phase in an aqueous flow, massive productions of liposomes at nanometric scale can be obtained. In this work, studies on liposomal production with useful curcumin loads were performed. In particular, process issues (curcumin aggregations) were elucidated and formulation optimization for curcumin load was performed. The main achieved result has been the definition of operative conditions for nanoliposomal curcumin production with interesting loads and encapsulation efficiencies.
自然资源的利用和技术的提升正在勾勒出现代科技研究用于可持续健康产品制造的策略。在此背景下,新型类微流控技术作为一种温和的生产方法,被用于生产脂质体姜黄素,作为癌症治疗和营养保健用途的潜在强效给药系统。通过基于脂质 - 乙醇相在水流中的相互扩散现象的类微流控技术,可以大规模生产纳米级脂质体。在这项工作中,开展了具有有效姜黄素负载量的脂质体生产研究。特别是,阐明了工艺问题(姜黄素聚集)并进行了姜黄素负载量的配方优化。主要取得的成果是确定了具有可观负载量和包封效率的纳米脂质体姜黄素生产的操作条件。