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Hikichi, H.

Publications and source records attributed to Hikichi, H..

2 recordsLinked to original sources

Strain-dependent disease progression and necrotizing granuloma formation induced by virulent Mycobacterium avium complex strains in a murine model

Mycobacterium avium complex (MAC) is the leading cause of non-tuberculous mycobacterial pulmonary disease (NTM-PD), a chronic infection with a heterogeneous clinical course. Although murine models of MAC-PD have been developed, reproducing the key features of progressive human disease, including diverse pathological features and therapeutic sensitivities, remains challenging. In this study, we evaluated five clinical MAC strains, including a newly identified highly virulent isolate, NBRC112750, in immunocompetent BALB/c mice. Among these, FKJ-1 and NBRC112750 induced progressive pulmonary infection with increasing bacterial burdens and extensive lung involvement by 25 weeks post-infection. Notably, both strains led to the formation of necrotizing granulomas resembling those observed in M. tuberculosis-infected C3HeB/FeJ mice. These lesions featured neutrophilic infiltration, foamy macrophages, and collagen encapsulation. Using FKJ-1 strain, we also established an inhalation infection model, in which low-dose exposure reproduced necrotizing granulomas. Despite in vitro drug susceptibility, FKJ-1 infection exhibited poor response to standard therapy, highlighting strain-dependent variability in treatment efficacy. These findings establish a murine model that reflects both key pathological and therapeutic aspects of MAC-PD and provides a valuable platform for investigating MAC pathogenesis and evaluating novel therapies.

microbiology↗

Title Mafb Deficiency in Myeloid Cells Increases Susceptibility to Mycobacterium tuberculosis Infection in Mice

v-Maf avian musculoaponeurotic fibrosarcoma oncogene homolog B (MAFB) is a candidate gene associated with early tuberculosis onset identified by a genome-wide association study. Here, we investigated the role of Mafb in susceptibility to Mycobacterium tuberculosis (Mtb) infection in myeloid-specific Mafb-knockout (Mafb-cKO) mice. We infected bone marrow-derived macrophages (BMMs) from Mafb-cKO mice and Mafb-cKO mice with Mtb. The absence of Mafb promoted Mtb proliferation in BMMs. RNA sequencing (RNA-seq) revealed activation of the metabolic process and impairment of the response to type interferons (IFNs) in Mtb-infected BMMs from Mafb-cKO mice, which conforms to our previous findings in Mtb-infected human macrophages with MAFB knockdown. Mafb deficiency increased mortality and bacterial burden in the lungs and spleens during Mtb infection in mice. RNA-seq revealed weakened leukocyte or lymphocyte chemotaxis in Mtb-infected Mafb-cKO mouse lungs. Flow cytometry demonstrated an alteration in the proportion of immune cells in Mtb-infected mouse lungs due to Mafb deficiency. Together, Mafb in myeloid cells is involved not only in the functional antibacterial process of macrophages but also in immune cell recruitment in the lungs, thereby contributing to host defense against Mtb infection.

immunology↗