A Cell-Penetrating Peptide That Blocks Toll-Like Receptor Signaling Protects Kidneys against Ischemia-Reperfusion Injury.
Su Woong JungJung-Woo SeoSeon Hwa ParkYang-Gyun KimJu-Young MoonSang-Dun ChoiSang-Ho LeePublished in: International journal of molecular sciences (2021)
Renal ischemia-reperfusion injury (IRI) is involved in the majority of clinical conditions that manifest as renal function deterioration; however, specific treatment for this type of injury is still far from clinical use. Since Toll-like receptor (TLR)-mediated signaling is a key mediator of IRI, we examined the effect of a multiple-TLR-blocking peptide named TLR-inhibitory peptide 1 (TIP1), which exerts the strongest action on TLR4, on renal IRI. We subjected C57BL/6 mice to 23 min of renal pedicle clamping preceded by intraperitoneal injection with a vehicle or TIP1. Sham control mice underwent flank incision only. Mouse kidneys were harvested after 24 h of reperfusion for histology, western blot, RT-PCR, and flow cytometry analysis. Pretreatment with TIP1 lowered the magnitude of elevated plasma creatinine levels and attenuated tubular injury. TIP1 treatment also reduced mRNA expression of inflammatory cytokines and decreased apoptotic cells and oxidative stress in post-ischemic kidneys. In kidneys pretreated with TIP1, the infiltration of macrophages and T helper 17 cells was less abundant than those in the IRI only group. These results suggest that TIP1 has a potential beneficial effect in attenuating the degree of kidney damage induced by IRI.
Keyphrases
- toll like receptor
- ischemia reperfusion injury
- oxidative stress
- induced apoptosis
- inflammatory response
- nuclear factor
- immune response
- flow cytometry
- cell cycle arrest
- dna damage
- endoplasmic reticulum stress
- stem cells
- minimally invasive
- dendritic cells
- type diabetes
- cell therapy
- south africa
- regulatory t cells
- metabolic syndrome
- signaling pathway
- cell proliferation
- climate change
- acute myocardial infarction
- acute coronary syndrome
- bone marrow
- skeletal muscle
- replacement therapy
- smoking cessation
- uric acid
- endothelial cells
- left ventricular