Department of Chemical & Biomolecular Engineering, University of Notre Dame, 240C McCourtney Hall, Notre Dame, Indiana 46556, USA.
Biomater Sci. 2023 Jun 13;11(12):4055-4072. doi: 10.1039/d3bm00469d.
Extracellular vesicles (EVs) are lipid-based particles naturally released from cells and recognized as promising drug delivery vehicles for improving therapeutic outcomes. Efficient manufacturing of therapeutic EVs have been challenging for their clinical translations. Three-dimensional (3D) cell cultures enabled by biomaterial scaffolds have been used as a platform for improving EV manufacturing compared to conventional methods such as isolation from bodily fluids and standard Petri-dish cell culture. Recent studies on 3D culture derived EV production prove it to enhance the EV yield, functional cargos, and therapeutic efficacies. However, there are still challenges with scaling up 3D cell culture production platforms for industrial use. Hence, there is a high demand for designing, optimizing, and implementing large scale EV manufacturing platforms derived from 3D cell cultures. We will first review the current advances of biomaterial-enabled 3D cell cultures in EV manufacturing, followed by the effect of these 3D cell culture platforms on the EV yield, the EV quality, and therapeutic efficacies. Lastly, we will discuss the key challenges and potential for implementing biomaterial-enabled 3D culture in EV manufacturing for large scale processes in the industrial use.
细胞外囊泡 (EVs) 是细胞自然释放的基于脂质的颗粒,被认为是改善治疗效果的有前途的药物递送载体。高效制造治疗性 EVs 一直是其临床转化的挑战。生物材料支架支持的三维 (3D) 细胞培养已被用作提高 EV 制造的平台,与从体液中分离和标准培养皿细胞培养等传统方法相比。最近关于 3D 培养衍生的 EV 生产的研究证明,它可以提高 EV 的产量、功能货物和治疗效果。然而,将 3D 细胞培养生产平台放大用于工业用途仍然存在挑战。因此,需要设计、优化和实施源自 3D 细胞培养的大规模 EV 制造平台。我们将首先回顾生物材料支持的 3D 细胞培养在 EV 制造中的最新进展,然后讨论这些 3D 细胞培养平台对 EV 产量、EV 质量和治疗效果的影响。最后,我们将讨论在工业用途中实施生物材料支持的 3D 培养用于大规模 EV 制造的关键挑战和潜力。