Semaglutide as a potential therapeutic alternative for HNF1B-MODY: a case study
Angham Almutair1,2,3, Beshaier Almulhem1,2,4
1Pediatric Department, King Abdullah Specialized Children's Hospital, King Abdulaziz Medical City, Ministry of National Guard Health Affairs, Riyadh, Saudi Arabia.
Abstract:
Maturity-onset diabetes of the young (MODY) is a grouping of monogenic disorders. It is characterized by dominantly inherited, non-insulin-dependent diabetes. MODY is relatively rare, encompassing up to 3.5% in those diagnosed under 30 years of age. Specific types are most commonly treated with sulfonylurea, particularly those identified as HNF4A-MODY and HNF1A-MODY. HNF1B-MODY is another type that is most frequently managed with insulin therapy but lacks a defined precision treatment. We present an 18-year-old, non-obese female patient diagnosed with HNF1B-MODY. She displays complete gene deletion, a renal cyst, and hypomagnesemia. Her treatment plan includes both long- and short-acting insulin, though she frequently encountered hypoglycemia and hyperglycemia. Semaglutide, a GLP-1RA, was administered weekly over 4 months. The patient's glucose level was continuously tracked using Dexcom's Continuous Glucose Monitoring system. The data suggested a notable improvement in her condition: time-in-range (TIR) increased from 70% to 88%, with some days achieving 100%, and the frequency of hypoglycemic episodes, indicated by time-below-range values, fell from 5% to 1%. The time-above-range values also dropped from 25% to 10%, and her HbA1c levels declined from 7% to 5.6%. During the semaglutide therapy, we were able to discontinue her insulin treatment. Additionally, her body mass index (BMI) was reduced from 24.1 to 20.1 kg/m2. However, the semaglutide treatment was halted after 4 months due to side effects such as nausea, vomiting, and reduced appetite. Other contributing factors included exam stress and a COVID-19 infection, which forced a switch back to insulin. Her last recorded HbA1c level under exclusive insulin therapy rose to 7.1%, and her BMI increased to 24.9 kg/m2. In conclusion, semaglutide could potentially replace insulin to improve glucose variability, TIR, and HbA1c in patients with HNF1B-MODY. However, more extensive studies are required to confirm its long-term safety and efficacy.
Insights
Semaglutide, a GLP-1RA, showed promise in managing HNF1B-MODY diabetes by improving glucose control and reducing insulin dependence. However, side effects led to treatment discontinuation, highlighting the need for further research.
Area of Science:
- Endocrinology and Metabolism
- Genetics and Genomics
- Pharmacology
Background:
- Maturity-onset diabetes of the young (MODY) comprises rare, monogenic forms of diabetes.
- HNF1B-MODY, a specific subtype, often requires insulin but lacks targeted precision treatments.
- This case study focuses on an 18-year-old female with HNF1B-MODY, gene deletion, renal cyst, and hypomagnesemia.
Observation:
- The patient initially managed with insulin experienced significant glycemic variability (hypoglycemia and hyperglycemia).
- Continuous glucose monitoring revealed suboptimal time-in-range (TIR) and elevated time-above-range.
- Baseline HbA1c was 7%, with a BMI of 24.1 kg/m².
Findings:
- Weekly semaglutide (a GLP-1RA) administration over 4 months improved glycemic control: TIR increased to 88%, time-below-range decreased to 1%, and time-above-range dropped to 10%.
- Semaglutide therapy enabled discontinuation of insulin, reduced HbA1c to 5.6%, and lowered BMI to 20.1 kg/m².
- Treatment cessation due to side effects (nausea, vomiting) and external factors (infection, stress) led to insulin resumption, increased HbA1c (7.1%), and BMI (24.9 kg/m²).
Implications:
- Semaglutide demonstrates potential as an alternative to insulin for improving glucose variability, TIR, and HbA1c in HNF1B-MODY.
- Further research is crucial to establish the long-term safety and efficacy of GLP-1RAs in this specific MODY subtype.
- Personalized treatment strategies are needed for HNF1B-MODY, considering potential benefits and side effects of novel therapies.
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