Therapeutic applications of macrophage colony-stimulating factor-1 (CSF-1) and antagonists of CSF-1 receptor (CSF-1R) signaling

Терапевтическое применение колониестимулирующего фактора макрофагов-1 (CSF-1) и антагонистов сигнального пути рецептора CSF-1 (CSF-1R)
David Hume, Kelli P. A. MacDonald
2011-12-21

CSF-1/CSF-1R signalingCSF-1R inhibitorsmacrophage colony-stimulating factormacrophage-mediated cancer therapytissue repair
Macrophage-colony stimulating factor (CSF-1) signaling through its receptor (CSF-1R) promotes the differentiation of myeloid progenitors into heterogeneous populations of monocytes, macrophages, dendritic cells, and bone-resorbing osteoclasts. In the periphery, CSF-1 regulates the migration, proliferation, function, and survival of macrophages, which function at multiple levels within the innate and adaptive immune systems. Macrophage populations elicited by CSF-1 are associated with, and exacerbate, a broad spectrum of pathologies, including cancer, inflammation, and bone disease. Conversely, macrophages can also contribute to immunosuppression, disease resolution, and tissue repair. Recombinant CSF-1, antibodies against the ligand and the receptor, and specific inhibitors of CSF-1R kinase activity have been each been tested in a range of animal models and in some cases, in patients. This review examines the potential clinical uses of modulators of the CSF-1/CSF-1R system. We conclude that CSF-1 promotes a resident-type macrophage phenotype. As a treatment, CSF-1 has therapeutic potential in tissue repair. Conversely, inhibition of CSF-1R is unlikely to be effective in inflammatory disease but may have utility in cancer.
1
CSF-1 promotes a resident-type macrophage phenotype and may therapeutically support tissue repair; CSF-1R inhibition is unlikely to treat inflammatory disease but may benefit cancer treatment.
2
CSF-1-elicited macrophage populations can exacerbate cancer, inflammation, and bone disease, while macrophages may also support immunosuppression, resolution, and tissue repair.
3
CSF-1/CSF-1R signaling drives myeloid progenitor differentiation into monocytes, macrophages, dendritic cells, and osteoclasts.
4
Peripheral CSF-1 regulates macrophage migration, proliferation, function, and survival across innate and adaptive immune responses.
5
Recombinant CSF-1, ligand or receptor antibodies, and CSF-1R kinase inhibitors have been evaluated in animal models and, in some cases, patients.

the CSF-1/CSF-1R signaling system and macrophage populations

the therapeutic effects and clinical applications of CSF-1/CSF-1R modulation, including CSF-1 treatment and CSF-1R inhibition, in tissue repair, inflammatory disease, cancer, and bone disease

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2011-12-21
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David Hume
Kelli P. A. MacDonald
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