Publications by authors named "L McCulloch"

Article Synopsis
  • PLX5622 is a small molecular inhibitor that targets the CSF1 receptor, primarily used to deplete macrophages in the central nervous system of C57BL/6 mice.
  • After one week of treatment, it was found to significantly reduce interstitial macrophages in the lungs and brains, leading to decreased infection from the fungus Cryptococcus neoformans.
  • The study highlights that while PLX5622 effectively reduces fungal lung infection, its impact relies on the presence of lymphocytes, as treatment does not alter fungal burden in lymphocyte-deficient mice.
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Background: Fatigue is a common complication of stroke that has a significant impact on quality of life. The biological mechanisms that underly post-stroke fatigue are currently unclear, however, reactivation of latent viruses and their impact on systemic immune function have been increasingly reported in other conditions where fatigue is a predominant symptom. Epstein-Barr virus (EBV) in particular has been associated with fatigue, including in long-COVID and myalgic encephalomyelitis/chronic fatigue syndrome, but has not yet been explored within the context of stroke.

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Tropical ecosystems face escalating global change. These shifts can disrupt tropical forests' carbon (C) balance and impact root dynamics. Since roots perform essential functions such as resource acquisition and tissue protection, root responses can inform about the strategies and vulnerabilities of ecosystems facing present and future global changes.

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Tropical forest root characteristics and resource acquisition strategies are underrepresented in vegetation and global models, hampering the prediction of forest-climate feedbacks for these carbon-rich ecosystems. Lowland tropical forests often have globally unique combinations of high taxonomic and functional biodiversity, rainfall seasonality, and strongly weathered infertile soils, giving rise to distinct patterns in root traits and functions compared with higher latitude ecosystems. We provide a roadmap for integrating recent advances in our understanding of tropical forest belowground function into vegetation models, focusing on water and nutrient acquisition.

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Microglial endolysosomal (dys)function is strongly implicated in neurodegenerative disease. Transcriptomic studies show that a microglial state characterised by a set of genes involved in endolysosomal function is induced in both mouse Alzheimer's disease (AD) models and human AD brain, and that the emergence of this state is emphasised in females. (encoding cystatin F) is among the most highly upregulated genes in these microglia.

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