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Heavy Metal-Gut Microbiota Interactions: Probiotics Modulation and Biosensors Detection

Liliana Anchidin-Norocel, Oana C. Iatcu, Andrei Lobiuc, Mihai Covasa

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Article toolsHeavy Metal-Gut Microbiota Interactions: Probiotics Modulation and Biosensors Detection

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Citation record

Year
2025
Journal
Biosensors
WikiBiome key
anchidin-norocel-2025-heavy-metal-gut-probiotics-biosensors
Why this source matters

Synthesizes metal-dysbiosis interactions with eight distinct probiotic detoxification mechanisms (biosorption, bioprecipitation, bioassimilation, biotransformation) and real-time biosensor monitoring of metal clearance. WikiBiome depends on this paper to link microbiota-mediated metal sequestration to barrier function recovery—establishing that probiotic interventions can interrupt the metal-dysbiosis feedback loop by enabling both metal excretion and restoration of tight junction integrity.

Criteria met: 1 · 3 · 4

Used in 21 visible records

microbeAkkermansia muciniphilametalArsenicdiseaseAutism Spectrum DisordermicrobeBacillusmicrobeBifidobacteriummicrobeLactobacillusmetalLeadmetalMercurymetalNickeldiseaseType 2 DiabetesdefenseDietary Iron and Gut EcologymechanismDietary Metal-Microbiome InteractionsmechanismDysbiosisdefenseDyshomeostasismechanismGut-Metal-Microbiome InteractionsmechanismGut MicrobiomemechanismHeavy MetalsmechanismMicrobiome-Derived MetabolitesmechanismOxidative StressmechanismPharmacomicrobiomicsmechanismProbiotics