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Biology subjects

Ndlovu, H.

Publications and source records attributed to Ndlovu, H..

2 recordsLinked to original sources

Targeting ALOX5/LTA4H driven granuloma caseation as a host-directed strategy for control of TB associated lung damage

Tuberculosis remains one of the major global health challenges with those previously exposed presenting persisting pulmonary dysfunction. Therefore, improved control measures are still required to prevent or reduce the TB-induced immunopathology in affected individuals. Host directed therapies that target host factors, have been suggested to improve on current treatments against TB. We previously reported a potential role for proteins which metabolize the arachidonic acids during TB immunopathogenesis. The study, therefore, sought to demonstrate the potential role of these proteins in TB-induced immunopathology. Using immune-histopathological assays, the association of macrophage driven ALOX5 signaling with severe pulmonary immunopathology during TB was demonstrated. Furthermore, using both in vitro and in vivo assays, the data demonstrated the contribution of ALOX5 signaling to TB-induced granulomatous inflammation. Interception of the signaling pathway through clinically approved pharmaceutical inhibitors, resulted in reduced lung damage during the disease. The resolution of TB-induced lung pathology further contributed to increased bactericidal activity. Taken together, our data strongly suggest a role for macrophage driven inflammation via ALOX5 signaling which can be targeted for the development of therapeutic treatment to prevent exacerbated TB-induced pulmonary immunopathology.

immunology↗

Immunoglobulin M regulates airway hyperresponsiveness independent of T helper 2 allergic inflammation.

Allergic asthma is a disease driven by T helper 2 (Th2) cells, eosinophilia, airway hyperresponsiveness (AHR) and IgE-secreting B cells. Asthma is largely controlled by corticosteroids and {beta}2 adregenic receptor agonists that target and relax airway smooth muscle (ASM). Immunoglobulin M (IgM) isotype secreted by naive B cells is important for class switching but may have other undefined functions. We investigated the role of IgM in a house dust mite (HDM)-induced Th2 allergic asthma model. We sensitised wild-type (WT) and IgM-deficient (IgM KO) mice with HDM and measured AHR, and Th2 responses. We performed RNA sequencing on the whole lung of WT and IgM KO mice sensitised to saline or HDM. We validated our AHR data on human ASM by deleting genes using CRISPR and measuring contraction by single-cell force cytometry. We found IgM to be essential in AHR but not Th2 airway inflammation or eosinophilia. RNA sequencing of lung tissue suggested that IgM regulated AHR through modulating brain-specific angiogenesis inhibitor 1-associated protein 2-like protein 1 (Baiap2l1) and other genes. Deletion of BAIAP2L1 led to a differential reduction in human ASM contraction when stimulated with TNF- and Acetylcholine, but not IL-13. These findings have implications for future treatment of asthma beyond current therapies.

immunology↗