Mykola Mamenko

Assistant Professor

  • 650 Citations
  • 17 h-Index
20042019
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  • 3 Similar Profiles
Nephrons Medicine & Life Sciences
Epithelial Sodium Channels Medicine & Life Sciences
Kidney Medicine & Life Sciences
Aldosterone Medicine & Life Sciences
Transient Receptor Potential Channels Medicine & Life Sciences
Sodium Medicine & Life Sciences
Angiotensin II Medicine & Life Sciences
Bradykinin Medicine & Life Sciences

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Research Output 2004 2019

  • 650 Citations
  • 17 h-Index
  • 27 Article
  • 6 Review article
  • 3 Comment/debate
  • 2 Chapter
3 Citations (Scopus)

Formyl peptide receptor-1 activation exerts a critical role for the dynamic plasticity of arteries via actin polymerization

Wenceslau, C. F., McCarthy, C. G., Szasz, T., Calmasini, F. B., Mamenko, M. & Webb, R. C., Mar 1 2019, In : Pharmacological Research. 141, p. 276-290 15 p.

Research output: Contribution to journalArticle

Formyl Peptide Receptor
Polymerization
Actins
Arteries
Blood Vessels

TRPV4 deletion protects against hypokalemia during systemic K+ deficiency

Tomilin, V., Mamenko, M., Zaika, O., Wingo, C. S. & Pochynyuk, O., May 1 2019, In : American Journal of Physiology - Renal Physiology. 316, 5, p. F948-F956

Research output: Contribution to journalArticle

TRPV Cation Channels
Hypokalemia
Proton-Translocating ATPases
Diet
Kidney
1 Citation (Scopus)

Urinary concentrating defect in mice lacking Epac1 or Epac2

Cherezova, A., Tomilin, V., Buncha, V., Zaika, O., Ortiz, P. A., Mei, F., Cheng, X., Mamenko, M. & Pochynyuk, O., Jan 1 2019, In : FASEB Journal. 33, 2, p. 2156-2170 15 p.

Research output: Contribution to journalArticle

Polyuria
Kidney
Defects
Arginine Vasopressin
Protein Isoforms

Compromised regulation of the collecting duct ENaC activity in mice lacking AT1a receptor

Mamenko, M., Zaika, O., Tomilin, V., Jensen, V. B. & Pochynyuk, O., Sep 1 2018, In : Journal of Cellular Physiology. 233, 9, p. 7217-7225 9 p.

Research output: Contribution to journalArticle

Mineralocorticoid Receptors
Aldosterone
Ducts
Angiotensin II
Animals
13 Citations (Scopus)

Collecting duct prorenin receptor knockout reduces renal function, increases sodium excretion, and mitigates renal responses in ANG II-induced hypertensive mice

Prieto, M. C., Reverte, V., Mamenko, M., Kuczeriszka, M., Veiras, L. C., Rosales, C. B., McLellan, M., Gentile, O., Behrana Jensen, V., Ichihara, A., McDonough, A. A., Pochynyuk, O. M. & Gonzalez, A. A., Dec 2017, In : American Journal of Physiology - Renal Physiology. 313, 6, p. F1243-F1253

Research output: Contribution to journalArticle

Angiotensin II
Sodium
Epithelial Sodium Channels
Blood Pressure
Kidney