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1. Effects of Early Life Exposures to the Aryl Hydrocarbon Receptor Ligand TCDF on Gut Microbiota and Host Metabolic Homeostasis in C57BL/6J Mice

3. High fat intake sustains sorbitol intolerance after antibiotic-mediated Clostridia depletion from the gut microbiota

4. The global anaerobic metabolism regulator fnr is necessary for the degradation of food dyes and drugs by Escherichia coli

5. Variety of Fruit and Vegetables and Alcohol Intake are Associated with Gut Microbial Species and Gene Abundance in Colorectal Cancer Survivors

6. Mild SARS-CoV-2 infection results in long-lasting microbiota instability

7. Associations between the Gut Microbiota, Race, and Ethnicity of Patients with Colorectal Cancer: A Pilot and Feasibility Study

8. Forging the microbiome to help us live long and prosper

9. SIMMER employs similarity algorithms to accurately identify human gut microbiome species and enzymes capable of known chemical transformations

10. Systems biology elucidates the distinctive metabolic niche filled by the human gut microbe Eggerthella lenta

11. Effects of caloric restriction on the gut microbiome are linked with immune senescence

12. Host and gut bacteria share metabolic pathways for anti-cancer drug metabolism

17. Human gut bacteria produce ΤΗ17-modulating bile acid metabolites

18. Microbial signals, MyD88, and lymphotoxin drive TNF-independent intestinal epithelial tissue damage

19. Genetic manipulation of the human gut bacterium Eggerthella lenta reveals a widespread family of transcriptional regulators

20. Synthetic glycans control gut microbiome structure and mitigate colitis in mice

21. Human gut bacterial metabolism drives Th17 activation and colitis

22. Human gut bacterial metabolism drives Th17 activation and colitis.

23. Reporting guidelines for human microbiome research: the STORMS checklist

24. Phage-delivered CRISPR-Cas9 for strain-specific depletion and genomic deletions in the gut microbiome

25. Caloric restriction disrupts the microbiota and colonization resistance

26. Dissecting the contribution of host genetics and the microbiome in complex behaviors

27. Methotrexate impacts conserved pathways in diverse human gut bacteria leading to decreased host immune activation

28. Functional genetics of human gut commensal Bacteroides thetaiotaomicron reveals metabolic requirements for growth across environments

29. The East Asian gut microbiome is distinct from colocalized White subjects and connected to metabolic health

30. A thermogenic fat-epithelium cell axis regulates intestinal disease tolerance

31. Investigating Ketone Bodies as Immunometabolic Countermeasures against Respiratory Viral Infections

32. Gut microbiota–specific IgA+ B cells traffic to the CNS in active multiple sclerosis

33. Deconstructing Mechanisms of Diet-Microbiome-Immune Interactions

34. Bacterial metabolism rescues the inhibition of intestinal drug absorption by food and drug additives

35. A Genomic Toolkit for the Mechanistic Dissection of Intractable Human Gut Bacteria

36. Ketogenic Diets Alter the Gut Microbiome Resulting in Decreased Intestinal Th17 Cells

37. Non-catalytic ubiquitin binding by A20 prevents psoriatic arthritis–like disease and inflammation

38. Sensing Living Bacteria in Vivo Using d‑Alanine-Derived 11C Radiotracers

39. A widely distributed metalloenzyme class enables gut microbial metabolism of host- and diet-derived catechols.

40. Genetic basis for the cooperative bioactivation of plant lignans by Eggerthella lenta and other human gut bacteria

41. A widely distributed metalloenzyme class enables gut microbial metabolism of host- and diet-derived catechols

42. 2017 NIH-wide workshop report on “The Human Microbiome: Emerging Themes at the Horizon of the 21st Century”

44. Expansion of a bacterial operon during cancer treatment ameliorates drug toxicity

45. Using DNA Metabarcoding To Evaluate the Plant Component of Human Diets: a Proof of Concept.

46. CRISPR-Cas System of a Prevalent Human Gut Bacterium Reveals Hyper-targeting against Phages in a Human Virome Catalog

47. Nutrient Sensing in CD11c Cells Alters the Gut Microbiota to Regulate Food Intake and Body Mass.

48. Meta-Analysis Reveals Reproducible Gut Microbiome Alterations in Response to a High-Fat Diet

49. Precision Medicine Goes Microscopic: Engineering the Microbiome to Improve Drug Outcomes

50. Discovery and inhibition of an interspecies gut bacterial pathway for Levodopa metabolism.

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