
pmid: 32890741
Ischemia-reperfusion (I/R) injury, an inevitable result of kidney transplantation, triggers early inflammatory events that affect graft viability. Evidence from human transplantation and preclinical models of I/R suggests that a female hormonal environment positively influences the ability to recover from ischemic injury. However, the mechanisms behind these effects remain mostly unexplored. Here, we studied the influence of sex on pro-inflammatory mediators involved in the pathophysiology of acute I/R injury in male, female, and female ovariectomized (OVX) Wistar rats that underwent unilateral renal ischemia for 45 min, followed by 24 h of reperfusion. We found improved renal function, reduced cytokine expression, and decreased infiltration of myeloperoxidase-positive cells in females after I/R, when compared to their male and female OVX counterparts. Remarkably, citrullination of histone H3 was exacerbated in serum and renal tubules of females after I/R. In contrast, we observed lower levels of citrullinated histone H3 in male and female OVX rats in response to I/R, mostly in neutrophil extracellular traps. Our results demonstrate that female sex promotes renal I/R tolerance by attenuating pro-inflammatory mediators involved in I/R-induced damage.
Inflammation, Male, Sex Characteristics, Ovariectomy, Kidney, Extracellular Traps, Kidney Transplantation, Histones, Sex Factors, Reperfusion Injury, Animals, Humans, Citrullination, Female, Rats, Wistar, Gonadal Steroid Hormones, Disease Resistance
Inflammation, Male, Sex Characteristics, Ovariectomy, Kidney, Extracellular Traps, Kidney Transplantation, Histones, Sex Factors, Reperfusion Injury, Animals, Humans, Citrullination, Female, Rats, Wistar, Gonadal Steroid Hormones, Disease Resistance
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