复合乳剂作为一种创新的药物剂型,用于应对多药治疗和多重用药挑战的问题。

Complex Emulsions as an Innovative Pharmaceutical Dosage form in Addressing the Issues of Multi-Drug Therapy and Polypharmacy Challenges.

作者信息

Yandrapalli Naresh

机构信息

Max Planck Institute of Molecular Cell Biology and Genetics, Pfotenhauerstrasse 108, 01307 Dresden, Germany.

出版信息

Pharmaceutics. 2024 May 24;16(6):707. doi: 10.3390/pharmaceutics16060707.

Abstract

This review explores the intersection of microfluidic technology and complex emulsion development as a promising solution to the challenges of formulations in multi-drug therapy (MDT) and polypharmacy. The convergence of microfluidic technology and complex emulsion fabrication could herald a transformative era in multi-drug delivery systems, directly confronting the prevalent challenges of polypharmacy. Microfluidics, with its unparalleled precision in droplet formation, empowers the encapsulation of multiple drugs within singular emulsion particles. The ability to engineer emulsions with tailored properties-such as size, composition, and release kinetics-enables the creation of highly efficient drug delivery vehicles. Thus, this innovative approach not only simplifies medication regimens by significantly reducing the number of necessary doses but also minimizes the pill burden and associated treatment termination-issues associated with polypharmacy. It is important to bring forth the opportunities and challenges of this synergy between microfluidic-driven complex emulsions and multi-drug therapy poses. Together, they not only offer a sophisticated method for addressing the intricacies of delivering multiple drugs but also align with broader healthcare objectives of enhancing treatment outcomes, patient safety, and quality of life, underscoring the importance of dosage form innovations in tackling the multifaceted challenges of modern pharmacotherapy.

摘要

本综述探讨了微流控技术与复杂乳液开发的交叉领域,将其作为应对多药治疗(MDT)和多种药物联合使用中制剂挑战的一种有前景的解决方案。微流控技术与复杂乳液制备的融合可能预示着多药递送系统的变革时代,直接应对多种药物联合使用中普遍存在的挑战。微流控技术在液滴形成方面具有无与伦比的精度,能够将多种药物封装在单个乳液颗粒中。设计具有定制特性(如尺寸、组成和释放动力学)的乳液的能力,使得能够创建高效的药物递送载体。因此,这种创新方法不仅通过显著减少所需剂量的数量简化了用药方案,还最大限度地减轻了药丸负担以及与多种药物联合使用相关的治疗终止问题。重要的是要提出微流控驱动的复杂乳液与多药治疗之间这种协同作用带来的机遇和挑战。它们不仅提供了一种复杂的方法来解决递送多种药物的复杂性,还符合提高治疗效果、患者安全性和生活质量的更广泛医疗保健目标,强调了剂型创新在应对现代药物治疗多方面挑战中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/132e/11206808/2f92b03161e7/pharmaceutics-16-00707-g004.jpg

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