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Biomedical subjects

M K Crow

Publications and source records attributed to M K Crow.

57 records · Page 4Linked to original sources

Human dendritic cells: major stimulators of the autologous and allogeneic mixed leucocyte reactions.

Highly purified preparations of dendritic cells were obtained from human peripheral blood. Loosely adherent cells were selected and subsequently depleted of phagocytic cells and Fc receptor positive cells to yield the dendritic cell fraction. These isolates contained greater than 90% Ia positive cells, with many of the cells showing the morphological characteristics of the murine dendritic cell. These preparations were compared to other mononuclear cell fractions as stimulating cells in autologous and allogeneic mixed leucocyte reactions. The dendritic cell preparations provided the most potent stimulus for autologous T cell proliferation, with 10 x more 3H-thymidine incorporated by T lymphocytes incubated with autologous dendritic cells than with any other non-T cell preparation. Dendritic cells were also the most stimulatory cell in the allogeneic mixed leucocyte reaction, although the non-adherent subpopulation produced some stimulation of allogeneic T cells. In separate experiments, it was determined that B cells could be activated by pokeweed mitogen to vigorously stimulate autologous T cells. Visual observation of cluster formation in cultures containing dendritic cells and autologous T cells suggests that the capacity for intimate cell contact may be an important property of the dendritic cell in vivo.

B-Lymphocytes↗

A feasibility study for removing tissue contamination from porous implants.

Porous implants that are unpackaged in the operating room but not implanted are discarded because they must be considered potentially contaminated with tissue. To reduce this waste, a method was developed to decontaminate these implants so that they can be resterilized and implanted. This method consists of ultrasonic scrubbing, sequentially, in aqueous solutions of dishwashing detergent, 7% nitric acid, and 5.25% sodium hypochlorite. The effectiveness of the method was tested by contaminating samples of porous implants with tissue, subjecting them to the decontamination method, and then using the following techniques to determine whether any tissue remained. The weights of samples after decontamination were compared with their weights before contamination. The rate of removal of labeled protein contamination from samples was measured. The capacity of decontaminated samples to activate immune system cells was assayed. Bioburden evaluations were performed on decontaminated samples. Within the measurement capabilities of each technique, no tissue was detected in any sample after decontamination.

Animals↗