Long-term low-dose ionizing radiation (LLIR) widely exists in human life and has been confirmed to have potential pathogenic effects on cancer and cardiovascular diseases. However, it is technically and ethically unfeasible to explore LLIR-induced phenotypic changes in the human cohort, leading t...
Radiation-induced lung injury (RILI) is a major complication of thoracic radiotherapy. A previous study has indicated an association between berberine (BBR) and reduced incidence of RILI. However, the underlying mechanisms remain unknown. Here we validated the radioprotective role of BBR in mouse...
Radiation-induced lung injury (RILI) is a severe side effect of radiation therapy, characterized by lung tissue damage, inflammation, and organ dysfunction. Although fecal microbiota transplantation (FMT) has shown potential in alleviating radiation-induced damage, its underlying mechanisms ...
Radiofrequency radiation (RFR) with specific parameters could alter brain function, yet the underlying mechanisms remain unclear. The gut-brain axis is reported to be important in regulating brain function. Therefore, this study used gut microbiota intervention, regulation of tryptophan metabolit...
SIRT5 deficiency caused widespread protein hypersuccinylation in cardiac tissue. Succinylation proteomic analysis revealed HADHB as the key SIRT5 target, with lysine 292 (K292) being the dominant succinylation site. Functional studies demonstrated that K292 succinylation impairs HADHB-mediated fa...
Radiofrequency radiation (RFR) with specific parameters could alter brain function, yet the underlying mechanisms remain unclear. The gut-brain axis is reported to be important in regulating brain function. Therefore, this study used gut microbiota intervention, regulation of tryptophan metabolit...