• 제목/요약/키워드: brain diseases

검색결과 880건 처리시간 0.033초

Acid-sensing ion channels (ASICs): therapeutic targets for neurological diseases and their regulation

  • Kweon, Hae-Jin;Suh, Byung-Chang
    • BMB Reports
    • /
    • 제46권6호
    • /
    • pp.295-304
    • /
    • 2013
  • Extracellular acidification occurs not only in pathological conditions such as inflammation and brain ischemia, but also in normal physiological conditions such as synaptic transmission. Acid-sensing ion channels (ASICs) can detect a broad range of physiological pH changes during pathological and synaptic cellular activities. ASICs are voltage-independent, proton-gated cation channels widely expressed throughout the central and peripheral nervous system. Activation of ASICs is involved in pain perception, synaptic plasticity, learning and memory, fear, ischemic neuronal injury, seizure termination, neuronal degeneration, and mechanosensation. Therefore, ASICs emerge as potential therapeutic targets for manipulating pain and neurological diseases. The activity of these channels can be regulated by many factors such as lactate, $Zn^{2+}$, and Phe-Met-Arg-Phe amide (FMRFamide)-like neuropeptides by interacting with the channel's large extracellular loop. ASICs are also modulated by G protein-coupled receptors such as CB1 cannabinoid receptors and 5-$HT_2$. This review focuses on the physiological roles of ASICs and the molecular mechanisms by which these channels are regulated.

Curcumin이 microglia의 활성화에 미치는 영향 (Effects of Curcumin on the Microglial Activation)

  • 정기경;이상진;이선우;강석연;김태균;강주혜;홍성렬;주일로;김승희
    • 약학회지
    • /
    • 제44권5호
    • /
    • pp.448-454
    • /
    • 2000
  • Microglia, brain resident macrophages, play a central role in the inflammatory responses of the brain and are activated in brain injuries and several neurodegenerative diseases such as Alzheimer's and Parkinson's disease, thereby aggravating the course of these diseases. In this study, the effects of plantderived compounds such as curcumin or gingerol on the microglial activation were examined. Microglial cultures were prepared from 2~3 week mixed primary glial cultures obtained from the cerebral cortex of 1~2 day old rats and identified by immunocytochemistry using microglial-specific antibody OX-42. Microglia were activated by lipopolysaccharide (LPS) and interferon-${\gamma}$ (IFN-${\gamma}$) and the effect of curcumin or 6-gingerol on the microglial activation was examined. Specific parameters measured to monitor microglial activation were nitric oxide (NO), prostaglandin E$_2$(PGE$_2$) and tumor necrosis factor-$\alpha$ (TNF-$\alpha$) release. Curcumin (1~10 $\mu$M) inhibited NO release induced by LPS and IFN-${\gamma}$ in a dose-dependent manner whereas 6-gingerol (2~20 $\mu$M) did not have any effect on LPS/IFN-${\gamma}$-induced NO release. The levels of PGE$_2$and TNF-$\alpha$ induced by LPS and IFN-${\gamma}$ were also inhibited by 1~10 $\mu$M curcumin in a dose-dependent manner. These results showed that curcumin could modulate microglial activation.

  • PDF

뇌전이암 진단을 위한 제한적 뇌 자기공명영상의 유용성에 관한 연구 (Detection of Brain Metastatses Using Limited Brain MR Imaging : Usefulness of Limited Contrast-Enhanced MR Imaging in Brain Metastasis)

  • 권선중;이연선;안진영;박희선;정성수;김주옥;김진환;송창준;김선영
    • Tuberculosis and Respiratory Diseases
    • /
    • 제55권5호
    • /
    • pp.499-505
    • /
    • 2003
  • 연구배경 : 본 논문에서는 뇌 전이 병소의 발견에 있어서 고식적 조영증강 자기공명영상 기법과 비교하여 제한적 조영증강 자기공명영상의 유용성을 알아보고자 하였다. 방 법 : 1998년 4월부터 2002년 9월까지 뇌 전이의 여부를 알아보기 위해 고식적 뇌 자기공명영상올 시행한 폐암 및 기타 암으로 진단을 받은 47명의 환자를 대상으로 하였다. 47명의 환자에서 축상면 T1 강조영상, 축상면 조영증강 T1강조영상, 관상면 조영증강 Tl 강조영상을 포함하는 제한적 뇌 자기공명영상을 선정하여 뇌 전이 결절의 영상판독을 시도하고 이를 고식적 뇌 자기공명영상의 영상소견과 비교하여 뇌 전이 발견의 민감도, 특이도와 일치율을 알아보았다. 결 과 : 47명의 환자 중 고식적 조영증강 자기공명영상에서 43명이 뇌 전이가 있었고, 제한적 자기공명영상에서는 42명에서 뇌 전이를 발견하였다.(민감도=97.67%). 고식적 뇌 자기공명영상에서 뇌 전이가 없었던 4명의 환자는 제한적 뇌 자기공명영상에서도 모두 뇌 전이가 없었다.(특이도=100%) 제한적 뇌 자기공명영상과 고식적 뇌 자기공명영상은 Pearson correlation이 0.884(Confidence Interval: 99%)로 높은 일치율올 보였다. 결 론 : 제한적 뇌 자기공명영상은 적은 비용으로 뇌 전이 여부를 판정할 수 있는 방법으로 제한적 자기공명 영상은 고식적 자기공명영상에 비해 손색없는 진단율을 보이므로 증상이 있는 환자에서만 시행되어 왔던 뇌영상 조영을 무증상 환자에서도 뇌 전이의 여부를 알아보기 위해 시행할 수 있을 것이다.

정신과적 장애와 연관되는 신경계 질환들 (Nerveous System Diseases Associated with Psychiatric Disorders)

  • 이대희
    • 정신신체의학
    • /
    • 제4권2호
    • /
    • pp.286-293
    • /
    • 1996
  • The studying and teaching of behavioral neurology remain in their infancy. As the arena for studying how the brain subserves cognition, emotion and consciousness, behavioral neurology straddles the boundaries of numerous, more established disciplines-extending from the most fundamental explorations of molecular biology to the broadest questions of philosophy. In behavioral neurology, the area of neural dysfunction as well as the pathogenesis must be determined. There are cases in which a more thorough mental status examination must be performed. These are practically the cases with known or suspected brain lesions and acute psychiatric disorders.

  • PDF

Phagocytic Roles of Glial Cells in Healthy and Diseased Brains

  • Jung, Yeon-Joo;Chung, Won-Suk
    • Biomolecules & Therapeutics
    • /
    • 제26권4호
    • /
    • pp.350-357
    • /
    • 2018
  • Glial cells are receiving much attention since they have been recognized as important regulators of many aspects of brain function and disease. Recent evidence has revealed that two different glial cells, astrocytes and microglia, control synapse elimination under normal and pathological conditions via phagocytosis. Astrocytes use the MEGF10 and MERTK phagocytic pathways, and microglia use the classical complement pathway to recognize and eliminate unwanted synapses. Notably, glial phagocytosis also contributes to the clearance of disease-specific protein aggregates, such as ${\beta}$-amyloid, huntingtin, and ${\alpha}$-synuclein. Here we reivew recent findings showing that glial cells are active regulators in brain functions through phagocytosis and that changes in glial phagocytosis contribute to the pathogenesis of various neurodegenerative diseases. A better understanding of the cellular and molecular mechanisms of glial phagocytosis in healthy and diseased brains will greatly improve our current approach in treating these diseases.

Polyunsaturated Fatty Acids in Children

  • Lee, Ji-Hyuk
    • Pediatric Gastroenterology, Hepatology & Nutrition
    • /
    • 제16권3호
    • /
    • pp.153-161
    • /
    • 2013
  • Polyunsaturated fatty acids (PUFAs) are the major components of brain and retina, and are the essential fatty acids with important physiologically active functions. Thus, PUFAs should be provided to children, and are very important in the brain growth and development for fetuses, newborn infants, and children. Omega-3 fatty acids decrease coronary artery disease and improve blood flow. PUFAs have been known to have anti-inflammatory action and improved the chronic inflammation such as auto-immune diseases or degenerative neurologic diseases. PUFAs are used for metabolic syndrome related with obesity or diabetes. However, there are several considerations related with intake of PUFAs. Obsession with the intake of unsaturated fatty acids could bring about the shortage of essential fatty acids that are crucial for our body, weaken the immune system, and increase the risk of heart disease, arrhythmia, and stroke. In this review, we discuss types, physiologic mechanism of action of PUFAs, intake of PUFAs for children, recommended intake of PUFAs, and considerations for the intake of PUFAs.

Neuroprotective roles of pituitary adenylate cyclase-activating polypeptide in neurodegenerative diseases

  • Lee, Eun Hye;Seo, Su Ryeon
    • BMB Reports
    • /
    • 제47권7호
    • /
    • pp.369-375
    • /
    • 2014
  • Pituitary adenylate cyclase-activating polypeptide (PACAP) is a pleiotropic bioactive peptide that was first isolated from an ovine hypothalamus in 1989. PACAP belongs to the secretin/glucagon/vasoactive intestinal polypeptide (VIP) superfamily. PACAP is widely distributed in the central and peripheral nervous systems and acts as a neurotransmitter, neuromodulator, and neurotrophic factor via three major receptors (PAC1, VPAC1, and VPAC2). Recent studies have shown a neuroprotective role of PACAP using in vitro and in vivo models. In this review, we briefly summarize the current findings on the neurotrophic and neuroprotective effects of PACAP in different brain injury models, such as cerebral ischemia, Parkinson's disease (PD), and Alzheimer's disease (AD). This review will provide information for the future development of therapeutic strategies in treatment of these neurodegenerative diseases.

Gene Expression Related to Cognitive Function in Growth Hormone-treated Mice with Prader-Willi Syndrome

  • Ko, Ah-Ra
    • Journal of mucopolysaccharidosis and rare diseases
    • /
    • 제2권2호
    • /
    • pp.38-40
    • /
    • 2016
  • Prader-Willi syndrome (PWS) is a rare genetic disorder often caused by a deletion of the chromosome 15q11-q13 region inherited from the father or by maternal disomy 15. Growth hormone deficiency with short stature, hypogonadism, cognitive and behavioral problems, analgesia, decreased gastric motility and decreased ability to vomit with hyperphagia are common in PWS leading to severe obesity in early childhood, if not controlled. The goal of this study is to investigate the effects of recombinant human GH (rhGH, henceforth designated GH) on the gene expression related to cognitive function in the brain of PWS mouse model (Snord116del). GH restored the mRNA expression level of several genes in the cerebellum. These data suggest the effect of GH on the expression of cognitive function related genes in cerebellum may provide a mechanism for the GH-induced brain function in PWS patients.

Animal Models of Cognitive Deficits for Probiotic Treatment

  • Kwon, Oh Yun;Lee, Seung Ho
    • 한국축산식품학회지
    • /
    • 제42권6호
    • /
    • pp.981-995
    • /
    • 2022
  • Cognitive dysfunction is a common symptom of neurodegenerative diseases, such as Alzheimer's disease, Parkinson's disease, and Huntington's disease, and is known to be caused by the structural and functional loss of neurons. Many natural agents that can improve cognitive function have been developed and assessed for efficacy using various cognitive deficit animal models. As the gut environment is known to be closely connected to brain function, probiotics are attracting attention as an effective treatment target that can prevent and mitigate cognitive deficits as a result of neurodegenerative diseases. Thus, the objective of this review is to provide useful information about the types and characteristics of cognitive deficit animal models, which can be used to evaluate the anti-cognitive effects of probiotics. In addition, this work reviewed recent studies describing the effects and treatment conditions of probiotics on cognitive deficit animal models. Collectively, this review shows the potential of probiotics as edible natural agents that can mitigate cognitive impairment. It also provides useful information for the design of probiotic treatments for cognitive deficit patients in future clinical studies.

Increased B Cell Understanding Puts Improved Vaccine Platforms Just Over the Horizon

  • Geneva Rose Notario;Kihyuck Kwak
    • IMMUNE NETWORK
    • /
    • 제22권6호
    • /
    • pp.47.1-47.20
    • /
    • 2022
  • In the face of an endlessly expanding repertoire of Ags, vaccines are constantly being tested, each more effective than the last. As viruses and other pathogens evolve to become more infectious, the need for efficient and effective vaccines grows daily, which is especially obvious in an era that is still attempting to remove itself from the clutches of the severe acute respiratory syndrome coronavirus 2, the cause of coronavirus pandemic. To continue evolving alongside these pathogens, it is proving increasingly essential to consider one of the main effector cells of the immune system. As one of the chief orchestrators of the humoral immune response, the B cell and other lymphocytes are essential to not only achieving immunity, but also maintaining it, which is the vital objective of every vaccine.