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Lactoferrin vs. Ferrous Sulfate: Clinical Evidence Through the Lens of Microbial Metallomics
Clinical data show lactoferrin outperforms ferrous sulfate by modulating IL-6–hepcidin pathways central to microbial metallomics.
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Clinical data show lactoferrin outperforms ferrous sulfate by modulating IL-6–hepcidin pathways central to microbial metallomics.
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Review of copper in infectious disease, covering macrophage Cu bursts, fungal Cu regulation and nutritional immunity in organs.
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Review of how metal availability and immune cell function interact during infection, highlighting zinc, iron, manganese and copper.
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Review of nutritional immunity trace metals in host–pathogen interactions, focusing on Fe, Zn, Mn, Cu control and therapies.
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Summary Bioremediation is the use of living organisms (microbes, plants, or their enzymes) to transform, immobilize, or remove
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Microbiome medicine is an emerging discipline that studies how human-associated microbial communities contribute to health and disease and how they can be measured and intentionally modulated for prevention and therapy.
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Nutritional Immunity and Host–Pathogen Dynamics Nutritional immunity is a host-driven defense mechanism that restricts access to essential nutrients,
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Metallomics is a rapidly evolving interdisciplinary field focused on the comprehensive study of metal and metalloid species within
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Microbial metallomics is an interdisciplinary field that investigates the complex interactions between microorganisms and metal ions within biological