Department of Veterinary Surgery and Radiology, West Bengal University of Animal and Fishery Sciences, Kolkata, India.
W. M. Keck Biomedical Materials Research Laboratory, School of Mechanical and Materials Engineering, Washington State University, Pullman, Washington, USA.
J Biomed Mater Res B Appl Biomater. 2023 Mar;111(3):599-609. doi: 10.1002/jbm.b.35177. Epub 2022 Oct 18.
The addition of dopants in biomaterials has emerged as a critical regulator of bone formation and regeneration due to their imminent role in the biological process. The present work evaluated the role of strontium (Sr) and magnesium (Mg) dopants in brushite cement (BrC) on in vivo bone healing performance in a rabbit model. Pure, 1 wt% SrO (Sr-BrC), 1 wt% MgO (Mg-BrC), and a binary composition of 1.0 wt% SrO + 1.0 wt% MgO (Sr + Mg-BrC) BrCs were implanted into critical-sized tibial defects in rabbits for up to 4 months. The in vivo bone healing of three doped and pure BrC samples was examined and compared using sequential radiological examination, histological evaluations, and fluorochrome labeling studies. The results indicated excellent osseous tissue formation for Sr-BrC and Sr + Mg-BrC and moderate bone regeneration for Mg-BrC compared to pure BrC. Our findings indicated that adding small amounts of SrO, MgO, and binary dopants to the BrC can significantly influence new bone formation for bone tissue engineering.
由于掺杂剂在生物过程中起着重要的作用,因此在生物材料中添加掺杂剂已成为控制骨形成和再生的关键因素。本研究评估了锶(Sr)和镁(Mg)掺杂剂在水磷酸钙(BrC)水泥中的作用,研究了它们在兔模型中对体内骨愈合性能的影响。将纯的、1wt% SrO(Sr-BrC)、1wt% MgO(Mg-BrC)和 1.0wt% SrO+1.0wt% MgO(Sr+Mg-BrC)的二元混合物分别植入兔子的胫骨临界尺寸缺损中,时间长达 4 个月。通过连续的放射学检查、组织学评估和荧光标记研究,对三种掺杂和纯 BrC 样品的体内骨愈合进行了检查和比较。结果表明,与纯 BrC 相比,Sr-BrC 和 Sr+Mg-BrC 具有极好的骨组织形成能力,而 Mg-BrC 具有中等的骨再生能力。我们的研究结果表明,向 BrC 中添加少量 SrO、MgO 和二元掺杂剂可以显著影响骨组织工程中的新骨形成。