Silicone cryogel skeletons enhance the survival and mechanical integrity of hydrogel-encapsulated cell therapies

硅胶冷冻凝胶骨架增强了水凝胶包裹细胞疗法的存活率和机械完整性

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作者:William J Jeang, Matthew A Bochenek, Suman Bose, Yichao Zhao, Bryan M Wong, Jiawei Yang, Alexis L Jiang, Robert Langer, Daniel G Anderson

Abstract

The transplantation of engineered cells that secrete therapeutic proteins presents a promising method for addressing a range of chronic diseases. However, hydrogels used to encase and protect non-autologous cells from immune rejection often suffer from poor mechanical properties, insufficient oxygenation, and fibrotic encapsulation. Here, we introduce a composite encapsulation system comprising an oxygen-permeable silicone cryogel skeleton, a hydrogel matrix, and a fibrosis-resistant polymer coating. Cryogel skeletons enhance the fracture toughness of conventional alginate hydrogels by 23-fold and oxygen diffusion by 2.8-fold, effectively mitigating both implant fracture and hypoxia of encapsulated cells. Composite implants containing xenogeneic cells engineered to secrete erythropoietin significantly outperform unsupported alginate implants in therapeutic delivery over 8 weeks in immunocompetent mice. By improving mechanical resiliency and sustaining denser cell populations, silicone cryogel skeletons enable more durable and miniaturized therapeutic implants.

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