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Looking for antihypertensive mechanisms beyond ACE inhibition, we assessed whether lactoferrin (LF)-derived peptides can act as receptor blockers to inhibit vasoconstriction induced by angiotensin II or endothelin-1. The lactoferricin B (LfcinB)-derived peptide LfcinB20-25 (RRWQWR), the low molecular weight LF hydrolysate (LFH < 3 kDa), and two peptides identified in LFH < 3 kDa (LIWKL and RPYL) were tested in ex vivo assays of vasoactive responses. The peptide RPYL was tested in radioligand receptor binding assays. Both LFH < 3 kDa and individual peptides inhibited angiotensin II-induced vasoconstriction. RPYL showed the highest ex vivo inhibitory effect and also inhibited binding of [(125)I]-(Sar(1),Ile(8))-angiotensin II to AT1 receptors. By contrast, neither LFH < 3 kDa nor RPYL inhibited endothelin-1 and depolarization-induced vasoconstrictions. In conclusion, LF-derived peptides selectively inhibit angiotensin II-induced vasoconstriction by blocking angiotensin AT1 receptors. Therefore, inhibition of angiotensin II-induced vasocontriction is suggested as a mechanism contributing along with ACE inhibition to the antihypertensive effect of some LF-derived peptides.
Male, angiotensin-converting enzyme inhibition, Lactoferrin-derived peptides, lactoferrin-derived peptides, Receptor, Angiotensin, Type 1, Angiotensin Receptor Antagonists, antihypertensive mechanism, Animals, Humans, arigiotensin receptor blocker, Angiotensin receptor blocker, Renin−angiotensin system, Antihypertensive Agents, bovine lactoferrin hydrolysate, renin angiotensin system, Antihypertensive mechanism, Angiotensin II, Bovine lactoferrin hydrolysate, Molecular Weight, Lactoferrin, Angiotensin-converting enzyme inhibitor, Vasoconstriction, Hypertension, Rabbits, Peptides
Male, angiotensin-converting enzyme inhibition, Lactoferrin-derived peptides, lactoferrin-derived peptides, Receptor, Angiotensin, Type 1, Angiotensin Receptor Antagonists, antihypertensive mechanism, Animals, Humans, arigiotensin receptor blocker, Angiotensin receptor blocker, Renin−angiotensin system, Antihypertensive Agents, bovine lactoferrin hydrolysate, renin angiotensin system, Antihypertensive mechanism, Angiotensin II, Bovine lactoferrin hydrolysate, Molecular Weight, Lactoferrin, Angiotensin-converting enzyme inhibitor, Vasoconstriction, Hypertension, Rabbits, Peptides
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