A publication about laboratory rodents and the human urge to know

WHAT IS HAPPENING
TO MICE?

A continuously updated record of scientific things being done to mice.

Recently rebuilt from preserved PubMed observations.

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Natural microbiota confer life-long protection against obesity via an early-life, immune-mediated effect on brown adipocytes.

Obesity, a major risk factor for metabolic disease, has increased in industrialized nations alongside a reduction in gut microbiota diversity. Reconstituting laboratory mice with complex, natural microbiota and commensals from wild mice resulted in protection against diet-induced obesity. These natural microbiota reduced weight gain in both male and female mice of different genetic backgrounds throughout their life and increased energy expenditure. Single-nuclei RNA sequencing identified a dominant adipocyte population in brown adipose tissue (BAT) with a transcriptional signature of increased thermogenic activity, while white adipose tissue mass and beiging were reduced. Protection against diet-induced obesity was transferable to adult germ-free mice via exposure to natural microbiota, indicating an association with the timing of immune response induction rather than BAT developmental programming. However, protection against diet-induced obesity did not require type 2 immune signaling, as shown in STAT6 knockout mice. Rather, it was associated with increased levels of chemokines and monocytes in BAT in early life, pointing to a role of infiltrating myeloid cells. Indeed, CCR2-deficient mice with natural microbiota lacked the BAT transcriptional signature of increased thermogenic activity, increased energy expenditure, and protection against diet-induced obesity that wild-type mice with natural microbiota exhibited. The latter was restored upon injection with wild-type bone marrow. Taken together, these findings identify a novel microbiota‒immune‒adipose tissue axis that results in increased BAT thermogenesis and improved energy balance throughout life.

Dec 1, 2026

Paeoniae decoction attenuates chronic colitis-associated intestinal fibrosis by suppressing TGF-β/Smad-mediated epithelial-mesenchymal transition and remodeling the metabolic microenvironment.

Paeoniae Decoction (PD) is a classic Chinese medicine formula for treating intestinal diseases. However, its direct intervention effect on intestinal fibrosis and the underlying molecular mechanisms have not been fully elucidated. To evaluate the effect of PD on inflammatory bowel disease (IBD) associated intestinal fibrosis and to systematically investigate its potential molecular mechanisms utilizing integrated multi-omics. The chemical constituents of PD were characterized and quantified utilizing ultra-high performance liquid chromatography-Quadrupole-Orbitrap mass spectrometry (LC-Q-Orbitrap-MS) and LC-MS/MS. A chronic experimental colitis-associated intestinal fibrosis mouse model lasting 56 days and involving four repeated cycles of dextran sulfate sodium (DSS) injury was established. The therapeutic efficacy of PD was evaluated through endoscopy, histopathological analysis, and collagen staining. Label-free quantitative proteomics and untargeted metabolomics and network pharmacology were employed to elucidate the target networks. In vitro mechanisms were further validated in TGF-β1-stimulated NCM460 cells using wound healing assays, immunofluorescence, and Western blotting to evaluate the epithelial-mesenchymal transition (EMT) process and the TGF-β/Smad signaling pathway. Finally, molecular docking was used to verify the direct binding of the main bioactive components of PD to the key pathway targets. Chemical profiling identified 16 common constituents across independent batches of PD. In vivo, PD administration significantly ameliorated intestinal fibrosis and reduced massive extracellular matrix (ECM) deposition in the mucosal and submucosal layers. Integrated omics analyses revealed that PD profoundly modulated the TGF-β signaling pathway, ECM-receptor interaction, and the Sphingolipid signaling pathway. Mechanistically, PD dose-dependently inhibited myofibroblast activation, downregulating the expression of α-SMA, Vimentin, Collagen I, and Collagen III. In vitro, PD serum suppressed TGF-β1-induced cell migration, preserved the epithelial marker E-cadherin, and inhibited the nuclear translocation of Snail by significantly decreasing the phosphorylation of Smad2 and Smad3. Furthermore, PD reversed pro-fibrotic sphingolipid metabolism and upregulated taurine and glutathione metabolism associated with antioxidant defense. PD effectively alleviates chronic colitis-associated intestinal fibrosis by inhibiting the TGF-β/Smad signaling pathway-mediated EMT process, reducing ECM deposition, and reprogramming the fibrotic metabolic microenvironment.

Dec 1, 2026

Dynamic flexibility of the murine gut microbiota during morphine disturbance enables escape from the stable dysbiosis that is associated with addiction-like behavior.

Although opioids are effective analgesics, they can lead to problematic drug use behaviors that underlie opioid use disorder (OUD). Opioids also cause gut microbiota dysbiosis, which is linked to altered opioid responses. We used a longitudinal paradigm of voluntary oral morphine self-administration to capture multiple facets of drug seeking and preserve both individual behavioral responses and individual gut microbiota variation to investigate the role of the gut microbiota in a mouse model of OUD. Although all the mice consumed morphine, only a subset of the mice that transitioned to a state we defined statistically as compulsive. In compulsive mice, morphine constricted natural variability and fragmented the microbiota community networks, which convergently reorganized to form robust novel connections post-morphine. In contrast, the more variable communities of non-compulsive mice were highly interconnected during morphine disturbance and displayed more continuity post-morphine, suggesting greater flexibility and adaptability. Compulsive mice displayed a greater loss of functional diversity and a shift in favor of potential pathobionts, whereas non-compulsive mice better preserved genera associated with gut health and broader functional diversity. These findings highlight the potential role of persistent and stable opioid-induced microbiota dysbiosis in long-term behavioral changes underlying OUD and contributing to vulnerability to relapse.

Recent research

  1. Not yet verifiedThis paper was discovered by the mouse-research search pipeline, but mouse involvement has not been confirmed.
    1-Deoxynojirimycin attenuates diabetic cardiomyopathy via PI3K/AKT-mediated mitochondrial protection and anti-apoptosis.
  2. Not yet verifiedThis paper was discovered by the mouse-research search pipeline, but mouse involvement has not been confirmed.
    Paliurus ramosissimus extract partially ameliorates AOM/DSS-induced colitis-associated colorectal cancer in mice: insights from transcriptomic and gut microbiota analyses.
  3. Not yet verifiedThis paper was discovered by the mouse-research search pipeline, but mouse involvement has not been confirmed.
    The cGAS-STING pathway in systemic lupus erythematosus and lupus nephritis: a review of novel therapeutic targets.
  4. Not yet verifiedThis paper was discovered by the mouse-research search pipeline, but mouse involvement has not been confirmed.
    Non-invasive urinary FTIR spectroscopy for early diagnosis and monitoring of diabetic nephropathy.
  5. Not yet verifiedThis paper was discovered by the mouse-research search pipeline, but mouse involvement has not been confirmed.
    Optimal dose window, formulation efficacy, and molecular mechanisms of curcumin in MASLD animal models: A systematic review and three-level meta-analysis.
  6. Not yet verifiedThis paper was discovered by the mouse-research search pipeline, but mouse involvement has not been confirmed.
    Apoptosis inhibitor of macrophage (AIM/CD5L) as a potential immunomodulator in feline injection-site sarcoma: a hypothesis on tumor-macrophage interactions.
  7. Not yet verifiedThis paper was discovered by the mouse-research search pipeline, but mouse involvement has not been confirmed.
    Danshen-Chuanxiong alleviates cerebral ischemia by regulating carnitine metabolism and angiogenesis via activating CPT1/HIF-1α signaling axis.
  8. Not yet verifiedThis paper was discovered by the mouse-research search pipeline, but mouse involvement has not been confirmed.
    Interferon regulatory factor 1 mediates ROS-dependent release of NETs in LPS-induced mouse pneumonia by interacting with matrix metalloproteinase 9.
  9. Not yet verifiedThis paper was discovered by the mouse-research search pipeline, but mouse involvement has not been confirmed.
    Targeting ROAM1 with UDP-GlcNAc nanosheets selective activates lysosomal AMPK to resolve metabolic dysfunction-associated steatotic liver disease.
  10. Not yet verifiedThis paper was discovered by the mouse-research search pipeline, but mouse involvement has not been confirmed.
    Jiajian Shuyu Pills ameliorates cerebral ischemia-reperfusion injury by regulation hippo signaling and the lipid metabolism-ferroptosis axis.
  11. Not yet verifiedThis paper was discovered by the mouse-research search pipeline, but mouse involvement has not been confirmed.
    A NANOBODY molecule that blocks MerTK ectodomain cleavage in vitro and in vivo.
  12. Not yet verifiedThis paper was discovered by the mouse-research search pipeline, but mouse involvement has not been confirmed.
    An oral-gut microbial metabolite links Fusobacterium nucleatum to aggravated myocardial ischemia-reperfusion injury.
  13. Not yet verifiedThis paper was discovered by the mouse-research search pipeline, but mouse involvement has not been confirmed.
    A liposome-hydrogel composite ameliorates UVB-induced mouse skin photoaging through integrated antioxidant and extracellular matrix remodeling pathways.
  14. Not yet verifiedThis paper was discovered by the mouse-research search pipeline, but mouse involvement has not been confirmed.
    Microbiome-driven alterations in tryptophan metabolism contribute to behavioral comorbidities in the Muc2 knockout mouse model of chronic colitis.
  15. Not yet verifiedThis paper was discovered by the mouse-research search pipeline, but mouse involvement has not been confirmed.
    Myeloid-derived MIF is a central regulator of MDSC-driven T-cell dysfunction in head and neck squamous cell carcinoma.
  16. Not yet verifiedThis paper was discovered by the mouse-research search pipeline, but mouse involvement has not been confirmed.
    Microbial metabolite Urolithin A protects against inorganic arsenic-induced gut barrier dysfunction in humanized AS3MT mice.
  17. Not yet verifiedThis paper was discovered by the mouse-research search pipeline, but mouse involvement has not been confirmed.
    Astragalin from Morus alba L. ameliorates high-fat diet-induced obesity-related metabolic disturbances in mice and is associated with hepatic AMPK/PI3K/AKT signaling.