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Merck
CN
  • Hydrogen-rich saline attenuates neuronal ischemia--reperfusion injury by protecting mitochondrial function in rats.

Hydrogen-rich saline attenuates neuronal ischemia--reperfusion injury by protecting mitochondrial function in rats.

The Journal of surgical research (2014-06-28)
Yaomei Cui, Hao Zhang, Muhuo Ji, Min Jia, Huixian Chen, Jianjun Yang, Manlin Duan
摘要

Hydrogen, a popular antioxidant gas, can selectively reduce cytotoxic oxygen radicals and has been found to protect against ischemia-reperfusion (I/R) injury of multiple organs. Acute neuronal death during I/R has been attributed to loss of mitochondrial permeability transition coupled with mitochondrial dysfunction. This study was designed to investigate the potential therapeutic effect of hydrogen-rich saline on neuronal mitochondrial injury from global cerebral I/R in rats. We used a four-vessel occlusion model of global cerebral ischemia and reperfusion, with Sprague-Dawley rats. The rats were divided randomly into six groups (n = 90): sham (group S), I/R (group I/R), normal saline (group NS), atractyloside (group A), hydrogen-rich saline (group H), and hydrogen-rich saline + atractyloside (group HA). In groups H and HA, intraperitoneal hydrogen-rich saline (5 mL/kg) was injected immediately after reperfusion, whereas the equal volume of NS was injected in the other four groups. In groups A and HA, atractyloside (15 μL) was intracerebroventricularly injected 10 min before reperfusion, whereas groups NS and H received equal NS. The mitochondrial permeability transition pore opening and mitochondrial membrane potential were measured by spectrophotometry. Cytochrome c protein expression in the mitochondria and cytoplasm was detected by western blot. The hippocampus mitochondria ultrastructure was examined with transmission electron microscope. The histologic damage in hippocampus was assessed by hematoxylin and eosin staining. Hydrogen-rich saline treatment significantly improved the amount of surviving cells (P < 0.05). Furthermore, hydrogen-rich saline not only reduced tissue damage, the degree of mitochondrial swelling, and the loss of mitochondrial membrane potential but also preserved the mitochondrial cytochrome c content (P < 0.05). Our study showed that hydrogen-rich saline was able to attenuate neuronal I/R injury, probably by protecting mitochondrial function in rats.

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Sigma-Aldrich
细胞色素 C 来源于马心脏, ≥95% (SDS-PAGE)
Sigma-Aldrich
细胞色素 C 来源于马心脏, ≥95% based on Mol. Wt. 12,384 basis
Sigma-Aldrich
细胞色素 C 来源于酿酒酵母, ≥85% based on Mol. Wt. 12,588 basis
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细胞色素 C 来源于马心脏, BioUltra, ≥99% (SDS-PAGE), powder, suitable for mammalian cell culture
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细胞色素 C 来源于马心脏, BioReagent, suitable for GFC marker
Sigma-Aldrich
ProteoMass 细胞色素 c MALDI-MS 标准品, vial of 10 nmol, (M+H+) 12,361.96 Da by calculation
Sigma-Aldrich
细胞色素 C 来源于鸽子胸肌, ≥95% based on Mol. Wt. 12,173 basis