1.Usefulness of carotid ultrasonography and treatment of carotid disease
Seung Min KIM ; Yeon Jung KIM ; Keonwoo KIM ; Bum Joon KIM
Journal of the Korean Medical Association 2020;63(6):342-353
Carotid stenosis is an important etiology of ischemic stroke. Most of the strokes associated with carotid stenosis are caused by artery-to-artery embolism. The risk of embolism highly depends on the stenosis degree and the vulnerability of the carotid plaque. Carotid ultrasonography is useful for evaluating the characteristics of carotid plaque. This review aims to provide information on performing and interpreting the result of carotid ultrasonography and the treatment of carotid artery disease based on the current guidelines. The degree of stenosis can be measured by the diameter reduction and flow velocity criteria. The risk of embolism is highest when the stenosis degree is around 70% to 80%. A heterogeneous echolucent plaque with an irregular surface or an ulcer shows a high risk of embolism. Appropriate treatment is important for the patients with carotid stenosis. In symptomatic patients, a potent antiplatelet treatment, especially during the acute stage, is beneficial. Patients with asymptomatic stenosis over 50% can also be considered for antiplatelet treatments. The associated risk factors should be managed according to the targets. Medically intractable cases or patients with high risk of embolism may receive carotid endarterectomy or carotid artery stenting depending on the concomitant disease and the degree of carotid stenosis. Considering the safety of ultrasound imaging, treatment may be followed-up by carotid ultrasonography.
2.Poly(rC) binding protein 2 acts as a negative regulator of IRES-mediated translation of Hr mRNA
Jeong Ki KIM ; Injung KIM ; Keonwoo CHOI ; Jee Hyun CHOI ; Eunmin KIM ; Hwa Young LEE ; Jongkeun PARK ; Sungjoo KIM YOON
Experimental & Molecular Medicine 2018;50(2):e441-
During the hair follicle (HF) cycle, HR protein expression is not concordant with the presence of the Hr mRNA transcript, suggesting an elaborate regulation of Hr gene expression. Here we present evidence that the 5′ untranslated region (UTR) of the Hr gene has internal ribosome entry site (IRES) activity and this activity is regulated by the binding of poly (rC) binding protein 2 (PCBP2) to Hr mRNA. Overexpression and knockdown of PCBP2 resulted in a decrease in Hr 5′ UTR IRES activity and an increase in HR protein expression without changing mRNA levels. We also found that this regulation was disrupted in a mutant Hr 5′ UTR that has a mutation responsible for Marie Unna hereditary hypotrichosis (MUHH) in both mice and humans. These findings suggest that Hr mRNA expression is regulated at the post-transcriptional level via IRES-mediated translation control through interaction with PCPB2, but not in MUHH.
3.Imaging Features and Pathological Correlation in Mixed Microcystic and Angiomatous Meningioma:A Case Report
Keonwoo CHOI ; Dae Yoon KIM ; Hyun Jin KIM ; Gyojun HWANG ; Mi Kyung KIM ; Hyun Gon KIM ; Soya PAIK
Journal of the Korean Radiological Society 2022;83(4):951-957
Meningiomas are the most common intracranial tumors. However, microcystic and angiomatous meningiomas are very rare subtypes that present unusual imaging findings. Hence, radiological diagnosis of these tumors can be challenging. We herein describe a case of mixed angiomatous and microcystic meningioma in an 81-year-old male. MRI revealed an extra-axial mass with high T2 signal intensity, measuring 1.5 cm in diameter, with multiple tiny intralesional cysts and entrapped peritumoral cyst formation. After tumor resection, a histopathological diagnosis of mixed angiomatous and microcystic meningioma was made.
4.Synaptic loss and amyloid beta alterations in the rodent hippocampus induced by streptozotocin injection into the cisterna magna
Yujin AHN ; Jincheol SEO ; Junghyung PARK ; Jinyoung WON ; Hyeon-Gu YEO ; Keonwoo KIM ; Chang-Yeop JEON ; Jae-Won HUH ; Sang-Rae LEE ; Dong-Seok LEE ; Youngjeon LEE
Laboratory Animal Research 2020;36(2):134-139
To date, researchers have developed various animal models of Alzheimer’s disease (AD) to investigate its mechanisms and to identify potential therapeutic treatments. A widely recognized model that mimics the pathology of human sporadic AD involves intracerebroventricular (ICV) injection with streptozotocin (STZ). However, ICV injections are an invasive approach, which creates limitations in generalizing the results. In this study, we produced a rodent model of AD using STZ (3 mg/kg) injection via the cisterna magna (CM) once every week for 4 weeks, and analyzed at 4 weeks and 16 weeks after final injection. In the CM-STZ rodent model of AD, we observed increase in extracellular amyloid-beta (Aβ) deposition and decrease and abnormal morphology of post-synaptic protein, PSD95 in 16 weeks STZ-injected group. The model developed using our less-invasive method induced features of AD-like pathology, including significantly increased extracellular amyloid-beta deposition, and decreased synaptic protein in the hippocampus. These findings supporting the success of this alternative approach, and thus, we suggest this is a promising, less invasive model for use in future AD research.
5.XperCT-guided Intra-cisterna Magna Injection of Streptozotocin for Establishing an Alzheimer’s Disease Model Using the Cynomolgus Monkey (Macaca fascicularis)
Junghyung PARK ; Jinyoung WON ; Chang-Yeop JEON ; Kyung Seob LIM ; Won Seok CHOI ; Sung-hyun PARK ; Jincheol SEO ; Jiyeon CHO ; Jung Bae SEONG ; Hyeon-Gu YEO ; Keonwoo KIM ; Yu Gyeong KIM ; Minji KIM ; Kyung Sik YI ; Youngjeon LEE
Experimental Neurobiology 2022;31(6):409-418
Till date, researchers have been developing animal models of Alzheimer’s disease (AD) in various species to understand the pathological characterization and molecular mechanistic pathways associated with this condition in humans to identify potential therapeutic treatments. A widely recognized AD model that mimics the pathology of human AD involves the intracerebroventricular (ICV) injection with streptozotocin (STZ).However, ICV injection as an invasive approach has several limitations related to complicated surgical procedures. Therefore, in the present study, we created a customized stereotaxic frame using the XperCT-guided system for injecting STZ in cynomolgus monkeys, aiming to establish an AD model. The anatomical structures surrounding the cisterna magna (CM) were confirmed using CT/MRI fusion images of monkey brain with XperCT, the c-arm cone beam computed tomography. XperCT was used to determine the appropriate direction in which the needle tip should be inserted within the CM region. Cerebrospinal fluid (CSF) was collected to confirm the accurate target site when STZ was injected into the CM.Cynomolgus monkeys were administered STZ dissolved in artificial CSF once every week for 4 weeks via intracisterna magna (ICM) injection using XperCT-guided stereotactic system. The molecular mechanisms underlying the progression of STZ-induced AD pathology were analyzed two weeks after the final injection. The monkeys subjected to XperCT-based STZ injection via the ICM route showed features of AD pathology, including markedly enhanced neuronal loss, synaptic impairment, and tau phosphorylation in the hippocampus. These findings suggest a new approach for the construction of neurodegenerative disease models and development of therapeutic strategies.
6.Assessment of Hand Motor Function in a Non-human Primate Model of Ischemic Stroke
Jinyoung WON ; Kyung Sik YI ; Chi-Hoon CHOI ; Chang-Yeop JEON ; Jincheol SEO ; Keonwoo KIM ; Hyeon-Gu YEO ; Junghyung PARK ; Yu Gyeong KIM ; Yeung Bae JIN ; Bon-Sang KOO ; Kyung Seob LIM ; Sangil LEE ; Ki Jin KIM ; Won Seok CHOI ; Sung-Hyun PARK ; Young-Hyun KIM ; Jae-Won HUH ; Sang-Rae LEE ; Sang-Hoon CHA ; Youngjeon LEE
Experimental Neurobiology 2020;29(4):300-313
Ischemic stroke results from arterial occlusion and can cause irreversible brain injury. A non-human primate (NHP) model of ischemic stroke was previously developed to investigate its pathophysiology and for efficacy testing of therapeutic candidates; however, fine motor impairment remains to be well-characterized. We evaluated hand motor function in a cynomolgus monkey model of ischemic stroke. Endovascular transient middle cerebral artery occlusion (MCAO) with an angiographic microcatheter induced cerebral infarction. In vivo magnetic resonance imaging mapped and measured the ischemia-induced infarct lesion. In vivo diffusion tensor imaging (DTI) of the stroke lesion to assess the neuroplastic changes and fiber tractography demonstrated three-dimensional patterns in the corticospinal tract 12 weeks after MCAO. The hand dexterity task (HDT) was used to evaluate fine motor movement of upper extremity digits. The HDT was modified for a home cage-based training system, instead of conventional chair restraint training. The lesion was localized in the middle cerebral artery territory, including the sensorimotor cortex. Maximum infarct volume was exhibited over the first week after MCAO, which progressively inhibited ischemic core expansion, manifested by enhanced functional recovery of the affected hand over 12 weeks after MCAO. The total performance time decreased with increasing success rate for both hands on the HDT. Compensatory strategies and retrieval failure improved in the chronic phase after stroke. Our findings demonstrate the recovery of fine motor skill after stroke, and outline the behavioral characteristics and features of functional disorder of NHP stroke model, providing a basis for assessing hand motor function after stroke.
7.Abnormal Mitochondria in a Non-human Primate Model of MPTP-induced Parkinson's Disease: Drp1 and CDK5/p25 Signaling
Junghyung PARK ; Jincheol SEO ; Jinyoung WON ; Hyeon Gu YEO ; Yu Jin AHN ; Keonwoo KIM ; Yeung Bae JIN ; Bon Sang KOO ; Kyung Seob LIM ; Kang Jin JEONG ; Philyong KANG ; Hwal Yong LEE ; Seung Ho BAEK ; Chang Yeop JEON ; Jung Joo HONG ; Jae Won HUH ; Young Hyun KIM ; Sang Je PARK ; Sun Uk KIM ; Dong Seok LEE ; Sang Rae LEE ; Youngjeon LEE
Experimental Neurobiology 2019;28(3):414-424
Mitochondria continuously fuse and divide to maintain homeostasis. An impairment in the balance between the fusion and fission processes can trigger mitochondrial dysfunction. Accumulating evidence suggests that mitochondrial dysfunction is related to neurodegenerative diseases such as Parkinson's disease (PD), with excessive mitochondrial fission in dopaminergic neurons being one of the pathological mechanisms of PD. Here, we investigated the balance between mitochondrial fusion and fission in the substantia nigra of a non-human primate model of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP)-induced PD. We found that MPTP induced shorter and abnormally distributed mitochondria. This phenomenon was accompanied by the activation of dynamin-related protein 1 (Drp1), a mitochondrial fission protein, through increased phosphorylation at S616. Thereafter, we assessed for activation of the components of the cyclin-dependent kinase 5 (CDK5) and extracellular signal-regulated kinase (ERK) signaling cascades, which are known regulators of Drp1(S616) phosphorylation. MPTP induced an increase in p25 and p35, which are required for CDK5 activation. Together, these findings suggest that the phosphorylation of Drp1(S616) by CDK5 is involved in mitochondrial fission in the substantia nigra of a non-human primate model of MPTP-induced PD.
1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine
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Cyclin-Dependent Kinase 5
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Cyclin-Dependent Kinases
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Dopaminergic Neurons
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Homeostasis
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Mitochondria
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Mitochondrial Dynamics
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Neurodegenerative Diseases
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Parkinson Disease
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Phosphorylation
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Phosphotransferases
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Primates
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Substantia Nigra
8.Increased CD68/TGFβ Co-expressing Microglia/Macrophages after Transient Middle Cerebral Artery Occlusion in Rhesus Monkeys
Hyeon Gu YEO ; Jung Joo HONG ; Youngjeon LEE ; Kyung Sik YI ; Chang Yeop JEON ; Junghyung PARK ; Jinyoung WON ; Jincheol SEO ; Yu Jin AHN ; Keonwoo KIM ; Seung Ho BAEK ; Eun Ha HWANG ; Green KIM ; Yeung Bae JIN ; Kang Jin JEONG ; Bon Sang KOO ; Philyong KANG ; Kyung Seob LIM ; Sun Uk KIM ; Jae Won HUH ; Young Hyun KIM ; Yeonghoon SON ; Ji Su KIM ; Chi Hoon CHOI ; Sang Hoon CHA ; Sang Rae LEE
Experimental Neurobiology 2019;28(4):458-473
The function of microglia/macrophages after ischemic stroke is poorly understood. This study examines the role of microglia/macrophages in the focal infarct area after transient middle cerebral artery occlusion (MCAO) in rhesus monkeys. We measured infarct volume and neurological function by magnetic resonance imaging (MRI) and non-human primate stroke scale (NHPSS), respectively, to assess temporal changes following MCAO. Activated phagocytic microglia/macrophages were examined by immunohistochemistry in post-mortem brains (n=6 MCAO, n=2 controls) at 3 and 24 hours (acute stage), 2 and 4 weeks (subacute stage), and 4, and 20 months (chronic stage) following MCAO. We found that the infarct volume progressively decreased between 1 and 4 weeks following MCAO, in parallel with the neurological recovery. Greater presence of cluster of differentiation 68 (CD68)-expressing microglia/macrophages was detected in the infarct lesion in the subacute and chronic stage, compared to the acute stage. Surprisingly, 98~99% of transforming growth factor beta (TGFβ) was found colocalized with CD68-expressing cells. CD68-expressing microglia/macrophages, rather than CD206⁺ cells, may exert anti-inflammatory effects by secreting TGFβ after the subacute stage of ischemic stroke. CD68⁺ microglia/macrophages can therefore be used as a potential therapeutic target.
Brain
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Haplorhini
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Immunohistochemistry
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Infarction, Middle Cerebral Artery
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Inflammation
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Macaca mulatta
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Magnetic Resonance Imaging
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Microglia
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Middle Cerebral Artery
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Primates
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Stroke
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Transforming Growth Factor beta