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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >The influence of polymeric component of bioactive glass-based nanocomposite paste on its rheological behaviors and in vitro responses: Hyaluronic acid versus sodium alginate
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The influence of polymeric component of bioactive glass-based nanocomposite paste on its rheological behaviors and in vitro responses: Hyaluronic acid versus sodium alginate

机译:生物活性玻璃基纳米复合膏聚合物组分对其流变行为和体外响应的影响:透明质酸与海藻酸钠钠

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Different biocomposite pastes were prepared from a solid phase that was nanoparticles of sol-gel-derived bioactive glass and different liquid phases including 3% hyaluronic acid solution, sodium alginate solutions (3% and 10 %) or mixtures of hyaluronic acid and sodium alginate (3% or 10 %) solutions in 50:50 volume ratio. Rheological properties of the pastes were measured in both rotatory and oscillatory modes. The washout behavior and in vitro apatite formation of the pastes were determined by soaking them in simulated body fluid under dynamic situation for 14 days. The proliferation and alkaline phosphatase activity of MG-63 osteoblastic cells were also determined using extracts of the pastes. All pastes could be easily injected from the standard syringes with different tip diameters. All pastes exhibited visco-elastic character, but a nonthixotropic paste was obtained using hyaluronic acid in which the loss modulus was higher than the storage modulus. The thixotropy and storage modulus were increasingly improved by adding/using sodium alginate as mixing liquid. Moreover, the pastes in which the liquid phase was sodium alginate or mixture of hyaluronic acid and 10% sodium alginate solution revealed better apatite formation ability and washout resistance than that made of hyaluronic acid alone. No cytotoxicity effects were observed by extracts of the pastes on osteoblasts but better alkaline phosphatase activity was found for the pastes containing hyaluronic acid. Overall, injectable biocomposites can be produced by mixing bioactive glass nanoparticles and sodium alginate/hyaluronic acid polymers. They are potentially useful for hard and even soft tissues treatments.
机译:由固相制备不同的生物复合膏,该固相制备溶胶 - 凝胶衍生的生物活性玻璃和不同液相,包括3%透明质酸溶液,藻酸钠溶液(3%和10%)或透明质酸和海藻酸钠的混合物( 50:50体积比中的3%或10%)溶液。在旋转和振荡模式下测量浆料的流变性质。通过在动态情况下浸泡在模拟的体液中,测定浆料的冲洗行为和体外磷灰石形成。也使用浆料的提取物测定Mg-63骨细胞细胞的增殖和碱性磷酸酶活性。所有浆料都可以容易地从具有不同尖端直径的标准注射器注入。所有浆料都表现出粘弹性特性,但使用透明质酸获得非全功能糊剂,其中损耗模量高于储存量模。通过加入/使用藻酸钠作为混合液体,越来越改善触变性和储存量。另外,液相是藻酸钠或透明质酸和10%藻酸钠溶液的浆料的浆料显示出比单独的透明质酸制成的更好的磷灰石形成能力和冲洗抗性。糊状物上没有对成骨细胞的提取物观察细胞毒性作用,但发现含有透明质酸的糊剂的浆料更好的碱性磷酸酶活性。总体而言,可注射的生物复合材料可以通过混合生物活性玻璃纳米颗粒和海藻酸钠/透明质酸聚合物来制备。它们可能对硬甚至软组织治疗有用。

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