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Synthesis and in Vitro Cell Compatibility of a-Tricalcium Phosphate-Based Apatite Cement Containing Tricalcium Silicate

机译:含硅酸三钙的α-磷酸三钙基磷灰石水泥的合成及体外细胞相容性

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The presence of silicate in artificial bone graft material is known to be effective in increasing bone formation rate. We previously reported the basic setting properties of a-tricalcium phosphate (α-Ca_3PO_4; α-TCP) based apatite cement (AC) with various amount of tricalcium silicate (Ca_3SiO_5; alite) addition using sodium dihydrogen phosphate (NaH2PO4) as the liquid phase. In this study, in vitro biological compatibility of pure α-TCP and 2.5-10.0 wt% alite added to a-TCP based AC is investigated in terms of cell attachment, proliferation and differentiation.Set Acs aged for 168 hrs were used for cell studies with bone marrow cells from tibia of 4 week-old, male, SD rat. Initial cell attachment was observed after 7 hrs; cell proliferation was observed after 3, 5, and 7 days. Cell differentiation (alkaline phosphatase activity) was observed after 3, 6, and 9 days of incubation.Cell attachment of alite added Acs were almost the same as sintered hydroxyapatite (Hap) and alite-free AC. Cell proliferation at 2.5-7.5 wt% alite added Acs were significantly higher at day 5 and 7 (p<0.05). Alkaline phosphatase activity revealed that 2.5 wt% alite addition accelerated the osteogenic cell activity at day 6 and 9 (p<0.05) whereas too much alite addition resulted in the decrease of osteogenic cell activity.In conclusion, we found that α-TCP based AC containing appropriate amount of alite could be an improved AC since it shows suitable setting time, higher mechanical strength and possible higher osteoconductivity.
机译:已知在人造骨移植材料中存在硅酸盐可有效提高骨形成速率。我们之前曾报道过使用磷酸二氢钠(NaH2PO4)作为液相添加各种量的硅酸三钙(Ca_3SiO_5;阿利特)的基于a-磷酸三钙(α-Ca_3PO_4;α-TCP)的磷灰石水泥的基本固化性能。在这项研究中,从细胞附着,增殖和分化的角度研究了纯α-TCP和2.5-10.0 wt%的alite添加到基于a-TCP的AC中的体外生物学相容性。将Set Acs老化168小时用于细胞研究与来自4周大的雄性SD大鼠胫骨的骨髓细胞。 7小时后观察到初始细胞附着; 3、5和7天后观察到细胞增殖。温育3、6和9天后观察到细胞分化(碱性磷酸酶活性)。添加的alite Acs的细胞附着与烧结的羟基磷灰石(Hap)和不含alite的AC几乎相同。在第5天和第7天,添加2.5-7.5 wt%的alite的Acs的细胞增殖明显更高(p <0.05)。碱性磷酸酶活性表明2.5%的alite添加促进了第6天和第9天的成骨细胞活性(p <0.05),而过多的alite添加导致成骨细胞活性降低。结论,我们发现基于α-TCP的AC含有适量的珍珠岩可以改善AC,因为它具有合适的凝固时间,较高的机械强度和更高的骨传导性。

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