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Pretreated fucoidan confers neuroprotection against transient global cerebral ischemic injury in the gerbil hippocampal CA1 area via reducing of glial cell activation and oxidative stress - 09/12/18

Doi : 10.1016/j.biopha.2018.11.015 
Hyunjung Kim a, 1, Ji Hyeon Ahn b, 1, Minah Song a, Dae Won Kim c, Tae-Kyeong Lee a, Jae-Chul Lee a, Young-Myeong Kim d, Jong-Dai Kim e, Jun Hwi Cho f, In Koo Hwang g, Bing Chun Yan h, Moo-Ho Won a, , Joon Ha Park b,
a Department of Neurobiology, School of Medicine, Kangwon National University, Chuncheon, Gangwon, 24341, Republic of Korea 
b Department of Biomedical Science and Research Institute for Bioscience and Biotechnology, Hallym University, Chuncheon, Gangwon, 24252, Republic of Korea 
c Department of Biochemistry and Molecular Biology, Research Institute of Oral Sciences, College of Dentistry, Gangnung-Wonju National University, Gangneung, Gangwon, 25457, Republic of Korea 
d Department of Molecular and Cellular Biochemistry, School of Medicine, Kangwon National University, Chuncheon, Gangwon, 24341, Republic of Korea 
e Division of Food Biotechnology, School of Biotechnology, Kangwon National University, Chuncheon, Gangwon, 24341, Republic of Korea 
f Department of Emergency Medicine, and Institute of Medical Sciences, Kangwon National University Hospital, School of Medicine, Kangwon National University, Chuncheon, Gangwon, 24341, Republic of Korea 
g Department of Anatomy and Cell Biology, College of Veterinary Medicine and Research Institute for Veterinary Science, Seoul National University, Seoul, 08826, Republic of Korea 
h Jiangsu Key Laboratory of Integrated Traditional Chinese, Western Medicine for Prevention and Treatment of Senile Diseases, Yangzhou, Jiangsu, 225001, PR China 

Corresponding author at: Department of Neurobiology, School of Medicine, Kangwon National University, 1 Kangwondaehak-gil, Chuncheon, Gangwon, 24341, Republic of Korea.Department of NeurobiologySchool of MedicineKangwon National University1 Kangwondaehak-gilChuncheonGangwon24341Republic of Korea⁎⁎Corresponding author at: Department of Biomedical Science and Research Institute for Bioscience and Biotechnology, Hallym University, 1 Hallimdaehak-gil, Chuncheon, Gangwon, 24252, Republic of Korea.Department of Biomedical Science and Research Institute for Bioscience and BiotechnologyHallym University1 Hallimdaehak-gilChuncheonGangwon24252Republic of Korea

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Highlights

Pretreatment with fucoidan protects CA1 pyramidal neurons from ischemic damage.
Pretreated fucoidan inhibits activation of glial cells in ischemic CA1 area.
Pretreated fucoidan attenuates oxidative stress in CA1 area after ischemic insult.
Pretreated fucoidan increases SODs expressions in ischemic CA1 pyramidal neurons.
Fucoidan-mediated neuroprotection is abolished by DDC (SODs inhibitor) treatment.

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Abstract

Fucoidan is a sulfated polysaccharide derived from brown algae and possesses various beneficial activities, including antioxidant property. Previous studies have shown that fucoidan displays protective effect against ischemia-reperfusion injury in some organs. However, few studies have been reported regarding the protective effect of fucoidan against transient cerebral ischemic insults and its related mechanisms. Therefore, in this study, we examined the neuroprotective effect of fucoidan against transient global cerebral ischemia (tGCI), as well as underlying its mechanism using a gerbil model of tGCI which shows a loss of pyramidal neurons in the hippocampal cornu ammonis 1 (CA1) area after 5 min of tGCI. Fucoidan (25 and 50 mg/kg) was intraperitoneally administered once daily for 5 days before tGCI. Pretreatment with 50 mg/kg of fucoidan, not 25 mg/kg of fucoidan, attenuated tGCI-induced hyperactivity and protected CA1 pyramidal neurons from tGCI. In addition, pretreatment with 50 mg/kg of fucoidan inhibited activations of astrocytes and microglia in the ischemic CA1 area. Furthermore, pretreatment with 50 mg/kg of fucoidan significantly reduced the increased 4-hydroxy-2-noneal and superoxide anion radical production in the ischemic CA1 area and significantly increased expressions of SOD1 and SOD2 in the CA1 pyramidal neurons before and after tGCI. Additionally, treatment with diethyldithiocarbamate (an inhibitor of SODs) to the fucoidan-treated gerbils notably abolished the fucoidan-mediated neuroprotection. In brief, our present results indicate that fucoidan can effectively protect neurons from tGCI through attenuation of activated glial cells and reduction of oxidative stress via increase of SODs. Thus, we strongly suggest that fucoidan can be used as a useful preventive agent in cerebral ischemia.

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Abbreviations : tGCI, CA1, ROS, NeuN, F–J, GFAP, Iba-1, HNE, SOD1, SOD2, DHE, DDC, NO, LPS

Keywords : Fucoidan, Transient global cerebral ischemia, Neuroprotection, Resident glial cell, Oxidative stress, Superoxide dismutase


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