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B A Van Dijk

Publications and source records attributed to B A Van Dijk.

4 recordsLinked to original sources

Erythrocyte repopulation after major ABO incompatible transplantation with lymphocyte-depleted bone marrow.

Forty-four out of 258 allogeneic BMT were performed across the major ABO barrier. Donor erythrocyte repopulation could be evaluated in 30 cases. Fifty-eight patients transplanted with an ABO compatible or minor incompatible graft served as the control group. All patients received a marrow graft depleted of lymphocytes by counterflow centrifugation. Less than 10(8) residual erythrocytes were present in the graft. Cyclosporin A was used as immunoprophylaxis after transplantation. Erythrocyte repopulation was measured using a fluorescent microsphere method. An adapted transfusion policy was applied. Eight out of 30 patients (27%) with major ABO incompatibility had no detectable donor erythrocytes 2 months after BMT. Up to 3 months after BMT donor erythrocyte repopulation was significantly delayed in the ABO incompatible group (P < or = 0.03). Significantly more erythrocyte transfusions were required in the ABO incompatible group (P < 0.001). Six patients with blood group O (20%) developed pure red cell aplasia which resolved in five without therapeutic intervention. In these six patients anti-A antibody titers were persistently high the first 3 months after BMT. This was in contrast with 22 patients with timely recovery of erythropoiesis in whom anti-A and anti-B antibody titers showed a steady decrease after BMT. The incidence of immunohematological complications in these patients who received a lymphocyte depleted major ABO incompatible graft is similar (20%) to the incidence reported in the literature. Serious morbidity related to major ABO incompatibility did not occur.

ABO Blood-Group System↗

Prevention of primary cytomegalovirus infection after allogeneic bone marrow transplantation by using leukocyte-poor random blood products from cytomegalovirus-unscreened blood-bank donors.

Cytomegalovirus infection was studied in 59 seronegative recipients of bone marrow depleted of lymphocytes by counterflow centrifugation. Eighteen patients died within 3 months after bone marrow transplantation without evidence of CMV infection, and they were excluded from analysis. Twenty-eight valuable seronegative patients received marrow from a seronegative donor, and 13 from a seropositive donor. All but 2 patients received acyclovir orally (4 x 400 mg/day) from days -9 to +60. CMV prophylaxis with immunoglobulin preparations was not given. All blood products were prepared from random, CMV-unscreened blood-bank donors. The red cell concentrates were depleted of leukocytes by filtration, and leukocytes were removed from the platelet concentrates by centrifugation. None of the patients with seronegative donors showed any clinical sign compatible with CMV infection. Two nonfatal primary CMV infections occurred in the recipients of bone marrow from CMV-positive donors. One of the 59 patients developed interstitial pneumonia, in this case caused by Pneumocystis carinii. Leukocyte depletion of blood products from random CMV-unselected blood donors appeared to prevent primary infection in CMV-seronegative BMT recipients. We conclude that prophylactic use of immunoglobulin preparations is not necessary to prevent CMV primo-infection in patients receiving leukocyte-depleted blood products and acyclovir prophylaxis during the first 2 months postgrafting.

Blood Donors↗

Host and donor erythrocyte repopulation patterns after allogeneic bone marrow transplantation analysed with antibody-coated fluorescent microspheres.

Analysis of erythrocyte populations, using red blood cell antigen differences between host and donor as marker, was performed with a sensitive fluorescent microsphere assay to monitor marrow engraftment and mixed red cell chimaerism after allogeneic bone marrow transplantation (BMT). An adapted transfusion policy, using marker negative erythrocyte transfusions, was required for this analysis. In all patients the marrow graft was depleted of lymphocytes by counterflow centrifugation. Thirty-seven patients were evaluable for donor repopulation at one or more points in the first 6 months after BMT. At 0.5 month donor erythrocytes were detectable in 19 out of 22 patients. At 6 months donor erythrocytes were detectable in 100% of the evaluable patients. In the first 3 months after BMT the average donor erythrocyte repopulation in recipients of major ABO mismatched transplantations was delayed. Thirty-eight patients were evaluable for chimaerism at 6 months or later after BMT. A high incidence of mixed red cell chimaerism was observed varying from 50% to 71% at different points of analysis. Mixed red cell chimaerism with low percentages (less than 1%) of host cells was not related with relapse, nor did high percentages (greater than 10% of host cells necessarily indicate relapse.

ABO Blood-Group System↗