Graft Versus Host Disease (GVHD) of the Gastrointestinal (GI) Tract: Diagnostic Yield of Upper Versus Lower Endoscopic Biopsies and their Clinical Application

2012 ◽  
Vol 107 ◽  
pp. S726
Author(s):  
Ethan Miller ◽  
Luciana Funtowicz ◽  
Giovanni De Petris ◽  
James Slack ◽  
Jose Leis ◽  
...  
2021 ◽  
Vol 116 (1) ◽  
pp. S257-S257
Author(s):  
Sailaja Pisipati ◽  
Kevin Song ◽  
Suaka Kagbo-Kue ◽  
Jonathan A. Leighton ◽  
Kevin C. Ruff ◽  
...  

2011 ◽  
Vol 208 (2) ◽  
pp. 285-294 ◽  
Author(s):  
Shuichiro Takashima ◽  
Masanori Kadowaki ◽  
Kazutoshi Aoyama ◽  
Motoko Koyama ◽  
Takeshi Oshima ◽  
...  

Graft-versus-host disease (GVHD) is a major complication of allogeneic bone marrow transplantation (BMT), and damage to the gastrointestinal (GI) tract plays a critical role in amplifying systemic disease. Intestinal stem cells (ISCs) play a pivotal role not only in physiological tissue renewal but also in regeneration of the intestinal epithelium after injury. In this study, we have discovered that pretransplant conditioning regimen damaged ISCs; however, the ISCs rapidly recovered and restored the normal architecture of the intestine. ISCs are targets of GVHD, and this process of ISC recovery was markedly inhibited with the development of GVHD. Injection of Wnt agonist R-spondin1 (R-Spo1) protected against ISC damage, enhanced restoration of injured intestinal epithelium, and inhibited subsequent inflammatory cytokine cascades. R-Spo1 ameliorated systemic GVHD after allogeneic BMT by a mechanism dependent on repair of conditioning-induced GI tract injury. Our results demonstrate for the first time that ISC damage plays a central role in amplifying systemic GVHD; therefore, we propose ISC protection by R-Spo1 as a novel strategy to improve the outcome of allogeneic BMT.


Blood ◽  
2000 ◽  
Vol 95 (9) ◽  
pp. 2754-2759 ◽  
Author(s):  
Geoffrey R. Hill ◽  
James L. M. Ferrara

Acute graft-versus-host disease (GVHD), the major complication of allogeneic bone marrow transplantation (BMT), limits the application of this curative but toxic therapy. Studies of inflammatory pathways involved in GVHD in animals have shown that the gastrointestinal (GI) tract plays a major role in the amplification of systemic disease. Damage to the GI tract increases the translocation of inflammatory stimuli such as endotoxin, which promotes further inflammation and additional GI tract damage. The GI tract is therefore critical to the propagation of the “cytokine storm” characteristic of acute GVHD. Experimental approaches to the prevention of GVHD include reducing the damage to the GI tract by fortification of the GI mucosal barrier through novel “cytokine shields” such as IL-11 or keratinocyte growth factor. Such strategies have reduced GVHD while preserving a graft-versus-leukemia effect in animal models, and they now deserve formal testing in carefully designed clinical trials.


Blood ◽  
2008 ◽  
Vol 112 (11) ◽  
pp. 66-66 ◽  
Author(s):  
Shuichiro Takashima ◽  
Kazutoshi Aoyama ◽  
Motoko Koyama ◽  
Daigo Hashimoto ◽  
Takeshi Oshima ◽  
...  

Abstract Damage to the gastrointestinal (GI) tract by pretransplant conditioning regimen plays a critical role in amplifying graft-versus-host disease (GVHD). Thus protection of the GI tract from conditioning may represent a novel approach to prevent GVHD. R-Spondin1 (R-Spo1) is a novel class of soluble activator for Wnt/□-catenin signaling, and has potent and specific proliferative effects on the intestinal crypt cells; injection of R-Spo1 protects mice from chemotherapy-induced intestinal mucositis. We therefore hypothesized that administration of R-Spo1 could modulate GVHD by reducing the GI tract damage and improve outcome of allogeneic bone marrow transplantation (BMT). Lethally irradiated B6D2F1 (H-2b/d) mice were injected with 5 × 106 BM and 2 × 106 T cells from MHC-mismatched B6 (H-2b) donors on day 0. Mice were intravenously injected with 200 μg of R-Spo1 or diluent from days −3 to −1 and +1 to +3 after BMT. In vivo labeling assay of mitotic cells with BrdU demonstrated that the proliferative index, as determined by the percentages of BrdU-positive cells among crypt epithelial cells, was significantly greater in the small intestine of R-Spo1 treated mice than controls 4 days after BMT (57% ± 3% vs 48% ± 1%, P<0.05). Analysis of the mesenteric lymph nodes and spleens on day +7 demonstrated significantly reduced expansion of donor T cells in R-Spo1 treated recipients in association with reduced serum levels of IFN-□ and TNF-□ on day +7 when compared to controls (Table). GVHD was severe in allogeneic controls, with 12.5% survival by day +40, whereas 62.5% of R-Spo1-treated animals survived this period (Table). Histopathologic examination of the small and large bowel and liver showed significantly reduced GVHD pathology in R-Spo1 treated animals than in controls (Table). A flowcytometric analysis of the spleen and thymus after BMT showed that administration of R-Spo1 did not impair donor cell engraftment and T and B cell immune reconstitution. We next evaluated the impact of R-Spo1 on graft-versus-leukemia (GVL) effects. BMT was performed similarly as above with the addition of 5 × 104 host-type P815 leukemia cells (H-2d). All recipients of T cell-depleted BM died from leukemia by day +20 after BMT, while no leukemia death was observed in R-Spo1 treated allogeneic animals. Overall, R-Spo1 treatment improved outcome of allogeneic BMT by reducing GVHD, while maintaining immune reconstitution and GVL effects. Thus, administration of R-Spo1 reduces the GI tract damage and suppresses donor T cell activation and systemic GVHD, supporting a hypothesis that the GI tract plays a major role in the amplification of systemic GVHD. Brief treatment with R-Spo1 may serve as an effective adjunct to clinical regimens of GVHD prophylaxis. Pathology Scores Group Survivals on day+40 (%) Small bowel Large bowel Liver INF □ (ng/ml) TNF □ (pg/ml) TCD: T cell-depleted BMT, +T: T cell-repleted BMT, ND: not detected Data are expressed as mean ± SD. *P<0.01 vs control, **P<0.05 vs control TCD diluent 100 2.4± 0.9 3.5± 1.0 0.3± 0.3 ND ND +T diluent 12.5 8.3± 2.7 7.3± 1.9 2.0± 0.8 6.0 ± 2.4 103.7 ± 9.9 +T R-Spo1 62.5* 3.4±1.9** 3.9± 0.3** 0.8± 0.7** 2.3 ± 1.5** 55.4 ± 6.6**


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