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高钯合金与钯过敏相关的电化学特性

Electrochemical characteristics of high-Pd alloys in relation to Pd-allergy.

作者信息

Berzins D W, Kawashima I, Graves R, Sarkar N K

机构信息

School of Dentistry, Louisiana State University, 1100 Florida Avenue, New Orleans, LA, USA.

出版信息

Dent Mater. 2000 Jul;16(4):266-73. doi: 10.1016/s0109-5641(00)00016-6.

Abstract

OBJECTIVE

The aim of this study was to determine whether the Pd-Cu-based dental ceramic alloys possess any electrochemical characteristics distinguishable from that of other Pd-containing alloys. Of all Pd-containing alloys, this particular alloy group has been linked to frequent incidence of allergy and hypersensitivity reactions. Electrochemical corrosion may instigate these reactions.

METHODS

Four groups of alloys, Pd-Cu, Pd-Ga-(with and without Ag), Pd-Ag, and Au-Pd, were evaluated by traditional corrosion measurement techniques in a phosphated buffer saline solution at 20 degrees C. The electrochemical characteristics measured were: (1) 20 h open circuit potential (OCP); (2) 20 h corrosion rate (Icorr); and (3) anodic polarization (E-i) curves.

RESULTS

The OCP values (232 +/- 25 mV) of the Ag-free Pd-Ga and Pd-Cu-based alloys were higher than and distinctly different from that (144 +/- 52 mV) of the Ag-containing alloys. The Icorr values of different alloys, despite varied compositions, were indistinguishable from one another. The E-i curves of all alloys were essentially similar, with the Ag-containing (> 5 wt%) alloys showing a subtle difference in their anodic slope within 100 mV above their corrosion potentials.

SIGNIFICANCE

The OCP values of Pd-Cu alloys and the Ag-free Pd-Ga alloy are comparable to that reported for pure Pd (239 +/- 21 mV), which indicates that during corrosion these alloys undergo dealloying and consequent Pd-enrichment on their surface. Such a condition is conducive to the release of allergenic Pd++ ions and offers a plausible explanation for the frequent incidence of hypersensitivity reactions associated with the Pd-Cu alloys. The OCP values in other alloys are attributed to dealloying followed by surface enrichment with Ag and/or Au and the possible formation of an insoluble AgCl surface film on the respective alloy surfaces. These events have the potential to suppress or prevent Pd++ ion release. Alloys showing these characteristics have seldom been linked to allergic reactions.

摘要

目的

本研究旨在确定钯 - 铜基牙科陶瓷合金是否具有与其他含钯合金不同的电化学特性。在所有含钯合金中,这一特定合金组与过敏和超敏反应的频繁发生有关。电化学腐蚀可能会引发这些反应。

方法

通过传统腐蚀测量技术,在20℃的磷酸盐缓冲盐溶液中对四组合金进行评估,这四组合金分别是钯 - 铜合金、钯 - 镓合金(含银和不含银)、钯 - 银合金和金 - 钯合金。所测量的电化学特性包括:(1)20小时开路电位(OCP);(2)20小时腐蚀速率(Icorr);以及(3)阳极极化(E - i)曲线。

结果

不含银的钯 - 镓合金和钯 - 铜基合金的开路电位值(232±25 mV)高于含银合金(144±52 mV),且明显不同。尽管合金成分不同,但其腐蚀速率值彼此无明显差异。所有合金的阳极极化曲线基本相似,含银(>5 wt%)合金在其腐蚀电位以上100 mV范围内的阳极斜率略有差异。

意义

钯 - 铜合金和不含银的钯 - 镓合金的开路电位值与纯钯报道的开路电位值(239±21 mV)相当,这表明在腐蚀过程中,这些合金会发生脱合金化,从而在其表面富集钯。这种情况有利于释放具有致敏性的钯离子,并为与钯 - 铜合金相关的超敏反应频繁发生提供了一个合理的解释。其他合金中的开路电位值归因于脱合金化,随后表面富集银和/或金,并可能在各自合金表面形成不溶性的氯化银表面膜。这些情况有可能抑制或阻止钯离子的释放。具有这些特性的合金很少与过敏反应相关联。

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