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An Emerging Role of Natriuretic Peptides
Biff F. Palmer, MD, Deborah J. Clegg, PhD Mayo Clinic Proceedings Volume 90, Issue 12, Pages (December 2015) DOI: /j.mayocp Copyright © 2015 Mayo Foundation for Medical Education and Research Terms and Conditions
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Figure 1 Effects of natriuretic peptides on renal function and mechanism by which urinary Na+ excretion is increased. ANP = atrial natriuretic peptide; BNP = brain natriuretic peptide; ECF = extracellular fluid volume; GFR = glomerular filtration rate; IMCD = inner medullary collecting duct. Mayo Clinic Proceedings , DOI: ( /j.mayocp ) Copyright © 2015 Mayo Foundation for Medical Education and Research Terms and Conditions
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Figure 2 Mechanisms by which combined angiotensin receptor blockade and neprilysin inhibition may provide clinical benefits in patients with congestive heart failure. In addition to well-recognized cardiovascular functions, increased natriuretic peptides may lead to improvements in metabolic homeostasis in epicardial and perivascular fat depots providing local beneficial effects on myocardial function. AT1 = angiotensin receptor subtype 1. Mayo Clinic Proceedings , DOI: ( /j.mayocp ) Copyright © 2015 Mayo Foundation for Medical Education and Research Terms and Conditions
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Figure 3 The role of natriuretic peptides in shivering and nonshivering thermogenesis with cold exposure (see text for detailed discussion). ADP = adenosine diphosphate; ANP = atrial natriuretic peptide; ATP = adenosine triphosphate; BNP = brain natriuretic peptide; UCP = uncoupling protein. Mayo Clinic Proceedings , DOI: ( /j.mayocp ) Copyright © 2015 Mayo Foundation for Medical Education and Research Terms and Conditions
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