Matejkova Jana, Kanokova Denisa, Supova Monika, Matejka Roman
Department of Biomedical Technology, Faculty of Biomedical Engineering, Czech Technical University in Prague, 272 01 Kladno, Czech Republic.
Department of Composites and Carbon Materials, Institute of Rock Structure and Mechanics of The Czech Academy of Sciences, v.v.i., 182 09 Prague, Czech Republic.
Gels. 2024 Jan 15;10(1):66. doi: 10.3390/gels10010066.
It is believed that 3D bioprinting will greatly help the field of tissue engineering and regenerative medicine, as live patient cells are incorporated into the material, which directly creates a 3D structure. Thus, this method has potential in many types of human body tissues. Collagen provides an advantage, as it is the most common extracellular matrix present in all kinds of tissues and is, therefore, very natural for cells and the organism. Hydrogels with highly concentrated collagen make it possible to create 3D structures without additional additives to crosslink the polymer, which could negatively affect cell proliferation and viability. This study established a new method for preparing highly concentrated collagen bioinks, which does not negatively affect cell proliferation and viability. The method is based on two successive neutralizations of the prepared hydrogel using the bicarbonate buffering mechanisms of the 2× enhanced culture medium and pH adjustment by adding NaOH. Collagen hydrogel was used in concentrations of 20 and 30 mg/mL dissolved in acetic acid with a concentration of 0.05 and 0.1 wt.%. The bioink preparation process is automated, including colorimetric pH detection and adjustment. The new method was validated using bioprinting and subsequent cultivation of collagen hydrogels with incorporated stromal cells. After 96 h of cultivation, cell proliferation and viability were not statistically significantly reduced.
人们认为,3D生物打印将极大地推动组织工程和再生医学领域的发展,因为活的患者细胞被整合到材料中,直接创建了一个3D结构。因此,这种方法在多种人体组织中具有潜力。胶原蛋白具有优势,因为它是存在于各种组织中最常见的细胞外基质,因此对细胞和生物体来说非常自然。含有高浓度胶原蛋白的水凝胶使得在不添加额外添加剂来交联聚合物的情况下创建3D结构成为可能,而额外添加剂可能会对细胞增殖和活力产生负面影响。本研究建立了一种制备高浓度胶原蛋白生物墨水的新方法,该方法不会对细胞增殖和活力产生负面影响。该方法基于使用2倍强化培养基中的碳酸氢盐缓冲机制对制备的水凝胶进行两次连续中和,并通过添加NaOH来调节pH值。胶原蛋白水凝胶以20和30 mg/mL的浓度溶解在浓度为0.05和0.1 wt.%的乙酸中使用。生物墨水的制备过程是自动化的,包括比色法pH检测和调节。使用生物打印以及随后对含有基质细胞的胶原蛋白水凝胶进行培养来验证该新方法。培养96小时后,细胞增殖和活力没有统计学上的显著降低。