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G Lercari

Publications and source records attributed to G Lercari.

29 records · Page 2Linked to original sources

ABO compatibility and acute graft-versus-host disease following allogeneic bone marrow transplantation.

If ABO antigens/antibodies play any role in the pathogenesis of acute graft-versus-host disease (GVHD), one would expect the highest incidence of GVHD in recipients of minor ABO-mismatched grafts, followed by ABO-matched grafts, and the lowest incidence in major ABO-mismatched transplants. To test this hypothesis 174 patients receiving an HLA-identical allogeneic bone marrow transplant (BMT) for aplastic anemia (n = 32) or leukemia (n = 142) were analyzed for factors associated with acute GVHD. Variables analyzed included diagnosis, sex, age, blood group of donor and recipient, ABO compatibility, Rhesus compatibility, sex compatibility, number of bone marrow cells given at BMT, year of transplant, day of engraftment, and GVHD prophylaxis. We first carried out an exploratory contingency table analysis: minor ABO incompatibility was associated with a significantly higher risk of severe acute GVHD when compared with ABO-matched and major-ABO mismatched pairs (P = 0.003): 14/9, 57/67, and 5/22 patients developed, respectively, 0-I/II-IV acute GVHD in ABO major-mismatched, matched, and minor-mismatched pairs. Donors of group 0, (P = 0.06), older recipient's age (P = 0.08), fast engraftment (P = 0.03), and older donor's age (0.08) were also associated with a higher risk of GVHD. Recipient's ABO group, diagnosis, year of transplant, Rhesus group of donor or recipient, Rhesus compatibility, sex of donor or recipient, sex compatibility, and type of GVHD prophylaxis were not predictive of GVHD. A Cox multifactorial proportional hazards analysis confirmed that ABO matching was the single most significant factor associated with GVHD (P = 0.006). The cumulative incidence of GVHD grade II+ was 39%, 54%, and 82% for ABO major-mismatched, matched, and minor-mismatched pairs (P = 0.01). This study suggests that ABO antigens may play a role in the development of acute GVHD.

ABO Blood-Group System↗

Cascade filtration with reverse rinse of the secondary filter.

With cascade filtration (CF) secondary filter plugging may render some procedures difficult, particularly with cryoglobulinemia or macroglobulinemia patients, when filters are subjected to the most consistent burden. To prevent plugging, in the initial management of seven patients with cryoglobulinemia or macroglobulinemia we employed polymethylmethacrylate secondary filters produced by Toray Industries Inc., Tokyo, with pores calculated at 0.1 micron (QS-12-70). In the subsequent sessions, when circulating macroproteins were reduced to more acceptable levels, secondary filters with pores of 0.06 micron were used (QS-12-50). The filtration efficiency of both filters was maintained throughout the procedures with reverse rinses carried out when the transmembrane pressure from the values of 80-130 mm Hg reached the values of 250 mm Hg. With this improved technique, 2.6-3.31 liters of plasma could be treated, producing adequate clinical benefits. From a laboratory point of view, the differential sieving for albumin and macroglobulins was 61% for the QS-12-50 filters and 56% for the QS-12-70 models.

Cryoglobulinemia↗

Preparation of small volume, leuko and erythrocyte very poor platelet concentrates.

Recently developed automated discontinuous flow centrifuge (DFC) separators can produce leuko- and erythrocyte-poor platelet concentrates (PC). According to general experience with these machines it is difficult to obtain more than 4 X 10(11) platelets, though a second program set up by Coffe et al. appears to produce PC containing approximately 5 X 10(11) platelets suspended in a plasma volume of 390 ml. At our center we employed a new Dideco cell separator equipped with the surge pump and a technique developed for the production of small volume, RBC and WBC-very poor PC. In 60 routine procedures we obtained the following results: mean processing time 87 +/- 11 minutes; final volume of PC 136 +/- 19 ml, with a mean platelet yield of 5.21 X 10(11) platelets. WBC contamination was 1.8 X 10(8) (93% lymphocytes) and RBC were 3.1 X 10(8). Plasma volume as well as WBC and RBC contamination were reduced by recirculating PC after the 6th pass. The demand for single donor platelet concentrates (PC) is increasing progressively. Recently developed automated cell separators can produce leukocyte (WBC) and erythrocyte (RBC) poor PC. With these machines it may be difficult to obtain PC containing at least 4 X 10(11) platelets and less than 1 X 10(9) leukocytes (1, 2, 3) since donor variables such as hematocrit, precounts, buffy coat formation and initial plasma light transmission are of paramount importance for the efficiency of the program. At our center a prototype discontinuous flow centrifuge (DFC) cell separator equipped with the surge pump was studied.(ABSTRACT TRUNCATED AT 250 WORDS)

Blood Component Removal↗

Positive direct antiglobulin tests and heteroimmune hemolysis in patients with severe aplastic anemia and pure red cell anemia treated with antilymphocytic globulin.

Forty-six patients with severe aplastic anemia (SAA), 1 with adult pure red cell aplasia (PRCA), 1 with congenital hypoplastic anemia (Diamond-Blackfan) and 1 with severe polymyositis were treated with intravenous antilymphocyte globulins (ALG) of different sources (2 of equine and 1 of rabbit origin). In all patients, direct and indirect antiglobulin tests (DAT and IAT) were performed, and in all patients treated with one type of equine ALG, positive DATs were found in Rh0(D)-positive patients, while the serum of Rh0(D)-negative patients treated with the same ALG reacted in vitro with Rh0(D)-positive erythrocytes. The antibody was eluted and shown to be of equine origin. Two patients suffered from frank heteroimmune hemolytic anemia. Since October 1984, the ALG of this particular source has not displayed any overt anti-erythrocyte activity any more. However, all clinicians treating patients with this type of immune immunosuppression should know that ALG may retain human erythrocyte (presumably anti-LW) activity.

Anemia, Aplastic↗

Two further examples of IgG thimerosal-dependent antibodies and their serological characteristics.

Two further examples of IgG thimerosal-dependent antibodies have been found by routine immunohematological tests carried out in our laboratory. Both antibodies fixed the complement and had no apparent blood group specificity. Their reactivity was inhibited by adding thimerosal to the serum prior to the addition of red blood cells. If cross matching is performed accordingly, thimerosal-dependent antibodies should not any longer represent a blood bank problem.

ABO Blood-Group System↗