The overall objective of the study is to provide personalized nutritional advice based on the gut microbiota profile of children with type 1 diabetes (T1D) or obesity. Specifically, the primary objective of NUTRI-DIET is to validate a dietary model aimed at restoring bacterial species and/or anti-inflammatory metabolites in order to prevent extra-intestinal diseases characterized by dysbiosis, such as T1D and obesity. The primary endpoints of the study will be to monitor the glycemic control indices, i.e., blood glucose (mean of glycemic values, percentage of time-in-range value (TIR), which will be displayed by glycemic sensor) and glycated hemoglobin for diabetic children and Body mass index (BMI) z-score according to World Health Organization (WHO) recommendations (WHO BMI-for-age boys; WHO BMI-for-age girls) for obese children. The secondary objective of the study is to characterize the microbiota profile of the study patients and to test the algorithm under development built from the integration of diet and and gut microbiota composition data that were obtained during the previous observational study NUTRI-T1D.
Randomized, multicenter, 2-arm, parallel-group, single-blind controlled clinical trial (1:1 allocation ratio) with 1 group of patients with obesity (N=20) or type 1 (n=20) treated with standard obesity treatment diet or usual diet (diabetic children) and 1 group (N=20 for obesity and (N=20 for type 1 diabetes) treated with the same diets to which nutritional advice derived from microbiota analysis (NUTRI-DIET) will be added. The study will last 12 months with an intervention phase (personalized diet) lasting 3 months. The research includes an enrollment phase that may extend up to 9 months depending on the number of patients enrolled. The enrollment phase will be considered finished once a total of 80 patients (i.e., 40 pediatric patients with type 1 diabetes and 40 obese pediatric patients) are enrolled. During the patient enrollment phase, relevant clinical information (biological samples as faeces, urines and blood and questionnaires on diet habits, physical activity and stress) will be collected concurrently. Tests will be performed once enrollment is completed on samples from all patients collected at the time of enrollment (microbiota analysis on stool, metabolome analysis on stool and urine, serological gut barrier markers analysis on serum). Obese and/or diabetic children will be randomized to the intervention or control group. Randomization will be done according to age (≤12: \>12), gender and pathology (diabetes or obesity).
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
DOUBLE
Enrollment
39
The gut microbiota (on stool) and metabolic profile (on stool and urine) will be analyzed at time 0, and the dietary plan will contain specific directions aimed at restoring a proper metagenomic and metabolomic profile of the microbiota.
Subjects on the control group will receive general dietetic advice for Obesity or T1D
Pediatric Unit
Milan, Milano, Italy
Autoimmune Pathogenesis Unit
Milan, Milan, Italy
Glycemia
Blood glucose levels (mg/dL) will be measured in diabetic children.
Time frame: Up to 3 months
Glycemic control by glycated hemoglobin (HbA1c) monitoring
The percentage of glycated hemoglobin (HbA1c, %) in the blood will be measured in diabetic children.
Time frame: Up to 3 months
Glycemic control by Time-in-Range (TIR) monitoring
TIR values - that is the percentage of time in which blood glucose (blood sugar) remains in the safe target range of 70-180mg/dL - will be monitored in diabetic children by extracting the recorded data from the continuous glucose monitoring (CGM) device (sensor).
Time frame: Up to 3 months
Body mass index (BMI)
The BMI z-score in obese children will be measured, according to WHO recommendations (WHO BMI-for-age boys; WHO BMI-for-age girls).
Time frame: Up to 3 months
Metagenomic analysis
Changes in gut microbiota composition following personalized microbiome-targeted diet, as assessed by 16S ribosomal RNA (rRNA) sequencing on DNA extracted from patient-derived fecal samples.
Time frame: Up to 3 months
Metabolomic analysis
Changes in microbiota-derived metabolites following personalized microbiome-targeted diet, as assessed by Mass Spectrometry on patient-derived fecal and urine samples.
Time frame: Up to 3 months
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