Long Bai, Mengmeng Li, Jiacan Su
Organoid Research Center, Institute of Translational Medicine, Shanghai University, Shanghai 200444, China.
Int J Bioprint. 2023 Feb 17;9(2):688. doi: 10.18063/ijb.688. eCollection 2023.
Light-based three-dimensional (3D) printing of hydrogels has been widely adopted for accelerating bone regeneration. However, the design principles of traditional hydrogels do not take into consideration the biomimetic regulation of multiple stages throughout the bone healing, and the hydrogels made cannot effectively induce sufficient osteogenesis, which in turn greatly limits their capacity in guiding bone regeneration. The recent progress achieved in DNA hydrogel, which is based on synthetic biology, could facilitate the innovation of the current strategy due to its advantages, such as resistance to enzymatic degradation, programmability, structural controllability, and mechanical properties. However, 3D printing of DNA hydrogel is not well defined and appears to have a few distinct early forms. In this article, a perspective on the early development of 3D printing of DNA hydrogels is presented, and a potential implication of the hydrogel-based bone organoids built-up for bone regeneration is proposed.
基于光的水凝胶三维(3D)打印已被广泛应用于加速骨再生。然而,传统水凝胶的设计原则并未考虑到骨愈合全过程的多阶段仿生调控,所制备的水凝胶无法有效诱导充分的成骨作用,这反过来极大地限制了它们在引导骨再生方面的能力。基于合成生物学的DNA水凝胶最近取得的进展,由于其诸如抗酶降解、可编程性、结构可控性和机械性能等优点,可能会促进当前策略的创新。然而,DNA水凝胶的3D打印尚不完善,似乎有几种不同的早期形式。本文对DNA水凝胶3D打印的早期发展进行了展望,并提出了基于水凝胶构建的骨类器官对骨再生的潜在意义。