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Corrosion behaviour and biocompatibility of a new dental noble AuPdAgTi alloy

机译:新型牙科贵金属AuPdAgTi合金的腐蚀行为和生物相容性

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The aims of the study were to investigate the electrochemical response of a new dental Au-20Pd-10Ag-5Ti alloy in artificial Carter-Brugirard saliva and to assess its biocompatibility using gingival fibroblast culture. Electrochemical techniques of potentiodynamic and linear polarization were used. Also, the open circuit potentials and the corresponding open circuit potential gradients were monitored for 5000 exposure hours. The gingival fibroblast response to Au-20Pd-10Ag-5Ti alloy was estimated by LDH-cytotoxicity, MTT cell proliferation assays, the assessment of substrate-dependent changes in extracellular fibronectin network, cell morphology and actin cytoskeleton organization. The cyclic potentiodynamic curves of Au-20Pd-10Ag-5Ti alloy exhibited a passive behaviour with transpassive dissolution of silver, without pitting corrosion. Open circuit potentials were finally stable at noble values. Open circuit potential gradients have low values that could not generate galvanic or local corrosion. The new Au-20Pd-10Ag-5Ti alloy did not promote cell damage and alterations in cell adhesion and morphological features, exhibiting a good biocompatibility.
机译:该研究的目的是研究一种新型牙科Au-20Pd-10Ag-5Ti合金在人造Carter-Brugirard唾液中的电化学响应,并通过牙龈成纤维细胞培养评估其生物相容性。使用了电位动力学和线性极化的电化学技术。同样,在5000小时的暴露时间内监测开路电势和相应的开路电势梯度。通过LDH-细胞毒性,MTT细胞增殖测定,评估细胞外纤连蛋白网络中底物依赖性变化,细胞形态和肌动蛋白细胞骨架组织来评估对Au-20Pd-10Ag-5Ti合金的牙龈成纤维细胞反应。 Au-20Pd-10Ag-5Ti合金的循环电势曲线表现出被动行为,银具有被动溶解性,无点蚀。最终,开路电势稳定在高值。开路电势梯度的值较低,不会产生电腐蚀或局部腐蚀。新的Au-20Pd-10Ag-5Ti合金不会促进细胞损伤以及细胞粘附和形态学特征的改变,表现出良好的生物相容性。

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