The Lubricating Activity of Phospholipids on Charged and Neutral Surfaces

Author:

Pawlak Zenon1,Gocman Krzysztof2,Kaldonski Tomasz J.2,Kaldonski Tadeusz2,Gospodarczyk Jacek3,Sojka Michal4

Affiliation:

1. Tribochemistry Consulting, Salt Lake City, UT 84117; Biotribology Laboratory, University of Economy, Garbary 2, Bydgoszcz 85-229, Poland

2. Faculty of Mechanical Engineering, Military University of Technology, Warsaw 00-908, Poland

3. Biotribology Laboratory, University of Economy, Garbary 2, Bydgoszcz 85-229, Poland

4. Department of Mechanical Engineering, Kujawy University, Hallera 32, Grudziadz 86-300, Poland

Abstract

Abstract In this paper, the amphoteric character of cartilage surface is used to study friction between charged (+/+), (−/−), and uncharged (±/±) biological surfaces. The surface of the bovine articular cartilage at varying pH solutions is either charged positively or negatively. When examining the coefficient of friction of the (cartilage/cartilage) pair, depending on the pH, we observe surfaces charged positively, negatively, and without charge. The uncharged surface refers to the iso-electric point (IEP) and shows greater friction than the charged surfaces of the cartilage. The measurement of surface energy versus. pH of the spherical lipid bi-layer will reveal the amphoteric nature of the membrane surface. The friction coefficient of the (cartilage/cartilage) pair and the surface energy of the spherical lipid bi-layer versus pH are expressed by a bell-shaped curve. This is an interesting case that confirms the fact that the phospholipid bi-layer is embedded on the surface cartilage. This experimental confirmation of negative surface cartilage is insufficiently highlighted in the literature on natural lubrication.

Publisher

ASME International

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference17 articles.

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3. Elastohydrodynamic Lubrication in Biological Systems;Proc. Inst. Mech. Eng., Part J: J. Eng. Tribol.,2005

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