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    Oral Microbial Determinants of Saliva and Serum Lipopolysaccharide Activity

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    Lipopolysaccharide (LPS) is a virulence factor of gram-negative bacteria, and endotoxemia or translocation of LPS in serum plays a significant role in oral and systemic pathologies. The contribution of the oral microbiome composition to saliva LPS activity and endotoxemia remains unclear. We investigated whether salivary and serum LPS levels are associated with oral microbiome diversity, taxonomic profiles, and functional characteristics. The oral microbiome was analyzed using metagenomic sequencing of saliva from 298 individuals enrolled in a multicenter case-control study, SECRETO (NCT01934725). Serum and salivary LPS activities were measured, and multiple linear regression models were fitted to identify the microbial taxa that predicted LPS levels. MaAsLin2 (Microbiome Multivariable Associations with Linear Models) was used to determine the associations of microbial functional features and LPS levels. Salivary alpha diversity was positively associated with serum LPS but negatively associated with salivary LPS, smoking, and antibiotic use in the preceding 1 to 6 mo. Community composition (beta diversity) differed between the salivary LPS tertiles (P = 0.001) but not between serum LPS tertiles. In total, 10 oral taxa associated with serum LPS tertiles and 59 with salivary LPS tertiles were identified. Prevotella, Neisseria, Leptotrichia, and Porphyromonas had significant positive associations with salivary LPS, whereas Fusobacterium had a negative association. Among these genera, Prevotella sp. E13_17, P. gingivalis, L. wadei, and F. nucleatum were the species with the strongest associations. Among the 1,016 oral microbiome metabolic features, several were linked to the biosynthesis of LPS, lipid A, and O-antigen pathways. The oral microbiome composition was strongly associated with salivary LPS activity in addition to weaker links to serum LPS. Oral microbiota–derived LPS activity in saliva was associated with microbial metabolism characterized by the predominance of proliferation and biosynthesis pathways. Our study indicates that dysbiosis of the oral microbiome is a source of increased salivary and serum LPS activity

    Innovaatiokumppanuus : Julkista hankintaa vai valtiontukea?

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    A comparative evaluation of four open speech recognition systems across different demographics

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    Sales in the innovation process

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    In the B2B market, the sales function can aid the innovation process by integrating customer perspectives into the ideation and development phases of the innovation process and facilitating the commercialisation phase. Sales teams maintain interactive relationships with customers, partners and competitors, which uniquely positions them to observe customer needs and market opportunities. By acting as boundary spanners and knowledge brokers between customers and the organisation, sales teams can provide important market intelligence to the organisation, thereby enhancing the innovation process. Previous research has traced the evolution of the role of the sales function from a purely commercial focus to a more integral part of the early phases of innovation and has highlighted the shift towards recognising the vital role of salespeople in gathering and disseminating market intelligence. Thus, the sales function contributes to the innovation process by generating ideas, providing market intelligence, facilitating customer involvement and promoting customer acceptance of innovations

    Luovutusvaikutus ja liiallinen itseluottamus Suomen osakemarkkinoilla

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    The Relationship between Ownership Structure and Capital Structure

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    The removal of Escherichia coli during wastewater treatment to produce reusable water for agriculture

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    Secretory autophagy markers and pro-inflammatory cytokine secretion are upregulated in iPSC-RPE cells with dysfunctional proteasomal and autophagic clearance

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    This dataset includes AnnData objects and differential expression tables for our paper "Secretory autophagy markers and pro-inflammatory cytokine secretion are upregulated in iPSC-RPE cells with dysfunctional proteasomal and autophagic clearance"

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