[No authors listed]
Myocardial injury is one of the main symptoms of sepsis. However, the mechanisms underlying sepsisâinduced myocardial dysfunction remain unclear. In the present study, the concentration of cardiac troponin T (CTnT) in serum was measured using an enzymeâlinked immunosorbent assay kit. The levels of interleukin (IL)â1β and ILâ18 were assessed by reverse transcriptionâquantitative polymerase chain reaction (RTâqPCR) analysis and the level of malondialdehyde (MDA) was determined using a corresponding kit. Myocardial pathology was analyzed via hematoxylin and eosin staining. RTâqPCR analysis and western blotting and/or immunohistochemistry were used to quantify the expression levels of thioredoxinâinteracting protein (TNXIP), NODâlike receptor pyrin domain containing 3 (NLRP3), cleaved caspaseâ1, caspaseâ1, catalase and manganeseâsuperoxide dismutase (MnSOD). The viability of cells was determined using a cell counting kitâ8. Apoptosis and reactive oxygen species were examined using flow cytometry. Models of sepsisâinduced myocardial injury were successfully established; evidence included increases in the levels of CTnT, ILâ1β, ILâ18 and MDA and myocardial tissue damage in vivo, and decreased cell viability and improvements in ILâ1β and ILâ18 in vitro. The levels of TXNIP, NLRP3 and cleaved caspaseâ1 were upregulated in the sepsis models. Small interfering RNA targeting TNXNIP (siTXNIP) increased cell viability, reduced the apoptotic rate and attenuated the release of ILâ1β and ILâ18. The levels of TXNIP, NLRP3 and cleaved caspaseâ1 and production of were suppressed by siTXNIP, accompanied by increases in catalase and MnSOD. TXNIP/NLRP3 serves an important role in the development of sepsisâinduced myocardial damage.
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