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Biomedical subjects

R M Azzam

Publications and source records attributed to R M Azzam.

3 recordsLinked to original sources

Optical detection of cell-surface changes associated with malignant transformations in vitro.

A need exists for new experimental approaches for the direct detection of cell-surface changes associated with malignant transformations. The usual methods of fractionating the cell to obtain plasma-membrane segments are disruptive and are influenced by uncertainties that frustrate most attempts to distinguish between the cell memebrane in the normal and malignant states. Here we describe a non-destructive microprobe technique using a light beam to monitor cell-surface changes in situ. Many investigations of tumor-cell behavior in culture are based on substrate-adherent populations of cells. By choosing the substrate to be optically dense and transparent, and by striking the substrate/cell interface by a light beam from the substrate side at an angle of incidence greater than the critical angle of total-internal reflection, an evanescent electromagnetic wave interacts with the peripheral zone of the substrate-adherent cells. Both the intensity and ellipse of polarization of the reflected wave can be monitored as the malignant transformation takes place, either chemically or virally. This technique should also provide new information concerning the molecular organization of the cell periphery from measurements on living cells.

Cell Membrane

Kinetics of protein adsorption and immunological reactions at a liquid/solid interface by ellipsometry.

The adsorption of bovine serum albumin and the subsequent reaction with it of rabbit anti-bovine serum albumin at a saline solution/gold interface are observed in vitro by ellipsometry. By suitable choice of protein concentrations, the processes of adsorption and immunological reaction can be followed in detail by an ordinary null ellipsometer. A simple kinetic model for the formation of a monolayer of protein at the saline solution/gold interface provides adequate explanation for the experimental results. It is shown that ellipsometry is capable of providing information on molecular dimensions, molecular diffusion velocities and adsorption rates.

Adsorption