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Biomedical subjects

M E Roer

Publications and source records attributed to M E Roer.

3 recordsLinked to original sources

Cell density profile as a measure of erythrocyte hydration: therapeutic alteration of salt and water content in normal and SS red blood cells.

The incubation of red blood cells in high concentrations of sodium bicarbonate produces a net influx of salt and water resulting in the dilution of cell hemoglobin. After reinfusion into the donor, cells swollen in this manner can be readily identified in peripheral blood samples by their low density on phthalate gradients. It is proposed that this manipulation of cell water content may have therapeutic implications for sickle cell disease, since the rate of deoxyhemoglobin S gelation is retarded by small reductions in hemoglobin concentration.

Anemia, Sickle Cell↗

A new treatment strategy for hemophilia B: incorporation of factor IX into red cell ghosts.

Although patients with severe hemophilia B have lifelong spontaneous hemorrhage and crippling hemarthroses, patients with 0.01--0.03 U/ml Factor IX activity have a milder disease state. The clinical condition of severely affected individuals could potentially be improved by prolonging the half-life of transfused Factor IX. The feasibility of incorporating Factor IX into red cell ghosts was suggested by resealing experiments with similar sized molecules such as albumin. We have prepared resealed red cell ghosts containing human Factor IX and X. Human red cells were subjected to hypotonic lysis at 0 degrees C, pH 6.0. Commercial prothrombin complex concentrate was dissolved in the lysing medium immediately prior to the addition of the red cells. After being returned to isotonicity, the red cell ghosts were annealed at 37 degrees C for 30 minutes and then washed extensively. When intact red cell ghosts were tested, no Factor IX or X activity could be demonstrated. After disruption of the red cell ghost membranes with 3M urea or 2% Triton X-100, the procoagulants could be quantitatively recovered. Similar recovery of the clotting factors could be demonstrated from the lysate and the early wash samples. Red cells from Factor IX and X deficient patients served equally well as those from normal subjects. Red cell ghosts prepared in similar fashion but not exposed to the procoagulants had negligible clotting activity. We have demonstrated that human clotting factors can be incorporated into red cell ghosts. The ability of this system to prolong the biological half-life of Factor IX is under investigation.

Erythrocyte Membrane↗

An ascorbate-mediated transmembrane-reducing system of the human erythrocyte.

Actively metabolizing human erythrocytes catalyze the extracellular reduction of ferricyanide to ferrocyanide. Because neither of these anions can enter the cell, reducing equivalents generated in the course of glycolysis must in some manner be transferred across the cell membrane, thereby resulting in ferricyanide reduction. Work described in this paper suggests that the transmembrane reduction is effected by ascorbic acid. This compound in its oxidized form (dehydroascorbate) rapidly enters the cell. Here it obtains reducing equivalents which appear to come from NADH made available at the level of glyceraldehyde 3-phosphate dehydrogenase. Once reduced, it leaves the cell as ascorbic acid and accomplishes the non-enzymatic reduction of ferricyanide.

Ascorbic Acid↗