School of Dentistry, College of Oral Medicine, Taipei Medical University, Taipei 11031, Taiwan.
Department of General Dentistry, Chang Gung Memorial Hospital, Taipei 10507, Taiwan.
Int J Mol Sci. 2022 Feb 2;23(3):1717. doi: 10.3390/ijms23031717.
In vitro, in vivo, and clinical studies have shown how the physicochemical and biological properties of β-tricalcium phosphate (β-TCP) work in bone regeneration. This study aimed to improve the properties of β-TCP by achieving optimum surface and bulk β-TCP chemical/physical properties through the hydrothermal addition of magnesium (Mg) and to later establish the biocompatibility of β-TCP/Mg for bone grafting and tissue engineering treatments. Multiple in vitro and in vivo analyses were used to complete β-TCP/Mg physicochemical and biological characterization. The addition of MgO brought about a modest rise in the number of β-TCP surface particles, indicating improvements in alkaline phosphatase (ALP) activity on day 21 ( < 0.05) and in the WST-1assay on all days ( < 0.05), with a corresponding increase in the upregulation of ALP and bone sialoprotein. SEM analyses stated that the surfaces of the β-TCP particles were not altered after the addition of Mg. Micro-CT and histomorphometric analysis from rabbit calvaria critical defects resulted in β-TCP/Mg managing to reform more new bone than the control defects and β-TCP control at 2, 6, and 8 weeks (* ≤ 0.05, ** ≤ 0.01, *** ≤ 0.001, and **** ≤ 0.0001). The hydrothermal addition of MgO to the β-TCP surfaces ameliorated its biocompatibility without altering its surface roughness resulting from the elemental composition while enhancing cell viability and proliferation, inducing more bone regeneration by osteoconduction in vivo and osteoblastic differentiation in vitro.
体外、体内和临床研究表明了 β-磷酸三钙(β-TCP)的物理化学和生物学特性如何在骨再生中发挥作用。本研究旨在通过水热添加镁来提高 β-TCP 的性能,以获得最佳的表面和体相β-TCP 的化学/物理特性,随后确定用于骨移植和组织工程治疗的 β-TCP/镁的生物相容性。进行了多种体外和体内分析以完成β-TCP/镁的物理化学和生物学特性分析。MgO 的添加导致β-TCP 表面颗粒的数量略有增加,这表明碱性磷酸酶(ALP)活性在第 21 天( < 0.05)和所有天的 WST-1 测定中( < 0.05)有所提高,同时 ALP 和骨涎蛋白的上调也相应增加。SEM 分析表明,添加镁后,β-TCP 颗粒的表面没有改变。来自兔颅骨临界缺损的微 CT 和组织形态计量学分析表明,β-TCP/Mg 能够在 2、6 和 8 周时比对照缺损和β-TCP 对照形成更多的新骨(* ≤ 0.05,** ≤ 0.01,*** ≤ 0.001,和 **** ≤ 0.0001)。MgO 对β-TCP 表面的水热添加改善了其生物相容性,而不会改变其表面粗糙度,从而改变其元素组成,同时增强细胞活力和增殖,通过体内成骨诱导和体外成骨细胞分化来促进更多的骨再生。