Scinovex
article Open AccessTop 1% cited

Acute myeloid leukemia transforms the bone marrow niche into a leukemia-permissive microenvironment through exosome secretion

Leukemia · 2017 · Vol. 32(3) · pp. 575–587
Bijender KumarMayra GarcíaLihong WengXiaoman JungJodi MurakamiXingbin HuTinisha McDonaldAlex W. H. LinAshish KumarDavid DiGiustoAnthony S. SteinVinod PullarkatSusanta HuiNadia CarlessoYH KuoRavi BhatiaGuido MarcucciC. C. Chen

Abstract

Little is known about how leukemia cells alter the bone marrow (BM) niche to facilitate their own growth and evade chemotherapy. Here, we provide evidence that acute myeloid leukemia (AML) blasts remodel the BM niche into a leukemia growth-permissive and normal hematopoiesis-suppressive microenvironment through exosome secretion. Either engrafted AML cells or AML-derived exosomes increased mesenchymal stromal progenitors and blocked osteolineage development and bone formation in vivo. Preconditioning with AML-derived exosomes 'primed' the animals for accelerated AML growth. Conversely, disruption of exosome secretion in AML cells through targeting Rab27a, an important regulator involved in exosome release, significantly delayed leukemia development. In BM stromal cells, AML-derived exosomes induced the expression of DKK1, a suppressor of normal hematopoiesis and osteogenesis, thereby contributing to osteoblast loss. Conversely, treatment with a DKK1 inhibitor delayed AML progression and prolonged survival in AML-engrafted mice. In addition, AML-derived exosomes induced a broad downregulation of hematopoietic stem cell-supporting factors (for example, CXCL12, KITL and IGF1) in BM stromal cells and reduced their ability to support normal hematopoiesis. Altogether, this study uncovers novel features of AML pathogenesis and unveils how AML cells create a self-strengthening leukemic niche that promotes leukemic cell proliferation and survival, while suppressing normal hematopoiesis through exosome secretion.

Extracellular vesicles in diseaseHematopoietic Stem Cell TransplantationReproductive System and PregnancyExosomeMyeloid leukemiaHaematopoiesisBone marrowCancer researchStromal cellLeukemiaMicrovesiclesProgenitor cellBiology

MeSH terms

AnimalsBone MarrowCell LineDisease Models, AnimalHematopoietic Stem CellsHumansOsteoblastsBiomarkersLeukemia, Myeloid, AcuteMice, KnockoutHematopoietic Stem Cell TransplantationCoculture TechniquesIntercellular Signaling Peptides and ProteinsMiceX-Ray Microtomography

Funding

  • American Cancer Society
  • Ralph M. Parsons Foundation
  • Stop Cancer
  • National Institutes of Health
  • National Cancer Institute
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.