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M Suttorp

Publications and source records attributed to M Suttorp.

At least 55 records · Page 3Linked to original sources

G-CSF-mobilized peripheral blood progenitor cells for allogeneic transplantation: safety, kinetics of mobilization, and composition of the graft.

Allogeneic transplantation of peripheral blood progenitor cells (PBPC) makes the general anaesthesia of the donor unnecessary and may result in more rapid engraftment and faster recovery of the immune system. We have studied G-CSF-mediated PBPC mobilization in healthy donors and analysed the cellular composition of the resulting PBPC grafts. PBPC grafts were obtained from nine healthy donors (18-67 years old) for allogeneic or syngeneic transplantation. Six donors received 10 micrograms/kg G-CSF per day, the others 5-6 micrograms/kg. Mobilization and harvesting were well tolerated except for moderate bone pain which occurred in all donors primed with 10 micrograms/kg. With 10 micrograms/kg, a 31-fold (9-62) enrichment of circulating CD34+ cells was observed with peak values constantly occurring on day 5 after the start of G-CSF administration. Starting harvest on day 5, one to three collections on consecutive days yielded 5.5 x 10(6)/kg (0.9-10.7) CD34+ cells, 219 x 10(6)/kg (106-314) T cells, and 34 x 10(6)/kg (23-67) NK cells per 10 litres leukapheresis volume. Altogether, PBPC grafts contained 3 times more CD34+ cells, 7 times more T cells, and 20 times more NK cells than five allogeneic marrow grafts that were analysed for comparison. The yield of CD34+ cells per 10 litres apheresis volume as well as the height of the CD34+ peak in peripheral blood were inversely correlated to the age of the donor. In the donors primed with 5-6 micrograms/kg G-CSF the increase of circulating CD34+ cells (4-7-fold enrichment) and the CD34+ cell yield per 10 litres leukapheresis volume (1 x 10(6)/kg [0.8-2.2]) was much smaller compared with the 10 micrograms/kg group. In conclusion, sufficient amounts of PBPC capable of restoring haemopoiesis in allogeneic recipients can be mobilized safely by administration of G-CSF (10 micrograms/kg s.c. for 5 d) in healthy donors, and harvested with one or two leukapheresis procedures. Whether the large numbers of T-cells and NK cells that are contained in the collection products may influence graft-versus-host and graft-versus-leukaemia reactivities of PBPC grafts remains to be determined.

Adolescent↗

Can blood group O red cells of donor origin acquire weak group A reactivity through serum A transferase of the recipient after bone marrow transplantation?

Blood group A substance was detected on red cells of a patient who had received a bone marrow transplant from a blood group 0 donor 3 1/2 years ago. All peripheral blood cells are of donor origin. Anti-A but not anti-A,B of blood group 0 individuals can be absorbed to the group 0 red cells of the patient. We suppose that the patient's residual serum A transferase attaches the appropriate sugar to H substance on the red cell membrane to form A substance.

ABO Blood-Group System↗

Amplification of a Y-chromosomal DNA sequence by the polymerase chain reaction for documentation of residual recipient cells in small samples from bone marrow, peripheral blood and cerebrospinal fluid after bone marrow transplantation.

The long arm of the human Y-chromosome contains about 800 to 5000 copies of the tandemly repeated DNA sequence DYZ1. A major part of the repeating unit (pHY10) has been cloned and sequenced. Primers were designed to match a part of this repeat sequence for the amplification of a 154 bp fragment spanning the EcoRI restriction site of the unit. Typical dilution experiments showed that this polymerase chain reaction (PCR) method allows the detection of 5 to 10 male cells among 100,000 female cells, or in 500 microL of cerebrospinal fluid containing only one cell per microL. In addition, the quality of the DNA used for the amplification reaction is less critical, thus allowing analysis of long-term stored samples such as bone marrow smears or dried blood stains spotted onto filter paper, which might contain partially degraded DNA. We applied this technique to detect residual host cells in the clinical setting of human sex-mismatched bone marrow transplantation (BMT). Fourteen patients, receiving transplantations because of leukemias could be supervised so far. Throughout the whole period of monitoring (days +14 until +911 post BMT; median: 160 days), residual host cells were detected in all but three patients. Persistence of host cells in the early phase post-BMT was mostly transient and probably due to long-term surviving host T-lymphocytes. Reappearance of host cells several months after BMT is highly suspicious of relapse from the underlying malignancy. Due to its high sensitivity, PCR is a valuable tool in monitoring the switch from recipient to donor cell population.(ABSTRACT TRUNCATED AT 250 WORDS)

Base Sequence↗

High-dose chemotherapy and hematopoietic stem cell rescue in patients with relapsed Hodgkin's disease.

Fifty-one consecutive patients with Hodgkin's disease (HD) have been treated with high-dose chemotherapy (HDT) and transplantation of autologous bone marrow (BM) (n = 44), autologous BM plus peripheral blood stem cells (PBSC) (n = 2), PBSC (n = 1), syngeneic (n = 1), or allogeneic BM (n = 3). All patients had received standard salvage chemotherapy prior to HDT and were classified as sensitive (n = 33) or resistant (n = 17) to this treatment; one patient was in untreated relapse prior to BMT. The preparative regimens for patients receiving autologous BM and/or PBSC consisted of cyclophosphamide, VP 16, and BCNU (CVB) (n = 44) or BCNU, etoposide, ara-C, and melphalan (BEAM) (n = 3). The patients receiving allogeneic transplants were treated with the CVB regimen (n = 2) or busulfan (16 mg/kg body wt.) and cyclophosphamide (200 mg/kg body wt.). With a median follow-up of 12 months, overall survival for 44 patients grafted with autologous BM is 61% +/- 9%, progression-free survival for patients with sensitive disease is 44% +/- 11%; no patient with resistant relapse survived beyond 1 year post transplant. Two of three patients grafted with allogeneic BM still survive 15 and 24 months after BMT with Karnofsky performance scores of 70% and 100%, respectively. The main toxicity encountered with the CVB regimen was interstitial pneumonia (IP), seen in four of 15 patients (27%) receiving > or = 600 mg/m2 of BCNU. Three of these patients have died. The results show that HDT followed by hematopoietic stem cell rescue may effectively salvage an important fraction of patients with relapsed HD who respond to standard chemotherapy. The same approach is largely unsuccessful in patients with proven refractoriness to standard chemotherapy. Whether HDT followed by BMT or PBSC support is superior to intensive chemotherapy without stem cell support can be answered only by a prospectively randomized trial.

Adolescent↗

Effective mobilisation of peripheral blood progenitor cells with 'Dexa-BEAM' and G-CSF: timing of harvesting and composition of the leukapheresis product.

The mini-BEAM regimen (BCNU, etoposide, cytarabine, melphalan) and its modification 'Dexa-BEAM' are effective salvage protocols for relapsed Hodgkin's disease and non-Hodgkin's lymphoma. Since many patients with relapsed lymphoma are eligible for high-dose chemotherapy with autologous stem cell rescue, we were interested in the suitability of these second line regimens for mobilising peripheral blood progenitor cells (PBPC). The kinetics of PBPC were studied in 15 patients treated with Dexa-BEAM and granulocyte colony-stimulating factor (G-CSF). Leukocytes started to rise from < 0.5 nL-1 on day 18 (16-22) after Dexa-BEAM, and exceeded 10 nL-1 on day 20 (18-28). Peripheral blood CFU-GM peaked on day 21 (19-28) and declined slowly thereafter; the median leukocyte count was 18.7 nL-1 (12.2-60) on the day of CFU-GM-peak. The maximum number of CFU-GM circulating in peripheral blood was inversely correlated to the duration of leukopenia after Dexa-BEAM. Measurement of CD34+ cells with the monoclonal antibody 8G12-PE (HPCA-2) predicted the number of CFU-GM precisely in both peripheral blood and leukapheresis products (r = 0.90-0.95). Two to six leukapheresis procedures yielded 6.39 x 10(8) mononuclear cells kg-1 (1.82-13.49) containing 44.4 x 10(4) CFU-GM kg-1 (2.2-213.8). Immunophenotypical analysis revealed that the percentage of CD19+ B cells was very low in all collection products (less than 1%). Nine patients were autografted with PBPC (15.4-213.8 x 10(4) CFU-GM kg-1) after myeloablative chemotherapy and experienced rapid and sustained engraftment (Platelets > 50 nL-1 on day +13 [9-22]). We conclude that PBPC can be mobilised effectively by Dexa-BEAM plus G-CSF. An adequate timing of PBPC collection (when the leukocyte count has exceeded 10 nL-1) and evaluation of the progenitor content of the leukapheresis products with 8G12-PE will allow to minimise the number of leukaphereses.

Adult↗

Granulocyte-colony-stimulating factor induces increased serum levels of soluble interleukin 2 receptors preceding engraftment in autologous bone marrow transplantation.

The serum levels of soluble interleukin 2 receptors (sIL-2R) were determined in 19 patients who received high-dose chemotherapy and an autologous or syngeneic bone marrow transplant (BMT) for treatment of Hodgkin's disease (n = 18) or non-Hodgkin's lymphoma (n = 1). Twelve patients received granulocyte colony-stimulating factor (G-CSF) from day 0 or day +1 after autologous BMT until the white blood cell count had been stable for 9 d above 1 x 10(9)/l, the remaining seven patients did not receive growth factors. In all G-CSF-treated patients the sIL-2R levels increased steadily in the early post-transplant course, even in the absence of infection. This increase was statistically significant 2-4 d prior to the appearance of leucocytes in the peripheral blood (median 340 pM versus median 256 pM immediately after BMT, P < 0.025) and peaked with the appearance of first peripheral blood leucocytes (median 536 pM, P < 0.001). Cessation of G-CSF administration resulted in a decline of sIL-2R levels. In contrast, five of seven patients without G-CSF treatment did not exhibit an sIL-2R increase before or at the time of engraftment. Infection was associated with a rise of sIL-2R levels. A correlation between sIL-2R levels and total leucocyte count, lymphocyte count, or CD25+ lymphocyte count was not evident. These data suggest that after autologous BMT G-CSF induces increased sIL-2R levels, which occur independent of lymphocyte activation. This may be compatible with involvement of immature bone marrow cells in G-CSF-induced sIL-2R release.

Adolescent↗

Monitoring of chimerism after allogeneic bone marrow transplantation with unmanipulated marrow by use of DNA polymorphisms.

Highly polymorphic tandemly repetitive DNA sequences provide powerful genetic markers for the identification of individuals by restriction fragment length polymorphisms (RFLP) even in close relatives. Over a three-year period, 61 consecutive patients from a single institution undergoing allogeneic bone marrow transplantation (BMT) for various hematological diseases were grafted with unmanipulated marrow and followed for the development of hematopoietic chimerism. Three synthetic oligonucleotide probes homologous to the so-called minisatellite or variable number of tandem repeat (VNTR) sequences were evaluated in the clinical setting of BMT for their usefulness: (i) to document marrow engraftment or rejection; (ii) to elucidate the kinetics of mixed chimerism; and (iii) in providing a sensitive tool for early detection of relapse. In addition, in patients with CML karyotyping and analysis of bcr/abl gene rearrangement was performed. Using this panel of three oligonucleotide probes, informative markers specific for donor or recipient RFLP could be demonstrated in all cases. Engraftment could be documented in all patients surviving beyond day +14 after BMT. Mixed chimerism was detected in 14% of the patients in the early phase (day +14 to day +78) after BMT but only one patient turned out to become a long-term stable mixed chimera. These results support the hypothesis that lymphocytes of recipient origin surviving the conditioning regimen may considerably contribute to mixed chimerism early after BMT. Long-term stable mixed chimerism is a rare event after BMT with unmanipulated marrow. Simultaneous analysis of chimerism after BMT by VNTR-RFLP, karyotyping, and detection of bcr/abl rearrangement in patients with CML showed corresponding results in nine out of 12 patients. In three patients either one of the methods failed to detect residual recipient cells in the early phase after BMT. Therefore different methods for assessment of mixed chimerism seem to complement rather than to exclude each other. Eleven patients who all exhibited complete chimerism early after BMT relapsed from their underlying disease. In seven of these patients grafted for acute leukemia, analysis of DNA-RFLP had been performed shortly before clinical relapse (30-86 days) and failed to herald relapse. As the sensitivity for the detection of the minor cell population by analysis of DNA-RFLPs is approximately 1%, these data may indicate that relapse of acute leukemia after BMT is characterized by a sudden increase in the percentage of recipient blast cells not detectable even by frequent RFLP analyses.

Adolescent↗

[Juvenile chronic leukemia and chronic myelomonocytic leukemia. Experiences with bone marrow transplantation in childhood in 5 cases].

Chronic leukemias of early childhood (JCML/CMML) are rare malignant diseases for which effective regimens of chemotherapy have not been established. However, some of these patients may be cured by BMT. We report on 4 children with JCML and one child with CMML undergoing BMT from HLA-identical siblings and from matched unrelated donors. 3 of 5 patients are disease-free 9 to 37 months post BMT. According to our observations an effective reduction of blastic cells before BMT seems to be necessary for a sustained remission of these diseases. This reduction can be reached by intensive chemotherapy and by splenectomy before BMT. Moreover, we stress the need for total body irradiation (TBI) during BMT in order to eradicate residual malignant cells.

Blood Cell Count↗

Lymphohaematopoietic chimaerism after bone marrow transplantation for chronic myeloid leukaemia: results of simultaneous cytogenetic analyses on T-cell colonies, myeloid, and erythroid progenitor cells.

Various lymphohaematopoietic compartments represented by cells from T-cell colonies, myeloid progenitor cells (CFU-GM), erythroid progenitor cells (BFU-E), and bone marrow after short-term culture (BM) have simultaneously been analysed in 15 patients receiving 17 bone marrow transplants for Philadelphia chromosome (Ph) positive chronic myeloid leukaemia (CML) or acute lymphoblastic leukaemia (ALL). The marrow grafts were not T-cell depleted. Ten patients without relapse did not show any myeloid cells of host origin until their last follow-up or until death. However, in four of these patients single lymphoid host cells not carrying the Ph chromosome were found after BMT without clinical consequences. In patients with cytogenetic or haematological relapse Ph positive metaphases were first detected in any of the progenitor cell compartments along with residual donor cells in two of three patients. BM became Ph positive after various time intervals. Another patient with CML became Ph positive in all compartments investigated at the same time. The only patient with Ph positive ALL remained completely Ph negative also when haematological and clinical relapse was evident. All patients with relapse exhibited complex clonal and non-clonal chromosomal aberrations at the time of recurrence of the Ph chromosome. Such abnormalities not identical to those usually found with evolution of the disease and preferentially occurring in progenitor cells preceded the reappearance of Ph positive metaphases in one of our patients.

Adolescent↗

Successful stimulation of autologous bone marrow recovery by GM-CSF and IL-3 after an unrelated donor BMT for juvenile CML complicated by graft failure.

We report the case of a boy with juvenile chronic myeloid leukemia (jCML), who after initial treatment with interferon alpha-2 (IFN) and hydroxyurea underwent bone marrow transplantation (BMT) from a matched unrelated donor complicated by graft failure. Subsequent stimulation of hematopoiesis by GM-CSF and IL-3 promoted autologous recovery. In contrast to the course of disease pre-BMT, the boy is now off any therapy remaining in complete remission more than 500 days after BMT.

Bone Marrow↗

Remission of juvenile chronic myeloid leukemia following graft failure of an unrelated marrow transplant and autologous recovery of marrow function promoted by GM-CSF and IL-3.

The unusual course of a boy with juvenile chronic myeloid leukaemia is presented. After bone marrow transplantation (BMT) from an unrelated donor followed by graft failure and subsequent stimulation by rhu GM-CFC and II-3, this patient experienced complete recovery of autologous haematopoiesis. At 17 months post-BMT the patient was off any therapy with completely normal blood counts and no signs of disease.

Bone Marrow Transplantation↗

Fractionated total body irradiation plus high-dose VP-16 prior to allogeneic bone marrow transplantation in children with poor risk acute leukaemias.

Nineteen children (median age, 13 years; range 4 to 18 years) with acute lymphoblastic leukemia/lymphoma (ALL) (10 patients) or acute nonlymphoblastic leukemia (ANNL) (9 patients) received allogeneic bone marrow transplants (BMT). Marrow was taken from HLA-identical sibling donors (16 patients) (pts), HLA-identical unrelated donor (1 pt), or one-antigen-missmatched sibling donor (1 pt). Preparatory regimen consisted of fractionated total body irradiation and high-dose VP-16 (50-70 mg/kg body weight). At the time of BMT nine of the pts were not in complete remission (CR): seven pts were refractory to aggressive multiagent chemotherapy and two pts were in first relapse. Six pts were in second CR, one pt in third CR; three pts grafted in first CR carried additional risk factors; e.g. induction failure. Ten out of the nineteen pts are alive and free of disease between one and 53 months (median, 28 months) after BMT. The actuarial disease-free survival rate is 37% for pts with ANLL and 54% for pts with ALL. Six pts have died from BMT-related complications. Only three pts (1 pt with ALL, 2 pts with ANLL) have relapsed between day +106 and day +134 after BMT and subsequently died. The four-year actuarial relapse rates of 29% for ANLL and 14% for ALL, respectively, demonstrate that the combination of fractionated total body irradiation and high-dose VP-16 is an effective antileucemic regimen for children with advanced leukemias.

Adolescent↗