Tubular IKK beta Deletion Alleviates Acute Ischemic Kidney Injury and Facilitates Tissue Regeneration

International journal of molecular sciences(2022)

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摘要
Acute kidney injury (AKI) is a common renal injury leading to relevant morbidity and mortality worldwide. Most of the clinical cases of AKI are caused by ischemia reperfusion (I/R) injury with renal ischemia injury followed by reperfusion injury and activation of the innate immune response converging to NF-kappa B pathway induction. Despite the clear role of NF-kB in inflammation, it has recently been acknowledged that NF-kappa B may impact other cell functions. To identify NF-kappa B function with respect to metabolism, vascular function and oxidative stress after I/R injury and to decipher in detail the underlying mechanism, we generated a transgenic mouse model with targeted deletion of IKK beta along the tubule and applied I/R injury followed by its analysis after 2 and 14 days after I/R injury. Tubular IKK beta deletion ameliorated renal function and reduced tissue damage. RNAseq data together with immunohistochemical, biochemical and morphometric analysis demonstrated an ameliorated vascular organization and mRNA expression profile for increased angiogenesis in mice with tubular IKK beta deletion at 2 days after I/R injury. RNAseq and protein analysis indicate an ameliorated metabolism, oxidative species handling and timely-adapted cell proliferation and apoptosis as well as reduced fibrosis in mice with tubular IKK beta deletion at 14 days after I/R injury. In conclusion, mice with tubular IKK beta deletion upon I/R injury display improved renal function and reduced tissue damage and fibrosis in association with improved vascularization, metabolism, reactive species disposal and fine-tuned cell proliferation.
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关键词
IKK beta, AKI, NF-kappa B, tissue regeneration
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