Steno Diabetes Center Copenhagen
Herlev, DK-2730, Denmark
NCT Number: NCT06127823
The treatment of gestational diabetes (GDM) primarily revolves around consuming an optimal diet that does not cause blood glucose levels to become excessively high and provides an adequate supply of micro- and macronutrients without resulting in excessive weight gain during pregnancy. In some cases, it may become necessary to supplement with insulin during pregnancy. However, insulin treatment is associated with personal, health-related, and healthcare cost-related implications. The rationale for this study is the lack of knowledge regarding whether the extent of support and guidance from a dietitian during pregnancy has an impact on the treatment outcomes for both the mother and the child in cases of GDM. The overall objective is to investigate differences in clinical, cost-related, and patient-reported outcomes between women with GDM randomised to either intensive dietary therapy or standard dietary care (control). The primary endpoint is the effect of intensive dietary therapy on the likelihood of remaining treated with diet only vs. needing insulin therapy. The study design is a randomised controlled parallel group open-label effectiveness trial including 214 women with GDM.
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Interventional
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Herlev, DK-2730, Denmark
Gestational diabetes (GDM) is defined as glucose intolerance with onset or first recognition during pregnancy. The disease is characterized by hyperglycaemia and a marked insulin resistance secondary to placental hormonal release. Risk factors for developing GDM in pregnancy include obesity, excessive gestational weight gain, previous GDM, glucosuria, family history of diabetes, ethnicity, and hypertension. Hyperglycaemia is associated with serious short- and long-term complications for mother and child including delivering large-for-gestational-age (LGA) babies, macrosomia, preterm birth, caesarean section, preeclampsia, birth injury, respiratory distress syndrome, neonatal hypoglycaemia, jaundice, and increased admission to neonatal intensive care unit (NICU). First-line treatment in GDM after diagnosis is dietary therapy including a systematic and detailed dietary assessment to identify relevant areas for adjusting the diet and overall lifestyle. The overall goals with dietary therapy are 1) To provide adequate calories and micro- and macronutrients to meet the needs of pregnancy consistent with maintaining normoglycaemia, 1) To improve glycaemic control; and 3) To secure appropriate gestational weight gain and avoid excessive weekly gestational weight gain. Currently, no evidence exists for specific recommendations concerning the optimal frequency, intensity, or duration of visits with a dietitian for improving maternal, foetal, or neonatal outcomes. National clinical guidelines for treatment of GDM recommends up to three visits with a dietitian depending on the time of diagnosis. However, in the latest national clinical guidelines under review this has been changed to only one visit.
In most cases dietary improvements are sufficient to achieve glycaemic goals but around one third of all women with GDM will need insulin therapy at some point during pregnancy. Decision about additional insulin therapy is based on a combination of ultrasound findings and dietary glycemic control as indicated by the blood glucose protocol as assessed by an obstetrician. Insulin therapy can improve glycaemic control and has been shown to be effective in reducing the rate of macrosomia in GDM. But use of insulin during pregnancy is also associated with several clinical implications, increased hospital and medical costs as well as higher costs in relation to delivery, and neonatal care, and personal burden affecting women with GDM.
In summary, the most optimal way to deliver dietary therapy to women with GDM is not known. The possibility that intensive dietary therapy may reduce the need for initiating insulin treatment without increasing hospital service costs for these women in comparison with women receiving standard dietary care needs to be explored.
The overall objective is to investigate the effectiveness and hospital service costs of implementing an intervention with intensive dietary counselling and support during pregnancy in women with GDM.
The INTENSE-GDM trial is a randomised controlled parallel group open-label effectiveness trial including 214 women with GDM. Participants will attend one consultation with a dietitian in the standard care group and up to 5 consultations (including 2 mandatory follow-up visits and 2 optional follow-up visits) with a dietitian in the intensive dietary counselling group. Both groups will receive one end-of-intervention telephone call.
The primary endpoint is the percentage of women with GDM treated with insulin therapy in the intervention group and the control group at delivery. Secondary endpoints include maternal endpoints (changes in body weight from referral to delivery, changes in glycaeted hemoglobin A1c from referral to delivery, time to insulin treatment onset, mean prescribed initial and maximal insulin dose, neonatal endpoints (percentage of LGA, small for gestational age, macrosomia new-borns respectively, percentage of new-borns with neonatal hypoglycaemia and percentage of new-borns admitted to NICU). Descriptive/exploratory endpoints include changes in maternal endpoints (percentage of cases of preeclampsia, preterm births, cases of acute and planned caesarean sections), neonatal endpoints (percentage of cases of neonatal jaundice, questionnaires (diabetes diet-related quality of life, well-being, perceived autonomy support and competence in diet and diabetes, treatment satisfaction and physical activity during pregnancy). Hospital costs will be analysed for the two study groups (intensive dietary therapy vs. standard care) including costs from referral with GDM to discharge after delivery divided into the categories 1) outpatient contacts and costs related to the treatment of GDM, 2) delivery costs, 3) inpatient costs after delivery for mother and offspring separately, including NICU costs and 4) total net costs. Additionally, adherence to intervention (number of no shows for planned visits), number and types of visits (face-to-face, video and telephone), changes in dietary intake and adverse events will be recorded.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Dietary counselling
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
Percentage of women with GDM treated with insulin therapy in the two study groups
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
Changes in body weight, kg
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
Changes in maternal HbA1c, mmol/mol
Time frame: From date of randomisation until date of first insulin prescription, assessed from study completion up to 24 weeks
Time to insulin treatment onset, days
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
Mean prescribed initial and maximal insulin dose, units/kg body weight
Time frame: At delivery, assessed from study completion up to 24 weeks
LGA new-borns, %
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
SGA new-borns, %
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
Newborns with macrosomia, %
Time frame: From date of randomisation until data of discharge after child delivery, assessed from study completion up to 24 weeks
New-borns with neonatal hypoglycaemia, %
Time frame: From date of randomisation until data of discharge after child delivery, assessed from study completion up to 24 weeks
New-borns admitted to NICU, %
Time frame: From date of randomisation until data of discharge after child delivery, assessed from study completion up to 24 weeks
Newborns with neonatal jaundice, n (%)
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
Cases of planned caesarean sections, n (%)
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
Cases of acute caesarean sections, n (%)
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
Cases of preterm births, n (%)
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
Cases of preeclampsia, n (%)
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
Changes in DDQOL, total score
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
Changes in WHO-5, total score
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
Changes in HCCQ, total score
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
Changes in PCDS, total score
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
Changes in PPQA, total score
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
Treatment satisfaction, categorical distribution of answers
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
No shows for planned visits, n (%)
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
Face-to-face, video and telephone, n (%)
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
Based on an interview
Time frame: From date of randomisation until date of child delivery, assessed from study completion up to 24 weeks
Type of adverse events described
Time frame: From date of randomisation until date of discharge after child delivery, assessed from study completion up to 24 weeks
Number and type of contacts at hospital related to pregnancy and diabetes treatment, n (%)
Time frame: From date of randomisation until date of discharge after child delivery, assessed from study completion up to 24 weeks
Diagnosis-related rates, DKK
Time frame: From date of labour until date of child delivery, assessed from study completion up to 24 weeks
Diagnosis-related delivery costs, DKK
Time frame: From data of child delivery until date of discharge after child delivery, assessed from study completion up to 24 weeks
Impatient costs after delivery related to admission to a neonatal intensive care unit, DKK
Time frame: From data of child delivery until date of discharge after child delivery, assessed from study completion up to 24 weeks
Inpatient costs after delivery related to admission to a neonatal intensive care unit, DKK
Time frame: From date of randomisation until date of discharge after child delivery, assessed from study completion up to 24 weeks
Total costs including GDM- and pregnancy-related hospital cost and medical costs, DKK
Steno Diabetes Center Copenhagen
Other
Effect of Intensive Nutrition Training, Education, and Support Versus Standard Care in Reducing the Need for Insulin Therapy in Gestational Diabetes (INTENSE-GDM): A Randomised Controlled Trial
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