Complex system modelling reveals oxalate homeostasis is driven by diverse oxalate-degrading bacteria
By illustrating how these bacteria interact within the metabolic network, readers can gain a deeper understanding of the complex ecological and functional relationships within microbial communities.
Complex system modelling reveals oxalate homeostasis is driven by diverse oxalate-degrading bacteria
However, the theoretical systems approach would benefit from further description, and some claims regarding oxalate bacterial metabolism in complex microbial communities could be strengthened. This ...
The second goal was to define diagnostic values for indicating periodontitis progression and stability, including comparison between the levels of periodontal pathogens in subgingival plaque from ...
Researchers have taken an important step in understanding the origins of complex life by recreating ... By using fungi and bacteria as model organisms, the study sheds new light on the evolution ...
We combined the ligature-induced mouse periodontitis (LIP) with transplantation of subgingival plaque ... is enough for patients’ bacteria colonizing. In contrast to single periodontal pathogens, ...
The aim of the multicenter study described here was to evaluate the diagnostic use of the bacterial content of subgingival plaque recovered from the deepest pockets in assessing disease ...
the microbial profile of supragingival plaque is thought to reflect the health status of the host, such as gestation (Lin et al., 2018), type 2 diabetes (Artese et al., 2015), and other conditions ...
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