Extensive Remodeling of the Immune Microenvironment in B Cell Acute Lymphoblastic Leukemia
acute lymphoblastic leukemia; chemotherapy; immune microenvironment; monocytes; relapse; single cell.- Cancer Cell
- 38.585
- 2020 Jun 8;37(6):867-882.e12.
- Mouse,Human
- 流式
- 循环系统
- B细胞
- 白血病
- CD11b,CD3,CD34
Abstract
A subset of B cell acute lymphoblastic leukemia (B-ALL) patients will relapse and succumb to therapy-resistant disease. The bone marrow microenvironment may support B-ALL progression and treatment evasion. Utilizing single-cell approaches, we demonstrate B-ALL bone marrow immune microenvironment remodeling upon disease initiation and subsequent re-emergence during conventional chemotherapy. We uncover a role for non-classical monocytes in B-ALL survival, and demonstrate monocyte abundance at B-ALL diagnosis is predictive of pediatric and adult B-ALL patient survival. We show that human B-ALL blasts alter a vascularized microenvironment promoting monocytic differentiation, while depleting leukemia-associated monocytes in B-ALL animal models prolongs disease remission in vivo. Our profiling of the B-ALL immune microenvironment identifies extrinsic regulators of B-ALL survival supporting new immune-based therapeutic approaches for high-risk B-ALL treatment.Keywords: acute lymphoblastic leukemia; chemotherapy; immune microenvironment; monocytes; relapse; single cell.
金课堂之文献解析 文献原文请点击
本网站销售的所有产品及服务均不得用于人类或动物之临床诊断或治疗,仅可用于工业或者科研等非医疗目的。