• 제목/요약/키워드: Endothelial cell injury

검색결과 88건 처리시간 0.026초

Tanshinone IIA Protects Endothelial Cells from H2O2-Induced Injuries via PXR Activation

  • Zhu, Haiyan;Chen, Zhiwu;Ma, Zengchun;Tan, Hongling;Xiao, Chengrong;Tang, Xianglin;Zhang, Boli;Wang, Yuguang;Gao, Yue
    • Biomolecules & Therapeutics
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    • 제25권6호
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    • pp.599-608
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    • 2017
  • Tanshinone IIA (Tan IIA) is a pharmacologically active substance extracted from the rhizome of Salvia miltiorrhiza Bunge (also known as the Chinese herb Danshen), and is widely used to treat atherosclerosis. The pregnane X receptor (PXR) is a nuclear receptor that is a key regulator of xenobiotic and endobiotic detoxification. Tan IIA is an efficacious PXR agonist that has a potential protective effect on endothelial injuries induced by xenobiotics and endobiotics via PXR activation. Previously numerous studies have demonstrated the possible effects of Tan IIA on human umbilical vein endothelial cells, but the further mechanism for its exerts the protective effect is not well established. To study the protective effects of Tan IIA against hydrogen peroxide ($H_2O_2$) in human umbilical vein endothelial cells (HUVECs), we pretreated cells with or without different concentrations of Tan IIA for 24 h, then exposed the cells to $400{\mu}M$ $H_2O_2$ for another 3 h. Therefore, our data strongly suggests that Tan IIA may lead to increased regeneration of glutathione (GSH) from the glutathione disulfide (GSSG) produced during the GSH peroxidase-catalyzed decomposition of $H_2O_2$ in HUVECs, and the PXR plays a significant role in this process. Tan IIA may also exert protective effects against $H_2O_2$-induced apoptosis through the mitochondrial apoptosis pathway associated with the participation of PXR. Tan IIA protected HUVECs from inflammatory mediators triggered by $H_2O_2$ via PXR activation. In conclusion, Tan IIA protected HUVECs against $H_2O_2$-induced cell injury through PXR-dependent mechanisms.

카드뮴이 뇌혈관 내피세포에서의 $PGE^2$ 및 COX-2 발현에 미치는 영향 (Cadmium-induced COX-2 Expression in Cerebrovascular Endothelial Cells)

  • 박동현;김영채;문창규;정이숙;백은주;문창현;이수환
    • Environmental Analysis Health and Toxicology
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    • 제21권3호
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    • pp.275-282
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    • 2006
  • In order to get insight into the mechanism of cadmium (Cd)-induced brain injury, we investigated the effects of Cd on the induction of COX-2 in bEnd.3 mouse brain endothelial cells. Cd induced COX-2 expression and $PGE_2$ release, which were attenuated by thiol-reducing antioxidant N-acetylcysteine (NAC) indicating oxidative components might contribute to these events. Indeed, Cd increased cellular reactive oxygen species (ROS) level and DNA binding activity of nuclear factor-kB (NF-kB), an oxidative stress sensitive transcription factor. Cd-induced $PGE_2$ production and COX-2 expression were significantly attenuated by Bay 11 7082, a specific inhibitor of NF-kB and by SB203580, a specific inhibitor of p38 mitogen activated protein kinase (MAPK). These data suggest that Cd induces COX-2 expression through activation of NF-kB and p38 MAPK, the oxidative stress-sensitive signaling molecules, in brain endothelial cells.

Role of neuropeptide Y in the bone marrow hematopoietic stem cell microenvironment

  • Park, Min Hee;Min, Woo-Kie;Jin, Hee Kyung;Bae, Jae-sung
    • BMB Reports
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    • 제48권12호
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    • pp.645-646
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    • 2015
  • The sympathetic nervous system (SNS) or neurotransmitters in the bone marrow microenvironment has been known to regulate hematopoietic stem cell (HSC) functions such as self-renewal, proliferation and differentiation. However, the specific role of neuropeptide Y (NPY) in this process remains relatively unexplored. In this study, we demonstrated that NPY deficient mice have significantly reduced HSC numbers and impaired bone marrow regeneration due to apoptotic destruction of SNS fibers and/or endothelial cells. Moreover, NPY treatment prevented bone marrow impairments in a mouse model of chemotherapy-induced SNS injury, while conditional knockout mice lacking the Y1 receptor in macrophages did not restore bone marrow dysfunction in spite of NPY injection. Transforming growth factor-beta (TGF-β) secreted by NPY-mediated Y1 receptor stimulation in macrophages plays a key role in neuroprotection and HSC survival in the bone marrow. Therefore, this study reveals a new role of NPY in bone marrow HSC microenvironment, and provides an insight into the therapeutic application of this neuropeptide.

혈관내피세포에서 TNF-α로 유도되는 혈관염증에 대한 쏙(Upogebia major) 효소가수분해물의 억제 효과 (Inhibition Effect of Enzymatic Hydrolysate from Japanese Mud Shrimp Upogebia major on TNF-α-induced Vascular Inflammation in Human Umbilical Vein Endothelial Cells (HUVECs))

  • 김소연;양지은;송재희;맹상현;이지현;윤나영
    • 한국수산과학회지
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    • 제51권2호
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    • pp.127-134
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    • 2018
  • Arteriosclerosis is the major cause of coronary artery and cerebrovascular disease, which are leading causes of death. Pro-inflammatory cytokines induce injury to vascular endothelial cells by increasing cell adhesion molecules, leading to vascular inflammation, a major risk factor for the development of arteriosclerosis. In the current study, we investigated the inhibitory effect of enzymatic hydrolysate from Japanese mud shrimp Upogebia major on the inflammation of tumor necrosis $factor-{\alpha}$ ($TNF-{\alpha}$)-stimulated human umbilical vein endothelial cells (HUVECs). We first evaluated the antioxidant and angiotensin I-converting enzyme (ACE) inhibitory activities of eight U. major enzymatic hydrolysates: alcalase, papain, ${\alpha}$-chymotrypsin (${\alpha}-Chy$), trypsin, pepsin, neutrase, protamex and flavourzyme. Of these, ${\alpha}-Chy$ exhibited potent antioxidant and ACE inhibitory activities. The ${\alpha}-Chy$ hydrolysate was fractionated by two ultrafiltration membranes of 3 and 10 kDa. The ${\alpha}-Chy$ hydrolysate of U. major and its molecular weight cut-off fractions resulted in a significant reduction in NO production and a decrease in cell adhesion molecules [vascular cell adhesion molecule-1 (VCAM-1), intercellular adhesion molecule-1 (ICAM-1) and endothelial-selectin (E-selectin)] and pro-inflammatory cytokines [interleukin-6 (IL-6), interleukin-8 (IL-8) and monocyte chemoattractant protein-1 (MCP-1)] in $TNF-{\alpha}$-stimulated HUVECs. These results suggest that enzymatic hydrolysate from U. major can be used in the control and prevention of vascular inflammation and arteriosclerosis.

MiR-199a/b-5p Inhibits Lymphangiogenesis by Targeting Discoidin Domain Receptor 1 in Corneal Injury

  • Oh, Sooeun;Seo, Minkoo;Choi, Jun-Sub;Joo, Choun-Ki;Lee, Suk Kyeong
    • Molecules and Cells
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    • 제41권2호
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    • pp.93-102
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    • 2018
  • Discoidin domain receptor 1 (DDR1) is involved in tumorigenesis and angiogenesis. However, its role in lymphangiogenesis has been unknown. Here, we tested whether downregulation of DDR1 expression by miR-199a/b can suppress lymphangiogenesis. We also aimed to identify miRNA target site(s) in the 3' untranslated region (UTR) of DDR1. Transfection with miR-199a/b-5p mimics reduced expression of DDR1 and tube formation in primary human dermal lymphatic endothelial cells, whereas miR-199a/b-5p inhibitors showed the opposite effects. Critically, injection of miR-199a/b-5p mimics suppressed DDR1 expression and lymphangiogenesis in a corneal alkali-burn rat model. The three well-conserved seed matched sites for miR-199a/b-5p in the DDR1 3'-UTR were targeted, and miRNA binding to at least two sites was required for DDR1 inhibition. Our data suggest that DDR1 promotes enhanced lymphangiogenesis during eye injury, and miR-199a/b-5p suppresses this activity by inhibiting DDR1 expression. Thus, this miRNA may be useful for the treatment of lymphangiogenesis-related eye diseases.

양에서 막형 산화기를 사용하여 심폐바이패스할 경우 백혈구격리 및 자유라디칼로 중재되는 폐손상 (Leukocyte Sequestration and Free Radical-Mediated Lung Injury in Ovine Cardiopulmonary bypass Using Membrane Oxygenator)

  • 김원곤;신윤철;서정욱
    • Journal of Chest Surgery
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    • 제32권11호
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    • pp.978-983
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    • 1999
  • Background: Complement activation with transpulmonary leukocyte sequestration is considered a main mediator leading to ischemia-reperfusion lung(I-R) injury. We studied the role of leukocytes in the formation of I-R injury in ovine cardiopulmonary bypass(CPB) model with a membrane oxygenator. Material and Method: Five sheep were used. CPB circuitry consisted of a roller pump(American Optical Corp., Greenwich, CT, USA) and a membrane oxygenator(UNIVOX-IC, Bentley, Baxter Health Corp, Irvine, CA, USA). The CPB time was fixed at 120 min. Ten minutes after the start of CPB, total CPB was established. Thereafter a total CPB of 100 min was performed, followed by another 10 min of partial CPB. The CPB was discontinued and the animals were fully recovered. For measuring left and right atrial leukocyte counts, blood samples were taken before thoracotomy, 5 min and 109 in after the start of CPB, and 30 min and 120 min after weaning. C3a was measured before thoracotomy, 109 min after the start of CPB, and 30 min and 120 min after weaning. Plasma malondialdehyde(MDA) was checked before thoracotomy, 109 min after the start of CPB, and 30 min after weaning. One to two grams of lung tissue were taken for water content measurement before thoracotomy, 109 min after the start of CPB, and 30 min after weaning. Lung biopsy specimens were examined by light and electron microscopy. Result: Of 5 animals, 4 survived the experimental procedures. Of these, 3 animals survived on a long-term basis. No significant differences in transpulmonary gradients of leukocyte were found and no significant complement activation was expressed by C3a levels. MDA level did not show significant changes related to lung reperfusion despite an increase after the start of CPB. On both light and electron microscopic examinations, mild to moderate acute lung change was observed. Interstitial edema, leakage of erythrocytes into the alveolar space and endothelial cell swelling were the main findings. Water content of the lung showed a slight increase after the start of CPB, but there was no statistical significance. Conclusion: These findings indicate that ischemia-repersusion lung injury may not be from complement activation-leukocyte sequestration but from another source of oxygen free radicals related to CPB.

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Ginsenoside Rd protects cerebral endothelial cells from oxygen-glucose deprivation/reoxygenation induced pyroptosis via inhibiting SLC5A1 mediated sodium influx

  • Li, Suping;Yu, Nengwei;Xu, Fei;Yu, Liang;Yu, Qian;Fu, Jing
    • Journal of Ginseng Research
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    • 제46권5호
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    • pp.700-709
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    • 2022
  • Background: Ginsenoside Rd is a natural compound with promising neuroprotective effects. However, the underlying mechanisms are still not well-understood. In this study, we explored whether ginsenoside Rd exerts protective effects on cerebral endothelial cells after oxygen-glucose deprivation/reoxygenation (OGD/R) treatment and its potential docking proteins related to the underlying regulations. Method: Commercially available primary human brain microvessel endothelial cells (HBMECs) were used for in vitro OGD/R studies. Cell viability, pyroptosis-associated protein expression and tight junction protein degradation were evaluated. Molecular docking proteins were predicted. Subsequent surface plasmon resonance (SPR) technology was utilized for validation. Flow cytometry was performed to quantify caspase-1 positive and PI positive (caspase-1+/PI+) pyroptotic cells. Results: Ginsenoside Rd treatment attenuated OGD/R-induced damage of blood-brain barrier (BBB) integrity in vitro. It suppressed NLRP3 inflammasome activation (increased expression of NLRP3, cleaved caspase-1, IL-1β and GSDMD-N terminal (NT)) and subsequent cellular pyroptosis (caspase-1+/PI + cells). Ginsenoside Rd interacted with SLC5A1 with a high affinity and reduced OGD/R-induced sodium influx and potassium efflux in HBMECs. Inhibiting SLC5A1 using phlorizin suppressed OGD/R-activated NLRP3 inflammasome and pyroptosis in HBMECs. Conclusion: Ginsenoside Rd protects HBMECs from OGD/R-induced injury partially via binding to SLC5A1, reducing OGD/R-induced sodium influx and potassium efflux, thereby alleviating NLRP3 inflammasome activation and pyroptosis.

당뇨병 쥐에서 혈관내피 성장인자 수용체-1 차단 펩타이드를 이용한 신내막 형성과 혈관평활근세포 이동의 억제 (Inhibition of Neointima Formation and Migration of Vascular Smooth Muscle Cells by Anti-vascular Endothelial Growth Factor Receptor-1 (Flt-4) Peptide in Diabetic Rats)

  • 조민섭;유기동;박찬범;조덕곤;조규도;진웅;문건웅;김철민;왕영필;이선희
    • Journal of Chest Surgery
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    • 제40권4호
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    • pp.264-272
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    • 2007
  • 배경: 혈관내피 성장인자(vascular endothelial growth factor, VEGF)는 혈관평활근세포(vascular smooth muscle cell)의 증식과 이동을 촉진함으로써 혈관신생에 중요한 역할을 한다. 당뇨병은 VEGF의 발현과 연관되어 정상 혈당상태에서 보다 세포의 증식을 더욱 촉진시킨다. 당뇨병쥐에서 VEGF 수용체의 선택적 차단이 손상된 혈관에서 신내막 형성과 혈관평활근세포의 이동에 미치는 영향에 대해 알아보고자 했다. 대상 뜻 방법: 당뇨병 쥐의 경동맥 풍선손상 모델에서 위약을 투여하거나, 혈관내피 성장 인자 수용체-1(VEGFR-1)에 선택적으로 작용하는 항-Flt-1 펩타이드(anti-Flt-1 peptide; Gly-Asn-Gln-Trp-Phe-Ile)를 풍선손상 2일 전부터 0.5mg/kg의 용량으로 2주간 매일 투여한 군으로 나누어 Hematoxylin-Eosin 염색을 하여 신내막의 형성정도와 혈관내강의 협착정도를 비교하였으며, proliferative cell nuclear antigen (PCNA)에 대한 면역조직화학염색법을 시행하여 세포의 증식정도를 관찰하였다. 혈관평활근세포를 고혈당환경에서 배양하고 transwell assay를 시행하여 혈관평활근세포의 이동 정도를 측정하였다. 고혈당 환경에서 자라고 있는 혈관평활근세포에 50ng/mL의 VEGF를 단독 또는 3ug/mL의 항-Flt-1 펩타이드와 함께 처리하고 일정시간이 지난 후 matrigel filter를 통과한 세포를 세어 아무런 처치를 받지 않은 세포가 이동한 정도와 비교하였다. 또한, 혈관평활근세포에 세포이동 정도 측정 시와 같은 처리를 한 후, RNA를 분리하고 reverse transcription-polymerase chain reaction (RT-PCR)을 시행하여 기질금속단백분해효소(matrix metalloprotenase, MMP)의 발현 정도를 관찰하였다. 결과: 신내막의 면적은 위약 투여 쥐는 $0.24{\pm}0.03 mm^2$이었으나, 항-Flt-1 펩타이드의 처리에 의해 $0.15{\pm}0.04 mm^2$로 유의하게 감소하였으며(p<0.01), 신내막 형성에 따른 내강의 협착 정도도 위약 투여 쥐는 $61.85{\pm}5.11%$, 항-Flt-1 펩타이드 투여 쥐는 $36.03{\pm}3.78%$로 항-Flt-1 펩타이드 투여에 의하여 유의하게 감소하였다(p<0.01). 신내막의 전체 세포수에 대한 PCNA(+)인 세포를 백분율로 구하였으며, 위약 투여 쥐와 항- Flt-1 펩타이드 투여 쥐에서 각각 $52.82{\pm}4.20%,\;38.11{\pm}6.89%$로 나타나 항-Flt-1 펩타이드를 투여한 쥐에서 PCNA(+)인 세포가 유의하게 적음을 보이고 있다(p<0.05). 혈관평활근세포의 이동 정도 측정에서는 항-Flt-1 펩타이드 처리에 의하여 VEGF에 의한 혈관평활근 세포의 이동이 유의하게 감소하였다(p<0.01). 또한, 항-Flt-1 펩타이드 처리에 의하여 VEGF에 의한 MMP-3와 MMP-9 mRNA의 발현 증가가 억제되었다. 결론: 항-Flt-1 펩타이드는 당뇨병쥐의 경동맥손상모델에서 신내막 형성을 억제하였으며, 고혈당 환경에서 배양된 혈관평활근세포의 이동과, MMP-3와 MMP-9의 활성을 억제하였다.

Menadione에 의한 흰쥐 혈소판 세포독성에서 nitric oxide의 역할 (The Role of Nitric Oxide in Menadione-Induced Cytotoxicity in Rat Platelets)

  • 승상애;김대병;윤여표;정진호
    • Toxicological Research
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    • 제11권2호
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    • pp.303-308
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    • 1995
  • Nitric oxide, a physiological transmitter, is reported to mediate cellular injury in various tissues. Its reactivity to free radical is believed to be one of the reasons for its involvement in cytotoxicity. Menadione, a representative quinone, is cytotoxic to several cell systems including isolated hepatocyte, endothelial cell and red blood cells. Its toxic mechanism is related to oxidative stress, mediated by toxic free radicals. Our previous studies demonstrated that menadione induced cell lysis and increase of oxygen consumption in platelets. It has been reported that platelets have nitric oxide producing enzyme, nitric oxide synthase. Thus, we have investigated to manifest the role of nitric oxide.in menadione-induced cytotoxicity in rat platelets. Menadione induced cytotoxicity in platelets was unaffected by $N^G$-nitro-arginine methyl ester (L-NAME), selective and competitive inhibitor of nitric oxide synthase. We also invesitgated the role of extracellular nitric oxide in menadione-induced cytotoxicity of platelets by addition with sodium nitroprusside (SNP). SNP did not affect platelet cytotoxicity by menadione. These results suggested that nitric oxide which was generated endogeneously or exogeneously might have a negligible role in menadione-induced cytotoxicity in rat platelets.

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분심기음(分心氣飮)이 고혈압 백서와 인간유래 혈관내피세포주(ECV 304)에 미치는 영향에 대한 연구 (An Experimental Study of Effect on ECV 304 Cells, Platelet Rich Plasma and Rats treated with L-NAME by Boonsimgieum extract)

  • 전연이;박창국;이소연;윤현덕;신오철;박치상
    • 대한한방내과학회지
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    • 제26권1호
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    • pp.182-198
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    • 2005
  • Object : This study was designed to research whether the protection and inhibitory effects of cardiovascular diseases in L-NAME induced rat or ECV 304 cell lines through the Cell morphological pattern, Tunel assay, LDH activity, heart rate, blood pressure and immunohistochemistric analysis by Boonsimgieum water extract Methods : Nitric oxide(NO) play an important role in normal and pathophysiological cells including as a messenger molecule, neurotransmitter, microbiocidal agent, or dilator of blood vessels and artheriosclerosis, hypertension, myocardial infarction, respectively. Endothelial cell products can modulate the magnitude of a response to a vasoconstrictor, as evinced by the greater constriction after endothelium removal or NO synthesis blockade. To investigate that Boonsimgieum in the potential contribution of the levels of nitric oxide generated by endothelial nitric oxide synthase (eNOS) and the mechanisms of protection against NG-nitro-L-arginine methyl ester (L-NAME), human ECV 304 cells, which normally do not express eNOS, were expressed by L-NAME. L-NAME stimulated rat or cells were found to be resistant to injury and delayed death following the Boonsimgieum. Inhibition of nitric oxide synthesis abolished the protective effect against L-NAME, thrombin and collagen exposure. Interestingly, such effects have been observed during stimulation with agents such as phenylephrine and KCl on L-NAME mediate rats, were damaged by the NOS inhibitor L-NAME. Result : As the result of this study, In group, the anti-apoptosis and necrosis in the cardiovascular system have a potential capacity for prevented, protected and treating the diseases of cardiovascular system, against the necrosis of rat and ECV 304 cells with Caspase 3 and calpain expression by L-NAME is promoted. Conclusion : these results demonstrate neuroprotective and memory enhancing effects of ZIBU, suggesting its beneficial actions for the treatment of AD.

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