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Neonatal growth restriction-related leptin deficiency enhances leptin-triggered sympathetic activation and central angiotensin II receptor-dependent stress-evoked hypertension
Journal article   Peer reviewed

Neonatal growth restriction-related leptin deficiency enhances leptin-triggered sympathetic activation and central angiotensin II receptor-dependent stress-evoked hypertension

Veronica Peotta, Kamal Rahmouni, Jeffrey L. Segar, Donald A. Morgan, Kate M. Pitz, Olivia M. Rice and Robert D. Roghair
Pediatric Research, Vol.80(2)
2016

Abstract

Angiotensins Animals Blood Pressure Disease Models, Animal Growth Disorders Hypertension Leptin Losartan Male Mice Mice, Inbred C57BL Random Allocation Receptors, Angiotensin Renin-Angiotensin System Signal Transduction Stress, Psychological Sympathetic Nervous System angiotensin 1 receptor angiotensin 2 receptor angiotensin receptor leptin leptin receptor losartan angiotensin derivative angiotensin receptor leptin losartan adult animal cell animal experiment animal model animal tissue antihypertensive therapy arcuate nucleus arterial pressure Article birth weight caloric intake child growth continuous infusion controlled study diastolic blood pressure female gene expression growth disorder heart rate hemodynamics hyperphagia hypertension hypothalamus leptin deficiency locomotion male mean arterial pressure mental stress mouse newborn nonhuman physiological stress pressor response priority journal protein expression single drug dose supplementation sympathetic nerve sympathetic tone systolic blood pressure adrenergic system animal blood blood pressure C57BL mouse complication deficiency disease model growth disorder hypertension mental stress metabolism pathophysiology physiology randomization renin angiotensin aldosterone system signal transduction
url
https://doi.org/10.1038/pr.2016.64View
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