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Rus, M. J.

Publications and source records attributed to Rus, M. J..

2 recordsLinked to original sources

The Sequential Threshold Model: A Unified Framework for Microbiome-Driven Periodontitis Progression

Periodontitis affects nearly one billion people, yet its episodic, site-specific, age-dependent progression is not explained by linear pathogen-burden models. We propose the Sequential Threshold Model (STM), a bistable framework in which progression at a previously diseased but currently stable site requires two sequential events. First, a systemic host gate opens: butyrate-driven histone deacetylase (HDAC) inhibition and NF-{kappa}B blockade reduce the senescence-associated secretory phenotype (SASP) surveillance program below the level needed to contain a dysbiotic biofilm. Second, a local microbial gate is crossed when a critical hemin threshold initiates gingipain-dependent positive feedback. Two longitudinal paired-site cohorts, subgingival metatranscriptomic and gingival crevicular fluid, support a six-month transcriptomic breakpoint, a predicted cytokine hierarchy, and primarily cell-state divergence. Formalized as an age-dependent ordinary differential equation, the STM explains five clinical phenomena as consequences of bistability and yields six testable predictions, with implications for epigenetic biomarkers and host-targeted therapy.

microbiology↗

Supraphysiological Estradiol During Ovarian Stimulation Reveals Microbiome Resilience and Prevotella Opportunism

How the oral ecosystem responds to acute, high-amplitude hormonal perturbations remains poorly defined. Here we exploit controlled ovarian hyperstimulation (COH), a pharmacologically defined model that elevates systemic estradiol (E2) [~]100-fold above physiological baseline to dissect the multi-layer response of the oral environment in ten healthy oocyte donors. Integrating paired serum and salivary hormone quantification with subgingival metatranscriptomics, we identify a dual principle governing the oral ecosystem under acute endocrine stress. First, salivary E2 reliably tracks intra-individual systemic dynamics, confirmed by robust linear regression, establishing saliva as a non-invasive endocrine proxy even under supraphysiological conditions. Second, despite the dramatic hormonal surge, the subgingival metatranscriptome exhibited functional resilience with no differentially expressed genes detected across two independent bioinformatic pipelines while a core of 20,687 genes remained stably expressed at both timepoints, underscoring the robustness of established biofilm communities. This global stability was selectively broken by four Prevotella species, whose abundance increased proportionally to salivary E2 elevation, consistent with their steroid hormone auxotrophy. Together, these findings reveal that the subgingival microbiome is functionally buffered against acute hormonal perturbation yet harbors estrogen-sensitive taxa capable of exploiting endocrine surges as ecological opportunities, with potential implications for reproductive and systemic inflammatory health.

microbiology↗