Comparative evidence
Compare conditions
Put two canonical disease records side by side. The result is a shareable, deterministic comparison of what is shared, what is unique, and how much evidence each record currently carries.
- 20%
- weighted overlap
- 20
- shared signals
Comparison
Type 2 DiabetesandLong COVID
0 references occur in both reconciled evidence sets. Shared signals do not establish shared causes, diagnoses, or treatments.
- 30
- Type 2 Diabetes references
- 18
- Long COVID references
- 0
- shared references
Metals depleted or redistributed
1 sharedTaxa enriched
5 sharedTaxa depleted
5 sharedShared
Only in Type 2 Diabetes
Only in Long COVID
Host response elevated
3 sharedShared
Only in Type 2 Diabetes
Only in Long COVID
IL-1beta (Interleukin-1 Beta)IFN-gamma (Interferon Gamma)LPS In CirculationPD 1 On CD8TIM 3 On CD8AutoantibodiesCalprotectin (S100A8/A9)Zinc In Secretions
Host response depleted
2 sharedEcological state
1 sharedShared
SCFA Depletion
Only in Type 2 Diabetes
DysbiosisLPS ElevationBile Acid DysmetabolismImpaired Intestinal BarrierLipid PeroxidationReduced Microbial DiversityEndotoxemiaGut Barrier DisruptionBile Acid DysregulationIron Overload Oxidative StressFungal Overgrowth
Only in Long COVID
Self Perpetuating Dysbiosis LoopAnaerobe To Aerobe ShiftSCFA CollapseBacterial Translocation EndotoxemiaGut Lung Axis DisruptionGut Brain Axis DisruptionTryptophan AhR DysmetabolismVirome Co DysbiosisMulti Kingdom DysbiosisNon Linear Recovery TrajectoryStrain Level Diversity CollapseEstrobolome DysfunctionUremic Metabolite AccumulationHypoxia CellularAerobe BloomBarrier DysfunctionBacterial TranslocationMulti Kingdom Co DysbiosisNon Linear Recovery
Virulence and functional enzymes
2 sharedShared
SiderophoresLPS Biosynthesis Enzymes
Only in Type 2 Diabetes
LipopolysaccharideCholine TMA LyaseBile Acid DehydrataseCarbohydrate Fermentation EnzymesNickel-UreaseTMA Lyase CutC CutD
Only in Long COVID
LPS Synthesis TransportAdhesion Invasion FactorsBile Salt Hydrolase (BSH)Beta-GlucuronidasePolysaccharide DegradationBeta Lactamases
