Molecular Engineering Laboratory, Institute of Molecular and Cell Biology, A*STAR, 61 Biopolis Drive, #03-13 Proteos, 138673, Singapore; Institute of Bioengineering and Bioimaging, A*STAR, 31 Biopolis Way, #06-01 Nanos, 138669, Singapore.
Molecular Engineering Laboratory, Institute of Molecular and Cell Biology, A*STAR, 61 Biopolis Drive, #03-13 Proteos, 138673, Singapore.
Biomaterials. 2021 Sep;276:121034. doi: 10.1016/j.biomaterials.2021.121034. Epub 2021 Jul 21.
Hydrogels are used in many biomedical applications, including regenerative medicine and surgical training phantoms. However, the ability to shape these materials into complex anatomical structures using additive manufacturing is limited in part by their low mechanical stiffness. We developed a hydrogel 3D printer, that projects patterns directly onto a thin layer of fluid-supported hydrogel precursor, which serves as a floating, liquid projection screen. This approach avoids inadvertent adhesion that affects typical resin-based 3D printers, and enables fast, continuous printing. As a consequence, we can print smooth objects free of layering artifacts, at rates of 200 mm/h along the Z-axis. We demonstrate the versatility of our approach by printing various complex structures, including free-standing channel networks with 500 μm-thick walls, using hydrogels with a wide range of stiffness from 7 kPa to more than 4 MPa. Lastly, because the printer features a free surface, we combined it with an extruder to perform multi-material printing. We use this strategy to create centimeter-scale, cell-laden hydrogels containing channels, that help address the key nutrient supply problem in bioprinting.
水凝胶在许多生物医学应用中都有使用,包括再生医学和手术训练模型。然而,由于其机械硬度低,使用增材制造将这些材料成型为复杂的解剖结构的能力受到限制。我们开发了一种水凝胶 3D 打印机,它可以将图案直接投射到一层薄薄的流体支撑水凝胶前体上,该前体充当浮动的液体投影屏幕。这种方法避免了影响典型树脂基 3D 打印机的意外粘连,并实现了快速、连续的打印。因此,我们可以以 200mm/h 的速度沿着 Z 轴打印出光滑的、无分层伪影的物体。我们通过打印各种复杂结构来展示我们方法的多功能性,包括具有 500μm 厚壁的独立通道网络,使用从 7kPa 到超过 4MPa 的各种硬度的水凝胶。最后,由于打印机具有自由表面,我们将其与挤出机结合使用,进行多材料打印。我们使用这种策略来创建含有通道的厘米级、细胞负载的水凝胶,有助于解决生物打印中的关键营养供应问题。