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Precise stacking of decellularized extracellular matrix based 3D cell-laden constructs by a 3D cell printing system equipped with heating modules

机译:通过配备加热模块的3D细胞打印系统精确堆叠基于脱细胞的细胞外基质的3D细胞载体构建体

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摘要

Three-dimensional (3D) cell printing systems allow the controlled and precise deposition of multiple cells in 3D constructs. Hydrogel materials have been used extensively as printable bioinks owing to their ability to safely encapsulate living cells. However, hydrogel-based bioinks have drawbacks for cell printing, e.g. inappropriate crosslinking and liquid-like rheological properties, which hinder precise 3D shaping. Therefore, in this study, we investigated the influence of various factors (e.g. bioink concentration, viscosity, and extent of crosslinking) on cell printing and established a new 3D cell printing system equipped with heating modules for the precise stacking of decellularized extracellular matrix (dECM)-based 3D cell-laden constructs. Because the pH-adjusted bioink isolated from native tissue is safely gelled at 37 °C, our heating system facilitated the precise stacking of dECM bioinks by enabling simultaneous gelation during printing. We observed greater printability compared with that of a non-heating system. These results were confirmed by mechanical testing and 3D construct stacking analyses. We also confirmed that our heating system did not elicit negative effects, such as cell death, in the printed cells. Conclusively, these results hold promise for the application of 3D bioprinting to tissue engineering and drug development.
机译:三维(3D)细胞打印系统允许在3D结构中控制和精确地沉积多个细胞。水凝胶材料由于其能够安全包裹活细胞的能力而被广泛用作可印刷生物墨水。然而,基于水凝胶的生物油墨具有用于细胞印刷的缺点,例如在印刷过程中。不适当的交联和类似液体的流变性,这会妨碍精确的3D成型。因此,在这项研究中,我们研究了各种因素(例如生物墨水浓度,粘度和交联程度)对细胞印刷的影响,并建立了配备加热模块的新型3D细胞印刷系统,用于精确堆叠脱细胞的细胞外基质(dECM) )的3D细胞结构。由于从天然组织中分离出的经过pH值调节的生物墨水在37°C下安全地胶凝,因此我们的加热系统通过在打印过程中同时胶凝,促进了dECM生物墨水的精确堆叠。与非加热系统相比,我们发现可印刷性更高。这些结果通过机械测试和3D构建体堆叠分析得到了证实。我们还证实,我们的加热系统不会在打印的细胞中引起负面影响,例如细胞死亡。最终,这些结果有望将3D生物打印应用于组织工程和药物开发。

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