• Title/Summary/Keyword: Metabolic brain disease

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Ursolic acid in health and disease

  • Seo, Dae Yun;Lee, Sung Ryul;Heo, Jun-Won;No, Mi-Hyun;Rhee, Byoung Doo;Ko, Kyung Soo;Kwak, Hyo-Bum;Han, Jin
    • The Korean Journal of Physiology and Pharmacology
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    • v.22 no.3
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    • pp.235-248
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    • 2018
  • Ursolic acid (UA) is a natural triterpene compound found in various fruits and vegetables. There is a growing interest in UA because of its beneficial effects, which include anti-inflammatory, anti-oxidant, anti-apoptotic, and anti-carcinogenic effects. It exerts these effects in various tissues and organs: by suppressing nuclear factor-kappa B signaling in cancer cells, improving insulin signaling in adipose tissues, reducing the expression of markers of cardiac damage in the heart, decreasing inflammation and increasing the level of anti-oxidants in the brain, reducing apoptotic signaling and the level of oxidants in the liver, and reducing atrophy and increasing the expression levels of adenosine monophosphate-activated protein kinase and irisin in skeletal muscles. Moreover, UA can be used as an alternative medicine for the treatment and prevention of cancer, obesity/diabetes, cardiovascular disease, brain disease, liver disease, and muscle wasting (sarcopenia). In this review, we have summarized recent data on the beneficial effects and possible uses of UA in health and disease managements.

Longterm Benefit and Unmet Needs in Enzyme Replacement Therapy of Gaucher (고셔병 환자에서 효소대체치료의 장기적 효과와 한계)

  • Kim, Yoo-Mi
    • Journal of The Korean Society of Inherited Metabolic disease
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    • v.14 no.1
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    • pp.42-47
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    • 2014
  • Gaucher disease is a multisystemic disorder arising from a deficient activity of the lysosomal enzyme glucocerebrosidase, which leads to accumulation of glycosylceraide and other glycolipids in the regiculoendothelial system. The characteristics of Gaucher disease are anemia, thrombocytopenia, hepatosplenomegaly, and skeletal disease. Enzyme replacement therapy (ERT) has been proven to prevent progressive manifestations of Gaucher disease and effective in improving anemia, thrombocytopenia, bone markers and biomarkers. However, some patient needs still remain unmet because of the inaccessibility of certain sites including brain, bone and various organs. ERT could not Improve the irreversible lesion such as liver fibrosis, hepatopulmonary syndrome, and necrosis or infarction of bone and other organs. Adult patients with Gaucher disease should be screened for longterm complication such as bone disease, pulmonary hypertension, gallstone, and cancer, especially in patients with splenectomy. Parkinsonism and polyneuropathy was also reported among patients with type 1 Gaucher disease, but ERT does not improve neurological function. We need to review the benefits and unmet needs of ERT in Gaucher disease.

The Relationship between Metabolic Syndrome and Erythrocyte Deformability in Small Vessel Disease Stroke Patients (중풍환자에서 대사증후군과 적혈구변형능의 관련성)

  • Leem, Jung-Tae;Park, Su-Jyung;Kim, Mi-Young;Choi, Won-Woo;Jung, Woo-Sang;Cho, Ki-Ho;Park, Sung-Wook;Ko, Chang-Nam;Lee, Jung-Sup
    • The Journal of Internal Korean Medicine
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    • v.30 no.4
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    • pp.761-771
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    • 2009
  • Objectives : The aim of this study was to assess the relationship between metabolic syndrome and erythrocyte deform ability in acute stroke patients. Methods : Among 88 of the recruited patients, 52 were diagnosed as metabolic syndrome. We assessed their general characteristics, risk factors. We compared the assessed variables between metabolic syndrome and control group. We analyzed the relationship between metabolic syndrome and erythrocyte deform ability. We analyzed relationship between cardiovascular risk factors and erythrocyte deformability. Results : The general characteristics waist and hip circumference, waist/hip ratio were higher in metabolic syndrome group. The metabolic syndrome group was also diagnosed with hypertension, DM, and hyperlipidemia more often than the control group. The blood test metabolic syndrome group showed higher triglycerides, total lipids, fasting blood sugar, and 2 hours postprandial plasma glucose level and lower HDL-cholesterol than the control group. There were more patients diagnosed with Dampness-Phlegm in the metabolic syndrome group. There were more patients showing lower erythrocyte deform ability in the metabolic syndrome group. The plasma homocysteine level was negatively correlated with erythrocyte deform ability. Conclusion : The results reconfirmed that the risk factors are more in metabolic syndrome group. The results indicated that metabolic syndrome lead to a lower erythrocyte deform ability in small vessel disease stroke patients. The Plasma homocysteine level was negatively correlated with erythrocyte deform ability.

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Acute Acquired Metabolic Encephalopathy Based on Diffusion MRI

  • Se Jeong Jeon;See Sung Choi;Ha Yon Kim;In Kyu Yu
    • Korean Journal of Radiology
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    • v.22 no.12
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    • pp.2034-2051
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    • 2021
  • Metabolic encephalopathy is a critical condition that can be challenging to diagnose. Imaging provides early clues to confirm clinical suspicions and plays an important role in the diagnosis, assessment of the response to therapy, and prognosis prediction. Diffusion-weighted imaging is a sensitive technique used to evaluate metabolic encephalopathy at an early stage. Metabolic encephalopathies often involve the deep regions of the gray matter because they have high energy requirements and are susceptible to metabolic disturbances. Understanding the imaging patterns of various metabolic encephalopathies can help narrow the differential diagnosis and improve the prognosis of patients by initiating proper treatment regimen early.

Gut-Brain Connection: Microbiome, Gut Barrier, and Environmental Sensors

  • Min-Gyu Gwak;Sun-Young Chang
    • IMMUNE NETWORK
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    • v.21 no.3
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    • pp.20.1-20.18
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    • 2021
  • The gut is an important organ with digestive and immune regulatory function which consistently harbors microbiome ecosystem. The gut microbiome cooperates with the host to regulate the development and function of the immune, metabolic, and nervous systems. It can influence disease processes in the gut as well as extra-intestinal organs, including the brain. The gut closely connects with the central nervous system through dynamic bidirectional communication along the gut-brain axis. The connection between gut environment and brain may affect host mood and behaviors. Disruptions in microbial communities have been implicated in several neurological disorders. A link between the gut microbiota and the brain has long been described, but recent studies have started to reveal the underlying mechanism of the impact of the gut microbiota and gut barrier integrity on the brain and behavior. Here, we summarized the gut barrier environment and the 4 main gut-brain axis pathways. We focused on the important function of gut barrier on neurological diseases such as stress responses and ischemic stroke. Finally, we described the impact of representative environmental sensors generated by gut bacteria on acute neurological disease via the gut-brain axis.

Magnetic resonance imaging and spectroscopic analysis in 5 cases of Pelizaeus-Merzbacher disease: metabolic abnormalities as diagnostic tools

  • Lee, Eun;Yum, Mi-Sun;Choi, Hae-Won;Yoo, Han-Wook;You, Su Jeong;Lee, Eun-Hye;Ko, Tae-Sung
    • Clinical and Experimental Pediatrics
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    • v.55 no.10
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    • pp.397-402
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    • 2012
  • Pelizaeus-Merzbacher disease (PMD) is a rare, X-linked recessive disorder characterized by dysmyelination in the central nervous system. PMD results from deletion, mutation, or duplication of the proteolipid protein gene (PLP1) located at Xq22, leading to the failure of axon myelination by oligodendrocytes in the central nervous system. PMD may be suspected when there are clinical manifestations such as nystagmus, developmental delays, and spasticity, and genetic analysis can confirm the diagnosis. Further diagnostic manifestations of the disease include a lack of myelination on brain magnetic resonance (MR) imaging and aberrant N-acetyl aspartate (NAA) and choline concentrations that reflect axonal and myelination abnormalities on phroton MR spectroscopy. We report 5 cases of PMD (in 1 girl and 4 boys). PLP1 duplication was detected in 2 patients. Brain MR analyses and MR spectroscopy were performed for all the patients. The brain MR images showed white matter abnormalities typical of PMD, and the MR spectroscopic images showed diverse patterns of NAA, creatinine, and choline concentrations. We propose that MR spectroscopic analysis of metabolic alterations can aid the PMD diagnosis and can contribute to a better understanding of the pathogenesis of the disease.

Role of Diffusion-weighted MR Imaging in Children with Various Brain Pathologies

  • 최성훈;구현우;고태성;나영신;강신광;김태형
    • Proceedings of the KSMRM Conference
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    • 2003.10a
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    • pp.99-99
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    • 2003
  • To exhibit our clinical experience of diffusion-weighted (DW) MR imaging for various brain pathologies and to determine its role in characterizing brain pathologies in children. DW images in 177 children (M:F=96:81, mean age, 4.7 years) with various brain pathologies were retrospectively collected over past 3 years. DW images (b value: 1000 s/mm) were reviewed along with corresponding apparent diffusion coefficient (ADC) maps. Brain pathologies included cystic or solid brain tumor (n = 55), cerebral infarct (n = 32), cerebritis with or without brain abscess (n = 21), metabolic or toxic brain disorder (n = 19), demyelinating disease (n = 16), hypoxic-ischemic encephalopathy (n = 16), intracerebral hemorrhage including traumatic brain lesion (n = 15), and posterior reversible leukoencephalopathy (n = 3). We reviewed whether DW images and ADCmaps contribute to further characterization of brain pathologies by defining a chronological age of lesions, the presence of cytotoxic edema in lesions, and the nature of cystic lesions.

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Physiological approach of CADASIL animal model and its predictable implication (CADASIL 동물모델의 생리학적 접근 및 연구적 가치의 예측)

  • Jung, Sung-Cherl;Ko, Eun-A
    • Journal of Medicine and Life Science
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    • v.16 no.3
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    • pp.55-59
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    • 2019
  • Cerebral vessels are functionally and structurally specialized to provide adequate blood flow to brain which shows high metabolic rates. Cerebral hemorrhage or ischemic infarction due to cerebrovascular injury or occlusion can cause the immediate brain damage, and if not treated rapidly, can lead to serious or permanent brain damages, and sometimes life-threatening. Unlike these popular cerebrovascular diseases, there are diseases caused by genetic problems. Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is one of them. CADASIL does not show the high incidence, but it is considered to be significantly affected by regional obstructiveness such as islands and therefore, to be an important genetic disease in Jeju. This paper aims to summarize the possibility of animal model research that can provide preclinical data for CADASIL disease research and to evaluate its applicability in future research plans.

Mechanisms of Amyloid-β Peptide Clearance: Potential Therapeutic Targets for Alzheimer's Disease

  • Yoon, Sang-Sun;AhnJo, Sang-Mee
    • Biomolecules & Therapeutics
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    • v.20 no.3
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    • pp.245-255
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    • 2012
  • Amyloid-${\beta}$ peptide ($A{\beta}$) is still best known as a molecule to cause Alzheimer's disease (AD) through accumulation and deposition within the frontal cortex and hippocampus in the brain. Thus, strategies on developing AD drugs have been focused on the reduction of $A{\beta}$ in the brain. Since accumulation of $A{\beta}$ depends on the rate of its synthesis and clearance, the metabolic pathway of $A{\beta}$ in the brain and the whole body should be carefully explored for AD research. Although the synthetic pathway of $A{\beta}$ is equally important, we summarize primarily the clearance pathway in this paper because the former has been extensively reviewed in previous studies. The clearance of $A{\beta}$ from the brain is accomplished by several mechanisms which include non-enzymatic and enzymatic pathways. Nonenzymatic pathway includes interstitial fluid drainage, uptake by microglial phagocytosis, and transport across the blood vessel walls into the circulation. Multiple $A{\beta}$-degrading enzymes (ADE) implicated in the clearance process have been identified, which include neprilysin, insulin-degrading enzyme, matrix metalloproteinase-9, glutamate carboxypeptidase II and others. A series of studies on $A{\beta}$ clearance mechanism provide new insight into the pathogenesis of AD at the molecular level and suggest a new target for the development of novel therapeutics.

Studies on the possible role of thiamine in the central nervous system

  • Iwata, Heitaroh
    • Archives of Pharmacal Research
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    • v.3 no.1
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    • pp.51-55
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    • 1980
  • Thiamine, in the form of its diphosphate (TDP), is well known to act as a coenzyme, and during the early stage in the study of thiamine it had been believed that the symptoms of thiamine-deficiency were resulted secondarily from the disturbance of metabolic processes in which TDP participated as a coenzyme. However, the neurological symptoms in thiamine deficiency are now separated from the metabolic disturbances in thiamine deficiency. On the other hand, the specific involvement of phosphorylated thiamine in nerve conduction has been suggested by von Muralt, but nature of this involvement has not been elucidated at a molecular level. Recently the possible significance of thiamine triphosphate (TTP) in nervous tissue was suggested by the demonstration that TTP is not present in the brain of patients with subacute necrotizing encephalomyelitis, a fatal disease associated with an abnormality in thiamine metabolism. Furthermore, the studies using membrane fragments of rat brain strongly indicated that ion movement across the nerve membrane is associated with dephosphorylation of phosphorylated thiamine.

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