Clinical Trials Logo

Clinical Trial Summary

This research is being done to better understand how insulin effects muscle, blood, and the body in people with Type 1 Diabetes.


Clinical Trial Description

Insulin's contribution in controlling glucose homeostasis has been well appreciated but, its role in maintaining proteome homeostasis is less understood. Some animal and human studies have demonstrated that insulin signaling regulates protein synthesis and degradation as well as posttranslational modifications at the tissue level. Insulin's effect on the muscle's mitochondrial proteo-stasis has also been elucidated. Insulin deprivation increases global synthesis of splanchnic proteins based on isotope dilution studies across splanchnic bed. Most plasma proteins are derived from liver and preliminary studies suggest that synthesis rates of some plasma proteins increase while others decrease. Fractional rates of synthesis of various plasma proteins from the liver have been demonstrated in insulin deprivation state. These proteins might be implicated in the development of some of the complications from diabetes mellitus type 1. (T1DM) especially of macrovascular. Researchers have recently developed an isotope-based methodology to simultaneously measure in vivo synthesis rates of multiple plasma proteins in human. In order to further investigate the effects of insulin deprivation researchers will apply the novel non-radioactive stable isotope-based approach on the rate of different plasma protein synthesis in T1DM and Diabetes after total pancreatectomy (DATP) in comparison with non-diabetic controls. Researchers will study pancreatectomized people because like T1DM they also are insulin deficient but unlike pancreatectomized people also are deficient in glucagon. Some tantalizing data from many studies indicate that glucagon also have catabolic effect not only on liver derived proteins but also on skeletal muscle-based proteins. Since skeletal muscle has no glucagon receptors, researchers hypothesize that unknown factors are released to the circulation that act on skeletal muscle to release amino acids for consumption in liver. Researchers will measure amino metabolites, acyl carnitines, organic acids, and ceramides in plasma and determine the blood exosome cargo by mass spectrometry-proteins and lipids and miRNA by PCR. Researchers have previously shown reduced muscle mitochondrial ATP production during insulin deprivation in both T1D humans and diabetic mice and here researchers will measure mitochondrial energy dynamics in all study participants by the established techniques available in our lab. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT05985135
Study type Interventional
Source Mayo Clinic
Contact Mark Pataky, PhD, MS
Phone 507-255-8115
Email pataky.mark@mayo.edu
Status Not yet recruiting
Phase N/A
Start date July 1, 2024
Completion date August 2028

See also
  Status Clinical Trial Phase
Recruiting NCT05653518 - Artificial Pancreas Technology to Reduce Glycemic Variability and Improve Cardiovascular Health in Type 1 Diabetes N/A
Enrolling by invitation NCT05515939 - Evaluating the InPen in Pediatric Type 1 Diabetes
Completed NCT05109520 - Evaluation of Glycemic Control and Quality of Life in Adults With Type 1 Diabetes During Continuous Glucose Monitoring When Switching to Insulin Glargine 300 U/mL
Recruiting NCT04016987 - Automated Structured Education Based on an App and AI in Chinese Patients With Type 1 Diabetes N/A
Active, not recruiting NCT04190368 - Team Clinic: Virtual Expansion of an Innovative Multi-Disciplinary Care Model for Adolescents and Young Adults With Type 1 Diabetes N/A
Recruiting NCT05413005 - Efficacy of Extracorporeal Photopheresis (ECP) in the Treatment of Type 1 Diabetes Mellitus Early Phase 1
Active, not recruiting NCT04668612 - Dual-wave Boluses in Children With Type 1 Diabetes Insulin Boluses in Children With Type 1 Diabetes N/A
Recruiting NCT05414409 - The Gut Microbiome in Type 1 Diabetes and Mechanism of Metformin Action Phase 2
Completed NCT02837094 - Enhanced Epidermal Antigen Specific Immunotherapy Trial -1 Phase 1
Recruiting NCT05670366 - The Integration of Physical Activity Into the Clinical Decision Process of People With Type 1 Diabetes N/A
Active, not recruiting NCT05418699 - Real-life Data From Diabetic Patients on Closed-loop Pumps
Completed NCT04084171 - Safety of Artificial Pancreas Therapy in Preschoolers, Age 2-6 N/A
Recruiting NCT06144554 - Post Market Registry for the Omnipod 5 System in Children and Adults With Type 1 Diabetes
Recruiting NCT05281614 - Immune Effects of Vedolizumab With or Without Anti-TNF Pre-treatment in T1D Early Phase 1
Recruiting NCT05153070 - Ciclosporin Followed by Low-dose IL-2 in Patients With Recently Diagnosed Type 1 Diabetes Phase 2
Recruiting NCT05379686 - Low-Dose Glucagon and Advanced Hybrid Closed-Loop System for Prevention of Exercise-Induced Hypoglycaemia in People With Type 1 Diabetes N/A
Withdrawn NCT04259775 - Guided User-initiated Insulin Dose Enhancements (GUIDE) to Improve Outcomes for Youth With Type 1 Diabetes N/A
Active, not recruiting NCT01600924 - Study on the Assessment of Determinants of Muscle and Bone Strength Abnormalities in Diabetes
Completed NCT02914886 - Beneficial Effect of Insulin Glulisine by Lipoatrophy and Type 1 Diabetes (LAS) Phase 4
Completed NCT02855307 - Closed-loop Control of Glucose Levels (Artificial Pancreas) During Postprandial Exercise in Adults With Type 1 Diabetes Phase 2