Nanotechnology Department, School of Advanced Technologies, Iran University of Science and Technology, Tehran, Iran.
Biomaterials and Tissue Engineering Department, Breast Cancer Research Center, Motamed Cancer Institute, ACECR, Tehran, Iran.
Sci Rep. 2023 May 26;13(1):8577. doi: 10.1038/s41598-023-35865-3.
Light-based hydrogel crosslinking is a new approach in rapid and high-resolution 3D printing; however, using this method in tissue engineering is challenging due to the toxicity of photoinitiators, their solvents, and their low efficiency. Herein, a novel, water-soluble photoinitiator with high efficiency in light-based 3D printing is introduced. Low-cost photoinitator, 2,4,6-trimethylbenzoylphenyl phosphinate, is converted into nanoparticles via a microemulsion method and dispersed in water. Cell toxicity assays were performed to prove that these nanoparticles are non-toxic and can be used in biomedical applications. Finally, the nanoparticles were utilized in the high-accuracy 3D printing of hydrogels. The results of this study indicate that these particles are potent to be used in bioprinting.
基于光的水凝胶交联是快速和高分辨率 3D 打印的新方法;然而,由于光引发剂及其溶剂的毒性以及效率低,在组织工程中使用这种方法具有挑战性。本文介绍了一种新型的、水溶性的光引发剂,其在基于光的 3D 打印中具有高效性。通过微乳液法将低成本的光引发剂 2,4,6-三甲基苯甲酰基膦酸酯转化为纳米粒子,并分散在水中。细胞毒性试验证明这些纳米粒子是无毒的,可以用于生物医学应用。最后,将纳米粒子用于水凝胶的高精度 3D 打印。本研究结果表明,这些颗粒具有很强的用于生物打印的潜力。