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Biomedical subjects

J Kush

Publications and source records attributed to J Kush.

3 recordsLinked to original sources

Platelet adherence and detachment--in what ways is surface-bound albumin different from surface-bound fibrinogen?

The adhesion and detachment of platelets on surface-bound albumin and surface-bound fibrinogen were studied. Fluorescent video-microscopy of platelets labelled with mepacrine was used to provide continuous information. Glass tubes (I.D. 1.3 mm) were precoated with either human albumin or human fibrinogen before exposure to a suspension of washed platelets and red cells. Observations were made 0.5 cm from the tube's entrance over a 1370 micron 2 portion of lumen. The rate at which cells leave the measurement area and the percent of initially attaching cells which leave are independent of protein coating but increase with flow rate. The percent of initially attaching platelets which permanently adhere is equal for both protein coatings but the pathways leading to this result can be different. For the lower shear rate studied, 80 s-1, the percent of cells which permanently adhere on first contact is less for albumin than for fibrinogen; the percent of initially attaching cells which adhere and then move before permanent adhesion is greater for albumin. The mechanism of detachment and reattachment leads to the equality of the overall adhesion efficiencies for the two protein coatings at 80 s-1. For the higher shear rate studied, 456 s-1, the adhesion pathways for both coatings were the same.

Chromium Radioisotopes

Blood platelet surface interactions on fibrinogen under flow as viewed with fluorescent video-microscopy.

The interaction of fluorescently labeled blood platelets with fibrinogen-coated glass was studied in Poiseuille flow at 3 wall shear rates, 40, 80 and 944 s-1. Observations were made via video-microscopy at a distance of 0.5 cm from a tube's entrance over a 1370 microns 2 portion of luminal area. The rates of arrival and detachment, and the net rate of adhesion of cells increased nonlinearly with flow rate. The fraction of arriving cells, first contacts, which adhered without subsequent movement and the fraction of arriving cells which adhered, moved to new positions and then remained adherent, were maximal at 80 s-1. For platelets which adhere and then move to a number of new positions, the likelihood of permanent adhesion is greater than 85 percent. The adhesion process is one in which 40-60 percent of cells permanently adhere on first contact with an additional 30 percent adhering after several moves along the surface. Cells contacting where a platelet was previously adherent had a greater chance of adhering than they would on an unaltered fibrinogen surface. The efficiency of platelet adhesion is greater for second contacts than for first contacts on unaltered fibrinogen coated surface.

Analysis of Variance