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Manufacture of three-dimensional scaffolds with bioactive mesoporous glasses by rapid prototyping.

机译:通过快速原型制造具有生物活性中孔玻璃的三维支架。

摘要

. From a previously known mesoporous bioactive glass porosity (2-50 nm) - manufacture of three-dimensional scaffolds with bioactive mesoporous glasses by rapid prototyping # a macroporous scaffold (1000 microns 200) is manufactured to be mixed with the components necessary for a paste consistency necessary for it to be injected by a robot rapid prototyping. Subsequent removal of these adjuvants by calcination leads to obtaining a pure ceramic material and manageable. # The method preserves the initial porosity and thus obtain a three-dimensional scaffold porosity designed and interconnected. Furthermore, the scaffold not present in its polymer composition thus potential toxicity problems may conllevar.La composition and structure of the manufactured scaffolds make optimal for use in tissue engineering for bone regeneration are avoided and as releasing system active principles.
机译:。从先前已知的中孔生物活性玻璃孔隙度(2-50 nm)-通过快速原型制造具有生物活性中孔玻璃的三维支架#制造大孔支架(1000微米200)与糊状稠度所需的组分混合它需要由机器人快速原型注入。随后通过煅烧除去这些助剂导致获得纯的陶瓷材料并且易于处理。 #该方法保留了初始孔隙率,从而获得了设计和互连的三维支架孔隙率。此外,支架在其聚合物组合物中不存在,因此潜在的毒性问题可能会发生冲突。避免了所制造的支架的La组成和结构最适合用于骨再生的组织工程中,并且避免了其作为释放系统的活性成分。

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