Immunophenotypic and Morphometric Evaluation of Bone Marrow Macrophage Culture Stimulated by Sodium Aminodihydrophthalazinedione In Vitro

2021 ◽  
Vol 15 (6) ◽  
pp. 594-603
Author(s):  
V. A. Pozdina ◽  
U. V. Zvedeninova ◽  
M. V. Ulitko ◽  
I. G. Danilova ◽  
M. T. Abidov
2020 ◽  
pp. annrheumdis-2020-217470
Author(s):  
Grant S Schulert ◽  
Alex V Pickering ◽  
Thuy Do ◽  
Sanjeev Dhakal ◽  
Ndate Fall ◽  
...  

ObjectivesSystemic juvenile idiopathic arthritis (SJIA) confers high risk for macrophage activation syndrome (MAS), a life-threatening cytokine storm driven by interferon (IFN)-γ. SJIA monocytes display IFN-γ hyper-responsiveness, but the molecular basis of this remains unclear. The objective of this study is to identify circulating monocyte and bone marrow macrophage (BMM) polarisation phenotypes in SJIA including molecular features contributing to IFN response.MethodsBulk RNA-seq was performed on peripheral blood monocytes (n=26 SJIA patients) and single cell (sc) RNA-seq was performed on BMM (n=1). Cultured macrophages were used to define consequences of tripartite motif containing 8 (TRIM8) knockdown on IFN-γ signalling.ResultsBulk RNA-seq of SJIA monocytes revealed marked transcriptional changes in patients with elevated ferritin levels. We identified substantial overlap with multiple polarisation states but little evidence of IFN-induced signature. Interestingly, among the most highly upregulated genes was TRIM8, a positive regulator of IFN-γ signalling. In contrast to PBMC from SJIA patients without MAS, scRNA-seq of BMM from a patient with SJIA and MAS identified distinct subpopulations of BMM with altered transcriptomes, including upregulated IFN-γ response pathways. These BMM also showed significantly increased expression of TRIM8. In vitro knockdown of TRIM8 in macrophages significantly reduced IFN-γ responsiveness.ConclusionsMacrophages with an ‘IFN-γ response’ phenotype and TRIM8 overexpression were expanded in the bone marrow from an MAS patient. TRIM8 is also upregulated in SJIA monocytes, and augments macrophage IFN-γ response in vitro, providing both a candidate molecular mechanism and potential therapeutic target for monocyte hyper-responsiveness to IFNγ in cytokine storms including MAS.


Blood ◽  
1972 ◽  
Vol 40 (1) ◽  
pp. 62-69 ◽  
Author(s):  
Martin J. Cline ◽  
Margaret A. Sumner

Abstract Mouse bone marrow cells were cultured in vitro under conditions that allowed little granulopoiesis but permitted proliferation of mononuclear phagocytes. During 10 days’ culture, the population gradually shifted from a preponderance of undifferentiated blast cells and promonocytes to macrophages. Cells up to the A (immature) macrophage stage were capable of DNA synthesis and mitosis. B (mature) macrophages were nondividing. Blast cells were not phagocytic and lacked glass adhesiveness and demonstrable surface receptors for IgG immunoglobulin. With progressive cellular maturation, peroxidase activity disappeared after the monocyte stage. Glass adhesiveness, phagocytic ability, and surface receptors for immunoglobulins appeared to increase with cell maturation from the promonocyte through the macrophage stage of development.


Author(s):  
Glenn M. Buchanan ◽  
Dennis A. Stewart

In vitro bone-marrow derived colonies cultured in agar and prepared in Epon 812 for electron microscopy occassionally produce blocks that are too soft for sectioning. We attribute this softness to the retention, after standard dehydration, of water by the agar and to the relatively slow penetration of the agar by Epon-based embedding media. The agar cannot be removed or replaced since this would disrupt the colony integrity and prevent the study of cell-cell relationships. This paper describes the procedures and results of more extensive specimen dehydration and of embedding with Epon-replacement formulations.


2013 ◽  
Author(s):  
Melo Ocarino Natalia de ◽  
Silvia Silva Santos ◽  
Lorena Rocha ◽  
Juneo Freitas ◽  
Reis Amanda Maria Sena ◽  
...  

2016 ◽  
Author(s):  
Oliveira Flavia Amadeu de ◽  
Pereira Amanda Amaral ◽  
Silva Ventura Talita da ◽  
Buzalaf Marilia Afonso Rabelo ◽  
Oliveira Rodrigo Cardoso de ◽  
...  

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