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Keywords = bipotent macrophage

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19 pages, 2631 KiB  
Article
Characterization of Macrophages and Osteoclasts in the Osteosarcoma Tumor Microenvironment at Diagnosis: New Perspective for Osteosarcoma Treatment?
by Anne Gomez-Brouchet, Julia Gilhodes, Nathalie Van Acker, Regis Brion, Corinne Bouvier, Pauline Assemat, Nathalie Gaspar, Sebastien Aubert, Jean-Marc Guinebretiere, Beatrice Marie, Frederique Larousserie, Natacha Entz-Werlé, Gonzague De Pinieux, Eric Mascard, Francois Gouin, Pierre Brousset, Marie-Dominique Tabone, Marta Jimenez, Marie-Cecile Le Deley, Jean-Yves Blay, Laurence Brugieres, Sophie Piperno-Neumann and Francoise Rédiniadd Show full author list remove Hide full author list
Cancers 2021, 13(3), 423; https://doi.org/10.3390/cancers13030423 - 23 Jan 2021
Cited by 23 | Viewed by 4715
Abstract
Biological and histopathological techniques identified osteoclasts and macrophages as targets of zoledronic acid (ZA), a therapeutic agent that was detrimental for patients in the French OS2006 trial. Conventional and multiplex immunohistochemistry of microenvironmental and OS cells were performed on biopsies of 124 OS2006 [...] Read more.
Biological and histopathological techniques identified osteoclasts and macrophages as targets of zoledronic acid (ZA), a therapeutic agent that was detrimental for patients in the French OS2006 trial. Conventional and multiplex immunohistochemistry of microenvironmental and OS cells were performed on biopsies of 124 OS2006 patients and 17 surgical (“OSNew”) biopsies respectively. CSF-1R (common osteoclast/macrophage progenitor) and TRAP (osteoclast activity) levels in serum of 108 patients were correlated to response to chemotherapy and to prognosis. TRAP levels at surgery and at the end of the protocol were significantly lower in ZA+ than ZA− patients (padj = 0.0011; 0.0132). For ZA+-patients, an increase in the CSF-1R level between diagnosis and surgery and a high TRAP level in the serum at biopsy were associated with a better response to chemotherapy (p = 0.0091; p = 0.0251). At diagnosis, high CD163+ was associated with good prognosis, while low TRAP activity was associated with better overall survival in ZA− patients only. Multiplex immunohistochemistry demonstrated remarkable bipotent CD68+/CD163+ macrophages, homogeneously distributed throughout OS regions, aside osteoclasts (CD68+/CD163−) mostly residing in osteolytic territories and osteoid-matrix-associated CD68−/CD163+ macrophages. We demonstrate that ZA not only acts on harmful osteoclasts but also on protective macrophages, and hypothesize that the bipotent CD68+/CD163+ macrophages might present novel therapeutic targets. Full article
(This article belongs to the Section Cancer Therapy)
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17 pages, 2474 KiB  
Article
PPARγ Controls Ectopic Adipogenesis and Cross-Talks with Myogenesis During Skeletal Muscle Regeneration
by Gabriele Dammone, Sonia Karaz, Laura Lukjanenko, Carine Winkler, Federico Sizzano, Guillaume Jacot, Eugenia Migliavacca, Alessio Palini, Béatrice Desvergne, Federica Gilardi and Jerome N. Feige
Int. J. Mol. Sci. 2018, 19(7), 2044; https://doi.org/10.3390/ijms19072044 - 13 Jul 2018
Cited by 43 | Viewed by 7129
Abstract
Skeletal muscle is a regenerative tissue which can repair damaged myofibers through the activation of tissue-resident muscle stem cells (MuSCs). Many muscle diseases with impaired regeneration cause excessive adipose tissue accumulation in muscle, alter the myogenic fate of MuSCs, and deregulate the cross-talk [...] Read more.
Skeletal muscle is a regenerative tissue which can repair damaged myofibers through the activation of tissue-resident muscle stem cells (MuSCs). Many muscle diseases with impaired regeneration cause excessive adipose tissue accumulation in muscle, alter the myogenic fate of MuSCs, and deregulate the cross-talk between MuSCs and fibro/adipogenic progenitors (FAPs), a bi-potent cell population which supports myogenesis and controls intra-muscular fibrosis and adipocyte formation. In order to better characterize the interaction between adipogenesis and myogenesis, we studied muscle regeneration and MuSC function in whole body Pparg null mice generated by epiblast-specific Cre/lox deletion (PpargΔ/Δ). We demonstrate that deletion of PPARγ completely abolishes ectopic muscle adipogenesis during regeneration and impairs MuSC expansion and myogenesis after injury. Ex vivo assays revealed that perturbed myogenesis in PpargΔ/Δ mice does not primarily result from intrinsic defects of MuSCs or from perturbed myogenic support from FAPs. The immune transition from a pro- to anti-inflammatory MuSC niche during regeneration is perturbed in PpargΔ/Δ mice and suggests that PPARγ signaling in macrophages can interact with ectopic adipogenesis and influence muscle regeneration. Altogether, our study demonstrates that a PPARγ-dependent adipogenic response regulates muscle fat infiltration during regeneration and that PPARγ is required for MuSC function and efficient muscle repair. Full article
(This article belongs to the Special Issue PPARs in Cellular and Whole Body Energy Metabolism)
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