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INJECTABLE CRYOGEL MICROCARRIERS FOR CELL TRANSPLANTATION AND GROWTH FACTOR DELIVERY

机译:用于细胞移植和生长因子传递的可注射冰冻细胞微载体

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摘要

Biohybrid cryogel microcarriers comprised of heparin and four-arm poly(ethylene glycol) (starPEG) were synthesized by combining an emulsion technique with cryogelation processing. Freezing the gelling reaction mixture whilst dispersed in an organic solvent at −20 ℃ or −40 ℃ followed by lyophilisation gave rise to micron scale hydrogel particles with interconnected macropores, which could be loaded with various cell types. Due to their spongy structure and their dense pore walls the microcarriers could be injected through a 27 gauge needle without a negative effect on the cell viability. The artificial 3D cell microenvironment provided by the macropores could be further enhanced by covalent attachment of adhesion ligands. The highly negative charge of heparin allowed for strong binding of growth factors and their sustained release. Consequently, this microcarrier platform creates exiting new options for combination therapies, e.g. for the treatment of neurodegenerative diseases or for therapeutic vascularization.
机译:通过将乳液技术与冷冻凝胶化工艺相结合,合成了由肝素和四臂聚乙二醇(starPEG)组成的生物杂交冷冻凝胶微载体。冷冻凝胶化反应混合物,同时将其分散在-20℃或-40℃的有机溶剂中,然后冻干,得到具有相互连接的大孔的微米级水凝胶颗粒,可装载各种细胞类型。由于其海绵状结构和致密的孔壁,可以通过27号针头注射微载体,而对细胞活力没有负面影响。大孔提供的人工3D细胞微环境可以通过粘附配体的共价结合得到进一步增强。肝素的高度负电荷使生长因子牢固结合并持续释放。因此,该微载体平台为组合疗法创造了新的选择,例如,联合疗法。用于治疗神经退行性疾病或治疗血管。

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  • 会议地点 Dresden(DE)
  • 作者单位

    Leibniz Institute of Polymer Research Dresden, Hohe Str. 6, Dresden, 01069, Germanywelzel@ipfdd.de;

    Leibniz Institute of Polymer Research Dresden, Hohe Str. 6, Dresden, 01069, Germany Cardiff University, Cardiff, CF10 3AX, Wales, UKnewland@ipfdd.de;

    Leibniz Institute of Polymer Research Dresden, Hohe Str. 6, Dresden, 01069, Germany;

    Cardiff University, Cardiff, CF10 3AX, Wales, UK;

    Leibniz Institute of Polymer Research Dresden, Hohe Str. 6, Dresden, 01069, Germany;

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