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result(s) for
"Celli, Johanna"
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Effect of hypoglycemia on baroreflex sensitivity in individuals with type 2 diabetes: implications for autonomic control of cardiovascular function in diabetes
by
Haas, Andrea V.
,
Easly, Rebecca M.
,
Heydarpour, Mahyar
in
Arrhythmia
,
Autonomic nervous system
,
Baroreceptors
2023
Purpose
Hypoglycemia is associated with increased mortality, though the mechanisms underlying this association are not established. Hypoglycemia impairs the counterregulatory hormonal and autonomic responses to subsequent hypoglycemia. It is unknown whether hypoglycemia elicits a generalized impairment in autonomic control of cardiovascular function in individuals with type 2 diabetes. We tested the hypothesis that in individuals with type 2 diabetes, hypoglycemia impairs a key measure of cardiovascular autonomic homeostasis, baroreflex sensitivity.
Methods
Sixteen individuals with well-controlled type 2 diabetes and without known cardiovascular disease were exposed to two 90-min episodes of experimental hypoglycemia (2.8 mmol/L, 50 mg/dL) on the same day. All individuals experienced a hypoglycemic-hyperinsulinemic clamp in the morning (AM clamp) and again in the afternoon (PM clamp). Baroreflex sensitivity was assessed using the modified Oxford method before the initiation of each hypoglycemic-hyperinsulinemic clamp, during the last 30 min of hypoglycemia, and the following morning. A mixed effects model adjusting for sex, age, BMI, and insulin level, demonstrated a significant effect of hypoglycemia on baroreflex sensitivity. The study is registered at ClinicalTrials.gov (NCT03422471).
Results
Baroreflex sensitivity during PM hypoglycemia was reduced compared to baseline, during AM hypoglycemia, and the next day. Insulin levels positively correlated with baroreflex sensitivity at baseline and during AM hypoglycemia.
Conclusion
Exposure to hypoglycemia impairs a key measure of autonomic control of cardiovascular function and, thus, may increase the risk of cardiac arrhythmias and blood pressure lability in individuals with type 2 diabetes. This effect is attenuated in part by increased insulin levels.
Journal Article
ACTH Infusion Impairs Baroreflex Sensitivity—Implications for Cardiovascular Hypoglycemia-Associated Autonomic Failure
by
White, Jeffrey
,
Leung, Janet H
,
Adler, Gail K
in
ACTH
,
Adult
,
Autonomic Nervous System Diseases - complications
2020
Abstract
Context
Hypoglycemia attenuates cardiovascular homeostatic autonomic control. This attenuation, known as the cardiovascular component of hypoglycemia-associated autonomic failure (HAAF), is characterized most notably by decreased baroreflex sensitivity (BRS) that begins during hypoglycemia and persists until at least the next day, despite return to euglycemia. Understanding the mechanisms underlying this reduction in BRS is important because BRS attenuation is associated with increased morbidity and mortality.
Objective
The objective of this work is to investigate the role of the adrenocorticotropin (ACTH)-adrenal axis in decreasing BRS. We tested the hypothesis that infusion of ACTH 1–24 (cosyntropin), as compared to placebo, would acutely suppress BRS, and that this decrease in BRS would be present the next day.
Design
A double-blind, placebo-controlled, random-order, cross-over study was conducted.
Setting
This study took place in a clinical research center.
Participants
Participants included healthy men and women.
Interventions
Interventions included an intravenous infusion of cosyntropin (70 μg/hour for 2.5 hours in the morning and again in the early afternoon) vs normal saline placebo.
Main Outcome Measures
Outcome measures included BRS during and 16 hours after cosyntropin vs placebo infusions.
Results
Cosyntropin infusion attenuated BRS (mm Hg/ms) as compared to placebo (baseline 17.8 ± 1.38 vs 17.0 ± 2.07; during 14.4 ± 1.43 vs 17.3 ± 1.65; and next day 14.8 ± 1.42 vs 18.9 ± 2.04; P < .05, time by treatment, analysis of variance). BRS was decreased during the final 30 minutes of the morning cosyntropin infusion as compared to baseline (P < .01) and remained suppressed the next day (16 hours after afternoon infusion) (P < .025). Placebo infusion did not significantly change BRS. Corrected QT interval was not affected.
Conclusions
ACTH attenuates BRS, raising the possibility that hypoglycemia-induced increases in ACTH may contribute to the cardiovascular component of HAAF.
Journal Article
Hypoglycemia Impairs Baroreflex Sensitivity: Implications for Autonomic Control of Cardiovascular Function in Diabetes
2021
Background: Iatrogenic hypoglycemia is an unintended, though common, occurrence in individuals with diabetes. There is a clear association between hypoglycemia exposure and an increase in mortality in individuals with type 2 diabetes (T2DM). It is well-established that recurrent hypoglycemic episodes impair the counterregulatory hormone responses; however, it is yet to be determined if in T2DM there are more global effects of hypoglycemia on autonomic control of cardiovascular function (baroreflex sensitivity, BRS), as has been shown in healthy individuals. This is a clinically relevant knowledge gap as decreases in BRS are pro-arrhythmogenic and associated with decreases in mortality in individuals with diabetes. Objective: We tested the hypothesis that in individuals with T2DM, hypoglycemia impairs baroreflex sensitivity (BRS), a robust measure of cardiovascular autonomic control. Methods: Individuals with well-controlled T2DM and without known cardiovascular disease were exposed to two 90-minute episodes of experimental hypoglycemia (50 mg/dl) in the same day. All individuals experienced a hypoglycemic-hyperinsulinemic clamp in the morning (AM clamp) and again in the afternoon (PM clamp). BRS was assessed using the modified Oxford method (sequential administration of nitroprusside and phenylephrine) before the initiation of each hypoglycemic-hyperinsulinemic clamp, during the last 30 minutes of hypoglycemia, and the following day. Results: The study included 16 individuals with a diagnosis of T2DM (6 men and 10 women) with the following characteristics (mean ± SD): age 45 ± 11 years, BMI 32 ± 6 kg/m2, hemoglobin A1c 6.4 ± 0.9%, and diabetes duration 8 ± 5 years. At baseline, individuals with T2DM had a BRS of 7.7 ± 3.6 ms/mmHg, which is reduced compared to a BRS of 21.3 ± 13.8 ms/mmHg in a historical healthy control group of 54 subjects (p<0.001). A mixed effects model adjusting for sex, age, BMI, and insulin level, demonstrated a significant effect of hypoglycemia on BRS (p=0.008). Pairwise comparisons revealed a significant decrease in BRS during the PM clamp as compared with BRS assessed at baseline (5.5 ± 5.0 vs 7.7 ± 3.6 ms/mmHg, p=0.045), during the AM clamp (5.5 ± 5.0 vs 10.5 ± 5.6 ms/mmHg, p=0.43), and the following day (5.5 ± 5.0 vs 8.6 ± 3.8 ms/mmHg, p=0.33). Of note, there was no significant difference between BRS at baseline and during the AM clamp (p=0.44). Additionally, insulin levels positively and strongly correlated with BRS at baseline (R2 0.52) and during the AM clamp (R2 0.67). Discussion: Insulin may have a stimulatory effect on BRS during a hyperinsulinemic hypoglycemic clamp that counters the inhibitory effect of hypoglycemia during the first episode of hypoglycemia. However, with exposure to a second hypoglycemic clamp, BRS decreases. Conclusion: Individuals with T2DM have low BRS at baseline, which is further reduced after 2 episodes of hypoglycemia.
Journal Article