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Biology subjects

Blacksell, I. A.

Publications and source records attributed to Blacksell, I. A..

2 recordsLinked to original sources

Formyl-peptide receptor type 2 activation mitigates secondary organ damage in inflammatory arthritis

Rheumatoid arthritis (RA) is associated with heart and lung dysfunction. Current therapies fail to attenuate such complications. Here, we identify formyl-peptide receptor type 2 (FPR2) as therapeutic target to treat heart and lung dysfunction associated with inflammatory arthritis. Arthritic mice on high levels of dietary homocysteine develop cardiac diastolic dysfunction and reduced lung compliance, mirroring two comorbidities in RA. Therapeutic administration of a small molecule FPR2 agonist (BMS986235) to hyper-homocysteine arthritic mice prevented diastolic dysfunction (monitored by echocardiography) and restored lung compliance. These tissue-specific effects were secondary to reduced neutrophil infiltration, modulation of fibroblast activation and phenotype (in the heart) and attenuation of monocyte and macrophage numbers (in the lung). A dual FPR1/2 agonist (compound 43) failed to prevent the reduction in lung compliance of arthritic mice and promoted accumulation of inflammatory monocytes and pro-fibrotic macrophages in lung parenchyma. This cellular response lies downstream of FPR1-mediated potentiation of CCL2-dependent monocyte chemotaxis and activation. This finding supports therapeutic development of selective FPR2 agonists to mitigate two impactful comorbidities associated with inflammatory arthritides.

pharmacology and toxicology↗

Immuno-moodulin is Differentially Expressed in T Cells and Plasma in Obsessive-Compulsive Disorder Patients

Immuno-moodulin (Imood), a recently discovered protein expressed in T cells, is associated with anxiety-like behavior in mice. However, its mechanism of action in modulating neuroimmune interactions remains unclear. To investigate this problem, we characterized Imood in human blood and immune cells using neutralizing monoclonal antibodies, revealing its nature as an intrinsically disordered protein (IDP) with unique expression patterns. Our findings indicate that Imood is predominantly expressed intracellularly in peripheral blood mononuclear cells (PBMCs), particularly T lymphocytes, but is absent in polymorphonuclear cells. Upon T-cell activation, Imood exhibits distinct mobilization patterns with increased surface expression. Bioinformatics analysis identified a strong propensity for oligomerization and liquid-liquid phase separation. We also found that T cells from patients with Obsessive-Compulsive-Disorder (OCD) displayed significantly elevated surface Imood expression compared to healthy controls, as well as an altered level of Imood polymerization in the plasma. Taken together, these results elucidate the expression patterns and structural properties of Imood in human immune cells, which open new avenues for OCD diagnostics, and prompt further study for understanding the aetiology of OCD and related disorders.

immunology↗