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Adhesion of Pseudomonas fluorescens (ATCC 17552) to Nonpolarized and Polarized Thin Films of Gold

机译:荧光假单胞菌(ATCC 17552)与非极化和极化金膜的粘附力

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摘要

The adhesion of Pseudomonas fluorescens (ATCC 17552) to nonpolarized and negatively polarized thin films of gold was studied in situ by contrast microscopy using a thin-film electrochemical flow cell. The influence of the electrochemical potential was evaluated at two different ionic strengths (0.01 and 0.1 M NaCl; pH 7) under controlled flow. Adhesion to nonpolarized gold surfaces readily increased with the time of exposition at both ionic-strength values. At negative potentials (−0.2 and −0.5 V [Ag/AgCl-KCl saturated {sat.}]), on the other hand, bacterial adhesion was strongly inhibited. At 0.01 M NaCl, the inhibition was almost total at both negative potentials, whereas at 0.1 M NaCl the inhibition was proportional to the magnitude of the potential, being almost total at −0.5 V. The existence of reversible adhesion was investigated by carrying out experiments under stagnant conditions. Reversible adhesion was observed only at potential values very close to the potential of zero charge of the gold surface (0.0 V [Ag/AgCl-KCl sat.]) at a high ionic strength (0.1 M NaCl). Theoretical calculations of the Derjaguin-Landau-Verwey-Overbeek (DLVO) interaction energy for the bacteria-gold interaction were in good agreement with experimental results at low ionic strength (0.01 M). At high ionic strength (0.1 M), deviations from DLVO behavior related to the participation of specific interactions were observed, when surfaces were polarized to negative potentials.
机译:荧光假单胞菌(ATCC 17552)对金的非极化和负极化薄膜的粘附性是通过使用薄膜电化学流动池的对比显微镜原位研究的。在控制流量下,在两种不同的离子强度(0.01和0.1 M NaCl; pH 7)下评估了电化学势的影响。在两个离子强度值下,暴露时间都容易增加对非极化金表面的附着力。另一方面,在负电势下(-0.2和-0.5 V [Ag / AgCl-KCl饱和{饱和}]),细菌粘附被强烈抑制。在0.01 M NaCl时,两个负电势下的抑制作用几乎完全相同,而在0.1 M NaCl时,该抑制作用与电势的大小成正比,在-0.5 V时几乎完全消失。通过进行实验研究了可逆粘附的存在在停滞的条件下。在高离子强度(0.1 M NaCl)下,仅在非常接近金表面零电荷电位(0.0 V [Ag / AgCl-KCl饱和])的电位值下才观察到可逆粘附。 Derjaguin-Landau-Verwey-Overbeek(DLVO)细菌-金相互作用的能量的理论计算与低离子强度(0.01 M)时的实验结果非常吻合。在高离子强度(0.1 M)下,当表面极化至负电势时,观察到与特定相互作用参与有关的DLVO行为的偏离。

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