Division of Engineering in Medicine, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Cambridge, MA, 02139, USA.
Harvard-MIT Division of Health Science and Technology, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.
Adv Healthc Mater. 2019 Jul;8(13):e1900158. doi: 10.1002/adhm.201900158. Epub 2019 Apr 8.
Bioprinting technology has emerged as an important approach to bone and cartilage tissue engineering applications, because it allows the printing of scaffolds loaded with various components, such as cells, growth factors, or drugs. In this context, the bone has a very complex architecture containing highly vascularized and calcified tissues, while cartilage is avascular and has low cellularity and few nutrients. Owing to this complexity, the repair and regeneration of these tissues are highly challenging. Identification of the appropriate biomaterial and fabrication technologies can provide sustainable solutions to this challenge. Here, nanosized Laponite (Laponite is a trademark of the company BYK Additives Ltd.) has shown to be a promising material due to its unique properties such as excellent biocompatibility, facile gel formation, shear-thinning property (reversible physical crosslinking), high specific surface area, degrade into nontoxic products, and with osteoinductive properties. Even though Laponite and Laponite-based composite for 3D bioprinting application are considered as soft gels, they may therefore not be thought exhibiting sufficient mechanical strength for orthopedic applications. However, through the merging with suitable composite and, also by incorporation of crosslinking step, desired mechanical strength for orthopedic application can be obtained. In this review, recent advances and future perspective of bioprinting Laponite and Laponite composites for orthopedic applications are highlighted.
生物打印技术已成为骨和软骨组织工程应用的重要方法,因为它允许打印负载有各种成分的支架,如细胞、生长因子或药物。在这种情况下,骨骼具有非常复杂的结构,包含高度血管化和钙化的组织,而软骨是无血管的,细胞密度低,营养物质少。由于这种复杂性,这些组织的修复和再生极具挑战性。识别合适的生物材料和制造技术可以为这一挑战提供可持续的解决方案。在这里,纳米级的 Laponite(Laponite 是 BYK Additives Ltd. 公司的商标)因其独特的性能而被证明是一种很有前途的材料,如优异的生物相容性、易于凝胶形成、剪切变稀特性(可逆的物理交联)、高比表面积、降解为无毒产物以及具有成骨诱导特性。尽管 Laponite 和基于 Laponite 的复合材料被认为是用于 3D 生物打印的软凝胶,但它们可能不具有用于骨科应用的足够机械强度。然而,通过与合适的复合材料融合,以及通过引入交联步骤,可以获得用于骨科应用的所需机械强度。在这篇综述中,突出了生物打印 Laponite 和 Laponite 复合材料在骨科应用中的最新进展和未来展望。