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Articles 1 - 3 of 3
Full-Text Articles in Cell and Developmental Biology
Blood Substitution Therapy Rescues The Brain Of Mice From Ischemic Damage, Xuefang Ren, Heng Hu, Imran Farooqi, James W. Simpkins
Blood Substitution Therapy Rescues The Brain Of Mice From Ischemic Damage, Xuefang Ren, Heng Hu, Imran Farooqi, James W. Simpkins
Faculty & Staff Scholarship
Acute stroke causes complex, pathological, and systemic responses that have not been treatable by any single medication. In this study, using a murine transient middle cerebral artery occlusion stroke model, a novel therapeutic strategy is proposed, where blood replacement (BR) robustly reduces infarctions and improves neurological deficits in mice. Our analyses of immune cell subsets suggest that BR therapy substantially decreases neutrophils in blood following a stroke. Electrochemiluminescence detection demonstrates that BR therapy reduces cytokine storm in plasma and ELISA demonstrates reduced levels of matrix metalloproteinase-9 (MMP-9) in the plasma and brains at different time points post-stroke. Further, we have …
Enhancement Of Immune Response Against Bordetella Spp. By Disrupting Immunomodulation, Monica C. Gestal, Laura K. Howard, Kalyan Dewan, Hannah M. Johnson, Mariette Barbier, Clare Bryant, Illiassou Hamidou Soumana, Israel Rivera, Bodo Lina, Uriel Blas-Machado, Eric T. Harvill
Enhancement Of Immune Response Against Bordetella Spp. By Disrupting Immunomodulation, Monica C. Gestal, Laura K. Howard, Kalyan Dewan, Hannah M. Johnson, Mariette Barbier, Clare Bryant, Illiassou Hamidou Soumana, Israel Rivera, Bodo Lina, Uriel Blas-Machado, Eric T. Harvill
Faculty & Staff Scholarship
Well-adapted pathogens must evade clearance by the host immune system and the study of how they do this has revealed myriad complex strategies and mechanisms. Classical bordetellae are very closely related subspecies that are known to modulate adaptive immunity in a variety of ways, permitting them to either persist for life or repeatedly infect the same host. Exploring the hypothesis that exposure to immune cells would cause bordetellae to induce expression of important immunomodulatory mechanisms, we identified a putative regulator of an immunomodulatory pathway. The deletion of btrS in B. bronchiseptica did not affect colonization or initial growth in the …
Systemic Inhibition Of Tissue-Nonspecific Alkaline Phosphatase Alters The Brain-Immune Axis In Experimental Sepsis, Allison L. Brichacek, Stanely A. Benkovic, Sreeparna Chakraborty, Divine C. Nwafor, Wei Wang, Sujung Jun, Duaa Dakhlallah, Werner Geldenhuys, Anthony B. Pinkerton, José Luis Millán, Candice M. Brown
Systemic Inhibition Of Tissue-Nonspecific Alkaline Phosphatase Alters The Brain-Immune Axis In Experimental Sepsis, Allison L. Brichacek, Stanely A. Benkovic, Sreeparna Chakraborty, Divine C. Nwafor, Wei Wang, Sujung Jun, Duaa Dakhlallah, Werner Geldenhuys, Anthony B. Pinkerton, José Luis Millán, Candice M. Brown
Faculty & Staff Scholarship
Tissue-nonspecific alkaline phosphatase (TNAP) is a ubiquitous enzyme present in many cells and tissues, including the central nervous system. Yet its functions at the brain-immune axis remain unclear. The goal of this study was to use a novel small molecular inhibitor of TNAP, SBI-425, to interrogate the function of TNAP in neuroimmune disorders. Following intraperitoneal (IP) administration of SBI-425, mass spectrometry analysis revealed that the SBI-425 does not cross the blood-brain barrier (BBB) in healthy mice. To elucidate the role of TNAP at the brain-immune axis, mice were subjected to experimental sepsis and received either vehicle or SBI-425 (25 mg/kg, …