login

Effects of the degree of tubule occlusion on the permeability of human dentine in vitro

Archives of Oral BiologyPublished 1 January 1978
D.H. Pashley, Man J. Livingston, O.W. Reeder, Jack A. Horner
Citations150
SJR quartileQ1
SJR score0.63
SNIP0.78

TL;DR

The increase in tubular surface area available for diffusion after acid-etching could be reversed by treating the surface with oxalate, and the increase intubular surface areas for 3H2O and 131I-albumin was 10.2–10.5 per cent.

Abstract

The effects of changes in the nature of dentine surfaces on the permeability coefficients of 3H2O and 131I-albumin were determined in vitro. From these data, diffusional surface areas were calculated. The dentine surface was altered from a highly-polished surface to a bur-roughened surface, to an acid-etched surface and to an oxalate-treated one. The diffusional surface areas for 3H2O and 131I-albumin were: 1.72, 0.74; 1.86, 0.68; 7.89, 6.30; 2.24, 1.44 per cent, respectively. A second, independent technique based on measuring the volume of water occupying the tubules gave a mean surface area of 10.2–10.5 per cent. The increase in tubular surface area available for diffusion after acid-etching could be reversed by treating the surface with oxalate.

Keywords

DentistryBiochemistry, Genetics and Molecular Biology