3 results match your criteria: "The Third People's Hospital of Bengbu Affiliated to Bengbu Medical University[Affiliation]"

Article Synopsis
  • * Experiments on rat models demonstrated that inhibiting miR-451 led to increased TSC1 levels and changes in the mTOR pathway, suggesting that miR-451 regulates these processes to mitigate ALI.
  • * The findings indicate a potential new treatment approach for ALI by targeting the TSC1/mTOR signaling pathway through miR-451, emphasizing the role of autophagy in macrophages.
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Colorectal cancer (CRC) is a highly malignant tumor with hypoxia being a crucial feature during its progression. This study utilized multiple independent CRC cohorts for bioinformatics analysis and in vitro experiments to investigate the role of hypoxia-related subgroups in CRC. Machine learning was employed to construct risk features associated with this subgroup and further explore its therapeutic value in CRC.

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Our previous study has shown that exosomes derived from human umbilical cord mesenchymal stem cells (hUCMSCs-exo) alleviated burn-induced acute lung injury (ALI). In this study, we explored a novel mechanism by which hUCMSCs-exo contributed to the inhibition of burn-induced ALI. The ALI rat model with severe burn was established for the in vivo experiments, and rats PMVECs were stimulated with the serum from burn-induced ALI rats for the in vitro experiments.

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