• Title/Summary/Keyword: Brain Tissue

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Brain Hypoxia Imaging (뇌 저산소증 영상)

  • Song, Ho-Chun
    • Nuclear Medicine and Molecular Imaging
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    • v.41 no.2
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    • pp.91-96
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    • 2007
  • The measurement of pathologically low levels of tissue $pO_2$ is an important diagnostic goal for determining the prognosis of many clinically important diseases including cardiovascular insufficiency, stroke and cancer. The target tissues nowaday have mostly been tumors or the myocardium, with less attention centered on the brain. Radiolabelled nitroimidazole or derivatives may be useful in identifying the hypoxic cells in cerebrovascular disease or traumatic brain injury, and hypoxic-ischemic encephalopathy. In acute stroke, the target of therapy is the severely hypoxic but salvageable tissue. $^{18}F-MISO$ PET and $^{99}mTc-EC-metronidazole$ SPECT in patients with acute ischemic stroke identified hypoxic tissues and ischemic penumbra, and predicted its outcome. A study using $^{123}I-IAZA$ in patient with closed head injury detected the hypoxic tissues after head injury. Up till now these radiopharmaceuticals have drawbacks due to its relatively low concentration with hypoxic tissues associated with/without low blood-brain barrier permeability and the necessity to wait a long time to achieve acceptable target to background ratios for imaging in acute ischemic stroke. It is needed to develop new hypoxic marker exhibiting more rapid localization in the hypoxic region in the brain. And then, the hypoxic brain imaging with imidazoles or non-imidazoles may be very useful in detecting the hypoxic tissues, determining therapeutic strategies and developing therapeutic drugs in several neurological disease, especially, in acute ischemic stroke.

Fabrication of Multi-layered Macroscopic Hydrogel Scaffold Composed of Multiple Components by Precise Control of UV Energy

  • Roh, Donghyeon;Choi, Woongsun;Kim, Junbeom;Yu, Hyun-Yong;Choi, Nakwon;Cho, Il-Joo
    • BioChip Journal
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    • v.12 no.4
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    • pp.280-286
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    • 2018
  • Hydrogel scaffolds composed of multiple components are promising platform in tissue engineering as a transplantation materials or artificial organs. Here, we present a new fabrication method for implementing multi-layered macroscopic hydrogel scaffold composed of multiple components by controlling height of hydrogel layer through precise control of ultraviolet (UV) energy density. Through the repetition of the photolithography process with energy control, we can form several layers of hydrogel with different height. We characterized UV energy-dependent profiles with single-layered PEGDA posts photocrosslinked by the modular methodology and examined the optical effect on the fabrication of multi-layered, macroscopic hydrogel structure. Finally, we successfully demonstrated the potential applicability of our approach by fabricating various macroscopic hydrogel constructs composed of multiple hydrogel layers.

Primary Osteolytic Intraosseous Atypical Meningioma with Soft Tissue and Dural Invasion : Report of a Case and Review of Literatures

  • Yun, Jung-Ho;Lee, Sang-Koo
    • Journal of Korean Neurosurgical Society
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    • v.56 no.6
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    • pp.509-512
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    • 2014
  • Primary intraosseous meningioma is a rare tumor, and atypical pathologic components both osteolytic lesion and dura and soft tissue invasion is extremely rare. A 65-year-old woman presented with a 5-month history of a soft mass on the right frontal area. MR imaging revealed a 4 cm sized, multilobulated, strongly-enhancing lesion on the right frontal bone, and CT showed a destructive skull lesion. The mass was adhered tightly to the scalp and dura mater, and it extended to some part of the outer and inner dural layers without brain invasion. The extradural mass and soft tissue mass were totally removed simultaneously and we reconstructed the calvarial defect with artificial bone material. The pathological study revealed an atypical meningioma as World Health Organization grade II. Six months after the operation, brain MR imaging showed that not found recurrence in both cranial and spinal lesion. Here, we report a case of primary osteolytic intraosseous atypical meningioma with soft tissue and dural invasion.

Carthami Flos Extract Treatment Restored Changes of Gene Expression on ICH Model in Rats (홍화(紅花) 추출물 투여에 의한 뇌출혈 흰쥐 뇌조직의 유전자 발현 조절)

  • Lim, Se-Hyun;Son, Young-Soo;Back, Jin-Ung;Cho, Su-In;Kim, Young-Kyun
    • Journal of Society of Preventive Korean Medicine
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    • v.12 no.3
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    • pp.81-90
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    • 2008
  • Objectives : The pathophysiology of ICH is not fully understood, therefore, the fundamental therapeutic strategies for ICH also not well inspected either. The genetic profile for the effect of Carthami Flos extract on cerebral hemorrhage in rat brain tissue was measured using microarray technique. Genes displaying expressional change on brain damage were selected and the functional analysis on these genes was conducted. Methods : Rats were placed in a stereotaxic frame after intraperitoneal injection of chloralhydrate, and ICH was induced by injection of collagenase type IV and Carthami Flos extract was administered orally. The molecular profile of cerebral hemorrhage in rat brain tissue was measured using microarray technique to identify up- or down- regulated genes in brain tissue. Results : Upon treatment with Carthami Flos extract on the rat having brain damage, many genes show expressional change. The pattern of gene expressional change can be classified into 8 classes in which two types of classes were composed of recovered genes from up or down-regulation by brain damage, respectively. Conclusions : Further analysis using protein interaction database identified some key molecules that can be used for elucidation of therapeutical mechanism of Carthami Flos extract in future.

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The Effect of Recombinant Tissue Plasminogen Activator on the Intracerebral Hematomas in Experimental Cat Models

  • Jo, Kwang-Wook;Kim, Seong-Rim;You, Seung-Hoon;Kim, Sang-Don;Park, Ik-Seong;Baik, Min-Woo
    • Journal of Korean Neurosurgical Society
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    • v.37 no.4
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    • pp.287-292
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    • 2005
  • Objective: Recent clinical studies have demonstrated that intracisternal administration of recombinant tissue plasminogen activator(rt-PA) can facilitate the normal clearing of blood from the subarachnoid space. Urokinase, a first generation fibrinolytic agent, has been used to liquify such clots with some success. Therefore, recombinant tissue plasminogen activator, a second generation fibrinolytic drug that may be safer and more effective, is studied to evaluate its dosage to lyse clots in vitro and reactivity in the brain parenchyme. Methods: Intracerebral hematomas were created by stereotactically injecting 2ml of clotted autogenous blood into the brain parenchyme of total 28 anesthetized adult cats (weighting 3.8 to 4.1 kg). The control animals (group A) received 1 ml of normal saline injected into the clots and the experimental animals received each 0.1 mg of rt-PA (group B), 0.5mg of rt-PA (group C) and 1 mg of rt-PA (group D) at 6 hours after the clot injection. Results: 1. The amount of remained clots after lysing the hematomas were as follows: $1.80{\pm}0.17ml$ in group A, $1.65{\pm}0.23ml$ in group B, $0.61{\pm}0.37ml$ in group C and $0.52{\pm}0.34$ in group D. The result indicated that hematomas in rt-PA treated groups (C & D) were lysed better than the control group. 2. At least 0.5mg of rt-PA should be required for the lysis of 2ml of hematomas. 3. Light microscopic examination revealed no histological evidence of hemorrhage in tissue sections from each brain. Conclusion: Recombinant tissue plasminogen activator may be safely and effectively employed for the lysis of intracerebral hematomas in animal model.

Antioxidative Effects of Green Tea Powder Diet Against Ethanol-Induced Oxidative Damage in 9 Month Old Rat Brain Regions (녹차 건분이 급성 알코올 투여받은 9개월령 흰쥐의 뇌 부위별 항산화능에 미치는 영향)

  • 류선미;장남수
    • Journal of Nutrition and Health
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    • v.35 no.1
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    • pp.24-29
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    • 2002
  • Present study investigates the protective effects of green tea against acute ethanol administration on lipid peroxidation and antioxidant system in various regions of rat brain ; cortex, cerebellum, striatum and hippofampus. The following parameters were examined : malondialdehyde(MDA) concentrations and activities of superoxide dismutase(SOD), catalase and glutathione peroxidase(GSH-Px). Male Sprague-Dawley rats of 9 month old were given control diets or those containing 1% green tea powder for 4 weeks, and at tole end of feeding each diet group was received acute ethanol(5g/kg body weight) or equicaloric sucrose solution administration. Results indicated that green tea powder significantly decreased malondialdehyde(MDA) levels in the striatum(81.85nmol/g tissue) and hippocampus(71.68nmol/g tissue), compared to control group(145.68nmol/g tissue in the striatum, 119.04nmol/g tissue in the hippocampus). Also, a significant decrease was observed in the striatum of green tea-ethanol treated group compared to control group. Green tea significantly blocked an ethanol-induced catalase activation in the hippocampus, which means an ethanol administration drew a significant increase only in control diet groups. In conclusion, these results suggest that moderate consumption of green tea leaves ctrl have protective effects against ethanol induced oxidative stress on various regions of rat brain, by significantly reducing MDA concentrations in the striatum and hippocampus and inhibiting ethanol induced catalase activation in the hippocampus.

The Effects of Dokhwaljihwang-tang(Duhuodihuangtang) on the Alzheimer's Disease Model Induced by ${\beta}A$ (독활지황탕(獨活地黃湯)이 ${\beta}A$로 유도된 Alzheimer's Disease 병태 모델에 미치는 영향)

  • Jeon, Mi-Yean;Lee, Sang-Ryong
    • Journal of Oriental Neuropsychiatry
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    • v.21 no.1
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    • pp.71-88
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    • 2010
  • Objectives: This research investigates the effect of the DHJHT extract on Alzheimer's disease. Specifically, the effects of the DHJHT extract on (1) the behavior (2) the infarction area of the hippocampus, and brain tissue injury in AD mice induced with ${\beta}A$ were investigated. Methods: The effects of the DHJHT extract on the proinflammation cytokines mRNA expression and production of BACE, APP and ${\beta}A$ in in BV2 microglial cell line treated by lipopolysacchaide(LPS) plus ${\beta}A$ were investigated. The effects of the DHJHT extract on the behavior of the memory deficit mice induced by scopolamine were investigated. Results: 1. The DHJHT extract suppressed the expression of IL-$1{\beta}$, IL-6, TNF-$\alpha$, COX-2, and NOS-II, BACE and APP mRNA in BV2 microglial cell line treated by LPS plus ${\beta}A$. 2. The DHJHT extract suppressed the expression of ${\beta}A$ production in BV2 microglial cell line treated with LPS plus ${\beta}A$. 3. The DHJHT extract showed significantly inhibitory effect on the scopolamine-induced impairment of memory in the experiment of Morris water maze. 4. The DHJHT group suppressed the expression of IL-$1{\beta}$, TNF-$\alpha$, MDA, and CD68+/CD11b+ in the brain tissue of the mice with AD induced by ${\beta}A$. 5. The DHJHT group reduced the infarction area of hippocampus, and controlled the injury of the brain tissue in the mice with AD induced by ${\beta}A$. 6. The DHJHT group reduced tau protein, and GFAP in the brain tissue of the mice with AD induced by ${\beta}A$. Conclusions: These results suggest that the DHJHT group may be effective for the treatment of AD. Thus, DHJHT could be considered among the future therapeutic drugs indicated for the treatment of AD.

The Antioxidant Effects of ONDAMTANG on the Brain Tissue of Mouse (온담탕(溫膽湯)이 뇌조직(腦組織)의 산화작용(酸化作用)에 미치는 영향(影響))

  • Jung In-Chul;Lee Sang-Ryong
    • Journal of Oriental Neuropsychiatry
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    • v.8 no.2
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    • pp.51-62
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    • 1997
  • This experiment was done to investigate the antioxidant effect of Ondamtang(ODT) on brain tissues of rats. The experimental groups were divided into three groups and treated as follows for a fifteen days ; Negative control group(NC), Vitamin E admistrated group(PC), ODT administrated Group(ODT). After the extracting microsome from brain of rats, those were measured the amounts of Malondiadehyde and Hydrogen peroxide, then activities of antioxidant enzymes like Superoxide dismutase, Catalase and NADPH-cytochrome P-450 reductadse. The results were as follows; 1. In TBA reaction to measure the amount of MDA, oxidant material of brain tissue of rats, the group treated by ODT showed significant decrease. 2. In the formation of Hydrogen peroxide, the group treated by ODT showed no change in comparison with normal group. 3. The activity of SOD in the group treated by ODT showed a little increase in comparison with normal group. 4. The activity of Catalase was increased significantly in the group treated by ODT than normal group. 5. The activity of NADPH-cytochrome P-450 reductase in the group treated by ODT showed a little increase in comparison with normal group. According to the above results, it is suggested that Ondamtang(ODT) has some antioxidant effects on tissues of brain.

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Metabolism of Lactate Dehydrogenase in Tissues from Ldh-C Expressed Fish at Starved State (기아상태에서 Ldh-C가 발현된 어류 조직의 젖산탈수소효소의 대사)

  • Yum, Jung Joo;Kim, Gyu Dong
    • Journal of Life Science
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    • v.26 no.2
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    • pp.155-163
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    • 2016
  • Metabolism of lactate dehydrogenase (EC 1.1.1.27, LDH) was studied to identify the function of LDH-C. Tissues of LDH liver-specific Ldh-C expressed Carassius auratus and eye-specific Ldh-C expressed Lepomis macrochirus after starvation were studied. LDH activity in liver tissue from C. auratus was increased after starvation. And LDH specific activity (units/mg) and LDH/CS were increased in tissues. It means the anaerobic metabolism was taking place in C. auratus after starvation. LDH B4 isozyme was decreased in skeletal muscle and increased in heart tissue. LDH C4 isozymes those showed in eye and brain tissues were identified as liver-specific C4 isozymes and disappeared after starvation. And C hybrid in eye, A4 isozyme in brain, and both C hybrid and C4 isozyme in liver tissue were increased, respectively. In L. macrochirus, the level of variation of LDH activities was low but greatly increased especially in eye tissue and LDH A4 and AC hybrid were increased in brain tissue. The LDH activities in tissues from C. auratus and L. macrochirus remained 30.30-18.64% and 25-18.75%, respectively, as a result of the inhibition by 10 mM of pyruvate. The KmPYR values of LDH in C. auratus were increased. As a result, LDH liver-specific C4 isozyme was expressed in liver, brain and eye tissues during starvation. It seems metabolism of lactate was predominant in brain tissue. After starvation, the liver-specific LDH-C was affected more than eye-specific LDH-C.