scholarly journals Bone Marrow Mesenchymal Stem Cells Suppress Lymphocyte Proliferation In Vitro but Fail to Prevent Graft-versus-Host Disease in Mice

2006 ◽  
Vol 176 (12) ◽  
pp. 7761-7767 ◽  
Author(s):  
Muriel Sudres ◽  
Françoise Norol ◽  
Aurélie Trenado ◽  
Sylvie Grégoire ◽  
Frédéric Charlotte ◽  
...  
Blood ◽  
2004 ◽  
Vol 104 (11) ◽  
pp. 4248-4248
Author(s):  
Jun-xia Lei ◽  
Shu-nong Li ◽  
Xiu-ming Zhang ◽  
Xin Du ◽  
Peng Xiang

Abstract Prolonged immunodeficiency after allogeneic bone marrow transplantation (BMT) causes significant morbidity and mortality from infection, while graft versus host disease (GVHD) after allogeneic BMT and immunosuppression therapies against GVHD further deteriorate this process. Adult bone marrow mesenchymal stem cells (MSC) have recently been shown to inhibit T-cell proliferation and reduce GVHD after allo-BMT. In this study, we characterized the effect of MSC on immunoreconstitution and hematopoietic-reconstitution after bone marrow transplantation. BMT model from Fischer344 rats (RT-1Al) to WF rats (RT-1Au) was established for this experiment. Effects of MSCs on hematopoietic reconstitution, immunoreconstitution and GVHD were studied by survival rate, peripheral blood counts, histological analysis and FACS at day +30 after transplantation. Immune function recovery were assessed by lymphocyte proliferation reaction stimulated with ConA and LPS and allogeneic mixed-lymphocyte reaction. At day 30 postransplant, compared with BMT groups, we observed that cotransplantation of MSC and bone marrow promoted the recovery of peripheral blood white blood cells (5.47±1.11x109/L vs7.12±1.70x109/L, p<0.05), lymphocytes and platelets. Accordingly, it was noticed that cotransplantation of MSC with BM not only improved recovery of bone marrow cellularity, but also enhanced B lymphopoiesis (4.66±1.03x109/L vs 6.05±1.39x109/L, p<0.05) and megakaryocytopoiesis (402.50±63.70 x109/L vs 594.33±121.09x109/L, p<0.05). MSC was also shown to improve thymic and spenic architecture reconstitution. Histological analysis showed that near normal thymus architecture and normal spenic architecture, with well-developed red and white pulp and intact lymphoid follicles in the cotransplantation group, while loss of demarcation between cortex and medulla in the thymus and lymphocytic depletion of spenic arteriolar sheaths in BM transplantation rats.The total number of thymus cells and spleen cells were also increased in cotransplantation group compared to only BM transplantation group. Most notable, the higher percentage of CD3+CD4+ was observed in the spleens of cotransplantation group (11.47±3.68% vs 19.14±4.03%, respectively), while no difference in the percentage of CD3+CD8+ between two groups (10.61±3.37% vs 12.13±2.27%, respectively). So the ratio of CD4+/CD8+ cells increased and inclined to normal in cotransplantation groups compared to only BM transplantation group.There are no difference in the percentage of natural killer (NK) cells and monocytes between BMT group and BMT with MSC group. The immuno-inhibitory effect of MSC on reducing GVHD in recipients of an MHC-mismatched BMT was also evident in our study, nonetheless, splenic cells from recipients of MSC cotransplantation group displayed improved non-specific proliferation capability (against ConA LPS stimulation) and alloreactivity (against the third party splenocytes) compared to BM transplantation group. In conclusion, rat bone marrow mesenchymal stem cells cotransplanted with BM improves hematopietic reconstitution and immunoreconstitution with alleviating graft-versus-host disease.


2021 ◽  
Vol 12 (4) ◽  
Author(s):  
Han-zhou Qi ◽  
Yi-ling Ye ◽  
Yuan Suo ◽  
Hong Qu ◽  
Hai-yan Zhang ◽  
...  

AbstractChronic graft-versus-host disease (cGVHD) is the main cause of non-relapse mortality after allogeneic hematopoietic stem cell transplantation (allo-HSCT). Mesenchymal stem cells (MSCs) in bone marrow (BM) remain unclear in the pathophysiology of cGVHD. In this study, we analyzed BM-MSCs from 66 patients after allo-HSCT, including 33 with active cGVHD and 33 without cGVHD. BM-MSCs showed similar morphology, frequency, phenotype, and proliferation in patients with or without cGVHD. MSCs from the active cGVHD group showed a decreased apoptosis rate (P < 0.01). Osteogenic capacity was increased while adipogenic capacity was decreased in the active cGVHD MSCs compared with no-cGVHD MSCs. The expressions of osteogenic gene RUNX2 and COL1A1 were higher (P < 0.001) while adipogenic gene PPAR-γ and FABP4 were lower (P < 0.001) in the active cGVHD MSCs than no-cGVHD MSCs. These changes were associated with the severity of cGVHD (P < 0.0001; r = 0.534, r = 0.476, r = −0.796, and r = −0.747, respectively in RUNX2, COL1A1, PPAR-γ, and FABP4). The expression of Wnt/β-catenin pathway ligand Wnt3a was increased in cGVHD-MSCs. The dysfunction of cGVHD-MSCs could be reversed by Dickkopf related protein 1(DKK1) to inhibit the binding of Wnt3a. In summary, the differentiation of BM-MSCs was abnormal in active cGVHD, and its underlying mechanism is the upregulated of Wnt3a through Wnt/β-catenin signaling pathway of MSCs.


Blood ◽  
2006 ◽  
Vol 108 (11) ◽  
pp. 5304-5304 ◽  
Author(s):  
Katarina Le Blanc ◽  
Francesco Frassoni ◽  
Lynne Ball ◽  
Edoardo Lanino ◽  
Berit Sundberg ◽  
...  

Abstract Mesenchymal stem cells (MSC) from adult bone marrow have the capacity to differentiate into several mesenchymal tissues and inhibit T-cell alloreactivity in vitro. Within the EBMT MSC expansion consortium we have used MSC to treat grades III–IV acute graft-versus-host disease (GvHD) in 40 patients. The MSC dose was median 1.0 (range 0.4–9) 10^6 cells/kg body weight of the recipient. No side-effects were seen after MSC infusions. Nineteen patients received one dose, 19 patients received two doses, two patients received three and five doses respectively. MSC donors were in five cases HLA-identical sibling donors, 19 haploidentical donors and 41 third-party HLA-mismatched donors. Among the 40 patients treated for severe acute GvHD, 19 had complete responses, nine showed improvement, seven patients did not respond, four had stable disease and one patient was not evaluated due to short follow-up. Twenty-one patients are alive between six weeks up to 3.5 years after transplantation. Nine of these patients have extensive chronic GvHD. One patient with ALL has recurrent leukaemia and one patient has denovo AML of recipient origin. We conclude that MSC have immunomodulatory and tissue repairing effects and should be further explored as treatment of severe acute GvHD in prospective randomized trials.


Blood ◽  
2006 ◽  
Vol 108 (11) ◽  
pp. 2918-2918 ◽  
Author(s):  
Katarina Le Blanc ◽  
Francesco Frassoni ◽  
Lynne Ball ◽  
Edoardo Lanino ◽  
Berit Sundberg ◽  
...  

Abstract Mesenchymal stem cells (MSC) from adult bone marrow have the capacity to differentiate into several mesenchymal tissues and inhibit T-cell alloreactivity in vitro. Within the EBMT MSC expansion consortium we have used MSC to treat grades III-IV acute graft-versus-host disease (GvHD) in 40 patients. The MSC dose was median 1.0 (range 0.4–9) 10^6 cells/kg body weight of the recipient. No side-effects were seen after MSC infusions. Nineteen patients received one dose, 19 patients received two doses, two patients received three and five doses respectively. MSC donors were in five cases HLA-identical sibling donors, 19 haploidentical donors and 41 third-party HLA-mismatched donors. Among the 40 patients treated for severe acute GvHD, 21 had complete responses, eight showed improvement, eight patients did not respond, two had stable disease and one patient was not evaluated due to short follow-up. Twenty patients are alive between six weeks up to 3.5 years after transplantation. Nine of these patients have extensive chronic GvHD. One patient with ALL has recurrent leukaemia and one patient has denovo AML of recipient origin. We conclude that MSC have immunomodulatory and tissue repairing effects and should be further explored as treatment of severe acute GvHD in prospective randomized trials.


Blood ◽  
2019 ◽  
Vol 134 (Supplement_1) ◽  
pp. 5599-5599
Author(s):  
Xin Zhang ◽  
Ke Zhao ◽  
Jiabao He ◽  
Andy Peng Xiang ◽  
Qifa Liu

Background: Insufficient thymic function of allogeneic hematopoietic stem cell transplantation (allo-HSCT) receptors results in continuous production of alloreactive T cells, which leads to the development of graft-versus-host disease (GVHD), especially chronic GVHD (cGVHD). We have previously found that patients with acute GVHD (aGVHD) treated with mesenchymal stem cells (MSCs) have increased thymic output and decreased incidence of cGVHD, thus hypothesized that MSCs may reduce the incidence of cGVHD by remodeling the thymus. Chemokine receptor 9 (CCR9), the receptor that specifically guides migration of T-lineage precursors into thymus, is also expressed on MSCs, and thus may be a key factor mediating MSCs homing to the thymus. This in turn allows MSCs to reduce GVHD by repairing thymus tissue structure and saving thymus function. Methods: We carried out studies in a murine GVHD model of fully MHC-mismatched myeloablative bone marrow transplantation (C57BL/6 to BALB/c), a model that can observe the prolongation of aGVHD to cGVHD. We randomly divided GVHD mice into four groups, including three MSCs treated groups and one untreated group. CCR9 over-expressed (MSC/CCR9+), knocked-down (MSC/CCR9-) and empty-load MSCs (MSC/Control) were generated and administrated intravenously at dose of 5 × 105 cells/infusion at 7th and 21th day post HCT to the treated groups respectively to compare their thymic homing ability, and therapeutic effects of GVHD with the untreated group. Clinical scores were recorded once every five days to evaluate GVHD symptoms. Mice of MSCs treated groups and the untreated group were sacrificed at 30d, 45d and 60d after HCT. Thymuses of each group were collected and assessed for size and weight before being manufactured into frozen sections or thymic single-cell suspension. We then analyzed the number and distribution of MSCs in the thymus of the treated groups to assess the role of CCR9 in thymic homing, and analyzed the expression of thymic T cells subsets (CD4+CD8-, CD4-CD8+, CD4+CD8+ T, CD4+CD25+Foxp3+Tregs), thymic epithelial cells (TECs) substes (CD45-CD326+Ly51+ cortical TECs and CD45-CD326+UEA-1+ medullary TECs) and the level of T cell receptor rearrangement excision circles (TRECs) in thymus among the four groups to evaluate the repair effect of MSCs for thymus. Radiation-pretreated murine TECs were cultured alone or co-cultured with murine MSCs in vitro to assess the effect of MSCs on damaged TECs. Results: The infusion of MSC/CCR9+ potently alleviated the clinical signs of GVHD and prolonged the survival of GVHD mice (P<0.05 versus MSC/CCR9- and untreated group). Significant increases in thymus size and weight were observed in the MSC/CCR9+ group, as well as the number of total thymocytes and the more organized cortical medullary structure compared to the other groups. MSCs enter the thymus from the microvascular region at the cortex-medium junction. MSC/CCR9+ were found to appear in the cortex-medium junction of thymus in a greater amount 24 hours after the first infusion, then distribute throughout the whole thymus and relocate in proximity with TECs 48 hours thereafter. MSC/Control could be observed in the cortical and cortex-medium junction, whereas MSC/CCR9- was observed only in the cortex-medium junction with a small amount of distribution. Immunofluorescence of thymus frozen sections showed that, compared with other groups, TECs had decreased apoptosis and significantly increased proliferation and maturation levels in MSC/CCR9+ group, indicating MSCs potently repaired injured TECs and promoted their proliferation and maturation. The number of TECs and its proportion of thymus stroma were significantly improved, including cortical TEC and medullary TECs. As for thymocyte, MSC/CCR9+ infusion significantly increased the number and proportion of CD4+CD8+T cells and Tregs, which were reported deficiency in GVHD thymus. Furthermore, MSC/CCR9+ administration resulted in a remarkable increase in the levels of TRECs in the thymocyte at 45d and 60d after HCT (P<0.05 versus MSC/CCR9- and untreated group). In vitro study showed co-cultured TECs had a decreased apoptosis and increased proliferation compared to TECs cultured alone. Conclusion: This study demonstrates that CCR9 plays an important role in guiding migration of MSCs to thymus and thus highly intensify their issue repair and immunomodulatory effect to rescue thymus function in GVHD model. Disclosures No relevant conflicts of interest to declare.


Blood ◽  
2007 ◽  
Vol 110 (11) ◽  
pp. 4974-4974 ◽  
Author(s):  
Je-Hwan Lee ◽  
Seong-Jun Choi ◽  
Jung-Hee Lee ◽  
Miee Seol ◽  
Young-Shin Lee ◽  
...  

Abstract Recent studies have shown that mesenchymal stem cells (MSCs) have profound immunomodulatory function, both in vitro and in vivo. There are several reports to treat effectively therapy-resistant graft-versus-host disease (GVHD) using ex vivo expanded MSCs. We performed a pilot clinical trial to treat intractable GVHD with bone marrow derived MSCs. All of 5 patients, 3 males and 2 females, with steroid-refractory GVHD were included in this study. Age range was 27 to 48 years old. Diagnosis of underlying disease was CML in 2, AML in 1, ALL in 1, and MDS in 1. Hematopoietic stem cell (HSC) donor was a sibling in 2 and an unrelated volunteer in 3. The donor of MSCs was a sibling in all patients: two donors were the same to HSC donors, but other three were not. About 20 mL of bone marrow was aspirated from donors and MSCs were cultured ex vivo. After about 3 weeks, MSCs were harvested for the first infusion, and 4 more weeks’ culture was done for the planned second infusion. The infused doses of MSCs were 5.3 to 6.9 x 106/kg for the first infusion and 1.8 to 7.0 x 106/kg for the second infusion. The onset of GVHD was post-transplant day 24 to 191 and the times from the onset of GVHD to the infusion of MSCs were 73 to 2469 days. There were no adverse events related to the infusion of MSCs. Three patients did not show any response to the treatment of MSCs for GVHD and two showed minimal response: transient improvement of jaundice and diarrhea without improvement of skin GVHD lesions in one patient, and improvement of performance status without significant increase of pulmonary function test parameters in another patient with lung involvement of GVHD. There were no significant changes in hemoglobin, and peripheral blood counts of platelets, leukocytes, lymphocytes, CD3+ cells, CD4+ cells, CD8+ cells, NK cells and B cells over 6 months’ period after the infusion of MSCs. Results of our pilot study suggest that the treatment effects of MSCs may be limited in patients with chronic established GVHD. Further studies on MSCs for GVHD should be focused on acute or exacerbated GVHD.


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