• Title/Summary/Keyword: Beta-amyloid$(A_{\beta})$

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Classification of 18F-Florbetaben Amyloid Brain PET Image using PCA-SVM

  • Cho, Kook;Kim, Woong-Gon;Kang, Hyeon;Yang, Gyung-Seung;Kim, Hyun-Woo;Jeong, Ji-Eun;Yoon, Hyun-Jin;Jeong, Young-Jin;Kang, Do-Young
    • Biomedical Science Letters
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    • v.25 no.1
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    • pp.99-106
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    • 2019
  • Amyloid positron emission tomography (PET) allows early and accurate diagnosis in suspected cases of Alzheimer's disease (AD) and contributes to future treatment plans. In the present study, a method of implementing a diagnostic system to distinguish ${\beta}$-Amyloid ($A{\beta}$) positive from $A{\beta}$ negative with objectiveness and accuracy was proposed using a machine learning approach, such as the Principal Component Analysis (PCA) and Support Vector Machine (SVM). $^{18}F$-Florbetaben (FBB) brain PET images were arranged in control and patients (total n = 176) with mild cognitive impairment and AD. An SVM was used to classify the slices of registered PET image using PET template, and a system was created to diagnose patients comprehensively from the output of the trained model. To compare the per-slice classification, the PCA-SVM model observing the whole brain (WB) region showed the highest performance (accuracy 92.38, specificity 92.87, sensitivity 92.87), followed by SVM with gray matter masking (GMM) (accuracy 92.22, specificity 92.13, sensitivity 92.28) for $A{\beta}$ positivity. To compare according to per-subject classification, the PCA-SVM with WB also showed the highest performance (accuracy 89.21, specificity 71.67, sensitivity 98.28), followed by PCA-SVM with GMM (accuracy 85.80, specificity 61.67, sensitivity 98.28) for $A{\beta}$ positivity. When comparing the area under curve (AUC), PCA-SVM with WB was the highest for per-slice classifiers (0.992), and the models except for SVM with WM were highest for the per-subject classifier (1.000). We can classify $^{18}F$-Florbetaben amyloid brain PET image for $A{\beta}$ positivity using PCA-SVM model, with no additional effects on GMM.

Synthesis of New Benzylpiperidinyl Ether Derivatives as Amyloid-beta Aggregation Inhibitors (베타아밀로이드응집 억제제 도출을 위한 새로운 벤질피페리디닐에터 유도체의 합성)

  • Kwon, Young-Ee
    • YAKHAK HOEJI
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    • v.50 no.5
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    • pp.326-331
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    • 2006
  • We designed and synthesized new benzylpiperidinyl ether derivatives as beta-amyloid aggregation inhibitors for the development of novel anti-Alzheimer's disease agents. As starting material, 4-hydroxypiperidine was used. For protection of the amine group in piperidine (2), di-tert-butyl dicarbonate was reacted with 4-hydroxypiperidine in the presence of triethylamine. For introduction of benzyl group, benzylbromide was treated with compound 2 in dioxane. After deprotection of Boc group on amine in compound 3, ester (5) was synthesized by addition of ethyl-4-chlorobutyrate. The alcohol 6 was synthesized by hydride reduction of 5 using $LiAlH_4$. To obtain final products (7-14), the alcohol 6 was condensed with each of substituted benzoic acids. To screen beta-amyloid aggregation inhibition of the products, thioflavinT assay was performed using $A{\beta}1-42\;at\;37^{\circ}C$ for 26 h incubation, in vitro. From the result of screening, compound 8, 9, 11 and 12 showed effective activity about $65{\sim}85\;{\mu}M\;as\;IC_{50}$ value. Among the prepared compounds, 4-[4-(benzyloxy)piperidino]butyl-4-chlorobenzoate (8) was the most effective inhibitor having $IC_{50}\;of\;65.4{\mu}M$.

Screening of 50 Korean Herbal formulas with Inhibitory Effects on Acetylcholinesterase Activity and Amyloid-β Aggregation (다빈도 한약 처방 50종의 아세틸콜린 분해 효소 활성 및 아밀로이드 베타 단백질 응집 억제 효능 비교 연구)

  • Lim, Hye-Sun;Kim, Yoonju;Kim, Ohn Soon;Jeong, Soo-Jin
    • Korean Journal of Pharmacognosy
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    • v.47 no.3
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    • pp.287-294
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    • 2016
  • Acetylcholinesterase (AChE) activation and amyloid-${\beta}$ ($A{\beta}$) aggregation are major biological markers of Alzheimer's disease. In the present study, we evaluated the inhibitory effects of 50 kinds of herbal formulas on AChE activity and $A{\beta}$ aggregation. Among them, Hwanglyeonhaedok-tang, Cheonwangbosim-dan, Makmundong-tang, and Gamisoyo-san had a potent effects on the inhbition of AChE activity. Sosiho-tang, Samsoeum, Cheonsimyeunjaeum, and Bunsimgieum exerted to have the inhibitory activity on $A{\beta}$ aggregation. In addition, these 8 herbal formulas showed the 3-ethyl-benzothiazoline-6-sulfonic acid (ABTS) radical scavenging activity, indicating their antioxidant activities.

Bi-flavonoids are Superior to Mono-flavonoid in Inhibiting Amyloid-${\beta}$ Toxicity and Fibrillogenesis through Accumulating Nontoxic Oligomer-like Structures

  • Merlin Jayalal, L.P.
    • Journal of Integrative Natural Science
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    • v.5 no.2
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    • pp.107-119
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    • 2012
  • Polymerization of monomeric amyloid-${\beta}$ peptides ($A{\beta}$) into soluble oligomers and insoluble fibrils is one of the major pathways triggering the pathogenesis of Alzheimer's disease (AD). Using small molecules to prevent the polymerization of $A{\beta}$ peptides can, therefore, be an effective therapeutic strategy for AD. In this study, we investigated the effects of mono- and bi-flavonoids on $A{\beta}42$ toxicity and fibrillogenesis and found that the bi-flavonoid, taiwaniaflavone (TF) effectively and specifically inhibits $A{\beta}$ toxicity and fibrillogenesis. Compared to TF, the mono-flavonoid apigenin (AP) is less effective and less specific. Our data showed that differential effects of the mono- and bi-flavonoids on $A{\beta}$ fibrillogenesis correlate with their varying cytoprotective efficacies. We also found that other bi-flavonoids, namely 2',8"-biapigenin, amentoflavone, and sumaflavone, can also effectively inhibit $A{\beta}$ toxicity and fibrillogenesis, implying that the participation of two mono-flavonoids in a single bi-flavonoid molecule enhanced their activity. Bi-flavonoids, while strongly inhibited $A{\beta}$ fibrillogenesis, accumulated nontoxic $A{\beta}$ oligomeric structures, suggesting that these are off-pathway-oligomers. Moreover, TF abrogated the toxicity of preformed $A{\beta}$ oligomers and fibrils, indicating that TF and other bi-flavonoids may also reduce the toxicity of toxic $A{\beta}$ species. Altogether, our data clearly show that bi-flavonoids, possibly due to the possession of two $A{\beta}$ binders separated by an appropriate size linker, are likely to be promising therapeutics to suppress $A{\beta}$ toxicity.

EROGOTHIONEINE RESCUES PCl2 CELLS FROM BETA-AMYLOID-INDUCED APOPTOTIC DEATH

  • Jang, Jung-Hee;Surh, Young-Joon
    • Proceedings of the PSK Conference
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    • 2003.10b
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    • pp.141.2-142
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    • 2003
  • beta-Amyloid (A$\beta$) peptide is the major component of senile plaques and considered to have a causal role in the development and progression of Alzheimer's disease. There has been compelling evidence supporting that $A\beta$-induced cytotoxicity is mediated through oxidative and/or nitrosative stress. Recently, considerable attention has been focused on dietary manipulation of oxidative and/or nitrosative damage. L-Egrothioneine (EGT) is a low-molecular weight naturally occurring thiol compound of dietary origin which exists in milimolar concentrations in the brain, liver, kindney, erythrocytes, ocular tissues and in seminal fluids of mammals. (omitted)

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Inhibition of $A{\beta}42$ Fibrillation and Toxicity with ${\beta}$-Asarone ($A{\beta}42$의 섬유화 및 독성에 대한 ${\beta}$-Asarone의 저해 효과)

  • Kim, Jia;Lee, Chul Won;Lee, Boo Kyun;Lee, Jang Cheon;An, Won Gun
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.28 no.3
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    • pp.317-321
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    • 2014
  • Amyloid-${\beta}$ protein ($A{\beta}$) is a pathological component of Alzheimer's disease (AD) by participating in the senile plaque formation in the patient's brain. Although the exact mechanism of $A{\beta}$ toxicity is not fully elucidated, it is considered to be closely related to its fibrillation process. For prevention of AD, recent studies have suggested various small molecules which inhibit $A{\beta}$ fibrillation. In this report, ${\beta}$-asarone found in acorus plant has been investigated as an anti-amyloid molecule. ${\beta}$-Asarone was demonstrated to prevent in vitro fibrillation of $A{\beta}$ by inducing the oligomer formation that obviously decreased cytotoxicity. Therefore, ${\beta}$-asarone could be suggested as an inhibitory agent of $A{\beta}$ fibrillation and toxicity, which would help us not only to understand underlying principle of amyloidogenesis mechanism but also to develop a controlling strategy toward AD.

Easy Detection of Amyloid β-Protein Using Photo-Sensitive Field Effect

  • Kim, Kwan-Soo;Ju, Jong-Il;Song, Ki-Bong
    • Journal of Sensor Science and Technology
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    • v.21 no.5
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    • pp.339-344
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    • 2012
  • This article describes a novel method for the detection of amyloid-${\beta}$($A{\beta}$) peptide that utilizes a photo-sensitive field-effect transistor (p-FET). According to a recent study, $A{\beta}$ protein has been known to play a central role in the pathogenesis of Alzheimer's disease (AD). Accordingly, we investigated the variation of photo current generated from p-FET with and without intracellular magnetic beads conjugated with $A{\beta}$ peptides, which are placed on the p-FET sensing areas. The decrease of photo current was observed due to the presence of the magnetic beads on the channel region. Moreover, a similar characteristic was shown when the Raw 264 cells take in magnetic beads treated with $A{\beta}$ peptide. This means that it is possible to simply detect a certain protein using magnetic beads and a p-FET device. Therefore, in this paper, we suggest that our method could detect tiny amounts of $A{\beta}$ for early diagnosis of AD using the p-FET devices.

Synthesis of 6-[2-(Benzoxazol-2-ylmethylamino )ethoxy]-1-Alkyl­1 H-lndole-2-Carboxylic Acid and Inhibitory Activity on $\beta$-Amyloid Aggregation

  • Lee, Sun-Mi;Jeon, Raok
    • Archives of Pharmacal Research
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    • v.28 no.11
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    • pp.1219-1223
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    • 2005
  • 6-[2-(Benzoxazol-2-ylmethylamino)ethoxy]-1-alkyl-1H-indole-2-carboxylic acids were designed and synthesized as $\beta$-amyloid (A$\beta$) fibril assembly inhibitors. Their inhibitory activity on A$\beta$, aggregation was evaluated by thioflavin T assay although their activities were insignificant.

Neuroprotective effects of gossypin on beta-amyloid- and oxidative stress-induced toxicity in primary cultured rat cortical cells

  • Yoon, In-Jae;Lee, Kwang-Heun;Cho, Jung-Sook
    • Proceedings of the PSK Conference
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    • 2003.04a
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    • pp.142.1-142.1
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    • 2003
  • Excessive accumulation of beta-amyloid (A$\beta$) peptides is one of the leading hypotheses to explain neurodegenerative processes in Alzheimer's disease (AD). It has been suggested that $A\beta$ toxicity is associated with increases in reactive oxygen species. whose overproduction may in turn initiate neurotoxic events. (omitted)

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Beta-amyloid peptide degradation by aminopeptidase and its functional role in Alzheimer's disease pathogenesis

  • AhnJo, Sang-Mee
    • 한국약용작물학회:학술대회논문집
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    • 2006.04a
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    • pp.75-90
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    • 2006
  • Both synthetic and endogenous $A{\beta}$ are degraded by peptidase G. Both $A{\beta}40$ and 42 are cleaved by peptidase G. Peptidase G cleaves $A{\beta}40$ into small fragments ($A{\beta}18$) which lacks aggregation property and are not toxic to neuron. Peptidase G seems to degrade multimeric $A{\beta}$ more efficiently than monomeric $A{\beta}$. Peptidase G protects neurons from toxicity induced by $A{\beta}$ by cleaving it into smaller fragments. Thus, dis-regulation of peptidase G could contribute amyloid deposit found in AD brain.

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