The protective role of ω-3 Polyunsaturated Fatty Acids on Contrast-Induced Blood-Brain-Barrier Injury in CKD Mice

 
The protective role of ω-3 Polyunsaturated Fatty Acids on Contrast-Induced Blood-Brain-Barrier Injury in CKD Mice
Dae Eun
CHOI
Jin Ah Shin wlsdkahh@gmail.com Chungnam National University Medical Science Daejeon
Ki Ryang Na drngr@cnu.ac.kr Chungnam National University Hospital Nephrology Daejeon
Young Rok Ham youngrok01@cnuh.co.kr Chungnam National University Hospital Nephrology Daejeon
Eu Jin Lee eujinlee@cnuh.co.kr Chungnam National University Hospital Nephrology Daejeon
Hyerim Park hye05240@gmail.com Chungnam National University Medical Science Daejeon
Yoon-Kyung Chang racer@catholic.ac.kr Daejeon Saint Mary Hospital Nephrology Daejeon
Moo Jun Kim kimmoojun@cnuh.co.kr Chungnam National University Sejong Hospital Nephrology Sejong
Hae Ri Kim yo0118@cnuh.co.kr Chungnam National University Sejong Hospital Nephrology Sejong
 
 
 
 
 
 
 

In patients with chronic kidney disease, the need for examinations using contrast media (CM) increases because of underlying diseases. Although contrast agents can affect brain cells, the blood-brain barrier (BBB) protects against brain-cell damage in vivo. However, uremia can disrupt the BBB, increasing the possibility of contrast-agent-induced brain-cell damage in patients with chronic kidney disease (CKD). ω-3 polyunsaturated fatty acids (PUFAs) have shown protective effects on various neurological disorders, including uremic brain injury. This study examined whether ω-3 PUFAs attenuate damage to the BBB caused by uremia and contrast agents in a uremic mouse model and evaluated its associated mechanisms.

C57BL/6 mice (eight weeks old, male) and fat-1 mice (b6 background/eight weeks old, male) were divided into groups according to uremic induction, CM, and ω-3 PUFA administration. Uremia was induced via 24 h ischemia-reperfusion (IR) renal injury. One day after CM treatment, the brain tissue, kidney tissue, and blood were collected. 

The expression levels of glial fibrillary acidic protein (GFAP), claudin 5, CD31, laminin α4, and laminin α5 increased in ω-3 PUFA + CM-treated uremic mice and the brain of fat-1 + CM-treated uremic mice compared with those in the brains of CM-treated uremic mice. The pro-apoptotic protein expression decreased, whereas the anti-apoptotic proteins increased in ω-3 PUFA + CM-treated uremic mice and fat-1 + CM-treated uremic mice compared with CM-treated uremic mice. In addition, the brain-expression levels of p-JNK, p-P53, and p-P38 decreased in the ω-3 PUFA + CM-treated uremic mice and fat-1 + CM-treated uremic mice compared with those in wild-type uremic mice. 

uremic toxin and CM damage the BBB and cause brain-cell death. ω-3 PUFAs play a role in BBB protection caused by CM in uremic mice.

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