• 제목/요약/키워드: amyloid ${\beta}$

검색결과 427건 처리시간 0.024초

Sprague-Dawley 랫드를 이용한 Up & Down 법 (UDP)에 의한 LMK02의 단회 경구투여 독성시험 (Up-and-Down Procedure(UDP) Determinations of Acute Oral Toxicity of LMK02-Jangwonhwan in SD Rats)

  • 강형원;권영미;이상원;김지훤;이효경;장현호;박보라;류영수
    • 동의신경정신과학회지
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    • 제21권3호
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    • pp.87-93
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    • 2010
  • Objectives : The oriental medicine Jangwonhwan originally described in the Korean medical text, DonguiBogam(amnesia chapter). Recently, a modified formula of Jangwonhwan(LMK02-Jangwonhwan), was shown to reduce $\beta$-amyloid deposition in the brain of Tg-APPswe/PS1dE9 mouse model for Alzheimer's disease. This experiment aimed to investigate the acute oral toxicity of LMK02 in SD rats by up-and-down procedure determinations. Methods : Quality control of tablet form of LMK02 was established by estimating indicative components, Ginsenoside Rg3 of Red Ginseng and Decursin of Angelicagigas Nakai. The toxicity of LMK02 was investigated in 6 week old, specific pathogen free(SPF), Sprageu-Dawley rats. 3 female rats received 5,000 mg/10 ml/kg of test substance and their death rate, clinical sings, weight changes and autopsy findings had been observed for 2 weeks. Results : Any specific symptoms or death were resulted in this experiment. No significant changes in rats' weight. No significant differences in atopsy. Conclusions : The minimum lethal dose(MLD) of LMK02 for female Sprauge-Dawley rats were more than 5,000mg/kg in this experiment.

Fe65단백질의 한 PTB 도메인에 대한 과발현 및 초기 결정화 (High-level production and initial crystallization of a Fe65 PTB domain)

  • 노승현;하남출
    • 생명과학회지
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    • 제17권1호
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    • pp.18-23
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    • 2007
  • 신경세포에 특이적으로 발현되는 단백질인 Fe65는 두 개의 phosphotyrosine binding(PTB) 도메인을 가지고 있다. 두번째 PTB(PTB2)도메인은 아밀로이드 베타 전구 단백질(APP)의 세포질 도메인 조각(AICD)와 결합한다. 최근 연구 결과들은 AICD와 Fe65로 이루어진 결합체가 알츠하이머병에서 신경세포를 죽게 하는 유전자를 발현한다고 제시하고 있다. 따라서 Fe65와 AICD의 결합을 방해하는 화합물은 알츠하이머병을 치료하는데 후보물질이 될 수 있다. 하지만 AICD와 Fe65와 관련된 신호전달에 대한 분자적 기전은 잘 알려져 있지 않다. 이번 연구에서는 Fe65의 PTB2도메인을 baculovirus시스템에서 과발현시킨 결과를 보고한다. 세균 및 척추동물 세포를 이용한 시스템과 비교했을 때, baculovirus 시스템 이 훨씬 효과적 이 다는 것을 발견했다. 정제된 재조합 단백질을 이용하여 초기 결정을 얻었다. 결정을 이용하여 앞으로 밝힐 3차원 구조는 Fe65관련 신호전달체계에 대한 분자 기전 및 이에 대한 저해제 개발에 큰 도움을 줄 것이다.

Ginsenosides attenuate bioenergetics and morphology of mitochondria in cultured PC12 cells under the insult of amyloid beta-peptide

  • Kwan, Kenneth Kin Leung;Yun, Huang;Dong, Tina Ting Xia;Tsim, Karl Wah Keung
    • Journal of Ginseng Research
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    • 제45권4호
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    • pp.473-481
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    • 2021
  • Background: Mitochondrial dysfunction is one of the significant reasons for Alzheimer's disease (AD). Ginsenosides, natural molecules extracted from Panax ginseng, have been demonstrated to exert essential neuroprotective functions, which can ascribe to its anti-oxidative effect, enhancing central metabolism and improving mitochondrial function. However, a comprehensive analysis of cellular mitochondrial bioenergetics after ginsenoside treatment under Aβ-oxidative stress is missing. Methods: The antioxidant activities of ginsenoside Rb1, Rd, Re, Rg1 were compared by measuring the cell survival and reactive oxygen species (ROS) formation. Next, the protective effects of ginsenosides of mitochondrial bioenergetics were examined by measuring oxygen consumption rate (OCR) in PC12 cells under Aβ-oxidative stress with an extracellular flux analyzer. Meanwhile, mitochondrial membrane potential (MMP) and mitochondrial dynamics were evaluated by confocal laser scanning microscopy. Results: Ginsenoside Rg1 possessed the strongest anti-oxidative property, and which therefore provided the best protective function to PC12 cells under the Aβ oxidative stress by increasing ATP production to 3 folds, spare capacity to 2 folds, maximal respiration to 2 folds and non-mitochondrial respiration to 1.5 folds, as compared to Aβ cell model. Furthermore, ginsenoside Rg1 enhanced MMP and mitochondrial interconnectivity, and simultaneously reduced mitochondrial circularity. Conclusion: In the present study, these results demonstrated that ginsenoside Rg1 could be the best natural compound, as compared with other ginsenosides, by modulating the OCR of cultured PC12 cells during oxidative phosphorylation, in regulating MMP and in improving mitochondria dynamics under Aβ-induced oxidative stress.

Effect of Lactobacillus dominance modified by Korean Red Ginseng on the improvement of Alzheimer's disease in mice

  • Lee, Mijung;Lee, So-Hee;Kim, Min-Soo;Ahn, Kwang-Sung;Kim, Manho
    • Journal of Ginseng Research
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    • 제46권3호
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    • pp.464-472
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    • 2022
  • Background: Gut microbiota influence the central nervous system through gut-brain-axis. They also affect the neurological disorders. Gut microbiota differs in patients with Alzheimer's disease (AD), as a potential factor that leads to progression of AD. Oral intake of Korean Red Ginseng (KRG) improves the cognitive functions. Therefore, it can be proposed that KRG affect the microbiota on the gut-brain-axis to the brain. Methods: Tg2576 were used for the experimental model of AD. They were divided into four groups: wild type (n = 6), AD mice (n = 6), AD mice with 30 mg/kg/day (n = 6) or 100 mg/kg/day (n = 6) of KRG. Following two weeks, changes in gut microbiota were analyzed by Illumina HiSeq4000 platform 16S gene sequencing. Microglial activation were evaluated by quantitative Western blot analyses of Iba-1 protein. Claudin-5, occludin, laminin and CD13 assay were conducted for Blood-brain barrier (BBB) integrity. Amyloid beta (Aβ) accumulation demonstrated through Aβ 42/40 ratio was accessed by ELISA, and cognition were monitored by Novel object location test. Results: KRG improved the cognitive behavior of mice (30 mg/kg/day p < 0.05; 100 mg/kg/day p < 0.01), and decreased Aβ 42/40 ratio (p < 0.01) indicating reduced Aβ accumulation. Increased Iba-1 (p < 0.001) for reduced microglial activation, and upregulation of Claudin-5 (p < 0.05) for decreased BBB permeability were shown. In particular, diversity of gut microbiota was altered (30 mg/kg/day q-value<0.05), showing increased population of Lactobacillus species. (30 mg/kg/day 411%; 100 mg/kg/day 1040%). Conclusions: KRG administration showed the Lactobacillus dominance in the gut microbiota. Improvement of AD pathology by KRG can be medicated through gut-brain axis in mice model of AD.

A Neuroprotective Action of Quercetin and Apigenin through Inhibiting Aggregation of Aβ and Activation of TRKB Signaling in a Cellular Experiment

  • Ya-Jen Chiu;Yu-Shan Teng;Chiung-Mei Chen;Ying-Chieh Sun;Hsiu Mei Hsieh-Li;Kuo-Hsuan Chang;Guey-Jen Lee-Chen
    • Biomolecules & Therapeutics
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    • 제31권3호
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    • pp.285-297
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    • 2023
  • Alzheimer's disease (AD) is a neurodegenerative disease with progressive memory loss and the cognitive decline. AD is mainly caused by abnormal accumulation of misfolded amyloid β (Aβ), which leads to neurodegeneration via a number of possible mechanisms such as down-regulation of brain-derived neurotrophic factor-tropomyosin-related kinase B (BDNF-TRKB) signaling pathway. 7,8-Dihydroxyflavone (7,8-DHF), a TRKB agonist, has demonstrated potential to enhance BDNF-TRKB pathway in various neurodegenerative diseases. To expand the capacity of flavones as TRKB agonists, two natural flavones quercetin and apigenin, were evaluated. With tryptophan fluorescence quenching assay, we illustrated the direct interaction between quercetin/apigenin and TRKB extracellular domain. Employing Aβ folding reporter SH-SY5Y cells, we showed that quercetin and apigenin reduced Aβ-aggregation, oxidative stress, caspase-1 and acetylcholinesterase activities, as well as improved the neurite outgrowth. Treatments with quercetin and apigenin increased TRKB Tyr516 and Tyr817 and downstream cAMP-response-element binding protein (CREB) Ser133 to activate transcription of BDNF and BCL2 apoptosis regulator (BCL2), as well as reduced the expression of pro-apoptotic BCL2 associated X protein (BAX). Knockdown of TRKB counteracted the improvement of neurite outgrowth by quercetin and apigenin. Our results demonstrate that quercetin and apigenin are to work likely as a direct agonist on TRKB for their neuroprotective action, strengthening the therapeutic potential of quercetin and apigenin in treating AD.

Characterization of age- and stage-dependent impaired adult subventricular neurogenesis in 5XFAD mouse model of Alzheimer's disease

  • Hyun Ha Park;Byeong-Hyeon Kim;Seol Hwa Leem;Yong Ho Park;Hyang-Sook Hoe;Yunkwon Nam;Sujin Kim;Soo Jung Shin;Minho Moon
    • BMB Reports
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    • 제56권9호
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    • pp.520-525
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    • 2023
  • Alzheimer's disease (AD) is a progressive neurodegenerative disease characterized by cognitive decline. Several recent studies demonstrated that impaired adult neurogenesis could contribute to AD-related cognitive impairment. Adult subventricular zone (SVZ) neurogenesis, which occurs in the lateral ventricles, plays a crucial role in structural plasticity and neural circuit maintenance. Alterations in adult SVZ neurogenesis are early events in AD, and impaired adult neurogenesis is influenced by the accumulation of intracellular Aβ. Although Aβ-overexpressing transgenic 5XFAD mice are an AD animal model well representative of Aβ-related pathologies in the brain, the characterization of altered adult SVZ neurogenesis following AD progression in 5XFAD mice has not been thoroughly examined. Therefore, we validated the characterization of adult SVZ neurogenesis changes with AD progression in 2-, 4-, 8-, and 11-monthold male 5XFAD mice. We first investigated the Aβ accumulation in the SVZ using the 4G8 antibody. We observed intracellular Aβ accumulation in the SVZ of 2-month-old 5XFAD mice. In addition, 5XFAD mice exhibited significantly increased Aβ deposition in the SVZ with age. Next, we performed a histological analysis to investigate changes in various phases of adult neurogenesis, such as quiescence, proliferation, and differentiation, in SVZ. Compared to age-matched wild-type (WT) mice, quiescent neural stem cells were reduced in 5XFAD mice from 2-11 months of age. Moreover, proliferative neural stem cells were decreased in 5XFAD mice from 2 to 8 months of age. Furthermore, differentiations of neuroblasts were diminished in 5XFAD mice from 2-11 months of age. Intriguingly, we found that adult SVZ neurogenesis was reduced with aging in healthy mice. Taken together, our results revealed that impairment of adult SVZ neurogenesis appears with aging or AD progression.

Protective effect of Capsosiphon fulvescens on oxidative stress-stimulated neurodegenerative dysfunction of PC12 cells and zebrafish larva models

  • Laxmi Sen Thakuri;Jung Eun Kim;Jin Yeong Choi;Dong Young Rhyu
    • Fisheries and Aquatic Sciences
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    • 제26권1호
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    • pp.24-34
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    • 2023
  • Reactive oxygen species (ROS) at high concentrations induce oxidative stress, an imbalanced redox state that is a prevalent cause of neurodegenerative disorders. This study aimed to investigate the protective effect of Capsosiphon fulvescens (CF) extract on oxidative stress-induced impairment of cognitive function in models of neurodegenerative diseases. CF was extracted with subcritical water and several solvents and H2O2 (0.25 mM) or aluminum chloride (AlCl3; 25 µM) as an inducer of ROS was treated in PC12 neuronal cells and zebrafish larvae. All statistical analyses were performed using one-way analysis of variance and Dunnett's test using GraphPad Prism. H2O2 and AlCl3 were found to significantly induce ROS production in PC12 neuronal cells and zebrafish larvae. In addition, they strongly affected intracellular Ca2+ levels, antioxidant enzyme activity, brain-derived neurotrophic factor (BDNF) and tropomyosin receptor kinase B (TrkB) signaling, acetylcholinesterase (AChE) activity, and hallmarks of Alzheimer's disease. However, treatment of H2O2-induced PC12 cells or AlCl3-induced zebrafish larvae with CF subcritical water extract at 90℃ and CF water extract effectively regulated excessive ROS production, intracellular Ca2+ levels, and mRNA expression of superoxide dismutase, glutathione peroxide, glycogen synthase kinase-3 beta, β-amyloid, tau, AChE, BDNF, and TrkB. Our study suggested that CF extracts can be a potential source of nutraceuticals that can improve the impairment of cognitive function and synaptic plasticity by regulating ROS generation in neurodegenerative diseases.

Effect of black chokeberry on skeletal muscle damage and neuronal cell death

  • Kim, Jisu;Lee, Kang Pa;Beak, Suji;Kang, Hye Ra;Kim, Yong Kyun;Lim, Kiwon
    • 운동영양학회지
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    • 제23권4호
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    • pp.26-31
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    • 2019
  • [Purpose] Numerous epidemiological studies have shown that it is possible to prescribe exercise for neurodegenerative disease, such as Alzheimer's disease and Parkinson's disease. However, despite the availability of diverse scientific knowledge, the effects of exercise in this regard are still unclear. Therefore, this study attempted to investigate a substance, such as black chokeberry (Aronia melanocapa L.) that could improve the ability of the treatment and enhance the benefits of exercising in neurodegenerative diseases. [Methods] The cell viability was tested with 2,3-bis[2-methyloxy-4-nitro-5-sulfophenyl]-2H-tetrazolim-5-carboxanilide and the cells were stained with ethidium homodimer-1 solution. The mRNA expression levels were evaluated by microarray. The active compounds of black chokeberry ethanolic extract (BCE) were analyzed by gas chromatography. The chemical shift analysis in the brain was performed using magnetic resonance spectroscopy. [Results] BCE treatment decreased hydrogen peroxide-induced L6 cell death and beta amyloid induced primary neuronal cell death. Furthermore, BCE treatment significantly reduced the mRNA levels of the inflammatory factors, such as IL-1α, Cxcl13, IL36rn, Itgb2, Epha2, Slamf8, Itgb6, Kdm6b, Acvr1, Cd6, Adora3, Cd27, Gata3, Tnfrsf25, Cd40lg, Clec10a, and Slc11a1, in the primary neuronal cells. Next, we identified 16 active compounds from BCE, including D-mannitol. In vivo, BCE (administered orally at a dosage of 50 mg/kg) significantly regulated chemical shift in the brain. [Conclusion] Our findings suggest that BCE can serve as a candidate for neurodegenerative disease therapy owing to its cyto-protective and anti-inflammatory effects. Therefore, BCE treatment is expected to prevent damage to the muscles and neurons of the athletes who continue high intensity exercise. In future studies, it would be necessary to elucidate the effects of combined BCE intake and exercise.

알츠하이머질병 모델동물인 Tg2576 마우스를 이용한 미나리 알코올추출물의 기억력 개선 효능 (Effect of Dropwort (Oenanthe javanica) Extracts on Memory Improvement in Alzheimer's Disease Animal Model, Tg2576 mice)

  • 원범영;신기영;하현지;장근아;윤여상;김예리;박용진;이형근
    • 한국식품과학회지
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    • 제47권6호
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    • pp.779-784
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    • 2015
  • 본 연구는 천연 식물이 기억력 개선에 미치는 영향을 검토하기 위하여 총 7가지 식물에 대하여 아세틸콜린분해효소 활성 억제력을 측정하였다. 특히 미나리 알코올추출물(18.76%)의 억제력이 가장 우수하였으며, 미나리 알코올추출물에 대한 추가 연구를 수행하였다. Tg2576 마우스의 기억력에 미치는 영향을 검토하기 위하여 미나리 알코올추출물 50 mg/kg으로 3개월간 경구투여 후 수동회피테스트로 인지기능변화를 측정하였고, 뇌 속의 아세틸콜린분해효소 활성 억제, 베타아밀로이드1-42 단백질 생성 억제력을 측정하였다. 그 결과, 수동회피 테스트에서 미나리추출물을 투여한 Tg 마우스군은 181.77초로 생리식염수를 투여한 Tg 마우스군과 비교하여 머무름 시간이 유의적으로 증가하게 나타났다. 베타아밀로이드1-42 단백질 농도 측정 시 미나리 알코올추출물에 의하여 축적 농도가 985.19 pmol/g으로 감소하였으며, 생리식염수를 투여한 Tg 마우스군과 유의적 차이가 있었다. 추가적인 효소 억제력 실험 결과, 미나리 알코올추출물의 아세틸콜린분해효소 활성억제에 대한 50% 활성억제농도($IC_{50}$)값은 $991.77{\mu}g/mL$로 나타났으며, Lineweaver-Burk Plot 결과, 무경쟁적 저해로 나타났다. 따라서 미나리 알코올추출물은 Tg2576 형질전환 마우스의 인지기능을 개선시키며, 콜린성 신경시스템을 보호하는 물질로 판단된다. 미나리 알코올추출물은 기억 및 학습 증진에 효과적으로 작용하는 천연식물로써 이상의 결과를 근거로 한 미나리 소재의 다양한 기능성제품 개발과 부가가치 향상이 가능할 것으로 판단된다.

산화적 손상에 의해 유도된 신경세포독성에 대한 검정콩 껍질 추출물의 보호효과 (Protective Effects of Black Soybean Seed Coat Extracts against Oxidative Stress-induced Neurotoxicity)

  • 곽지현;조유나;정지희;김현주;진수일;최성길;허호진
    • 한국식품과학회지
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    • 제45권2호
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    • pp.257-261
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    • 2013
  • 본 연구는 산화적 스트레스로부터 유도되는 신경세포 사멸을 보호할 수 있는 생리활성물질을 탐색하기 위하여 검정콩 껍질 추출물의 항산화 효과 및 PC12 신경세포 보호효과에 대하여 조사하였다. 다양한 용매에 의해 추출된 검정콩 껍질 추출물의 총 페놀화합물 함량을 측정한 결과 70% acetone 추출물이 다른 용매추출물에 비하여 가장 높은 총 페놀화합물 함량을 나타내었으며, 이를 기초로 70% acetone 추출물을 이용한 세포 내 항산화 활성도 높은 것으로 나타났다. 또한 PC12 신경세포 보호효과를 조사한 결과, 세포생존율과 세포막 손상 보호효과에서 70% acetone 추출물 처리구는 최대 $500{\mu}g/mL$까지 $H_2O_2$를 처리한 대조구에 비하여 농도 의존적으로 신경세포 보호효과가 나타남을 알 수 있었다. 동일 추출물을 활용한 in vivo 인지학습능력 평가에서도 대조구인 $A{\beta}$ ICV injection을 한 group과 비교하였을 때 전체적으로 추출물의 농도가 증가할수록 Y-maze test와 passive avoidance test에서 control구와 유사하거나 높은 인지 및 기억 능력 회복효과를 보여주었다. 본 연구결과를 종합해 보면 BSSCE는 항산화, 뇌 신경세포 보호효과 및 in vivo 인지 기억 회복능을 갖는 것으로 판단되며, 추후 검정콩 껍질에 존재하는 유효 생리활성물질을 확인함으로써 현대 사회의 가장 큰 질병 중 하나인 알츠하이머성 치매(AD)와 같은 퇴행성 뇌신경질환 예방에 유용한 소재가 될 것으로 판단된다.