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P Tiberghien

Publications and source records attributed to P Tiberghien.

At least 19 recordsLinked to original sources

Human and rodent bone marrow mesenchymal stem cells that express primitive stem cell markers can be directly enriched by using the CD49a molecule.

Bone marrow (BM) from human and rodent species contains a population of multipotential cells referred to as mesenchymal stem cells (MSCs). Currently, MSCs are isolated indirectly by using a culture step and then the generation of fibroblast colony-forming units (CFU-fs). Unprocessed or native BM MSCs have not yet been fully characterised. We have previously developed a direct enrichment method for the isolation of MSCs from human BM by using the CD49a protein (alpha1-integrin subunit). As the CD49a gene is highly conserved in mammals, we have evaluated whether this direct enrichment can be employed for BM cells from rodent strains (rat and mouse). We have also studied the native phenotype by using both immunodetection and immunomagnetic methods and have compared MSCs from mouse, rat and human BM. As is the case for human BM, we have demonstrated that all rodent multipotential CFU-fs are contained within the CD49a-positive cell population. However, in the mouse, the number of CFU-fs is strain-dependent. Interestingly, all rat and mouse Sca-1-positive cells are concentrated within the CD49a-positive fraction and also contain all CFU-fs. In human, the colonies have been detected in the CD49a/CD133 double-positive population. Thus, the CD49a protein is a conserved marker that permits the direct enrichment of BM MSCs from various mammalian species; these cells have been phenotyped as true BM stem cells.

Animals↗

Intravenous apoptotic spleen cell infusion induces a TGF-beta-dependent regulatory T-cell expansion.

Apoptotic leukocytes are endowed with immunomodulatory properties that can be used to enhance hematopoietic engraftment and prevent graft-versus-host disease (GvHD). This apoptotic cell-induced tolerogenic effect is mediated by host macrophages and not recipient dendritic cells or donor phagocytes present in the bone marrow graft as evidenced by selective cell depletion and trafficking experiments. Furthermore, apoptotic cell infusion is associated with TGF-beta-dependent donor CD4+CD25+ T-cell expansion. Such cells have a regulatory phenotype (CD62L(high) and intracellular CTLA-4+), express high levels of forkhead-box transcription factor p3 (Foxp3) mRNA and exert ex vivo suppressive activity through a cell-to-cell contact mechanism. In vivo CD25 depletion after apoptotic cell infusion prevents the apoptotic cell-induced beneficial effects on engraftment and GvHD occurrence. This highlights the role of regulatory T cells in the tolerogenic effect of apoptotic cell infusion. This novel association between apoptosis and regulatory T-cell expansion may also contribute to preventing deleterious autoimmune responses during normal turnover.

Adoptive Transfer↗

Selection of Epstein-Barr virus specific cytotoxic T lymphocytes can be performed with B lymphoblastoid cell lines created in serum-free media.

Epstein-Barr Virus (EBV)-transformed B lymphoblastoid cell lines (BLCL) are currently used for numerous applications in cellular immunology. Where protocols destined for clinical application are concerned, the final choice of assay is made according to a risk/benefit ratio analysis. In this balance the use of xenogenic or allogenic serum has always been a major concern, as it carries both an infectious and an immunological risk. So far, it is unknown whether serum can be omitted from the entire BLCL selection procedure. In addition, as BLCL have been described as heterogeneous, serum deprivation may affect their antigen-presenting capacity. In the present study, BLCL were generated in the absence or presence of fetal calf serum (referred to as BLCL0 or BLCL(FCS), respectively). Next, in order to assess the antigen-presenting capacity of these cells, we compared the ability of BLCL0 and BLCL(FCS) cells to stimulate the EBV-specific repertoire of the corresponding donor's peripheral blood mononuclear cells in vitro. Our results showed that addition of serum was not essential for BLCL infection and culture, and that as far as we could determine, BLCL0 cells were as effective as BLCL(FCS) in reactivating the EBV-specific T-cell repertoire in vitro. Notably, FCS-specific T-lymphocytes can be detected among the BLCL(FCS)-specific CD4+-CTL. Not only was this latter observation unexpected for an EBV-seropositive donor, but it implied that the BLCL had captured and processed the corresponding FCS-derived solubles antigens; taken together our results emphasized the interest of the possibility to generate BLCL0, both for research and for clinical applications.

Antibodies, Viral↗

Peripheral T-cell expansion and low infection rate after reduced-intensity conditioning and allogeneic blood stem cell transplantation.

Peripheral blood stem cell transplantation after reduced-intensity conditioning (RIC-PBSCT) regimen is an alternative to conventional regimens with less immediate toxicity. Since immune recovery is of crucial importance for the control of infections, we retrospectively studied the recovery of T-, B- and NK cell subsets in 20 consecutive patients undergoing RIC-PBSCT. We also studied the thymic output using T-cell receptor excision circle assay. Engraftment was rapid and few infectious complications were seen: three early (before 2.5 months) cases of asymptomatic cytomegalovirus reactivation, two late Gram-negative bacterial infections and no fungal infection. While CD4+ T-cell reconstitution was slow, CD8+ T-cell counts were close to normal values at 4 months. Median CD19+ B-cell counts reached normal values at 11 months. Rapid CD56+ NK cell reconstitution was noticed as early as 1.5 months. Low T-cell receptor excision circle numbers and preponderance of memory-type subsets among T cells further suggested that CD8+ T-cell reconstitution resulted predominantly from peripheral expansion and that thymic-dependent reconstitution was severely impaired. In conclusion, large peripheral T-cell expansion may compensate for late thymic-dependent lymphopoiesis, and may, with other factors such as NK and B-cell reconstitution and careful antiinfectious prophylaxis, help limit the incidence of severe infections after RIC-PBSCT.

Adult↗

Improving the ex vivo retroviral-mediated suicide-gene transfer process in T lymphocytes to preserve immune function.

The retroviral-mediated transfer of a suicide gene into donor T cells has been proposed as a method to control alloreactivity after hematopoietic stem cell (HSC) transplantation. Gene-modified cells (GMC) may be infused into the patient either at the time of transplantation, together with a T-cell depleted HSC graft, or after transplantation, as a donor lymphocyte infusion. Administration of a so-called pro-drug activating the "suicide" mechanism only after occurrence of GvHD should selectively destroy the alloreactive GMC in vivo, eventually leading to GvHD abrogation. Although phase I-II clinical trials provided vital proof of the principle of GvHD control by suicide-gene therapy, this approach is still suboptimal. Indeed, current gene transfer strategies rely on gamma-retroviral vectors that require extensive T-cell activation and expansion for efficient transduction. Both in vitro and in vivo studies have shown that the activation, cell expansion, transduction and selection steps lead to TCR repertoire alterations and impairment of crucial T-cell functions, such as alloreactivity and anti-EBV reactivity. Thus, improvements of the suicide-gene transfer processes are required in order to preserve T-cell function. This could be achieved by using CD3/CD28 co-stimulation and immunomagnetic selection of transduced cells. In future clinical trials, lentiviral vectors may prove to be a better alternative to gamma-retroviral-mediated gene transfer, by reducing the need for prolonged ex vivo culture.

Animals↗

Preferential retroviral-mediated transduction of EBV- and CMV-specific T cells after polyclonal T-cell activation.

Graft-versus-host disease, resulting from the T cells present in allogeneic hematopoietic stem cell (HSC) inoculums, can potentially be treated if a suicide gene has been introduced into the donor T cells. However, the diversity and functionality of the transfused T-cell population, including EBV- (EBV-T) and CMV-specific (CMV-T) CD8+ T cells, which are particularly important for immunosuppressed individuals undergoing HSC transplants, are often modified by the gene transfer protocol. Here, we show that following polyclonal T-cell activation, EBV-T and CMV-T cells are preferentially transduced by oncoretroviral vectors, as compared to the bulk CD8+ T-cell population. This preferential transduction is associated with higher surface levels of PiT-2, the receptor for the amphotropic envelope with which the virions are pseudotyped. Moreover, EBV-T and CMV-T cells proliferate more extensively as compared to bulk CD8+ T cells. Thus, retroviral-mediated transduction can be biased toward a given antigenic specificity, even under conditions of polyclonal stimulation.

CD8-Positive T-Lymphocytes↗

T-cell flow-cytometry crossmatch and long-term renal graft survival.

Flow cytometry crossmatch (FCXM) is a more sensitive technique than classical complement-dependent cytotoxicity (CDC) for the detection of donor-directed antibody before renal transplantation. Nevertheless, the role of FCXM in predicting long-term survival of kidney grafts is still unclear. The purpose of our study was to evaluate the impact of a positive T-cell FCXM (T-FCXM) on long-term kidney allografts outcome. Of the 184 consecutive kidney transplantations performed in our center between 1 January1991 and 15 November 1996 a FCXM, performed concurrently to the pre-transplant CDCXM, was available for 170 patients. The CDCXM was negative in all recipients. Among these recipients, 12 (7.1%) had a positive T-FCXM. These patients were not different from patients with a negative T-FCXM for donor and recipient age, sex, frequency of second transplantation, number of human leukocyte antigen matches or mismatches. Frequency of immunized patients was higher in kidney recipients with a positive FCXM (58.3% vs. 24.7%; p=0.02, chi-square test). Survival analysis revealed that kidney graft outcome was better in negative T-FCXM recipients (p=0.03), while patient survival was not statistically different. Our results suggest that a positive pre-transplant T-FCXM despite a negative CDCXM is associated with an impaired long-term graft survival in renal allotransplantation.

Age Factors↗

[Allogeneic adoptive immunotherapy].

Recognition of the importance of immune cells present in a hematopoietic graft has resulted in a significant change in the perception of allogeneic hematopoietic transplantation. Such a transplant modality is now perceived has a very efficient form of adoptive allogeneic immunotherapy unfortunately associated with significant toxicity.

Graft vs Host Reaction↗

High serum vascular endothelial growth factor correlates with disease activity of spondylarthropathies.

Angiogenesis is involved in chronic inflammatory joint diseases such as rheumatoid arthritis (RA). Vascular endothelial growth factor (VEGF) plays a crucial role in angiogenesis. The spondylarthropathies (SpA) are characterized by enthesitis and synovitis, in which blood vessels participate. The objective of this study was to investigate serum VEGF levels and their potential associations with disease activity markers for SpA. Sera were collected from 105 patients with SpA (72 with ankylosing spondylitis (AS), four with psoriatic arthritis (PsA), six with reactive arthritis (ReA), eight with enteropathic arthropathy and 15 with undifferentiated SpA), 50 patients with rheumatoid arthritis (RA) and 64 healthy controls. Disease activity in SpA patients was assessed using the Bath Ankylosing Spondylitis Disease Activity Index (BASDAI) and laboratory parameters of inflammation [erythrocyte sedimentation rate (ESR) and C-reactive protein level (CRP)]. Serum VEGF levels were significantly higher in SpA patients (316.4 +/- 215.6 pg/ml) and RA patients (405.2 +/- 366.5) than in controls (217.3 +/- 145.2) (P = 0.003). In SpA patients, serum VEGF levels correlated with disease activity indices (BASDAI: r = 0.22, P = 0.04; ESR: r = 0.3, P = 0.003; and CRP: r = 0.23, P = 0.02). Serum VEGF levels were not associated with presence of extra-articular manifestations or syndesmophytes or with the grade of sacroiliitis. These results suggest that VEGF and therefore angiogenesis may play a role in SpA pathogenesis and may serve as a disease activity marker in SpAs.

Adult↗

Polymorphisms of the TAP1 and TAP2 genes in human alveolar echinococcosis.

We postulated that TAP genes may influence the susceptibility of some individuals to Echinococcus multilocularis infection. Six coding region variants (codons 333 and 637 in TAP1, and 379, 565, 651 and 665 in TAP2) were typed in 94 patients and 100 controls. Thr/Thr homozygosity at TAP2/665 was more prevalent in patients than in controls [64% vs. 45%, respectively; odds ratio (OR) = 2.1 (95% confidence interval (CI) 1.1; 2.7)] and Thr/Ala heterozygozity was less prevalent (32% vs. 50%, respectively) (P = 0.014). Of the 38 patients with progressive lesions, 76% were Thr/Thr, as compared with 55% of patients without progressive lesions and 45% of controls (P = 0.058 and 0.02, respectively), independent of HLA status. To determine whether this association is functionally relevant, functional analyses and/or confirmation in distinct populations of patients with alveolar echinococcosis would be required.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Polyvisceral arteritis in chronic graft-versus-host disease: antiphospholipid-negative thrombotic syndrome mimicking polyarteritis nodosa.

A case of polyarteritis is reported in an 18-year old woman, occurring 2 years after an allogeneic bone marrow transplant. The clinical manifestations were similar to those of polyarteritis nodosa (PAN) with a wide range of organs involved including life-threatening cardiac and mesenteric problems requiring plasmapheresis and intravenous immunoglobulin (IgIV).

Adolescent↗

A novel 'sort-suicide' fusion gene vector for T cell manipulation.

Retroviral suicide gene vectors have successfully been used in clinical studies to improve the safety of adoptive immunotherapy with allogeneic T lymphocytes in the treatment of malignant and viral diseases. At the same time these studies have revealed several problems that are yet to be resolved including impaired T cell function due to long ex vivo culture. Here we present new retroviral vectors co-expressing truncated CD34, a gene transfer marker which ensures rapid enrichment of transduced cells using commercially available GMP-approved devices, and a splice-corrected variant of Herpes simplex virus thymidine kinase (scHSVtk) which confers high sensitivity to the prodrug ganciclovir. We show that a retroviral hybrid vector, MP71, based on the myeloproliferative sarcoma virus (MPSV) and the murine embryonic stem cell virus (MESV), encoding a tCD34/scHSVtk fusion protein mediates high expression of the 'sort-suicide' selection marker, thereby allowing for highly efficient purification and selective elimination of transduced cells.

Antigens, CD34↗

TAP1 and TAP2 gene polymorphism in rheumatoid arthritis in a population in eastern France.

The 'transporter associated with antigen processing' (TAP) gene products are involved in the processing of endogenous peptides that bind to class I molecules. Polymorphism within these genes could alter the level of the immune response, a phenomenon relevant to the development of autoimmune diseases. In this study, we examined the polymorphism of TAP1 and TAP2 genes in patients with rheumatoid arthritis (RA). TAP1 and TAP2 typing was performed for 138 Caucasian RA patients and 100 healthy controls, all originating from eastern France. TAP1 polymorphic residues at positions 333 and 637 and amino acid variants 379, 565, 651 and 665 in the TAP2 gene were found using amplification refractory mutation system-polymerase chain reaction (ARMS-PCR). This method enabled us to determine four TAP1 alleles (TAP1A to TAP1D) and eight TAP2 alleles (TAP2A to TAP2H). All patients and controls had been HLA-DRB1* genotyped. The polymorphic residues TAP1333 and TAP1637 did not show any difference in their distribution between patients and controls. Similar findings were obtained for TAP2379 and TAP2665. However, we found an increased frequency of Thr homozygosity and heterozygosity at position 565 in the TAP2 gene in RA patients (RA vs. controls: 25.3 vs. 14%; P = 0.032; OR = 2.09; CI = 1.01-4.38). Similarly, the prevalence of subjects who were homozygote and heterozygote for Cys651 was increased in the RA group (RA vs. controls: 36.8 vs. 11%; P = 0.02). The dimorphic site TAP2565 defines TAP2D and TAP2E alleles, while the site at position 651 characterizes TAP2F. Thus, we found that TAP2D and TAP2E alleles were more prevalent in RA, but not significantly so (RA vs. controls: TAP2D: 10 vs. 3.6%; P = 0.24; TAP2E: 3.6 vs. 0%; P = 0.19). Similarly, the frequency of TAP2F was higher in RA patients (24.5%) than in controls (11.3%), but this was not significant after correction (P = 0.029; Pcorr = 0.17). Finally, we found no linkage disequilibrium between DRB1* RA-associated alleles and amino acid substitution Thr565 or TAP2D and TAP2E alleles, whereas Cys651 (and TAP2F) was not independent of DRB1*04, a strongly RA-associated allele. Finally, Thr at position 565 in the TAP2 gene was associated with manifestations of disease severity in only a few patients. Examination of TAP1 and TAP2 gene polymorphisms in RA patients revealed an association between a particular amino acid residue, namely Thr565 in the TAP2 gene, and RA. This association was found to be weak and did not seem to be a predictor for the severity of the disease.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

IL-7 differentially regulates cell cycle progression and HIV-1-based vector infection in neonatal and adult CD4+ T cells.

Differences in the immunological reactivity of umbilical cord (UC) and adult peripheral blood (APB) T cells are poorly understood. Here, we show that IL-7, a cytokine involved in lymphoid homeostasis, has distinct regulatory effects on APB and UC lymphocytes. Neither naive nor memory APB CD4(+) cells proliferated in response to IL-7, whereas naive UC CD4(+) lymphocytes underwent multiple divisions. Nevertheless, both naive and memory IL-7-treated APB T cells progressed into the G(1b) phase of the cell cycle, albeit at higher levels in the latter subset. The IL-7-treated memory CD4(+) lymphocyte population was significantly more susceptible to infection with an HIV-1-derived vector than dividing CD4(+) UC lymphocytes. However, activation through the T cell receptor rendered UC lymphocytes fully susceptible to HIV-1-based vector infection. These data unveil differences between UC and APB CD4(+) T cells with regard to IL-7-mediated cell cycle progression and HIV-1-based vector infectivity. This evidence indicates that IL-7 differentially regulates lymphoid homeostasis in adults and neonates.

CD4-Positive T-Lymphocytes↗

Intravenous injection of apoptotic leukocytes enhances bone marrow engraftment across major histocompatibility barriers.

Cross-tolerization of T lymphocytes after apoptotic cell uptake by dendritic cells may be involved in self-tolerance maintenance. Furthermore, immunosuppressive properties are attributed to apoptotic cells. This study evaluated the consequences of apoptotic leukocyte administration in a restrictive engraftment model of murine bone marrow (BM) transplantation. Sublethally irradiated recipients received a limited number of allogeneic BM, with or without irradiated apoptotic leukocytes of different origins. No graft-versus-host disease was observed. Whereas only a low proportion of mice receiving BM cells alone engrafted, addition of apoptotic irradiated leukocytes, independently of the origin (donor, recipient, third-party mice, as well as xenogeneic peripheral blood mononuclear cells), significantly enhanced engraftment. Similar results were obtained after infusion of leukocytes rendered apoptotic by UVB irradiation or by anti-Fas monoclonal antibody stimulation, thus confirming the role of apoptotic cells in engraftment facilitation. Overall, these results suggest that apoptotic leukocytes can nonspecifically facilitate allogeneic BM engraftment. Such a simple approach could be of interest in BM transplantation settings involving an important HLA donor/recipient disparity, a T-cell-depleted graft, or reduced conditioning regimen intensity.

Animals↗

[Challenges of transfusion medicine].

Transfusion medicine has the logic of a therapeutic chain applied to labile blood components and cell therapy products, within a coherent structure, such as the recently created Etablissement français du sang. Faced to the threat of emerging--sometimes hypothetical--transfusion risks, such as the possible transmission of BSE by blood transfusion, the precaution principle requires developing strategies to reduce labile blood components consumption, by strictly defining the framework of blood transfusion prescription and encouraging the search for red blood cell and platelet substitutes. In the field of alternatives to labile blood components, research has however yielded few results. The future of transfusion medicine lies in biotechnology: cell (and gene) therapy will become part of novel therapeutic strategies for the treatment of numerous pathologies in man. Transfusion medicine will have to consider the significant advances achieved over the last few years in the field of multipotent stem cells. Transfusion medicine will thus find its place in the promising field of innovating therapies.

Blood Substitutes↗