Insulin increases sympathetic nerve activity through direct actions on the central nervous system, with anteroventral third ventricle (AV3V) structures playing a critical role in this sympathoexcitation.
Insulin increases sympathetic outflow via actions on the central nervous system, specifically requiring AV3V-related structures, which may contribute to the development of arterial hypertension.
Insulin resistance and hyperinsulinemia may contribute to the development of arterial hypertension. Although insulin may elevate arterial pressure, in part, through activation of the sympathetic nervous system, the sites and mechanisms of insulin-induced sympathetic excitation remain uncertain. While sympathoexcitation during insulin may be mediated by the baroreflex, or by modulation of norepinephrine release from sympathetic nerve endings, it has been shown repeatedly that insulin increases sympathetic outflow by actions on the central nervous system. Previous studies employing norepinephrine turnover have suggested that insulin causes sympathoexcitation by acting in the hypothalamus. Recent experiments from our laboratory involving direct measurements of regional sympathetic nerve activity have provided further evidence that insulin acts in the central nervous system. For example, administration of insulin into the third cerebralventricle increased lumbar but not renal or adrenal sympathetic nerve activity in normotensive rats. Interestingly, this pattern of regional sympathetic nerve responses to central neural administration of insulin is similar to that seen with systemic administration of insulin. Further, lesions of the anteroventral third ventricle hypothalamic (AV3V) region abolished increases in sympathetic activity to systemic administration of insulin with euglycemic clamp, suggesting that AV3V-related structures are critical for insulin-induced elevations in sympathetic outflow.
Muntzel et al. (Sun,) conducted a review in Hyperinsulinemia and Hypertension. Insulin was evaluated on Sympathetic nerve activity. Insulin increases sympathetic nerve activity through direct actions on the central nervous system, with anteroventral third ventricle (AV3V) structures playing a critical role in this sympathoexcitation.
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