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Due to the anti-inflammatory and antioxidant properties of the and the pathological mechanisms of rhabdomyolysis in the kidney, this plant can be used to improve the symptoms of this disease. Then, in this study, we investigated the effects of this herb in improving kidney injury by rhabdomyolysis. Animals were divided into five groups: control, glycerol (received it for rhabdomyolysis induction), extract (received 12 mg/kg extract), and treatment groups with dexamethasone (0.

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Purpose: This study aimed to examine the impact of APS on acute kidney injury induced by rhabdomyolysis (RIAKI), exploring its association with macrophage M1 polarization and elucidating the underlying mechanisms.

Methods: C57BL/6J mice were randomly assigned to one of three groups: a normal control group, a RIAKI model group, and an APS treatment group. Techniques such as flow cytometry and immunofluorescence were employed to demonstrate that APS can inhibit the transition of renal macrophages to the M1 phenotype in RIAKI.

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This work comments on an article published in the recent issue of the . Rhabdomyolysis is a complex condition with symptoms such as myalgia, changes to urination, and weakness. With the potential for substantial kidney impairment, it has also been shown to be a severe complication of coronavirus disease 2019 (COVID-19).

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Article Synopsis
  • Engineered nanoparticles designed for kidney disease treatment may target diseased kidney cells but require a better understanding of their accumulation at the cellular level to improve effectiveness and reduce side effects.* ! -
  • Research using a mouse model with acute kidney injury showed that gold nanoparticles accumulate more in severely necrotic kidney cells, but their clearance is hindered by cellular debris during this late stage.* ! -
  • The study highlights the importance of developing new nanoparticles that can effectively reach and be absorbed by damaged kidney cells before they experience extensive necrosis for better drug delivery outcomes.* !
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Multiple site inflammation and acute kidney injury in crush syndrome.

Front Pharmacol

August 2024

Department of General Medicine Education, School of Medicine, Keio University, Tokyo, Japan.

Article Synopsis
  • - Crush syndrome is a common consequence of earthquakes that can lead to acute kidney injury caused by muscle breakdown (rhabdomyolysis) and is worsened by systemic inflammatory response syndrome (SIRS).
  • - A study using mice with rhabdomyolysis showed high levels of inflammatory markers in both serum and the peritoneal cavity, where inflammation was more pronounced in the peritoneum.
  • - Administering a novel peptide that inhibits inflammation in the intraperitoneal cavity helped reduce muscle damage and kidney injury, suggesting that targeting inflammation in multiple areas could be beneficial for treatment.
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