Diabetes Clinical Trial
Official title:
Glucose Differences Between the Left Arm and Right Arm in Diabetic Patients Using a Continuous Glucose Monitor
| NCT number | NCT04790760 |
| Other study ID # | 20-29 |
| Secondary ID | |
| Status | Recruiting |
| Phase | N/A |
| First received | |
| Last updated | |
| Start date | March 2021 |
| Est. completion date | February 2022 |
Continuous glucose monitoring (CGM) is an emerging field for diabetes management. CGMs are small devices primarily placed on a patient's upper arm that allow providers and patients to individualize therapy by looking at real time glucose levels. While the accuracy of these devices is extensively researched, there are no large-scale studies evaluating the differences between left and right arm glucose readings in the diabetic population. Additionally cinnamon and aloe vera are supplements commonly used by diabetic patients to help improve glycemic control. However, there remains a shortage of studies researching the effects of cinnamon and aloe vera on diabetic patients' glycemic control. The purpose of this study is to determine if there is a difference between glucose levels in the right arm and left arm in diabetic patients and to evaluate if cinnamon and aloe vera supplements impact glycemic control in diabetic patients.
| Status | Recruiting |
| Enrollment | 10 |
| Est. completion date | February 2022 |
| Est. primary completion date | February 2022 |
| Accepts healthy volunteers | No |
| Gender | All |
| Age group | 18 Years to 65 Years |
| Eligibility | Inclusion Criteria: - Adult 18-65 years of age - Diagnosed with type 2 diabetes - Willing to wear CGM for 6 weeks on both arms - Willing to come in for 4 office visits over 6 weeks - Willing to consume assigned supplement twice a day for 4 weeks - Willing to receive and respond to daily text messages or maintain a daily study log of supplement consumption - Have active health insurance - Willing to refrain from any heat therapy for the duration of the study - Willing to refrain from taking any other supplements that are deemed by the investigator to alter glucose for the duration of the study - Willing to refrain from consuming ascorbic acid and salicylic acid for the duration of the study due to a known interaction with CGMs - Be able to self-monitor blood glucose with finger-stick method - Have a baseline HbA1c > 6.5% Exclusion Criteria: - Any active dermatologic condition on the upper arms - Implanted medical devices (i.e. pacemaker) - Critically ill or dialysis patients - Planned magnetic resonance imaging screening, computed tomography scan, x-ray imaging or high-frequency electrical heat treatment during study period - Current systemic infections - Participants who are unable to fully understand the study or consent process will not be included in the study due to the lack of a qualified medical translator - Change in diabetic medication regimen within the previous 30 days (except insulin) - Self-identified allergy to cinnamon or aloe vera - Refusal to sign the informed consent document - Pregnant, planned-pregnancy during study period or currently breast-feeding - History of hypoglycemic episodes warranting medical attention experienced in the last 30 days |
| Country | Name | City | State |
|---|---|---|---|
| United States | Manshadi Heart Institute, Inc. | Stockton | California |
| Lead Sponsor | Collaborator |
|---|---|
| University of the Pacific | Manshadi Heart Institute, Inc. |
United States,
American Diabetes Association. 6. Glycemic Targets: Standards of Medical Care in Diabetes-2020. Diabetes Care. 2020 Jan;43(Suppl 1):S66-S76. doi: 10.2337/dc20-S006. Review. — View Citation
Food and Drug Administration. Self-monitoring blood glucose test systems for over-the-counter use-guidance for industry and food and drug administration staff. Available at: http://www.fda.gov/downloads/MedicalDevices/DeviceRegulationandGuidance/GuidanceDocuments/UCM380327.pdf. Accessed October 10, 2016.
Foster M, Hunter D, Samman S. Evaluation of the Nutritional and Metabolic Effects of Aloe vera. In: Benzie IFF, Wachtel-Galor S, editors. Herbal Medicine: Biomolecular and Clinical Aspects. 2nd edition. Boca Raton (FL): CRC Press/Taylor & Francis; 2011. Chapter 3. Available from: https://www.ncbi.nlm.nih.gov/books/NBK92765/
FreeStyle Libre 2-Best Glucose Monitor For Kids - Coming Soon for Patients 4+. Continuous Glucose Monitoring System. https://www.freestylelibre.us/system-overview/freestyle-libre-2.html. Accessed June 21, 2020.
Juvenile Diabetes Research Foundation Continuous Glucose Monitoring Study Group, Beck RW, Hirsch IB, Laffel L, Tamborlane WV, Bode BW, Buckingham B, Chase P, Clemons R, Fiallo-Scharer R, Fox LA, Gilliam LK, Huang ES, Kollman C, Kowalski AJ, Lawrence JM, Lee J, Mauras N, O'Grady M, Ruedy KJ, Tansey M, Tsalikian E, Weinzimer SA, Wilson DM, Wolpert H, Wysocki T, Xing D. The effect of continuous glucose monitoring in well-controlled type 1 diabetes. Diabetes Care. 2009 Aug;32(8):1378-83. doi: 10.2337/dc09-0108. Epub 2009 May 8. — View Citation
Kawatra P, Rajagopalan R. Cinnamon: Mystic powers of a minute ingredient. Pharmacognosy Res. 2015 Jun;7(Suppl 1):S1-6. doi: 10.4103/0974-8490.157990. Review. — View Citation
Shapiro AR. Nonadjunctive Use of Continuous Glucose Monitors for Insulin Dosing: Is It Safe? J Diabetes Sci Technol. 2017 Jul;11(4):833-838. doi: 10.1177/1932296816688303. Epub 2017 Mar 1. — View Citation
Siegmund T, Heinemann L, Kolassa R, Thomas A. Discrepancies Between Blood Glucose and Interstitial Glucose-Technological Artifacts or Physiology: Implications for Selection of the Appropriate Therapeutic Target. J Diabetes Sci Technol. 2017 Jul;11(4):766-772. doi: 10.1177/1932296817699637. Epub 2017 Mar 21. — View Citation
Vigersky RA, McMahon C. The Relationship of Hemoglobin A1C to Time-in-Range in Patients with Diabetes. Diabetes Technol Ther. 2019 Feb;21(2):81-85. doi: 10.1089/dia.2018.0310. Epub 2018 Dec 21. — View Citation
| Type | Measure | Description | Time frame | Safety issue |
|---|---|---|---|---|
| Other | Change in continuous glucose monitor measured glucose levels | 6 weeks | ||
| Other | Change in hemoglobin A1c | 6 weeks | ||
| Other | Change in blood pressure | 6 weeks | ||
| Other | QT interval | Electrocardiograph (ECG) Parameters | 6 weeks | |
| Other | PR interval | Electrocardiograph (ECG) Parameters | 6 weeks | |
| Other | QRS interval | Electrocardiograph (ECG) Parameters | 6 weeks | |
| Other | Heart Rate | Electrocardiograph (ECG) Parameters | 6 weeks | |
| Other | Change in body weight | Measured by Tanita Body Composition Analyzer | 6 weeks | |
| Other | Change in body fat percentage | Measured by Tanita Body Composition Analyzer | 6 weeks | |
| Other | Change in body water percentage | Measured by Tanita Body Composition Analyzer | 6 weeks | |
| Other | Change in muscle mass | Measured by Tanita Body Composition Analyzer | 6 weeks | |
| Other | Change in bone mass | Measured by Tanita Body Composition Analyzer | 6 weeks | |
| Primary | Difference in time-matched glucose levels between the right arm and the left arm | 6 weeks | ||
| Secondary | Difference in time in range between the right arm and the left arm | 6 weeks | ||
| Secondary | Difference in time above range between the right arm and the left arm | 6 weeks | ||
| Secondary | Difference in time below range between the right arm and the left arm | 6 weeks |
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