J Korean Neurol Assoc > Volume 10(3); 1992 > Article
Journal of the Korean Neurological Association 1992;10(3): 288-297.
실험적 척수허혈이 가토 척수회백질 칼슘결합단백-양성 구조에 미치는 영향
이수정, 조기현,김세종,김종근,배춘상,윤재룡
전남대학교 신경과, 약리학, 해부학.
Effects of Experimental Ischemia on Parvalbumin-and Calbindin-Immunoreactive Elements in the Rabbit Spinal Cord
Soo-Jung Lee, M.D., Ki-Hyun Cho, M.D., Sei-Jong Kim, M.D., Jong-Keun Kim, M.D., Choon-Sang Bae, M.D., Jae-Rhyung Yoon, M.D.
Department of Neurology, Pharmacology and Anatomy, College of Medicine, Chonnam University
Abstract
To understamd the changes in parvalbumm- and calbindin-immunoreactive neurons and fibers during the spinal cord ischemia, expression of two kinds of calcium bindlng protein, parvalbumin (PV) and calbindin D-28K (calbindin), immunocytochemically an activities of cytochrome oxidase (CO) and acetylcholinesterase (AChE), histochemically global ischemic spinal cord of the rabbit were investigated under thiopental sodium anesthesia, adult rabbits(2,0-2.5 Kg) was cannulated through the left femoral artery with 4F Berman amgiographic catheter. Which was advanced 15 so that tbe tip of the catheter was in the ahdominal aorta just below the orign of the renal artery. After the rabbits were recovered from anesthesia, the balloon was inflated induce ischemia for15 minutes with recording abdominal aortic blood pressure. At 48 hours after reperfusion, the rabbits were fixed with transcardiac perfusion. In the sham-operated controls, the rabbit was treated same procedure except inflation of the ball. In tbe ischemic spinal cord, CO activitieS were generally decreased in the gray matter, especially in laminae III-V and AChE activities were slightly decreased in laminae X amd III-IV. The degree of immunoreactivities for PV and calbindin was decreased in whole gray matter of ischemic cord. In laminae II-III of the ischemic lumbar cord, number of PV amd calbindin-immunoreactive neurons was signilicantly decreased and vacuolations were observed. In laminae V-IX amd X of ischemic lumbar cord. The numbe of jmmunoreactive neurons was not changed, but degree of immunoreactivities for and calbindin was decreased. Thses findings suggest that PV and calbindin-immunoreactive neurons in laminae II-III are more vulnerable than other neurons to ischemic injury, and PV and calbindin may have some roles in hypoxic neuronal injury.
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