PubMed Health⌕ Search

Biomedical subjects

C Helg

Publications and source records attributed to C Helg.

At least 37 records · Page 2Linked to original sources

HA-1 and the SMCY-derived peptide FIDSYICQV (H-Y) are immunodominant minor histocompatibility antigens after bone marrow transplantation.

BACKGROUND: Allogeneic bone marrow donors can be incompatible at different levels. Even HLA-identical pairs will be still incompatible for numerous minor histocompatibility antigens (mHag). Nevertheless, some incompatibilities are found to be associated with an increased risk of graft-versus-host disease (GVHD), which could be related to the way the immune system recognizes these antigens. METHODS: We determined the specificity of cytotoxic T-cell clones isolated during acute GVHD or during bone marrow graft rejection in patients (n=14) transplanted with marrow from donors who were histoincompatible for different minor and/or major histocompatibility antigens. RESULTS: We found a clear hierarchy among the different types of histoincompatibilities. In three combinations mismatched for a class I allele, all 27 clones isolated during GVHD were specific for the incompatible HLA molecule. In the 11 class I-identical combinations, 14 different mHags were recognized. The mHag HA-1, known to have a significant impact on the development of GVHD, was recognized in the two HA-1-incompatible combinations. In one of these combinations, which was sex mismatched, all 56 clones analyzed were directed against HA-1, demonstrating the dominance of this mHag. In the four HA-1-compatible, sex-mismatched combinations, the anti-H-Y response was directed against one immunodominant epitope rather than against multiple Y-chromosome-encoded epitopes. All male specific cytotoxic T lymphocytes (n=15) recognized the same high-performance liquid chromatography-purified peptide fraction presented by T2 cells. Moreover, all cytotoxic T lymphocytes tested (n=6) were specific for the SMCY-derived peptide FIDSYICQV, originally described as being the H-Y epitope recognized in the context of HLA-A*0201. CONCLUSIONS: Some histocompatibility antigens are recognized in an immunodominant fashion and will therefore be recognized in the majority of mismatched combinations. Only for such antigens, correlations between mismatches and the occurrence of GVHD or graft rejections will be found.

Bone Marrow Transplantation↗

Clinical consequences of sensitisation to minor histocompatibility antigens before allogeneic bone marrow transplantation.

To study sensitisation to minor histocompatibility antigens (mHag) before and after BMT, we measured antidonor CTL activity in five patients who had rejected their graft, and in a control group of 10 leukemic patients who engrafted without complications. All patients were transplanted with marrow from an HLA-identical sibling. Fourteen patients were conditioned with cyclophosphamide (120 mg/kg) and TBI (1350 cGy) and received a T cell-depleted graft, while one patient with aplastic anaemia received cyclophosphamide alone and unmanipulated marrow. Before transplantation, anti-donor CTL activity was detected in two of the 15 patients. These patients rejected their grafts at days 21 and 58, respectively. In the other three patients who rejected their grafts at days 41, 60 and 250, CTL activity was found only after transplantation. In contrast, no anti-donor CTLs could be detected at any time in the 10 patients who engrafted permanently. We have identified some of the mHags recognised during graft rejection by cloning and subsequent specificity analysis of the recipient CTLs. In the patient who rejected at day 41 without detectable immunisation before BMT, the response was directed against HA-1, a minor antigen known to play a role in GVHD. In the other combinations, a significant part of the CTL activity was directed against the male antigen H-Y. In the patient who rejected the marrow of her HLA-identical brother at day 250, two clones recognised H-Y, while five others recognised at least three distinct autosomal mHags. This patient had an HLA-identical sister who expressed only one autosomal mHag that had been recognised by one single T cell clone. After re-transplantation with the marrow of this second donor, the CTL activity could no longer be detected and the patient engrafted without further complications.

Bone Marrow Transplantation↗

Donor lymphocyte infusion for the treatment of relapse after allogeneic hematopoietic stem cell transplantation.

The results of donor lymphocyte infusion (DLI) for treatment of relapse after bone marrow transplantation (BMT) are reviewed. Durable complete remission can be achieved at the molecular level for a majority (more than 70%) of patients with CML, when treated at early relapse. Results are less favourable for acute leukemias, although useful responses have been reported. Data are scarce though promising for myelodysplastic syndromes and multiple myeloma. Major treatment-associated toxicities are GVHD and bone marrow aplasia. The latter complication can be predicted by evaluating the level of residual donor-derived hematopoiesis. Modification of infused cells (CD8 negative selection or transduction with a suicide gene), addition of peripheral blood stem cells, and early implementation of escalating doses may counteract the complications and increase the response rate. Response rate is variably influenced by the presence of chronic GVHD after initial BMT, T-cell depleted BMT, underlying disease and stage at relapse, and the level of mixed chimerism. DLI is a direct demonstration of the graft-versus-leukemia effect (GVL). Because GVL after BMT is sometimes the predominant cause of cure, it may be advisable in such situations to redirect the conditioning regimens for BMT towards engraftment and less immediate cytotoxicity.

Graft vs Host Disease↗

Characterisation of the cytotoxic alloresponse of cord blood.

As compared to bone marrow, transplantation with cord blood (CB) is associated with a lower risk of GVHD. Although some cases of GVHD III have been reported, usually the grade of GVHD remains low, even when donor and recipient are not fully HLA matched. To investigate whether this is due to an intrinsic property of CB T cells, we studied the conditions under which CB CD8+ cells would be able to generate an alloresponse. In addition, we measured the cytokines secreted by the alloreactive cytotoxic T lymphocyte (CTL) clones generated. We show that: (1) the capacity of CB cells to generate alloreactive CTLs in vitro is diminished as compared to adult cells (AB); (2) in the presence of exogenous IL-2, CB cells do generate a normal alloreactive response; (3) although CB-derived CD8+ allospecific clones showed the same T1/T0 cytokine profile as the clones from AB, they secreted a lower amount of IFN-gamma; and (4) in addition, cloned CD4+ CB cells are mainly T2/T0 type, whereas AB CD4+ T cells were mainly of T1/T0 type. These data suggest that the reduced GVHD observed after transplantation with CB might be the result of the naiveness of CB T cells. After allostimulation, CB cytotoxic T cells differ from AB T cells by a higher activation threshold, a lower secretion of IFN-gamma by both CD4+ and CD8+ CB cells and their bias towards a T2 type CD4 response.

Adult↗

Recognition of major histoincompatibilities after transplantation with marrow from HLA closely matched donors.

BACKGROUND: To determine the extent to which major histoincompatibilities are recognized after bone marrow transplantation, we characterized the specificity of the cytotoxic T lymphocytes isolated during graft-versus-host disease. We studied three patients transplanted with marrow from donors who were histoincompatible for different types of HLA antigens. METHODS: Patient 1 was mismatched for one "ABDR-antigen" (HLA-A2 versus A3). Two patients were mismatched for antigens that would usually not be taken into account by standard selection procedures: patient 2 was mismatched for an "HLA-A subtype" (A*0213 versus A*0201), whereas patient 3 was mismatched for HLA-C (HLA-C*0501 versus HLA-C*0701). All three HLA class I mismatches were detected by a pretransplant cytotoxic precursor test. RESULTS: Analysis of the specificity of the cytotoxic T lymphocyte clones isolated after transplantation showed that the incompatibilities detected by the pretransplant cytotoxic precursor assay were the targets recognized during graft-versus-host disease. CONCLUSIONS: Independent of whether the incompatibility consisted of a "full" mismatch, a "subtype" mismatch, or an HLA-C mismatch, all clones recognized the incompatible HLA molecule. In addition, some of these clones had undergone antigen selection and were clearly of higher specificity than the ones established before transplantation, indicating that they had been participating directly in the antihost immune response.

Adolescent↗

Cytomegalovirus-specific T-cell immunity in recipients of autologous peripheral blood stem cell or bone marrow transplants.

The cytomegalovirus (CMV)-specific CD8+ cytotoxic T-lymphocyte (CTL) and CD4+ T-helper cell (Th) functions were characterized in 15 CMV seropositive recipients of autologous peripheral blood stem cell or bone marrow transplants. These immune functions were evaluated in peripheral blood specimens obtained before and at 1, 2, and 3 months after transplant. For study of CTL activity, blood mononuclear cells were cocultured with CMV-infected autologous fibroblasts for 2 weeks and then tested for cytotoxicity against CMV-infected or mock-infected autologous and HLA-mismatched fibroblasts. The Th response to CMV antigen was assessed by standard lymphoproliferative assay. CMV-specific CD8+ CTL and CD4+ Th responses were detectable in 12 (80%) and 14 (93%) patients, respectively, in the first 3 months after transplantation. A Th response to CMV was always present by the time of first CTL detection. During the posttransplant period, CMV infection occurred in 6 (40%) patients, and detection of CMV-specific CD8+ CTL activity was associated with protection from subsequent CMV infection (P = .002). Among CMV seropositive autograft recipients, CMV-specific CD8+ CTL and CD4+ Th responses are restored in a large proportion of patients in the first 3 months after transplantation, and the presence of a specific CD8+ CTL activity affords protection from CMV infection.

Adolescent↗

Unscheduled DNA synthesis and mitochondrial DNA synthetic rate following injury of the facial nerve.

Unscheduled DNA synthesis (UDS) of nuclear DNA and mitochondrial (mt) DNA synthetic rates were determined autoradiographically in different cell types of the rodent brain 14 days after unilateral facial nerve transection. In addition to an increased synthetic rate of mtDNA in facial motoneurons 12 h after axotomy, a significant increase of UDS, i.e., DNA repair, and mtDNA synthesis were found in the regenerating facial nucleus 4 days after axotomy. Specificity of the observed labeling was confirmed by injection of 3H2O instead of [3H]thymidine. Using electron microscopic autoradiography, it was further shown that cytoplasmic labeling of neurons was mainly due to incorporation of radioactive label into mitochondria, indicating their subsequent multiplication by division. The observation that Northern blot signals for O6-alkylguanine-DNA-alkyltransferase mRNA from homogenized facial nuclei of both the axotomized and normal side remained unchanged over 14 days after axotomy indicated that the observed DNA-repair activity was not caused by endogenously produced alkylating agents. The combined presence of transiently increased UDS, enhanced mtDNA synthesis and elevated protein synthetic rates of regenerating motoneurons (as shown in the literature) suggests that free radicals produced by mitochondria in injured nerve cells could cause unspecific DNA damage followed by immediate repair.

Animals↗

High resolution HLA matching associated with decreased mortality after unrelated bone marrow transplantation.

As compared with related HLA-identical sibling donors, bone marrow transplantation (BMT) with phenotypically HLA ABDR-compatible unrelated donors is associated with increased mortality. This may be due to hidden HLA incompatibilities not detected by conventional typing. We have analyzed 44 unrelated patient-donor pairs who were matched for HLA-A, -B, and -DR by routine tissue typing. Our comprehensive HLA typing approach consisted of serology, cytotoxic T-cell precursor (CTLp) tests, T-cell cloning, oligotyping, and DNA sequencing. Using these techniques, we identified numerous HLA allele mismatches not detected by the previously applied routine typing. Twenty-four patient-donor pairs were highly matched and had a low CTLp frequency, whereas the remaining 20 pairs were allele-mismatched for HLA-A, -B, -C, -DR, -DQ antigens and/or had a positive result of the CTLp test. Patient and donor age, diagnosis, and treatment did not differ significantly between the matched and mismatched transplants. The probability for severe acute graft-versus-host disease grades III-IV was 21% in the matched and 47% in the mismatched patients (P = .0464). Transplant-related mortality was 21% and 57% (P = .0072) and actuarial patient survival rates at 3 years were 61% and 13% (P = .0005). We conclude that both HLA class I and class II allele mismatches between unrelated phenotypically ABDR-compatible patient-donor pairs are frequent and associated with increased incidence of posttransplant complications.

Alleles↗

Analysis of T-cell repopulation after allogeneic bone marrow transplantation: significant differences between recipients of T-cell depleted and unmanipulated grafts.

We have studied the repopulation of the T-cell compartment in 27 patients transplanted with bone marrow from an (HLA)-identical sibling. Significant differences were found between recipients of unmanipulated and T-cell depleted grafts. Analysis of the T cells by a method based on amplification of minisatellite DNA regions showed that without depletion > 99.9% of the clones responding to a mitogenic stimulus after transplantation were of donor origin. In contrast, when the graft had been depleted with Campath-1M plus complement, a significant part of the T cells cloned during the first weeks after transplantation comprised of recipient T cells that had survived the preconditioning. This mixed population of low numbers donor and recipient T cells (19 +/- 31/mm3 at day 14) expanded rapidly (predominantly CD8+ T cells) during the first 2 months, without a significant change of the ratio of recipient/donor T cells. In 11 of 17 evaluable patients a late wave ( > 9 months) of donor T cells occurred. As a consequence, T-cell chimerism changed in favor of donor T cells and the CD4/CD8 ratio that had been reversed ( < 0.5) after the first expansion, normalized (1.5 +/- 0.51). Analysis of the T-cell receptor repertoire showed that in recipients of a T-cell depleted graft, the recipient as well as the donor T cells that repopulated the peripheral T-cell pool during the first month, were the progeny of a limited number of precursors. Because without depletion, when larger numbers of donor T cells had been cotransfused with the marrow, the repertoire was much more diverse, these data show that immediately after transplantation, the peripheral pool is repopulated primarily through expansion of circulating T cells.

Adolescent↗

Renal toxicity after allogeneic bone marrow transplantation: the combined effects of total-body irradiation and graft-versus-host disease.

PURPOSE: To evaluate retrospectively the cumulative risk probability and factors correlated with renal dysfunction after allogeneic bone marrow transplantation (BMT). PATIENTS AND METHODS: From October 1984 to July 1994, 84 patients with malignant hematopoietic diseases received allogeneic BMT after conditioning with high-dose chemotherapy and total-body irradiation (TBI). Seventy-nine patients with normal renal function before conditioning are included in this study. Conditioning included high-dose cyclophosphamide without (n = 46) or with (n = 33) other agents (daunorubicin, busulfan, cytarabine, and thiotepa) followed by TBI. The TBI dose prescribed to the center of the abdomen was 10 Gy for 24 patients, 12 Gy for 32, and 13.5 Gy for 23. In vitro T-cell depletion was undertaken in 48 cases. The post-BMT nephrotoxicity of aminoglycosides, vancomycin, amphotericin, and cyclosporine was assessed. Time to renal dysfunction was defined as the time to a persistent increase of serum creatinine (SCr) level greater than 110 mumol/L. The potential influence of sex, age, diagnosis, chimerism, and graft-versus-host disease (GvHD) on renal dysfunction was also assessed. RESULTS: The 18-month probability of renal dysfunction-free survival (RDFS) for the whole group was 77%. Only TBI dose and presence of GvHD were significantly correlated with renal dysfunction by multivariate analysis. The 18-month probabilities of RDFS were 95%, 74%, and 55% for the patients conditioned with 10, 12, and 13.5 Gy, respectively. The 18-month RDFS probabilities were 88% and 61% for patients without and with GvHD, respectively. Combining both variables, we have defined two risk categories: low-risk (ie, 10 Gy TBI with/without GvHD and 12 Gy TBI without GvHD) and high-risk (ie, 12 Gy TBI with GvHD and 13.5 Gy TBI with/without GvHD). The predicted 18-month RDFS rates were 93% and 52% for the low- and high-risk groups, respectively. CONCLUSION: Renal dysfunction after allogeneic BMT is strongly related to the delivered TBI dose (and dose per fraction) and to the presence of GvHD. Renal shielding should be recommended if a TBI dose greater than 12 Gy (fractionated twice daily over 3 days) is to be prescribed. Furthermore, in those cases with a high risk of developing GvHD (eg, unrelated allogeneic BMT, absence of T-cell depletion), these data suggest that kidney doses greater than 10 Gy should be avoided.

Adolescent↗

Transfusion-associated graft-versus-host disease in a patient treated with Cladribine (2-chlorodeoxyadenosine): demonstration of exogenous DNA in various tissue extracts by PCR analysis.

Transfusion-associated graft-versus-host disease can occur in both immunocompetent and immunocompromised hosts. Cladribine is a synthetic analogue of adenine used in the treatment of lymphoid malignancies, commonly associated with a decrease in T lymphocytes. Cladribine was given for a low-grade non-Hodgkin's lymphoma with thrombocytopenia as the main side-effect. Six units of pooled non-irradiated platelets were transfused from six unrelated donors; 10 d later a clinical picture typical of graft-versus-host disease resulted. Polymerase chain reaction of the highly polymorphic DNA minisatellites and HLA-DR oligotyping were used to demonstrate the exogenous DNA. In the patient's blood and tissues, only the pattern of donor 5 was found. The patient (DRB1*0301/1101; DRB3*0101/02) and this donor (DRB1*0301/1104; DRB3*02) by chance shared a partial common haplotype. This complication highlights the sensitivity of DNA minisatellite analysis. It further raises the question of transfusion and of prophylactic irradiation of all blood products in immunosuppressed patients and those treated with cladribine. This case represents a previously unreported situation where an immunosuppressed patient was able to eliminate cells from five totally HLA-DR dissimilar donors but not from one heterozygous donor with strong HLA-DR similarity.

Aged↗

Kaposi's sarcoma following allogeneic bone marrow transplantation.

Localised Kaposi's sarcoma (KS) was diagnosed 240 days after allogeneic bone marrow transplantation (BMT) in a severely immunosuppressed HIV negative patient with genetic predisposition. The tumour was of host origin, based on PCR amplification of DNA minisatellites. Treatment with radiotherapy prompted almost complete regression of the lesions. However the patient subsequently died with relapsed acute myelogenous leukaemia. Contrary to the incidence observed after organ allografts, the advent of KS appears to be exceptional after BMT, since only one case has been reported to date, following reinfusion of autologous marrow.

Bone Marrow Transplantation↗

Characterization of mixed chimerism in patients with chronic myeloid leukemia transplanted with T-cell-depleted bone marrow: involvement of different hematologic lineages before and after relapse.

We have characterized mixed chimerism (MC) in five patients with chronic myeloid leukemia (CML) who received transplants with T-cell-depleted bone marrow (BM) and who relapsed within 4 years after transplantation. To study the possible relation of MC with relapse, we purified different populations of leukocytes and analyzed their donor/recipient origin by a method based on polymerase chain reaction amplification of minisatellite DNA regions. Our results show that before relapse, all hematopoietic recipient cells are T cells, whereas monocytes, B, and natural killer (NK) cells are of donor origin. This observation does not appear to be specific for CML as similar results were found in two control patients with acute myeloid leukemia (AML). At the time of (CML) relapse, recipient granulocytes, monocytes, and erythrocytes appeared and progressively replaced the respective lineages of donor origin. No other lineages seemed to be involved as B cells and NK cells remained of donor origin and no significant changes in the number of recipient T cells were detected. In this respect relapse of CML after BM transplantation (BMT) seems not to be very different from the primary disease in chronic phase before transplantation. Furthermore, we conclude that after BMT, an association between mixed chimerism before relapse and the (CML) relapse does exist because both phenomena are consequences of T-cell depletion of the BM graft. However, this correlation might well be indirect as the MC caused by the recipient T cells appears to be independent of the one caused by the recurrent disease.

Adult↗