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Development of a modular, biocompatible thiolated gelatin microparticle platform for drug delivery and tissue engineering applications 被引量:2
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作者 Hannah A.Pearce Yu Seon Kim +6 位作者 Emma Watson Kiana Bahrami Mollie M.Smoak Emily Y.Jiang michael elder Tate Shannon Antonios G.Mikos 《Regenerative Biomaterials》 SCIE 2021年第3期45-56,共12页
The field of biomaterials has advanced significantly in the past decade.With the growing need for high-throughput manufacturing and screening,the need for modular materials that enable streamlined fabrication and anal... The field of biomaterials has advanced significantly in the past decade.With the growing need for high-throughput manufacturing and screening,the need for modular materials that enable streamlined fabrication and analysis of tissue engineering and drug delivery schema has emerged.Microparticles are a powerful platform that have demonstrated promise in enabling these technologies without the need to modify a bulk scaffold.This building block paradigm of using microparticles within larger scaffolds to control cell ratios,growth factors and drug release holds promise.Gelatin microparticles(GMPs)are a well-established platform for cell,drug and growth factor delivery.One of the challenges in using GMPs though is the limited ability to modify the gelatin post-fabrication.In the present work,we hypothesized that by thiolating gelatin before microparticle formation,a versatile platform would be created that preserves the cytocompatibility of gelatin,while enabling post-fabrication modification.The thiols were not found to significantly impact the physicochemical properties of the microparticles.Moreover,the thiolated GMPs were demonstrated to be a biocompatible and robust platform for mesenchymal stem cell attachment.Additionally,the thiolated particles were able to be covalently modified with a maleimide-bearing fluorescent dye and a peptide,demonstrating their promise as a modular platform for tissue engineering and drug delivery applications. 展开更多
关键词 gelatin microparticles thiolated gelatin microparticles click chemistry cell delivery drug delivery tissue engineering BIOMATERIALS
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