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Livak, F.

Publications and source records attributed to Livak, F..

4 recordsLinked to original sources

Single-cell lineage tracing identifies hemogenic endothelial cells in the adult mouse bone marrow

During mouse development, hematopoietic stem and progenitor cells (HSPC) originate from hemogenic endothelial cells (ECs) through a process of endothelial-to-hematopoietic transition. These HSPC are thought to fully sustain adult hematopoiesis. However, it remains unknown whether adult ECs retain hemogenic potential. Here we used in vivo genetic lineage tracking at population and single-cell (sc) levels, scRNA sequencing, and bone marrow transplantation to detect hemogenic ECs in adult mice. We identify and characterize bone marrow-resident, adult Cdh5/VE-Cadherin+ ECs that produce hematopoietic cell-progeny in vitro and in mice. These adult hemogenic ECs and their hematopoietic cell progeny give rise to hematopoietic cells following adoptive transfer into adult mice. Furthermore, blood cells generated from adult and developmental ECs comparably home to peripheral tissues, where they similarly contribute to inflammatory responses. Thus, our results identify previously unrecognized bone marrow-derived adult hemogenic ECs that generate HSPC and functional mature blood cells.

cell biology↗

Immune Niche Formation in Engineered Mouse Models Reveals Mechanisms of Tumor Dormancy

Residual tumor cells can persist in a dormant state during clinical remissions that may last decades. The mechanisms that lead to such growth control vs. eventual reactivation and macroscopic tumor outgrowth remain unclear. Here, we report data from a mouse model that reveals a key role of host immunity and the cellular and molecular mechanisms that control tumor dormancy. Abrogation of myeloid-specific TGF-{beta}RII expression (T{beta}RIImyeKO) resulted in an IFN-{gamma} rich immune microenvironment. IFN-{gamma} in turn elevated KLF4-mediated SLURP1 production in malignant cells, which is critical to the tumor cell quiescent state through interruption of fibronectin-integrin signaling pathways. The dormant tumor lesions were located in spatially localized immune niches rich in NK cells, cDCs, monocytes, and neutrophils, concomitant with tumor cell inactivation of NK cell immune surveillance through a CD200-CD200R1 mechanism. Our studies identify the IFN-{gamma}-KLF4-SLURP1 and CD200-CD200R1 axes as critical molecular drivers in tumor dormancy regulated by immune-tumor crosstalk. These insights provide enhanced mechanistic understanding of tumor dormancy in a mouse model suitable for further investigation of cancer treatment resistance and prevention of metastatic spread.

cancer biology↗

Chronic social defeat stress induces meningeal neutrophilia via type I interferon signaling

Animal models of stress and stress-related disorders are also associated with blood neutrophilia. The mechanistic relevance of this to symptoms or behavior is unclear. We used cytometry, immunohistochemistry, whole tissue clearing, and single-cell sequencing to characterize the meningeal immune response to chronic social defeat (CSD) stress in mice. We find that chronic, but not acute, stress causes meningeal neutrophil accumulation, and CSD increases neutrophil trafficking in vascular channels emanating from skull bone marrow (BM). Transcriptional analysis suggested CSD increases type I interferon (IFN-I) signaling in meningeal neutrophils. Blocking this pathway via the IFN-I receptor (IFNAR) protected against the anhedonic and anxiogenic effects of CSD stress, potentially through reduced infiltration of IFNAR+ neutrophils into the meninges from skull BM. Our identification of IFN-I signaling as a putative mediator of meningeal neutrophil recruitment may facilitate development of new therapies for stress-related disorders. One sentence summaryType I interferon sensing neutrophils accumulate in meninges of psychosocially stressed mice via skull bone marrow channels and are associated with the negative behavioral sequelae of stress; blockade of this pathway inhibits neutrophil trafficking and improves behavioral outcomes.

neuroscience↗

Bone marrow hemogenic endothelial cells contribute multilineage hematopoietic progenitors in adult mice

During development, hematopoietic stem/progenitor cells (HSPCs) originate from a subset of hemogenic endothelial cells (ECs) through a process of endothelial-to-hematopoietic transition (EHT). This process is temporally restricted to short developmental windows and generates HSPC with distinct capabilities for hematopoiesis. Although it is generally thought that adult hematopoiesis is sustained by HSCs derived from hemogenic endothelium during development, some observations point to EHT persistence in the late fetus/perinatally. Here we use lineage tracking and bioinformatics analysis to assess the presence of hemogenic endothelial cells in the adult mouse. Our analysis identifies a subset of bone marrow-resident adult endothelial cells, characterized by the expression of VE-Cadherin and the transcription factor RUNX1, that produce CD45+ hematopoietic cells. This EHT generates hematopoietic progenitors, and mature myeloid and lymphoid cells in the adult mouse. Our results reveal the identification of a distinct source of adult blood.

cell biology↗