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可调节嵌入式打印软生物材料支撑浴,具有可变硬度。

Regulable Supporting Baths for Embedded Printing of Soft Biomaterials with Variable Stiffness.

机构信息

State Key Laboratory of Fluid Power and Mechatronic Systems, Zhejiang University, Hangzhou 310058, People's Republic of China.

School of Mechanical Engineering, Zhejiang University, Hangzhou 310058, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2022 Sep 21;14(37):41695-41711. doi: 10.1021/acsami.2c09221. Epub 2022 Sep 7.

Abstract

Three-dimensional (3D) embedded printing is emerging as a potential solution for the fabrication of complex biological structures and with ultrasoft biomaterials. For the supporting medium, bulk gels can support a wide range of bioinks with higher printing resolution as well as better finishing surfaces than granular microgel baths. However, the difficulties of regulating the physical properties of existing bulk gel supporting baths limit the further development of this method. This work has developed a bulk gel supporting bath with easily regulable physical properties to facilitate soft-material fabrication. The proposed bath is composed based on the hydrophobic association between a hydrophobically modified hydroxypropylmethyl cellulose (H-HPMC) and Pluronic F-127 (PF-127). Its rheological properties can be easily regulated; in the preprinting stage by varying the relative concentration of components, during printing by changing the temperature, and postprinting by adding additives with strong hydrophobicity or hydrophilicity. This has made the supporting bath not only available for various bioinks with a range of printing windows but also easy to be removed. Also, the removal strategy is independent of printing conditions like temperature and ions, which empowers the bath to hold great potential for the embedded printing of commonly used biomaterials. The adjustable rheological properties of the bath were leveraged to characterize the embedded printing quantitatively, involving the disturbance during the printing, filament cross-sectional shape, printing resolution, continuity, and the coalescence between adjacent filaments. The match between the bioink and the bath was also explored. Furthermore, low-viscosity bioinks (with 0.008-2.4 Pa s viscosity) were patterned into various 3D complex delicate soft structures (with a 0.5-5 kPa compressive modulus). It is believed that such an easily regulable assembled bath could serve as an available tool to support the complex biological structure fabrication and open unique prospects for personalized medicine.

摘要

三维(3D)嵌入式打印作为制造复杂生物结构和超软生物材料的潜在解决方案正在出现。对于支撑介质,块状凝胶可以支撑范围广泛的生物墨水,具有更高的打印分辨率和比颗粒微凝胶浴更好的完成表面。然而,调节现有块状凝胶支撑浴物理性质的困难限制了该方法的进一步发展。这项工作开发了一种具有易于调节物理性质的块状凝胶支撑浴,以方便软材料制造。所提出的浴由疏水性羟丙基甲基纤维素(H-HPMC)和 Pluronic F-127(PF-127)之间的疏水缔合组成。其流变性质可以很容易地调节;在打印前阶段通过改变成分的相对浓度,在打印过程中通过改变温度,以及在打印后通过添加强疏水性或亲水性添加剂来调节。这使得支撑浴不仅可用于各种具有一系列打印窗口的生物墨水,而且易于去除。此外,去除策略独立于温度和离子等打印条件,这使得该浴具有嵌入打印常用生物材料的巨大潜力。浴的可调流变性质被利用来对嵌入式打印进行定量表征,涉及打印过程中的干扰、丝截面形状、打印分辨率、连续性以及相邻丝之间的融合。还探索了生物墨水和浴之间的匹配。此外,低粘度生物墨水(粘度为 0.008-2.4 Pa s)被图案化为各种 3D 复杂精细软结构(压缩模量为 0.5-5 kPa)。相信这种易于调节的组装浴可以作为支撑复杂生物结构制造的有效工具,并为个性化医疗开辟独特的前景。

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