Type 1 Diabetes Mellitus Clinical Trial
Official title:
Efficacy of Remote Intervention by Medical Staff Based on a Cloud System of Continuous Glucose Monitoring Data in Patients With Insulin-dependent Diabetes Using a Flash Sensor-based Glucose Monitoring (FSGM)
Verified date | October 2022 |
Source | CHA University |
Contact | n/a |
Is FDA regulated | No |
Health authority | |
Study type | Interventional |
To investigate the efficacy of remote intervention by medical staff based on a cloud system of continuous glucose monitoring data in patients with insulin-dependent diabetes using flash sensor-based glucose monitoring (FSGM).
Status | Completed |
Enrollment | 36 |
Est. completion date | April 30, 2022 |
Est. primary completion date | April 30, 2022 |
Accepts healthy volunteers | No |
Gender | All |
Age group | 19 Years to 75 Years |
Eligibility | Inclusion Criteria: - Men or women aged 19 to 75 years old - Patients with type 1 diabetes - Patients on multiple daily insulin-injection or continuous subcutaneous insulin infusion therapy for more than 1 year - Patients with HbA1c = 7.0% at screening - Patients willing to use a FSGM system - Patients with informed consent Exclusion Criteria: - Gestational diabetes patients - Patients within 1 year of diabetic diagnosis - Patients taking drugs for severe cognitive impairment or psychiatric problems - Patients who received oral or parenteral corticosteroid therapy for more than 7 consecutive days within 1 month before screening test - Patients with severe infection, before and after surgery, and severe trauma - Patients on dialysis at the end of renal failure - Patients who have a history of substance abuse or alcoholism within 12 weeks through patient history taking, diagnosis records, and past treatment records - Pregnant or lactating women - Participating in other clinical trials under R&D other than this clinical trial, or if other clinical trial drugs are administered within 4 weeks before the trial - Patients who are using a CGMS/FSGM or who have been using it within 12 weeks |
Country | Name | City | State |
---|---|---|---|
Korea, Republic of | CHA Bundang Medical Center | Seongnam | Gyeonggi-do |
Lead Sponsor | Collaborator |
---|---|
Young Shin Song |
Korea, Republic of,
Hermanns N, Ehrmann D, Schipfer M, Kröger J, Haak T, Kulzer B. The impact of a structured education and treatment programme (FLASH) for people with diabetes using a flash sensor-based glucose monitoring system: Results of a randomized controlled trial. Diabetes Res Clin Pract. 2019 Apr;150:111-121. doi: 10.1016/j.diabres.2019.03.003. Epub 2019 Mar 4. — View Citation
Laffel LM, Kanapka LG, Beck RW, Bergamo K, Clements MA, Criego A, DeSalvo DJ, Goland R, Hood K, Liljenquist D, Messer LH, Monzavi R, Mouse TJ, Prahalad P, Sherr J, Simmons JH, Wadwa RP, Weinstock RS, Willi SM, Miller KM; CGM Intervention in Teens and Young Adults with T1D (CITY) Study Group; CDE10. Effect of Continuous Glucose Monitoring on Glycemic Control in Adolescents and Young Adults With Type 1 Diabetes: A Randomized Clinical Trial. JAMA. 2020 Jun 16;323(23):2388-2396. doi: 10.1001/jama.2020.6940. — View Citation
Pratley RE, Kanapka LG, Rickels MR, Ahmann A, Aleppo G, Beck R, Bhargava A, Bode BW, Carlson A, Chaytor NS, Fox DS, Goland R, Hirsch IB, Kruger D, Kudva YC, Levy C, McGill JB, Peters A, Philipson L, Philis-Tsimikas A, Pop-Busui R, Shah VN, Thompson M, Vendrame F, Verdejo A, Weinstock RS, Young L, Miller KM; Wireless Innovation for Seniors With Diabetes Mellitus (WISDM) Study Group. Effect of Continuous Glucose Monitoring on Hypoglycemia in Older Adults With Type 1 Diabetes: A Randomized Clinical Trial. JAMA. 2020 Jun 16;323(23):2397-2406. doi: 10.1001/jama.2020.6928. — View Citation
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Changes in glycemic control measured by HbA1c | Difference between baseline HbA1c and follow-up HbA1c | 3 months | |
Secondary | Changes in the time in range | Difference in the duration of glucose values between 70 mg/dL and 180 mg/dL between baseline and the 3-month follow-up | 3 months | |
Secondary | Changes in the duration of hyperglycemic episodes | Difference in the duration of hyperglycemic glucose values (>180, 250 mg/dL) (baseline vs. follow-up) | 3 months | |
Secondary | Changes in the duration of hypoglycemic episodes | Difference in the duration of hypoglycemic glucose values (<70, 54 mg/dL) (baseline vs. follow-up) | 3 months | |
Secondary | Changes in hypoglycemic episodes | Difference between the frequency of hypoglycemic glucose values (<70, 54 mg/dL) (baseline vs. follow-up) | 3 months | |
Secondary | Changes in the mean glucose values | Difference in the mean glucose values (baseline vs. follow-up) | 3 months | |
Secondary | Changes in the frequency of use of trend arrows | Difference in the frequency of use of trend arrows (baseline vs. follow-up) | 3 months | |
Secondary | Changes in the mean number of scans | Difference in the mean number of scans per day (baseline vs. follow-up) | 3 months | |
Secondary | Changes in the insulin dose | Difference in the insulin dose (baseline vs. follow-up) | 3 months | |
Secondary | Changes in the lipid parameter | Difference in the levels of total cholesterol, triglycerides, HDL cholesterol, LDL cholesterol (baseline vs. follow-up) | 3 months | |
Secondary | Changes in blood pressure | Difference in systolic blood pressure and diastolic blood pressure (baseline vs. follow-up) | 3 months | |
Secondary | Changes in body weight | Difference in body weight (baseline vs. follow-up) | 3 months | |
Secondary | Lifestyle changes in diet | Difference in the average number of meals and snacks per day (baseline vs. follow-up) | 3 months | |
Secondary | Lifestyle changes in the number of exercises | Difference in the average number of exercises per week (baseline vs. follow-up) | 3 months | |
Secondary | Lifestyle changes in the duration of exercises | Difference in the average duration of exercises per week (baseline vs. follow-up) | 3 months | |
Secondary | Changes in the patient absolute satisfaction with treatment assessed by questionnaires | Difference in Diabetes Treatment Satisfaction Questionnaire Status (DTSQs) scores (baseline vs. follow-up) | 3 months | |
Secondary | Changes in the patient relative satisfaction with treatment assessed by questionnaires | Difference in Diabetes Treatment Satisfaction Questionnaire Change (DTSQc) scores (baseline vs. follow-up) | 3 months | |
Secondary | Changes in depression assessed by questionnaires | Difference in Patient Health Questionnaire-9 (PHQ-9) scores (baseline vs. follow-up) | 3 months | |
Secondary | Changes in anxiety assessed by questionnaires | Difference in General Anxiety Disorder-7 (GAD-7) scores (baseline vs. follow-up) | 3 months |
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