This interventional study is part of a broader research project entitled "Bone Marrow Adipose Tissue in Relation to Bone and Energy Metabolism in Obesity and Type 2 Diabetes Mellitus." The broader project includes both a cross-sectional study evaluating bone marrow adipose tissue and bone marrow mesenchymal stem cells in people with different metabolic and bone disorders and the present dietary intervention study.
The interventional study investigates whether caloric restriction changes bone marrow adipose tissue, bone health, whole-body metabolism, and the molecular and cellular characteristics of bone marrow mesenchymal stem cells in obese non-diabetic premenopausal women. A group of lean healthy premenopausal women will serve as a comparison group.
Participants in the intervention group will undergo an eight-week formula-based very-low-calorie diet using Cambridge Weight Plan products, providing approximately 2.5-3.35 MJ (600-800 kcal) per day, followed by a dietary weight-maintenance phase. Participants will receive nutritional counselling, and dietary adherence, body weight, physical activity, and clinical status will be monitored during scheduled study visits. Clinical and laboratory assessments will be conducted at baseline and after 2, 6, and 12 months.
Assessments will include magnetic resonance imaging and proton magnetic resonance spectroscopy of the lumbar spine to measure the amount and lipid composition of vertebral bone marrow adipose tissue. Bone mineral density and body composition will be measured using dual-energy X-ray absorptiometry, with particular attention to bone mineral density at the total hip and femoral neck. Additional measurements will include body weight, waist and hip circumference, body composition, physical activity, and fasting blood tests evaluating bone turnover, glucose and lipid metabolism, inflammatory markers, hormones, and adipokines.
Bone marrow aspirates and abdominal subcutaneous adipose tissue biopsies will be obtained at baseline and after six months. Bone marrow-derived and adipose tissue-derived mesenchymal stem cells will be examined for changes in cellular composition, gene-expression profiles, metabolic activity, oxidative stress, differentiation capacity, and senescence-related characteristics. Single-cell RNA sequencing will be used to characterize specific bone marrow mesenchymal stem cell subpopulations.
Bone marrow plasma and other biological samples will also undergo metabolomic, lipidomic, and proteomic profiling using high-resolution mass spectrometry. These analyses will be used to identify extracellular molecules and molecular patterns associated with glucose and lipid metabolism, inflammation, cellular senescence, and the response to caloric restriction.
The study aims to determine whether diet-induced weight loss can improve the bone marrow microenvironment and modify vertebral bone marrow fat, bone parameters, and the metabolic and senescent phenotype of mesenchymal stem cells. The findings may help identify imaging, cellular, and molecular markers of obesity-related bone fragility.
Interventional Study: Effect of Caloric Restriction on BMAT/BM-MSCs Phenotype
Inclusion Criteria:
Exclusion Criteria:
vit.zikan@vfn.cz+420731670425
Obese non-diabetic premenopausal women and age-eligible men will undergo an eight-week very-low-calorie formula diet followed by a weight-maintenance phase. Participants will receive nutritional counseling and undergo longitudinal clinical, anthropometric, biochemical, imaging, and cellular assessments to evaluate changes in vertebral bone marrow adipose tissue, bone mineral density, body composition, metabolic parameters, and the phenotype of bone marrow- and adipose tissue-derived mesenchymal stromal cells.
Lean healthy premenopausal women or age-eligible men will serve as a baseline reference group. Participants in this arm will not receive caloric restriction or any other study intervention and will not undergo longitudinal follow-up. Baseline assessments include clinical and anthropometric evaluation, blood sampling, bone mineral density and body composition measurements, magnetic resonance imaging and proton magnetic resonance spectroscopy of the lumbar spine, and collection of bone marrow and subcutaneous adipose tissue samples. Their baseline findings will be compared with those of participants with obesity.
michaela.tencerova@fgu.cas.cz+420 241 062737
Prague, 12800, Czechia
ivan.raska@vfn.cz+420224969280
vit.zikan@vfn.cz+420224969285
Prague, 12800, Czechia
rbraunerova@endo.cz+420 224 905 111
pkalouskova@endo.cz+420 224 905 111
michaela.tencerova@fgu.cas.cz+420 241 062737
michaela.ferencakova@fgu.cas.cz+420 241 062737
The Effects of Acute Weight Gain and Acute Calorie Deprivation on Marrow Adipose Tissue
The Effect of Calorie Deprivation on Adipose Tissue Distribution
MR-based Characterization of Bone Marrow in Its Relevance to Skeletal Disease in Patients With Diabetes
Effects of a Short Term Caloric Restriction on T Cell Activation in Fat
Myeloid to Adipocyte Transdifferentiation in Human Cells
Metabolic Changes After Bariatric Surgery
The Genetics of Adipose Tissue Function and Its Link to Type 2 Diabetes and Heart Disease
Metabolic and Immune System Responses to a Mixed Meal