Search Results - "Gonzaga, Natália A"

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    Melatonin reverses the loss of the anticontractile effect of perivascular adipose tissue in obese rats by Gonzaga, Natália A., Awata, Wanessa M. C., Ficher, Sabrina P., Assis, Victor O., Alves, Juliano V., Tostes, Rita C., Tirapelli, Carlos R.

    Published in Journal of pineal research (01-03-2021)
    “…Perivascular adipose tissue (PVAT) undergoes functional changes in obesity. Increased oxidative stress is a central mechanism whereby obesity induces loss of…”
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    Journal Article
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    Nebivolol prevents ethanol-induced reactive oxygen species generation and lipoperoxidation in the rat kidney by regulating NADPH oxidase activation and expression by do Vale, Gabriel T., Gonzaga, Natália A., Simplicio, Janaina A., Tirapelli, Carlos R.

    Published in European journal of pharmacology (15-03-2017)
    “…We studied whether the β1-adrenergic antagonist nebivolol would prevent ethanol-induced reactive oxygen species generation and lipoperoxidation in the rat…”
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    Perivascular adipose tissue contributes to lethal sepsis-induced vasoplegia in rats by Awata, Wanessa M.C., Gonzaga, Natália A., Borges, Vanessa F., Silva, Carla B.P., Tanus-Santos, José E., Cunha, Fernando Q., Tirapelli, Carlos R.

    Published in European journal of pharmacology (15-11-2019)
    “…It is well established that sepsis induces vascular hyporesponsiveness to vasoconstrictors. Perivascular adipose tissue (PVAT) displays anti-contractile action…”
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    Nebivolol prevents vascular oxidative stress and hypertension in rats chronically treated with ethanol by do Vale, Gabriel T., Simplicio, Janaina A., Gonzaga, Natália A., Yokota, Rodrigo, Ribeiro, Amanda A., Casarini, Dulce E., de Martinis, Bruno S., Tirapelli, Carlos R.

    Published in Atherosclerosis (01-07-2018)
    “…Chronic ethanol consumption is associated with hypertension and atherosclerosis. Vascular oxidative stress is described as an important mechanism whereby…”
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    Interleukin-10 limits the initial steps of the cardiorenal damage induced by ethanol consumption by Silva, Carla B.P., Gómez, Julieth P.S., do Vale, Gabriel T., Simplicio, Janaina A., Gonzaga, Natália A., Tirapelli, Carlos R.

    Published in Life sciences (1973) (01-02-2020)
    “…Reactive oxygen species (ROS) and pro-inflammatory cytokines play a critical role in organ damage induced by ethanol consumption. Interleukin (IL)-10 maintain…”
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    Perivascular adipose tissue protects against the vascular dysfunction induced by acute ethanol intake: Role of hydrogen peroxide by Gonzaga, Natália A., Awata, Wanessa M.C., do Vale, Gabriel T., Marchi, Katia C., Muniz, Jaqueline J., Tanus-Santos, Jose E., Tirapelli, Carlos R.

    Published in Vascular pharmacology (01-12-2018)
    “…We investigated the consequences of acute ethanol intake on the anti-contractile effect of perivascular adipose tissue (PVAT). The effects of a single dose of…”
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    Mechanisms underlying vascular hypocontractility induced by ethanol withdrawal: Role of cyclooxygenase 2-derived prostacyclin by Gonzaga, Natália A., Awata, Wanessa M.C., Tanus-Santos, Jose E., Padovan, Júlio C., Tirapelli, Carlos R.

    Published in European journal of pharmacology (15-03-2019)
    “…The effects on the vasculature produced by ethanol withdrawal include both vasodilatation and hypocontractility, although a detailed biochemical understanding…”
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    Ethanol Withdrawal Alters the Oxidative State of the Heart Through AT1-Dependent Mechanisms by Assis, Victor O, Gonzaga, Natália A, Silva, Carla B P, Pereira, Lucas C, Padovan, Cláudia M, Tirapelli, Carlos R

    Published in Alcohol and alcoholism (Oxford) (07-02-2020)
    “…Abstract Aims We investigated the cardiac effects of ethanol withdrawal and the possible role of AT1 receptors in such response. Methods Male Wistar rats were…”
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    Pharmacological characterization of the mechanisms underlying the vascular effects of succinate by Leite, Letícia N., Gonzaga, Natália A., Simplicio, Janaina A., do Vale, Gabriel T., Carballido, José M., Alves-Filho, José C., Tirapelli, Carlos R.

    Published in European journal of pharmacology (15-10-2016)
    “…We investigated the mechanisms underlying the vascular effects of succinate. Vascular reactivity experiments were performed in aortic rings isolated from male…”
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    Treatment with nitrite prevents reactive oxygen species generation in the corpora cavernosa and restores intracavernosal pressure in hypertensive rats by Gonzaga, Natália A., do Vale, Gabriel T., da Silva, Carla B.P., Pinheiro, Lucas C., Leite, Letícia N., Carneiro, Fernando S., Tanus-Santos, José E., Tirapelli, Carlos R.

    Published in Nitric oxide (01-01-2020)
    “…Hypertension is a risk factor for erectile dysfunction (ED) and both conditions are associated with oxidative stress. Given that nitrite is described to…”
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    Mechanisms underlying sodium nitroprusside-induced tolerance in the mouse aorta: Role of ROS and cyclooxygenase-derived prostanoids by Diniz, Mariana C., Olivon, Vania C., Tavares, Lívia D., Simplicio, Janaina A., Gonzaga, Natália A., de Souza, Daniele G., Bendhack, Lusiane M., Tirapelli, Carlos R., Bonaventura, Daniella

    Published in Life sciences (1973) (01-05-2017)
    “…To determine the role of reactive oxygen species (ROS) on sodium nitroprusside (SNP)-induced tolerance. Additionally, we evaluated the role of ROS on NF-κB…”
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    Pharmacological characterisation of the mechanisms underlying the relaxant effect of adrenomedullin in the rat carotid artery by Passaglia, Patrícia, Gonzaga, Natália A., Tirapelli, Daniela P.C., Tirapelli, Luis F., Tirapelli, Carlos R.

    Published in Journal of pharmacy and pharmacology (01-12-2014)
    “…Objectives We investigated the mechanisms underlying the relaxant effect of adrenomedullin (AM) in the rat carotid artery and verified the expression of AM…”
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    Tumor necrosis factor-α receptor 1 contributes to ethanol-induced vascular reactive oxygen species generation and hypertension by Simplicio, Janaina A, Gonzaga, Natália A, Nakashima, Marcelo A, De Martinis, Bruno S, Cunha, Thiago M, Tirapelli, Luis F, Tirapelli, Carlos R

    “…We evaluated the contribution of tumor necrosis factor-α receptor 1 (TNFR1) to ethanol-induced hypertension and vascular oxidative stress and the possible role…”
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    Data on the mechanisms underlying succinate-induced aortic contraction by Gonzaga, Natália A., Simplicio, Janaina A., Leite, Letícia N., Vale, Gabriel T., Carballido, José M., Alves-Filho, José C., Tirapelli, Carlos R.

    Published in Data in brief (01-12-2016)
    “…We describe the mechanisms underlying the vascular contraction induced by succinate. The data presented here are related to the article entitled…”
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