• 제목/요약/키워드: advanced glycation end-products

검색결과 93건 처리시간 0.027초

도인(挑仁)이 일측 신절제와 streptozotocin으로 유발된 당뇨병성 신증 Rat에 미치는 영향 (The Effects of Prunus on Diabetic Nephropathy Rats Induced by Unilateral Nephrectomy and Streptozotocin)

  • 김남규;오재선;전상윤
    • 대한한방내과학회지
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    • 제35권4호
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    • pp.519-531
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    • 2014
  • Objectives: Diabetic nephropathy is the most common cause of end stage renal disease. Transforming growth factor (TGF)-${\beta}1$, type IV collagen, advanced glycation end-products (AGEs), and angiotensin II type 1 receptor (AT1) are the main factors of diabetic nephropathy. We investigated the effects of Prunus on renal function and histopathological changes of diabetic nephropathy rat model induced by unilateral nephrectomy and streptozotocin. Methods: Diabetes was induced in male Sprague-Dawley rats ($290{\pm}10g$) by injecting streptozotocin (55 mg/kg) into the tail vein after unilateral nephrectomy. Rats were divided into 3 groups (n=6): normal, control, and Prunus. After 8 weeks of oral administration of Prunus extract on the Prunus group from 3 days after streptozotocin injection, we checked weight, 24 hrs urine, blood biochemistry and renal tissue to evaluate renal function and histopathological changes by examining parameters including albuminuria, BUN, creatinine, cholesterol, low density lipoprotein (LDL), triglyceride, TGF-${\beta}1$, type IV collagen, AGEs, and AT1. We also measured mRNA expression of TGF-${\beta}1$, type IV collagen, AGEs, and AT1 by Real Time polymerase chain reaction (RT-PCR). Results: Prunus decreased the amount of 24 hrs proteinuria, and inhibited histopathological changes of diabetic nephropathy including the expression and accumulation of TGF-${\beta}1$, type IV collagen and AGEs which could promote development of diabetic nephropathy. Prunus also inhibited mRNA expression of TGF-${\beta}1$, type IV collagen. Conclusions: These findings suggest that Prunus might protect the renal function and inhibit the development of renal injury by regulating factors including TGF-${\beta}1$, type IV collagen, AGEs, except AT1, so Prunus can be used for diabetic patients to prevent the progression of diabetic nephropathy.

홍삼가수분해추출물의 db/db 마우스에서 신장 손상 예방효과 (Preventive Effects of Pectin Lyase-Modified Red Ginseng Extract on renal injury in db/db mice)

  • 김찬식;조규형;표미경;김진숙;김정현
    • 대한본초학회지
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    • 제33권4호
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    • pp.1-7
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    • 2018
  • Objectives : Diabetic nephropathy is one of the most significant chronic complications of diabetes. Advanced glycation end products (AGEs) have been implicated in the development of diabetic nephropathy. GS-E3D is an enzymatic modified red ginseng extract by pectin lyase and has an increased concentration of the ginsenoside Rd compared to an unmodified red ginseng extract. In this study, we evaluated the preventive effects of GS-E3D on renal dysfunction in the type 2 diabetic db/db mice. Methods : GS-E3D (100 or 250 mg/kg body weight per day) was given to db/db mice through oral gavage for 6 weeks. Body weight and blood glucose levels were examined. At the end of the experiment, albuminuria was measured. The renal tissues were collected for histological examination, and immunohistochemical staining was used to detect renal accumulation of AGEs and podocyte loss Results : In the db/db mice, severe hyperglycemia developed, and albuminuria was significantly increased. Diabetes induced markedly morphological alterations to the renal glomerular cells. AGE accumulations and podocyte loss were detected in renal glomeruli. No difference in blood glucose levels was noted between GS-E3D-treated and vehicletreated diabetic db/db mice. However, GS-E3D treatment significantly reduced albuminuria and AGE accumulations in diabetic mice. Moreover, the loss of podocytes was restored by GS-E3D treatment. Conclusions : GS-E3D might be beneficial for the treatment of diabetic nephropathy. The ability of GS-E3D on to attenuate albuminuria and podocyte dysfunction in the db/db mice may be mediated by the inhibition of AGE accumulation.

S100A12 and RAGE Expression in Human Bladder Transitional Cell Carcinoma: a Role for the Ligand/RAGE Axis in Tumor Progression?

  • Khorramdelazad, Hossein;Bagheri, Vahid;Hassanshahi, Gholamhossein;Karami, Hormoz;Moogooei, Mozhgan;Zeinali, Masoud;Abedinzadeh, Mehdi
    • Asian Pacific Journal of Cancer Prevention
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    • 제16권7호
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    • pp.2725-2729
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    • 2015
  • Background: Transitional cell carcinoma (TCC) and prostate cancer are the most frequent cancers in the male genitourinary tract. Measurement of biological biomarkers may facilitate clinical monitoring and aid early diagnosis of TCC. The aim of the present investigation was to detect the mRNA levels of S100A12 and RAGE (receptor for advanced glycation end products) in patients suffering from bladder TCC. Materials and Methods: To explore the involvement of S100A12 and RAGE genes, total RNA was harvested from cancer tissues and samples obtained from normal non-tumorized urothelium of the same patients. Quantitative PCR (qPCR) was subsequently employed to determine the mRNA levels of S100A12 and RAGE. Results: The results showed that mRNA expression of S100A12 and RAGE was significantly up-regulated in the cancer tissue. Conclusions: According to the results presented in the current study, mRNA expression of S100A12 and RAGE might be as a useful biomarker for TCC. Therefore, this ligand-receptor axis possibly plays important roles in the development of TCC and may serve either as an early diagnostic marker or as a key factor in monitoring of response to treatment. More research is required concerning inhibition of the S100A12-RAGE axis in different cancer models.

HMGB1 Promotes the Synthesis of Pro-IL-1β and Pro-IL-18 by Activation of p38 MAPK and NF-κB Through Receptors for Advanced Glycation End-products in Macrophages

  • He, Qiang;You, Hong;Li, Xin-Min;Liu, Tian-Hui;Wang, Ping;Wang, Bao-En
    • Asian Pacific Journal of Cancer Prevention
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    • 제13권4호
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    • pp.1365-1370
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    • 2012
  • The high mobility group box-1 (HMGB1) protein and NALP3 inflammasome have been identified to play important roles in inflammation and cancer pathogenesis, but the relationships between the two and cancer remain unclear. The current study investigated the relationship between HMGB1 and the NALP3 inflammasome in THP-1 macrophages. HMGB1 was found unable to activate the NALP3 inflammasome and failed to induce the release of the IL-$1{\beta}$ and IL-18 in THP-1 macrophages. HMGB1 was also found significantly enhanced the activity of ATP to induce IL-$1{\beta}$ and IL-18 by the induction of increased expression of pro-IL-$1{\beta}$ and pro-IL-18. This process was dependent on activation of RAGE, MAPK p38 and NF-${\kappa}B$ signaling pathway. These results demonstrate that HMGB1 promotes the synthesis of pro-IL-$1{\beta}$ and pro-IL-18 in THP-1 macrophages by the activation of p38 MAPK and NF-${\kappa}B$ through RAGE. HMGB1 likely plays an important role in the first step of the release of the IL-$1{\beta}$ and IL-18, preparing for other cytokines to induce excessive release of IL-$1{\beta}$ and IL-18 which promote inflammation and cancer progression.

Exploring the beneficial role of telmisartan in sepsis-induced myocardial injury through inhibition of high-mobility group box 1 and glycogen synthase kinase-3β/nuclear factor-κB pathway

  • Jin, Yan;Wang, Hong;Li, Jing;Dang, Minyan;Zhang, Wenzhi;Lei, Yan;Zhao, Hao
    • The Korean Journal of Physiology and Pharmacology
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    • 제24권4호
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    • pp.311-317
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    • 2020
  • In the present experimental study, cecal ligation and puncture significantly increased the myocardial injury assessed in terms of excess release of creative kinase-MB (CK-MB), cardiac troponin I (cTnI), interleukin (IL)-6 and decrease of IL-10 in the blood following 12 h of laparotomy procedure as compared to normal control. Also, a significant increase in protein expression levels of high-mobility group box 1 (HMGB1) and decreased phosphorylation of glycogen synthase kinase-3β (GSK-3β) was observed in the myocardial tissue as compared to normal control. A single independent administration of telmisartan (2 and 4 mg/kg) and AR-A014418 (1 and 2 mg/kg) substantially reduced sepsis-induced myocardial injury in terms of decrease levels of CK-MB, cTnI and IL-6, HMGB1, GSK-3β and increase in IL-10 and p-GSK-3β in the blood in sepsis- subjected rats. The effects of telmisartan at dose 4 mg/kg and AR-A014418 at a dose of 2 mg/kg were significantly higher than the telmisartan at a dose of 2 mg/kg and AR-A014418 1 mg/kg respectively. Further, no significant effects on different parameters were observed in the sham control group in comparison to normal. Therefore it is plausible to suggest that sepsis may increase the levels of angiotensin II to trigger GSK-3β-dependent signaling to activate the HMGB1/receptors for advanced glycation end products, which may promote inflammation and myocardial injury in sepsis-subjected rats.

Characterization of αX I-Domain Binding to Receptors for Advanced Glycation End Products (RAGE)

  • Buyannemekh, Dolgorsuren;Nham, Sang-Uk
    • Molecules and Cells
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    • 제40권5호
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    • pp.355-362
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    • 2017
  • The ${\beta}2$ integrins are cell surface transmembrane proteins regulating leukocyte functions, such as adhesion and migration. Two members of ${\beta}2$ integrin, ${\alpha}M{\beta}2$ and ${\alpha}X{\beta}2$, share the leukocyte distribution profile and integrin ${\alpha}X{\beta}2$ is involved in antigen presentation in dendritic cells and transendothelial migration of monocytes and macrophages to atherosclerotic lesions. ${\underline{R}}eceptor$ for ${\underline{a}}dvanced$ ${\underline{g}}lycation$ ${\underline{e}}nd$ ${\underline{p}}roducts$ (RAGE), a member of cell adhesion molecules, plays an important role in chronic inflammation and atherosclerosis. Although RAGE and ${\alpha}X{\beta}2$ play an important role in inflammatory response and the pathogenesis of atherosclerosis, the nature of their interaction and structure involved in the binding remain poorly defined. In this study, using I-domain as a ligand binding motif of ${\alpha}X{\beta}2$, we characterize the binding nature and the interacting moieties of ${\alpha}X$ I-domain and RAGE. Their binding requires divalent cations ($Mg^{2+}$ and $Mn^{2+}$) and shows an affinity on the sub-micro molar level: the dissociation constant of ${\alpha}X$ I-domains binding to RAGE being $0.49{\mu}M$. Furthermore, the ${\alpha}X$ I-domains recognize the V-domain, but not the C1 and C2-domains of RAGE. The acidic amino acid substitutions on the ligand binding site of ${\alpha}X$ I-domain significantly reduce the I-domain binding activity to soluble RAGE and the alanine substitutions of basic amino acids on the flat surface of the V-domain prevent the V-domain binding to ${\alpha}X$ I-domain. In conclusion, the main mechanism of ${\alpha}X$ I-domain binding to RAGE is a charge interaction, in which the acidic moieties of ${\alpha}X$ I-domains, including E244, and D249, recognize the basic residues on the RAGE V-domain encompassing K39, K43, K44, R104, and K107.

Trapping of Methylglyoxal by Sieboldin from Malus baccata L. and Identification of Sieboldin-Methylglyoxal Adducts Forms

  • Kim, Ji Hoon;Zhang, Kaixuan;Lee, Juhee;Gao, En Mei;Lee, Yun Jung;Son, Rak Ho;Syed, Ahmed Shah;Kim, Chul Young
    • Natural Product Sciences
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    • 제27권4호
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    • pp.245-250
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    • 2021
  • The methylglyoxal (MGO) trapping constituents from Malus baccata L. were investigated using incubation of MGO and crude extract under physiological conditions followed by HPLC analysis. The peak areas of MGO trapping compounds decreased, and their chemical structures were identified by HPLC-ESI/MS. Sieboldin was identified as a major active molecule representing MGO-trapping activity of the crude extract. After reaction of sieboldin and MGO, remaining MGO was calculated by microplate assay method using imine (Schiff base) formation of 2,4-dinitrophenylhydrazine (DNPH) and aldehyde group. After 4 h incubation, sieboldin trapped over 43.8% MGO at a concentration of 0.33 mM and showed MGO scavenging activity with an RC50 value of 0.88 mM for the incubation of 30 min under physiological conditions. It was also confirmed that sieboldin inhibited the production of advanced glycation end products (AGE) produced by bovine serum albumins (BSA)/MGO. Additionally, MGO trapping mechanism of sieboldin was more specifically identified by 1H-, 13C-, 2D NMR and, confirm to be attached to the position of C-3' (or 5').

Pear pomace alleviated atopic dermatitis in NC/Nga mice and inhibited LPS-induced inflammation in RAW 264.7 macrophages

  • You, Mikyoung;Wang, Ziyun;Kim, Hwa-Jin;Lee, Young-Hyun;Kim, Hyeon-A
    • Nutrition Research and Practice
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    • 제16권5호
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    • pp.577-588
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    • 2022
  • BACKGROUND/OBJECTIVES: Poorly regulated inflammation is believed to be the most predominant factor that can result in a wide scope of diseases including atopic dermatitis (AD). Despite many studies on the effect of pear pomace in obesity-related disorders including dysregulated gut microbiota, the protective effect of pear pomace in AD is still unknown. This study aimed to evaluate the effect of pear pomace ethanol extract (PPE) on AD by inhibiting inflammation. MATERIALS/METHODS: In the in vivo experiment, 2, 4-dinitrochlorobenzene (DNCB) was applied to NC/Nga mice to induce AD-like skin lesions. After the induction, PPE was administered daily by oral gavage for 4 weeks. The clinical severity score, serum IgE levels, spleen weight, histological changes in dorsal skin, and inflammation-related proteins were measured. In the cell study, RAW 264.7 cells were pretreated with PPE before stimulation with lipopolysaccharide (LPS). Nitrite oxide (NO) production and nuclear factor kappa B (NF-𝛋B) protein expression were detected. RESULTS: Compared to the AD control (AD-C) group, IgE levels were dramatically decreased via PPE treatment. PPE significantly reduced scratching behavior, improved skin symptoms, and decreased ear thickness compared to the AD-C group. In addition, PPE inhibited the DNCB-induced expression of inducible nitrite oxide synthase (iNOS), the receptor for advanced glycation end products, extracellular signal-regulated kinase (ERK) 1/2, and NF-𝛋B. PPE inhibited the LPS-induced overproduction of NO and the enhanced expression of iNOS and cyclooxygenase-2. Moreover, the phosphorylation of ERK1/2 and NF-𝛋B in RAW 264.7 cells was suppressed by PPE. CONCLUSIONS: These results suggest that PPE could be explored as a therapeutic agent to prevent AD.

제2형 당뇨 동물모델에서 가시오가피 추출물의 당화혈색소 및 최종당화산물 억제를 통한 혈당조절 효과 (Beneficial Effects of Acanthopanax senticosus Extract in Type II Diabetes Animal Model via Down-Regulation of Advanced Glycated Hemoglobin and Glycosylation End Products)

  • 권한올;이민희;김용재;김은;김옥경
    • 한국식품영양과학회지
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    • 제45권7호
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    • pp.929-937
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    • 2016
  • 본 연구에서는 랫트를 이용한 제2형 당뇨 동물모델로 같은 혈당조절 효과가 나타나는지 검토하고 이러한 효과가 당화 혈색소를 포함한 최종당화산물(advanced glycation end products, AGEs)과 어떤 상관관계가 있는지 또한 단백질과 당화를 촉진해 당화혈색소 생성의 원인 중 하나인 산화적 스트레스와 관련된 기전을 규명하고자 하였다. 기존의 db/db 마우스에서 실험한 결과와 마찬가지로 랫트를 이용한 제2형 당뇨모델에서도 가시오가피 추출물의 섭취는 혈당을 강하시키고 homeostasis model assessment(Homa-IR)를 감소시켜 인슐린 저항성 개선에 도움을 주는 것으로 확인되었다. 특히 혈중 당화혈색소량의 감소가 두드러졌는데 이는 산화적 스트레스 감소로 인한 지질과산화물 생성의 억제가 중요한 원인으로 생각되며 이와 관련된 혈중 사이토카인 IL-$1{\beta}$와 TNF-${\alpha}$의 농도도 감소한 것으로 나타났다. 당화혈색소는 산화적 스트레스에 의해 최종당화산물로 전환이 되어 인슐린 저항성 세포의 protein kinase C(PKC)를 활성화하여 transforming growth factor(TGF)-${\beta}$를 생성하는데 가시오가피 추출물의 섭취는 최종당화산물의 농도, PKC 그리고 TGF-${\beta}$ 모두를 억제하는 것으로 확인되었으며, 이것은 가시오가피 추출물 성분이 PKC와 TGF-${\beta}$에 직접 작용하기보다는 신호전달체계의 상위에 존재하는 최종당화산물을 억제하여 나타난 결과로 생각한다. 향후 연구에서는 가시오가피 추출물을 분획화하여 어떤 성분에 의하여 당화혈색소와 최종당화산물 생성을 억제하는지에 대한 구체적인 실험이 이루어져야 할 것으로 여겨진다.

포도당으로 유도된 in vitro 뇌신경세포 독성에 대한 다래 순 아세트산에틸 분획물의 보호 효과 (Protective effect of ethyl acetate fraction from Actinidia arguta sprout against high glucose-induced in vitro neurotoxicity)

  • 유슬기;박선경;김종민;강진용;박수빈;한혜주;김철우;이욱;허호진
    • 한국식품과학회지
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    • 제50권5호
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    • pp.517-527
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    • 2018
  • 본 연구에서는 다래 순 아세트산에틸 분획물(ethyl acetate fraction from Actiniadin arguta sprout; EFAS)의 in vitro 산화방지활성 및 고포도당으로 인한 산화적 스트레스로부터의 뇌신경세포 보호 효과를 검증하였다. EFAS은 상대적으로 우수한 총 폴리페놀(246.25 mg GAE/g) 및 총 플라보노이드(571.59 mg RE/g) 함량을 나타내었으며, 이로 인한 ABTS 라디칼 제거 활성($IC_{50}=252.00{\mu}g/mL$) 및 MDA 생성 억제 활성($IC_{50}=42.70{\mu}g/mL$)을 보여주었다. EFAS의 in vitro 항당뇨 활성은 알파글루코사이드 가수분해효소와 최종당화산물 생성 억제 활성을 통해 측정하였으며 각각 99.18과 $85.19{\mu}g/mL$$IC_{50}$ 값을 나타냈고, 뇌신경 전달물질인 아세틸콜린의 세포 내 유지 효과를 아세틸콜린 분해효소 억제 활성을 통해 측정하였을 때 $164.20{\mu}g/mL$$IC_{50}$ 값을 나타냈다. 또한 인간 유래 MC-IXC 뇌신경세포에 과산화수소와 고포도당을 처리하여 산화적 스트레스를 유발시켜 뇌신경세포 사멸에 대해 우수한 보호효과를 보여주었다. 마지막으로 HPLC를 통하여, EFAS의 주요 생리활성 물질을 분석한 결과는 루틴으로 유추되었으며, 그 함량은 $123.76{\mu}g/mL$ of dried weight로 분석되었다. 이상의 결과로부터 다래 순 분획물(EFAS)이 알파글루코사이드 가수분해효소 및 최종당화산물 생성 억제를 통해 식후 혈당의 급격한 상승을 예방할 수 있는 항당뇨 소재로의 가능성뿐만 아니라, 고포도당에서 유래되는 산화적 스트레스로부터 뇌신경세포 보호 및 뇌신경전달물질 체계 개선을 통한 당뇨성 퇴행성뇌질환 등의 합병증을 예방할 수 있는 고부가가치 식품 소재로의 활용 가능성을 확인하였다.