CXCL14型
癌症研究
伊马替尼
髓系白血病
骨髓
干细胞
甲磺酸伊马替尼
细胞因子
免疫学
离体
生物
白血病
造血
酪氨酸激酶
CD38
医学
川地34
趋化因子
体内
免疫系统
细胞生物学
信号转导
CXCL10型
生物技术
作者
Monika B. Dolinska,Huan Cai,Alma Månsson,Jingyi Shen,Pingnan Xiao,Thibault Bouderlique,Xidan Li,Elory Leonard,Marcus C. Chang,Yuchen Gao,Juan Pablo Medina,Makoto Kondō,Lakshmi Sandhow,Anne‐Sofie Johansson,Stefan Deneberg,Stina Söderlund,Martin Jädersten,Johanna Ungerstedt,Magnus Tobiasson,Arne Östman
出处
期刊:Blood
[Elsevier BV]
日期:2023-04-05
卷期号:142 (1): 73-89
被引量:10
标识
DOI:10.1182/blood.2022016896
摘要
Although tyrosine kinase inhibitors are effective for treating chronic myeloid leukemia (CML), they often fail to eradicate the leukemia-initiating stem cells (LSCs), causing disease persistence and relapse. Evidence indicates that LSC persistence may be due to bone marrow (BM) niche protection. However, little is known about the underlying mechanisms. We here molecularly and functionally characterized BM niches in CML patients at diagnosis and revealed the altered niche composition and function in the CML patients. Long-term culture initiating cell (LTC-IC) assay showed that the mesenchymal stem cells from CML patients displayed an enhanced supporting capacity for normal and CML BM CD34+CD38- cells. Molecularly, RNA sequencing detected dysregulated cytokine and growth factor expression in CML patient BM cellular niches. Among them, CXCL14 was lost in the BM cellular niches in contrast to its expression in healthy BM. Restoring CXCL14 significantly inhibited CML LSC maintenance and enhanced their response to imatinib in vitro, and CML engraftment in vivo in NSG-SGM3 mice. Importantly, CXCL14 treatment dramatically inhibited CML engraftment in xenografted NSG-SGM3 mice, even to a greater degree than imatinib, and this inhibition persisted in patients with suboptimal TKI response. Mechanistically, CXCL14 upregulated inflammatory cytokine signaling but downregulated mTOR signaling and oxidative phosphorylation in CML LSCs. Together, we have discovered a suppressive role of CXCL14 in CML LSC growth. CXCL14 might offer a treatment option targeting CML LSCs.
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