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Biomedical subjects

Philippe Saas

Publications and source records attributed to Philippe Saas.

At least 19 recordsLinked to original sources

Expression of the myeloid-associated marker CD33 is not an exclusive factor for leukemic plasmacytoid dendritic cells.

A new entity of acute leukemia coexpressing CD4(+)CD56(+) markers without any other lineage-specific markers has been identified recently as arising from lymphoid-related plasmacytoid dendritic cells (pDCs). In our laboratory, cells from a patient with such CD4(+)CD56(+) lineage-negative leukemia were unexpectedly found to also express the myeloid marker CD33. To confirm the diagnosis of pDC leukemia despite the CD33 expression, we demonstrated that the leukemic cells indeed exhibited pDC phenotypic and functional properties. In 7 of 8 other patients with CD4(+)CD56(+) pDC malignancies, we were able to confirm that the tumor cells expressed CD33 although with variable expression levels. CD33 expression was shown by flow cytometry, reverse transcriptase-polymerase chain reaction, and immunoblot analysis. Furthermore, CD33 monoclonal antibody stimulation of purified CD4(+)CD56(+) leukemic cells led to cytokine secretion, thus confirming the presence of a functional CD33 on these leukemic cells. Moreover, we found that circulating pDCs in healthy individuals also weakly express CD33. Overall, our results demonstrate that the expression of CD33 on CD4(+)CD56(+) lineage-negative cells should not exclude the diagnosis of pDC leukemia and underline that pDC-specific markers should be used at diagnosis for CD4(+)CD56(+) malignancies.

Acute Disease↗

Intravenous infusion of apoptotic cells simultaneously with allogeneic hematopoietic grafts alters anti-donor humoral immune responses.

Intravenous infusion of apoptotic donor or third-party leukocytes simultaneously with an allogeneic donor bone marrow (BM) graft favors engraftment across major histocompatibility barriers. While verifying that such apoptotic cell infusion might not also be associated with antibody (Ab)-mediated allo-immune responses, we found, rather strikingly, that apoptotic cell infusion could in fact successfully prevent a humoral allo-immunization against a BM graft in mice. Indeed, among recipients having rejected their BM graft, prior apoptotic cell infusion was associated with a near absence of Ab-mediated allo-responses, while such an immunization was frequently observed in the absence of apoptotic cell infusion. This was also observed when infusing host apoptotic cells, thus showing that the prevention of immunization was linked to the apoptotic state of the cells rather than mediated by residual anti-recipient activity. In vivo anti-transforming growth factor-beta (TGF-beta) treatment resulted in the loss of this apoptotic cell infusion-associated protective effect on humoral allo-responses. Further studies will determine whether apoptotic cell infusion, in addition to hematopoietic graft facilitation might also contribute to preventing deleterious Ab-mediated allo-responses in various transplantation settings.

Animals↗

Administration of donor apoptotic cells: an alternative cell-based therapy to induce tolerance?

Apoptotic cells are endowed with immunomodulatory properties. The authors propose infusing apoptotic cells as a cell-based therapy product to facilitate allogeneic hematopoietic engraftment after a nonmyeloablative conditioning regimen. Such an approach may be used to obtain macrochimerism in combined hematopoietic cells and solid organ transplantation. In this article, the authors describe the mechanisms of combined hematopoietic and organ allograft transplantation and the potential difficulties. The authors discuss how intravenous apoptotic cell infusion may influence the outcome of combined transplantation. This may prove to be an interesting approach for future development in cell therapy.

Animals↗

How should chimerism be decoded?

To date, the significance of chimerism has not been fully understood. In particular, microchimerism can be associated with allograft acceptance or rejection. Several factors may influence the immunologic consequences of chimerism. In this review, the major factors influencing these consequences are briefly described. Subsequently, the different methods available for detecting and tracking donor-derived cells are listed. These techniques have been mainly developed concomitantly with nonmyeloablative hematopoietic allografts to monitor immunosuppression. Finally, the authors suggest how these methods may help to improve the understanding of microchimerism in solid organ transplantation.

Hematopoietic Stem Cell Transplantation↗

Death receptors on reactive astrocytes: a key role in the fine tuning of brain inflammation?

Immune responses protect the CNS against pathogens. However, the fact that there is little dispensable tissue in the brain makes regulation necessary to avoid disastrous immune-mediated damage. Astrocytes respond vigorously to any brain injury (e.g., tumor, stroke, AD, MS, HIV) and are postulated to play an important role in the fine tuning of brain inflammation. The authors propose that astrocytes use death receptors to modulate pro- and anti-inflammatory effects.

Animals↗

A single intravenous infusion of apoptotic cells, an alternative cell-based therapy approach facilitating hematopoietic cell engraftment, did not induce autoimmunity.

Previously, we reported that intravenous infusion of apoptotic leukocytes facilitated bone marrow (BM) engraftment across major histocompatibility barriers. This cell-based therapeutic approach is of great interest for stem cell therapy across histocompatibility barriers. Autoimmunity associated with apoptotic cell administration may, however, limit the use of this approach. Indeed, autoantigens are concentrated on the surface of apoptotic cells, and defective clearance of apoptotic bodies is associated with the occurrence of systemic autoimmune disease. In consequence, we assessed the autoimmune responses raised against ubiquitous double-stranded DNA (dsDNA) and cardiolipin autoantigens following a single intravenous infusion of apoptotic cells simultaneously to allogeneic BM administration. No difference was observed between levels of natural circulating immunoglobulin M (IgM) (anti-dsDNA and anti-cardiolipin) autoantibodies found in mice receiving allogeneic BM alone and those found in mice receiving apoptotic cells also. Pathogenic IgG autoantibody titers after apoptotic cell infusion were 9- to 200-fold lower than autoantibody titers found in lupus-prone mice and not different from titers detected in BM grafted mice. Kinetic analysis of autoantibodies after transplantation did not demonstrate any immunization against tested autoantigens after apoptotic cell infusion. Finally, neither immune complex deposition nor specific lesions were observed in the renal glomeruli of mice infused with apoptotic cells 9 months post-BM transplantation. Overall, these results show no specific toxicity of a single infusion of apoptotic cells administrated simultaneously to BM and may also shed light on factors influencing the immunogenic properties of apoptotic cells.

Animals↗

CD4 cell lymphopenia and atherosclerosis in renal transplant recipients.

Several animal studies suggest that T cell-mediated immunodeficiency may play a role in the progression of atherosclerosis. This study examined the association between lymphocyte subsets and atherosclerotic events in renal transplant recipients. A total of 302 consecutive renal transplant recipients were enrolled in this prospective study. Peripheral blood lymphocyte subsets were quantified and analyzed with respect to other known cardiovascular risk factors. The patients were followed for a mean duration of 23.5 +/- 4.5 mo. Mean CD4, CD8, and CD19 cell levels were 511 +/- 290/mm(3), 553 +/- 596/mm(3), and 66 +/- 62/mm(3), respectively. CD4 levels were positively related to transplant duration (r = 0.32; P = 0.02) and inversely related to age (r = 0.35; P = 0.01). Twenty-five atherosclerotic events (AE) occurred in 25 patients (8.3%). CD4 levels were lower in patients who experienced CVE (288 +/- 170/mm(3) versus 531 +/- 290/mm(3); P < 0.0001). Cox regression analysis showed that patients in the three upper quartiles of CD4 cell count had a decreased risk of CVE compared with those in the lowest quartile. There was a linear increase in risk of CVE with decreasing CD4 cell count (P < 0.0001). A CD4 cell count in the highest quartile (>663/mm(3)) divided the risk of CVE by 10 as compared with the lowest quartile. In conclusion, CD4 lymphocytopenia is an independent risk factor for the development of cardiovascular complications in renal transplant recipients, suggesting that impaired immune response promotes accelerated atherogenesis in this population.

Adult↗

[Tolerance in transplantation: potential contribution of haematopoietic transplantation and cell therapy].

The ultimate objective of organ transplantation is to obtain a state of tolerance, i.e. long-term acceptance of the graft without immunosuppressive therapy in order to limit the complications of these treatments (viral infections, tumours, etc.). The various immunological mechanisms allowing a state of tolerance will be described in this review. Among these various experimental strategies, combined bone marrow (or haematopoietic stem cell) transplantation and organ transplantation, made possible by the development of non-myeloablative or less intensive conditioning, appears to be one of the most promising lines of research. This approach leads to colonization of the recipient by donor cells. This state is described as "macro-chimerism" and achieves a real state of central tolerance in relation to an organ derived from the bone marrow donor. We have shown recently that intravenous injection of apoptotic cells in combination with allogeneic bone marrow cells increases the success rate of bone marrow transplantation. In a model of combined bone marrow/solid organ transplantation, these apoptotic cells induce tolerance limited to the donor's bone marrow cell antigens without inducing auto-immunization. We therefore propose a new approach to cell-based therapy (using the immunomodulating properties of apoptotic cells) to promote the success of haematopoietic stem cell transplantation. This approach can be particularly useful in combined haematopoietic stem cell and organ transplantation in order to induce a state of macro-chimerism.

Animals↗

A self-defence mechanism of astrocytes against Fas-mediated death involving interleukin-8 and CXCR2.

Astrocytes play multiple roles from passive support to the regulation of inflammation during brain injury. This latter function is in part achieved by responses induced by the triggering of Fas expressed on astrocytes both and. It was previously shown that astrocytes are resistant to Fas-mediated death, responding to Fas triggering by interleukin-8 production. However, the cellular mechanisms by which astrocytes protect themselves from Fas-mediated death are unclear. Here, we show that survival of cultured astrocytes after Fas triggering is governed by the interaction of interleukin-8 with one of its receptors, CXCR2. Furthermore, interleukin-8 secretion and CXCR2 expression are both induced in human astrocytes after Fas stimulation, suggesting a new mechanism of self-defence against Fas-mediated death.

Anti-Bacterial Agents↗

LF 15-0195 immunosuppressive agent enhances activation-induced T-cell death by facilitating caspase-8 and caspase-10 activation at the DISC level.

The deoxyspergualin derivative LF 15-0195 has demonstrated some efficacy in animal models of autoimmune and graft-versus-host diseases and is currently tested in clinics. The molecular mechanisms of LF 15-0195 immunosuppressive activity remained unknown. We show that exposure to LF 15-0195 sensitizes Jurkat T cells to apoptosis induced by an agonistic anti-CD95 antibody (CH11 clone) and by the cytokine TNF-related apoptosis-inducing ligand. LF 15-0195 does not demonstrate any significant effect on the postmitochondrial activation of caspases, nor does it modify overall expression of CD95, Fas-associated death domain, and procaspase-8. The compound facilitates the recruitment of these molecules to the death-inducing signaling complex (DISC) and enhances caspase-8 and -10 activation, thus increasing cytochrome c and direct IAP binding with low pI (DIABLO)/Smac mitochondrial release. LF 15-0195 also sensitizes Jurkat T cells to CD3-mediated apoptosis, an in vitro model for activation-induced T-cell death (AICD). LF 15-0195-mediated sensitization to AICD was further confirmed in human peripheral T cells exposed to anti-CD3 antibodies, then cultured in the presence of interleukin-2. In these cells, LF 15-0195 increased apoptosis triggered by either anti-CD95 antibodies or CD3 restimulation, whereas no effect was observed on "passive apoptosis." Finally, in bone marrow recipient mice, LF 15-0195 enhanced allogeneic donor T-cell death, which required a functional CD95 pathway. These results suggest that LF 15-0195 sensitizes T cells to AICD by increasing caspase activation at the DISC level in response to CD95 engagement. This original mechanism, together with LF 15-0195 efficacy in various disease models, makes this compound a promising immunosuppressive drug.

Animals↗

Increased presence of anti-HLA antibodies early after allogeneic granulocyte colony-stimulating factor-mobilized peripheral blood hematopoietic stem cell transplantation compared with bone marrow transplantation.

We have recently shown that the use of allogeneic granulocyte colony-stimulating factor (G-CSF)-mobilized peripheral blood hematopoietic stem cell transplantation (PBHSCT), as compared with bone marrow transplantation (BMT), is associated with increased titers of antibodies (Abs) directed against red blood cell ABO antigens. To further evaluate the influence of a G-CSF-mobilized PBHSCT graft on alloimmune Ab responses, we examined the frequency of anti-HLA Abs after transplantation in the setting of the same randomized study, comparing PBHSCT with BMT in adults. Anti-HLA Ab presence was determined by complement-dependent cytotoxicity assay (CDC) and flow cytometry in the recipient before and 30 days after transplantation as well as in the donor before graft donation. The use of PBHSCT was significantly associated with increased detection of anti-HLA immunoglobulin G (IgG) Abs early after transplantation as evidenced by flow cytometry (11 of 24 versus 4 of 27 transplant recipients, P =.03) and, less so, by CDC (5 of 24 versus 1 of 27 transplant recipients, P =.09). The difference between PBHSCT and BMT was further heightened when analysis was restricted to anti-HLA IgG Ab-negative donor/recipient pairs. In such a setting, early anti-HLA Ab was never detected after BMT but was repeatedly detected after PBHSCT (flow cytometry, 6 of 18 versus 0 of 17 transplant recipients, P =.02; CDC, 4 of 23 versus 0 of 26 transplant recipients, P =.04). Importantly, the PBHSCT-associated increase in anti-HLA Ab detection was observed despite a reduction in the median number of platelet-transfusion episodes per patient in PBHSC transplant versus BM transplant recipients (3 platelet-transfusion episodes [range, 1-21] in PBHSCT group vs 6 platelet-transfusion episodes [range, 3-33] in the BMT group; P =.02). In conclusion, this study strongly suggests that G-CSF-mobilized PBHSCT results in an increased incidence of circulating anti-HLA Abs and further confirms that the use of such a graft alters alloimmune Ab responses.

Adult↗

Dendritic cells: to where do they lead?

Dendritic cells are a heterogeneous population of bone marrow-derived cells present in most peripheral tissues. These cells are able to capture and present antigens to T cells. Such presentation can lead to two opposite outcomes: potent activation (immunogenicity) or inhibition (tolerance) of the immune response. The fine regulation of these two distinct functions is not completely understood to date. In this review, we discuss three potential variables that may influence dendritic cell function: the origin of dendritic cells, their maturation state, and their capture properties. Each hypothesis is illustrated with examples in the field of transplantation. Lastly, the criteria necessary for proposing tolerogenic dendritic cells to promote engraftment and long-term allograft survival are discussed.

Animals↗

Influence of ex vivo expansion and retrovirus-mediated gene transfer on primary T lymphocyte phenotype and functions.

To modulate alloreactivity after hematopoietic stem cell (HSC) transplantation, suicide gene-expressing donor T cells can be administered with an allogeneic T cell-depleted HSC graft. Immune competence of such cells is a critical issue. We have examined the impact of our ex vivo gene transfer protocol (12-day culture period including CD3/IL-2 activation, retrovirus-mediated gene transfer, and G418-based selection) on the phenotype and functional properties of gene-modified cells (GMC). GMC were compared with control cells that had been cultured in parallel with GMC, but nontransduced and nonselected, as well as with peripheral blood mononuclear cells (PBMC). Our data show that phenotypical modifications are similar in control cells and GMC, demonstrating that alterations result from the 12-day culture rather than from the transduction and/or selection process itself. Such modifications include a reversal of CD4/CD8 ratio, activated phenotype (increased expression of CD45RO, CD95, and HLA-DR), and acquisition or increased expression of co-stimulatory molecules (CD80, CD86, and CD40). This led to an enhanced allostimulating potential of GMC, as compared with resting T cells, when used as stimulating cells in mixed lymphocyte reactions. Conversely, when using them as responder cells in mixed lymphocyte reactions, GMC exhibited a rapid loss of alloreactivity that resulted both from culture-dependent and from transduction and/or selection-dependent events. In conclusion, the retrovirus-mediated gene transfer can be associated with major phenotypical and functional alterations that could have strong clinical implications (increased immunogenicity, reduced anti-leukemic effect). Thus, future T cell expansion protocols should try to improve not only cell expansion or gene transfer efficiency, but also T cell functions.

Antigens, CD↗

Cell-based therapy approaches using dying cells: from tumour immunotherapy to transplantation tolerance induction.

Cell-based therapies are promising approaches to treat uncontrolled pathologies, such as tumours. Apoptotic tumour cells have recently been proposed as a source of tumour-associated antigens to stimulate an efficient immune response. However, a complex relationship exists between apoptosis and the immune system. In this review, the different factors that may influence immune responses against apoptotic cells are detailed and discussed in the light of recent publications. These factors include the nature of the phagocytes and the receptors involved in apoptotic cell uptake, as well as the environment in which cells are dying. A possible distinction between apoptosis and necrosis by immune system sentinels adds a further level of complexity. The potential use of the immunomodulatory properties associated with apoptosis to favour engraftment and induce tolerance in transplantation is then discussed. In conclusion, this review will suggest appropriate conditions to efficiently and safely use apoptotic cells as a new cell therapy product.

Animals↗

Exposure to exogenous DNA can modify the sensitivity of the Fas apoptotic pathway.

BACKGROUND: Gene-transfer techniques are commonly employed for both in vitro and in vivo studies. However, modifications of the target cell following the introduction of the gene of interest are not often examined. These modifications can alter the immunogenicity and/or the susceptibility of the target cell to apoptosis and may produce unwanted consequences in vivo. METHODS: Gene transfer into the murine fibroblastic Psi-CRIP packaging cell line was performed using calcium phosphate precipitation, cationic liposome-DNA complexes or a retroviral RNA-mediated method. After gene transfer, Fas expression, cytokine production, and sensitivity to Fas ligand (FasL)-mediated death were assessed. RESULTS: Following transfection of a FasL expression vector by calcium phosphate precipitation, an unexpected increase was observed in apoptotic cell death in previously Fas-resistant Psi-CRIP cells. This apoptosis was due to Fas upregulation and an increase of sensitivity to FasL-mediated death. Other plasmids coding non-cytotoxic factors also modulated this apoptotic pathway. The co-stimulatory molecule CD80 was also upregulated. Exposure to naked DNA alone elicited the same response. The effect was not dependent on the methylation status of exogenous DNA, but was found to be dependent on the target cell type and might be avoided by the use of an RNA-mediated retroviral system. CONCLUSIONS: Plasmid transfection or simple exposure to naked DNA can increase sensitivity to apoptosis. The generation of FasL packaging cell lines is therefore limited by an increase in FasL/Fas-mediated apoptosis. These findings should be considered when using genetically modified transplantable cells in order to prevent elimination by host cytotoxic cells and in particular when cells are engineered using FasL.

3T3 Cells↗

Polybrene and interleukin-4: two opposing factors for retroviral transduction of bone-marrow-derived dendritic cells.

BACKGROUND: Gene transfer using retroviral transduction offers the advantage of long-term transgene expression in developing strategies that use dendritic cells (DCs) for immunotherapy. The goal of this study was to infect DCs in an immature state in order to take advantage of their proliferating and tolerogenic potential. METHODS: Immature DCs were generated from murine bone marrow (BM) using either GM-CSF alone or GM-CSF plus IL-4. The cells were transduced directly with retroviral supernatants or by co-culture with the GP + E-86 retroviral packaging cell line in the presence of two different cationic polymers: polybrene and protamine sulfate. Phenotypic and functional characterization of the transduced cells were then performed. RESULTS: Our results show a low efficiency of retroviral infection of DCs in the presence of polybrene. This cationic polymer was found to be directly cytotoxic to murine DCs and thus favored the growth of contaminating macrophages. This effect was not observed using protamine sulfate. Furthermore, stimulation by IL-4 early in the culture increased DC differentiation, proliferation and transduction. However, we found that DCs generated in GM-CSF plus IL-4 presented a more mature phenotype with an enhanced allogeneic stimulating activity. Finally, we showed that DCs themselves down-regulated transgene expression in the co-cultured packaging cell line in a promoter-dependent manner. CONCLUSIONS: We have defined optimal conditions to generate and transduce murine BM-derived DCs. This included: the use of protamine sulfate during exposure to retroviral infectious supernatant and the addition of IL-4 at an early stage of the culture. Nevertheless, this cytokine also induced DC maturation. These findings have potential implications in experimental gene therapy.

Animals↗

Can tolerogenic dendritic cells help to modulate allo-immune responses in the setting of hematopoietic cell transplantation?

Recent evidence suggests that recipient as well as donor dendritic cell (DC) subsets are implicated in hematopoietic engraftment, graft-vs.-host disease occurrence, immune reconstitution and graft-vs.-leukemia effects observed after allogeneic hematopoietic cell transplantation. Although further data are needed to better understand the precise role of different DC subsets, strategies based on their manipulation to obtain tolerogenic DC can be envisaged. Here, we propose that DC blocked in an immature stage, using immunosuppressive agents, or lymphoid DC can be adequate candidates to control the alloreactive conflict post-allograft.

Dendritic Cells↗