Publication | Open Access
Microfluidic Systems For Manufacturing of Microparticle-Based Drug-Delivery Systems: Design, Construction, and Operation
35
Citations
40
References
2022
Year
Microparticle-based Drug-delivery SystemsContinuous Flow PlatformsEngineeringMicrofabricationRational DesignResponsive PolymersAnalytical MicrosystemsPorous MediaBiofabricationDrug Delivery SystemsLab-on-a-chipMicro-encapsulationMicroscale SystemBiomedical EngineeringDrug-carrying ParticlesMicrofluidic SystemsDrug Delivery SystemMicrofluidics
Particles synthesized from biodegradable polymers hold great potential as controlled drug delivery systems. Continuous flow platforms based on microfluidics offer attractive advantages over conventional batch-emulsification techniques for the scalable fabrication of drug-loaded particles with controlled physicochemical properties. However, widespread utilization of microfluidic technologies for the manufacturing of drug-loaded particles has been hindered largely by the lack of practical guidelines toward cost-effective development and reliable operation of microfluidic systems. Here, we present a framework for rational design and construction of microfluidic systems using commercially available components for high-throughput production of uniform biodegradable particles encapsulating drugs. We also demonstrate successful implementation of this framework to devise a robust microfluidic system that is capable of producing drug-carrying particles with desired characteristics. The guidelines provided in this study will likely help broaden the applicability of microfluidic technologies for the synthesis of high-quality, drug-loaded biodegradable particles.
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