Repair of dysfunctional bone marrow endothelial cells alleviates aplastic anemia

被引:0
作者
Shu-Qian Tang
Tong Xing
Zhong-Shi Lyu
Li-Ping Guo
Mi Liang
Chen-Yuan Li
Yuan-Yuan Zhang
Yu Wang
Lan-Ping Xu
Xiao-Hui Zhang
Xiao-Jun Huang
Yuan Kong
机构
[1] Peking University,Peking University People’s Hospital, Peking University Institute of Hematology, National Clinical Research Center for Hematologic Disease, Beijing Key Laboratory of Hematopoietic Stem Cell Transplantation, Collaborative Innovation Center
[2] Peking University,Peking
来源
Science China Life Sciences | 2023年 / 66卷
关键词
aplastic anemia; endothelial cell; N-acetyl-L-cysteine; hematopoietic stem cell; T cell;
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学科分类号
摘要
Aplastic anemia (AA) is a life-threatening disease characterized by bone marrow (BM) failure and pancytopenia. As an important component of the BM microenvironment, endothelial cells (ECs) play a crucial role in supporting hematopoiesis and regulating immunity. However, whether impaired BM ECs are involved in the occurrence of AA and whether repairing BM ECs could improve hematopoiesis and immune status in AA remain unknown. In this study, a classical AA mouse model and VE-cadherin blocking antibody that could antagonize the function of ECs were used to validate the role of BM ECs in the occurrence of AA. N-acetyl-L-cysteine (NAC, a reactive oxygen species scavenger) or exogenous EC infusion was administered to AA mice. Furthermore, the frequency and functions of BM ECs from AA patients and healthy donors were evaluated. BM ECs from AA patients were treated with NAC in vitro, and then the functions of BM ECs were evaluated. We found that BM ECs were significantly decreased and damaged in AA mice. Hematopoietic failure and immune imbalance became more severe when the function of BM ECs was antagonized, whereas NAC or EC infusion improved hematopoietic and immunological status by repairing BM ECs in AA mice. Consistently, BM ECs in AA patients were decreased and dysfunctional. Furthermore, dysfunctional BM ECs in AA patients led to their impaired ability to support hematopoiesis and dysregulate T cell differentiation toward proinflammatory phenotypes, which could be repaired by NAC in vitro. The reactive oxygen species pathway was activated, and hematopoiesis- and immune-related signaling pathways were enriched in BM ECs of AA patients. In conclusion, our data indicate that dysfunctional BM ECs with impaired hematopoiesis-supporting and immunomodulatory abilities are involved in the occurrence of AA, suggesting that repairing dysfunctional BM ECs may be a potential therapeutic approach for AA patients.
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页码:2553 / 2570
页数:17
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  • [1] Avecilla ST(2004)Chemokine-mediated interaction of hematopoietic progenitors with the bone marrow vascular niche is required for thrombopoiesis Nat Med 10 64-71
  • [2] Hattori K(2011)Stem cells and the vasculature Nat Med 17 1437-1443
  • [3] Heissig B(2010)Endothelial cells augment the suppressive function of CD4 J Immunol 184 5562-5570
  • [4] Tejada R(2004)CD25 Exp Hematol 32 1163-1172
  • [5] Liao F(2010)Foxp3 Cell Stem Cell 6 251-264
  • [6] Shido K(2015) regulatory T cells: involvement of programmed death-1 and IL-10 Blood 126 2443-2451
  • [7] Jin DK(2018)A mouse model of lymphocyte infusion-induced bone marrow failure Br J Haematol 182 870-886
  • [8] Dias S(2021)Endothelial cells are essential for the self-renewal and repopulation of Notch-dependent hematopoietic stem cells Br J Pharmacol 178 2041-2059
  • [9] Zhang F(2007)The hematopoietic stem cell niche in homeostasis and disease Blood 109 2365-2372
  • [10] Hartman TE(2010)Impairment of bone marrow endothelial progenitor cells in acute graft-versus-host disease patients after allotransplant Blood 116 4175-4184