Javascript must be enabled to continue!
Parasympathetic Blockade Attenuates Augmented Pancreatic Polypeptide But Not Insulin Secretion in Pima Indians
View through CrossRef
There is evidence from animal models of obesity and type 2 diabetes that increased parasympathetic vagal input to the pancreas contributes to hyperinsulinemia. Compared with Caucasians, Pima Indians have a high risk of type 2 diabetes and exhibit marked hyperinsulinemia and elevated plasma levels of pancreatic polypeptide (PP), an islet hormone considered a surrogate marker of parasympathetic nervous system (PNS) drive to the pancreas. To test if hyperinsulinemia in Pima Indians is due to increased vagal input to the β-cell, we examined the effect of PNS blockade in 17 Caucasian (aged 35 ± 8 years, body fat 23 ± 7% [mean ± SD]) and 17 Pima Indian males (aged 28 ± 8 years, body fat 29 ± 5%) with normal glucose tolerance. Each participant underwent four consecutive standardized liquid meal tests (64% carbohydrate, 22% fat, and 14% protein) during which a primed infusion of atropine was administered for 120 min at the following doses: 0, 2.5, 5, and 10 μg · kg fat-free mass (FFM)−1 · h−1. Areas under the curve for early (AUC0–30 min) and total (AUC0–120 min) postprandial insulin and PP secretory responses were calculated. Early postprandial insulin and PP secretory responses were higher in Pima Indians compared with those of Caucasians (both P = 0.01). Secretion of insulin and PP was inhibited by atropine (both P < 0.001). Increasing doses of atropine attenuated the ethnic difference in PP (P = 0.01) but not in early insulin secretory responses (P = 0.6), an effect that was not due to differences in gastric emptying rate (acetaminophen test) and/or circulating glucose. Similar results were observed for total secretory responses. These results confirm that compared with Caucasians, Pima Indians have an exaggerated PNS drive to pancreatic F-cells that secrete PP. However, the hyperinsulinemia of this population does not appear to be due to increased vagal input to pancreatic β-cells.
American Diabetes Association
Title: Parasympathetic Blockade Attenuates Augmented Pancreatic Polypeptide But Not Insulin Secretion in Pima Indians
Description:
There is evidence from animal models of obesity and type 2 diabetes that increased parasympathetic vagal input to the pancreas contributes to hyperinsulinemia.
Compared with Caucasians, Pima Indians have a high risk of type 2 diabetes and exhibit marked hyperinsulinemia and elevated plasma levels of pancreatic polypeptide (PP), an islet hormone considered a surrogate marker of parasympathetic nervous system (PNS) drive to the pancreas.
To test if hyperinsulinemia in Pima Indians is due to increased vagal input to the β-cell, we examined the effect of PNS blockade in 17 Caucasian (aged 35 ± 8 years, body fat 23 ± 7% [mean ± SD]) and 17 Pima Indian males (aged 28 ± 8 years, body fat 29 ± 5%) with normal glucose tolerance.
Each participant underwent four consecutive standardized liquid meal tests (64% carbohydrate, 22% fat, and 14% protein) during which a primed infusion of atropine was administered for 120 min at the following doses: 0, 2.
5, 5, and 10 μg · kg fat-free mass (FFM)−1 · h−1.
Areas under the curve for early (AUC0–30 min) and total (AUC0–120 min) postprandial insulin and PP secretory responses were calculated.
Early postprandial insulin and PP secretory responses were higher in Pima Indians compared with those of Caucasians (both P = 0.
01).
Secretion of insulin and PP was inhibited by atropine (both P < 0.
001).
Increasing doses of atropine attenuated the ethnic difference in PP (P = 0.
01) but not in early insulin secretory responses (P = 0.
6), an effect that was not due to differences in gastric emptying rate (acetaminophen test) and/or circulating glucose.
Similar results were observed for total secretory responses.
These results confirm that compared with Caucasians, Pima Indians have an exaggerated PNS drive to pancreatic F-cells that secrete PP.
However, the hyperinsulinemia of this population does not appear to be due to increased vagal input to pancreatic β-cells.
Related Results
Exaggerated insulin secretion in Pima Indians and African‐Americans but higher insulin resistance in Pima Indians compared to African‐Americans and Caucasians
Exaggerated insulin secretion in Pima Indians and African‐Americans but higher insulin resistance in Pima Indians compared to African‐Americans and Caucasians
AbstractAims African‐Americans have a higher prevalence of Type 2 diabetes than Caucasians, but a lower prevalence than Pima Indians. Studies suggest that both African‐Americans a...
(Invited) A Protein-Based Artificial Receptor for Insulin Sensing
(Invited) A Protein-Based Artificial Receptor for Insulin Sensing
Insulin is one of the most important hormones that controls the glucose level in blood. Therefore, the investigation of insulin is very important for the diabetic research. There h...
Phytochemical Profiling and Mechanistic Investigation of the Antidiabetic Properties of Parquetina Nigrescens
Phytochemical Profiling and Mechanistic Investigation of the Antidiabetic Properties of Parquetina Nigrescens
Type 2 diabetes mellitus (T2DM) is a chronic metabolic disorder marked by elevated blood glucose levels, primarily caused by insulin resistance and impaired insulin secretion. Desp...
New and simple Ohmic definition of insulin resistance in lean and obese subjects
New and simple Ohmic definition of insulin resistance in lean and obese subjects
objective:: Insulin enhances the influx of glucose into cells. However, the relationship between glucose and insulin is complex and insulin sensitivity varies widely with age, ethn...
Insulin Activates Parasympathetic Hepatic-related PVN Neurons Through mTOR signaling
Insulin Activates Parasympathetic Hepatic-related PVN Neurons Through mTOR signaling
Paraventricular nucleus of hypothalamus (PVN) is an important brain region regulating a diversity of autonomic functions, such as hepatic glucose production (HGP). Classical insuli...
Pathogenesis of Type 2 Diabetes
Pathogenesis of Type 2 Diabetes
AbstractThe sections in this article are:Insulin Secretion in T2DMFasting Insulin ConcentrationGlucose‐Stimulated Insulin SecretionOther Abnormalities in Insulin Secretion in T2DMM...
Interplays between Metabolic Hormones, Metabolic Factors, Kidney Function Parameters, and Heart Rate Variability
Interplays between Metabolic Hormones, Metabolic Factors, Kidney Function Parameters, and Heart Rate Variability
Metabolic Syndrome (MetS) is associated with autonomic cardiac dysregulation, reflected by changes in heart rate variability (HRV) and detrimental effects on kidney function. This ...
Effect of intranasal insulin on osteocalcin levels and postoperative delirium in elderly patients undergoing joint replacement
Effect of intranasal insulin on osteocalcin levels and postoperative delirium in elderly patients undergoing joint replacement
Abstract
Background
Recently, intranasal insulin has shown great promise in preventing perioperative neurocognitive disorders t...

