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Dulmovits, B.

Publications and source records attributed to Dulmovits, B..

2 recordsLinked to original sources

A single cell atlas defines perinatal factors that drive murine bone marrow development

Processes that direct initial colonization and maturation of the bone marrow remain elusive, despite lifelong importance to hematopoiesis. Bone marrow mesenchymal and stromal cell (BMSC) maturation establishes supportive niches prior to hematopoietic stem cell (HSC) recruitment. We define mouse BMSC progenitor identities and temporal emergence in a developmental single cell atlas spanning fetal life through 18 months of age. We clarify Cxcl12-abundant reticular (CAR) cell and osteoblast development, including temporal emergence of signaling modalities that direct HSC quiescence and regenerative capacity. CAR cells are absent until birth, with a developmental block during fetal maturation related to transcriptional changes during perinatal life. Temporal changes in Early B Cell Factor (Ebf) 1-3 expression and activity correlate with CAR formation and niche establishment, including Ebf2 repression and induction of Ebf3 activities that direct metabolic changes. Changes in systemic physiology underlie these transcriptional changes, including perinatal induction of lipid metabolism, inflammation, and hypoxic signaling. These systemic factors direct CAR cell emergence after birth, providing temporal and developmental resolution underlying the colonization and maturation of the bone marrow environment.

developmental biology↗

IGF-1 from bone marrow Adipoq-lineage cells stimulates endocortical bone formation in mature female mice

Insulin-like growth factor 1 (IGF-1) is an anabolic signal promoting growth, differentiation and function of both embryonic and postnatal tissues. Both endocrine and paracrine functions of IGF-1 have been documented to regulate bone growth and bone marrow hematopoiesis. Local production of IGF-1 from various cell types may contribute differently to the overall bioactivity of IGF-1 in bone, but relevant sources and mechanisms are yet to be fully elucidated. Here we report that the Adipoq+ stromal cells are a notable source of IGF-1 in the bone marrow of postnatal mice. Deletion of IGF-1 with Adipoq-Cre diminished endocortical bone formation and cortical bone mass in mature female mice. On the other hand, the trabecular bone parameters or hematopoietic properties were not affected in mutant mice of either sex. The study uncovers a local source of IGF-1 in the bone marrow microenvironment that contributes to bone anabolic regulation in a site-specific manner. Lay SummaryThe insulin-like growth factor 1 (IGF-1) is known to play important roles in promoting bone growth and in regulating blood stem or progenitor cells. The factor is available both through the blood circulation and from the local production by cells in the bone tissue, but the functional contribution of each source is not well understood. Here we discover the non-blood cells in the bone marrow (bone marrow stromal cells) as a notable source of IGF-1 which specifically stimulates bone formation in the bone shaft of the long bone.

developmental biology↗