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3. Asthma-protective agents in dust from traditional farm environments

4. Microbial regulation of hexokinase 2 links mitochondrial metabolism and cell death in colitis

6. Metabolic modeling reveals the aging-associated decline of host-microbiome metabolic interactions in mice

8. Metabolic Functions of Gut Microbes Associate With Efficacy of Tumor Necrosis Factor Antagonists in Patients With Inflammatory Bowel Diseases

12. Unraveling the Interplay Between Root Exudates, Microbiota, and Rhizosheath Formation in Pearl Millet

16. Distinct signatures of host–microbial meta-metabolome and gut microbiome in two C57BL/6 strains under high-fat diet

18. Clostridium sporogenes-derived metabolites protect mice against colonic inflammation

20. Microbial regulation of hexokinase 2 links mitochondrial metabolism and cell death in colitis

21. Dietary cellulose induces anti-inflammatory immunity and transcriptional programs via maturation of the intestinal microbiota

22. Disturbed gut microbiota and bile homeostasis in Giardia -infected mice contributes to metabolic dysregulation and growth impairment

24. Disturbed gut microbiota and bile homeostasis in Giardia-infected mice contributes to metabolic dysregulation and growth impairment

28. Sulfonolipids as novel metabolite markers of Alistipes and Odoribacter affected by high-fat diets

29. The Microbial Metabolite Butyrate Induces Expression of Th1-Associated Factors in CD4+ T Cells

30. Dietary fat and gut microbiota interactions determine diet-induced obesity in mice

31. Mass spectrometry based gut meta-metabolomics in obesity and type 2 Diabetes

32. Oral versus intravenous iron replacement therapy distinctly alters the gut microbiota and metabolome in patients with IBD

33. Mass spectrometry based gut meta-metabolomics in obesity and type 2 Diabetes

37. The Microbial Metabolite Butyrate Induces Expression of Th1- Associated Factors in CD4+ T Cells.

43. High-fat diet alters gut microbiota physiology in mice

46. High-fat diet alters gut microbiota physiology in mice.

47. The Microbial Metabolite Butyrate Induces Expression of Th1-Associated Factors in CD4 + T Cells.

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