Articles with "cardiovascular functions" as a keyword



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Nesfatin-1-Like Peptide is a Negative Regulator of Cardiovascular Functions in Zebrafish and Goldfish.

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Published in 2021 at "General and comparative endocrinology"

DOI: 10.1016/j.ygcen.2021.113892

Abstract: Nucleobindins (NUCB1 and NUCB2) were originally identified as calcium and DNA binding proteins. Nesfatin-1 (NEFA/nucleobindin-2-Encoded Satiety and Fat-Influencing proteiN-1) is an 82 amino acid anorexigenic peptide encoded in the N-terminal region of NUCB2. We have… read more here.

Keywords: nesfatin like; zebrafish goldfish; functions zebrafish; cardiovascular functions ... See more keywords
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Disproportional cardiovascular depressive effects of isoflurane: Serendipitous findings from a comprehensive re-visit in mice

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Published in 2020 at "Lab Animal"

DOI: 10.1038/s41684-020-00684-w

Abstract: Employment of anesthetics, including isoflurane, though mandatory in animal experiments, is often regarded as a major limitation because results obtained with anesthetics may be different from those obtained under a conscious state. This study re-visits… read more here.

Keywords: oxygen; cardiovascular functions; effects isoflurane; blood ... See more keywords
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Catestatin: A Master Regulator of Cardiovascular Functions.

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Published in 2018 at "Current medicinal chemistry"

DOI: 10.2174/0929867324666170425100416

Abstract: BACKGROUND Cardiovascular disease (CVD), the most common cause of death globally, accounts for ~30% of all deaths worldwide. Hypertension is a common contributor to morbidity and mortality from CVD. METHODS AND RESULTS The plasma concentration… read more here.

Keywords: cst; cardiovascular functions; cga; master regulator ... See more keywords
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Pharmacological Evaluation of the Effects of Phenylcarbamic Acid Derivatives on Cardiovascular Functions in Rats

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Published in 2018 at "Acta Pharmaceutica"

DOI: 10.2478/acph-2018-0034

Abstract: Abstract Four phenylcarbamic acid derivatives, (1-(4-fluorophenyl)- 4-[3-(4-methoxyphenylcarbamoyloxy)-2-hydroxypropyl]piperazinium chloride (1), (1-(2-methylphenyl)-4-[3-(4-methoxyphenylcarbamoyloxy)- 2-hydroxypropyl]piperazinium chloride) (2), (1-(2-methylphenyl)-4-[3-(4-ethoxyphenylcarbamoyloxy)- 2-hydroxypropyl]piperazinium chloride) (3) and (1-(3-trifluoromethylphenyl)-4-[3-(4-methoxyphenylcarbamoyloxy)- 2-hydroxypropyl]piperazinium chloride) (4) were investigated for their ability to affect various cardiovascular functions and to establish… read more here.

Keywords: cardiovascular functions; piperazinium chloride; acid derivatives; phenylcarbamic acid ... See more keywords
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Role of the Melanocortin System in the Central Regulation of Cardiovascular Functions

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Published in 2021 at "Frontiers in Physiology"

DOI: 10.3389/fphys.2021.725709

Abstract: Increasing evidence indicates that the melanocortin system is not only a central player in energy homeostasis, food intake and glucose level regulation, but also in the modulation of cardiovascular functions, such as blood pressure and… read more here.

Keywords: melanocortin system; system; central regulation; cardiovascular functions ... See more keywords
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Zinc in Cardiovascular Functions and Diseases: Epidemiology and Molecular Mechanisms for Therapeutic Development

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Published in 2023 at "International Journal of Molecular Sciences"

DOI: 10.3390/ijms24087152

Abstract: Zinc is an essential trace element that plays an important physiological role in numerous cellular processes. Zinc deficiency can result in diverse symptoms, such as impairment of the immune response, skin disorders, and impairments in… read more here.

Keywords: zinc; cardiovascular functions; molecular mechanisms; functions diseases ... See more keywords