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Universal Nanocarrier Ink Platform for Biomaterials Additive Manufacturing

机译:用于生物材料添加剂制造的通用纳米载体墨水平台

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摘要

Ink engineering is a fundamental area of research within additive manufacturing (AM) that designs next-generation biomaterials tailored for additive processes. During the design of new inks, specific requirements must be considered, such as flowability, postfabrication stability, biointegration, and controlled release of therapeutic molecules. To date, many (bio)inks have been developed; however, few are sufficiently versatile to address a broad range of applications. In this work, a universal nanocarrier ink platform is presented that provides tailored rheology for extrusion-based AM and facilitates the formulation of biofunctional inks. The universal nanocarrier ink (UNI) leverages reversible polymer-nanoparticle interactions to form a transient physical network with shear-thinning and self-healing properties engineered for direct ink writing (DIW). The unique advantage of the material is that a range of functional secondary polymers can be combined with the UNI to enable stabilization of printed constructs via secondary cross-linking as well as customized biofunctionality for tissue engineering and drug delivery applications. Specific UNI formulations are used for bioprinting of living tissue constructs and DIW of controlled release devices. The robust and versatile nature of the UNI platform enables rapid formulation of a broad range of functional inks for AM of advanced biomaterials.
机译:墨水工程是添加剂制造业(AM)内的基本研究领域,其设计用于添加过程的下一代生物材料。在设计新油墨期间,必须考虑具体要求,例如流动性,后置稳定性,生物整形性和治疗分子的控制释放。迄今为止,已经开发了许多(BIO)墨水;然而,很少有足够的通用来解决广泛的应用。在这项工作中,提出了一种通用的纳米载波墨水平台,其为基于挤出的AM提供量身定制的流变学,并促进了生物官能油墨的配方。通用纳米载体油墨(UNI)利用可逆的聚合物 - 纳米颗粒相互作用,形成具有用于直接墨水写入(DIW)的剪切变薄和自我愈合特性的瞬态物理网络。材料的独特优点是,可以将一系列功能性二级聚合物与UNI组合,以通过二次交联以及用于组织工程和药物递送应用的定制生物抗uncuralith来实现印刷构建体的稳定性。具体的UNI制剂用于生物印刷的活组织构建体和控制释放装置的DIW。 UNI平台的稳健和多功能性质使得能够快速配制为先进生物材料的am具有广泛的功能性油墨。

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