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An Imbalance Between RAGE/MR/HMGB1 and ATP1α3 is Associated with Inflammatory Changes in Rat Brain Harboring Cerebral Aneurysms Prone to Rupture

Authors :
Eiji, Shikata
Takeshi, Miyamoto
Tadashi, Yamaguchi
Izumi, Yamaguchi
Hiroshi, Kagusa
Daiki, Gotoh
Kenji, Shimada
Yoshiteru, Tada
Kenji, Yagi
Keiko T, Kitazato
Yasuhisa, Kanematsu
Yasushi, Takagi
Publication Year :
2021
Publisher :
Research Square Platform LLC, 2021.

Abstract

Background and purpose An aneurysmal subarachnoid hemorrhage is a devastating event. To establish an effective therapeutic strategy, its pathogenesis must be clarified, particularly the pathophysiology of brain harboring intracranial aneurysms (IAs). To elucidate the pathology in brain harboring IAs, we examined the significance of the receptor for advanced glycation end-products (RAGE)/mineralocorticoid receptor (MR) pathway and Na+/K+-ATPase (ATP1α3). Methods Ten-week-old female rats were subjected to oophorectomy as well as hypertension and hemodynamic changes to induce IAs, and were fed a high-salt diet. Brain damage in these rats was assessed by inflammatory changes in comparison to sham-operated rats fed a standard diet. Results Six weeks after IA induction (n = 30), irregular morphological changes, i.e., an enlarged vessel diameter and vascular wall, were observed in all of the left posterior cerebral arteries (Lt PCAs) prone to rupture. Approximately 20% of rats had ruptured IAs within 6 weeks. In brain harboring unruptured IAs at the PCA, the mRNA levels of RAGE and MR were higher, and that of ATP1α3 was lower than those in the sham-operated rats (p p Conclusions Regulation of the imbalance between the RAGE/MR pathway and ATP1α3 may help attenuate the damage in brain harboring IAs, and further studies are warranted to clarify the significance of the down-regulation of the MR/RAGE pathway and the up-regulation of ATP1α3 for attenuating the pathological changes in brain harboring IAs.

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....80d47379fef50b41fd70f2c567ccc5c8
Full Text :
https://doi.org/10.21203/rs.3.rs-1180499/v1