跳至主要内容
临床试验/NCT06236932
NCT06236932招募中不适用

PRIN "SIDERALE": Susceptibility to Infectious Diseases in obEsity: an endocRine trAnslational socioLogic Evaluation

Federico II University8 个研究点 分布在 1 个国家目标入组 100 人开始时间: 2023年12月29日最近更新:
适应症

试验速览

阶段
不适用
状态
招募中
发起方
入组人数
100
试验地点
8
主要终点
Investigation of the impact of hypocaloric MD and hypocaloric MD plus melatonin on the number of events - i.e. flu- or flulike syndromes, skin, respiratory, digestive, urinary infections in patients with obesity and lipodystrophy

研究概览

简要总结

Obesity is a life-threatening disease, defined by excessive fat accumulation that increases the risk of other diseases such as cardiovascular events, hypertension, diabetes and cancer. Obesity is also a risk factor for nosocomial infections and is associated with worse COVID-19 outcomes, although anthropometric measurements are not routinely recorded during hospitalization and lack of a registry data does not allow performing retrospective studies.Obesity is closely related to chronodisruption, characterized by deregulation of physiological and behavioral central and peripheral circadian rhythms contributing to the obesity-related metabolic impairment. Eating and sleeping time schedules are relevant synchronizers of humans' biological clock. Several studies suggest a role of dietary interventions in rewiring the circadian rhythm, with Mediterranean diet (MD) regulating nutritional patterns. Moreover, considering its positive impact on sleep quality, melatonin intake was suggested as a potential regulator of circadian rhythms. The relation between chronodisruption, obesity and infections has not been investigated, and a first proof of concept (Pilot study) will aim at investigating it. Three cohorts of obese patients with different aetiology (essential obesity, obesity with type 2 diabetes, genetic forms of obesity) and a cohort of lipodystrophic patients will be enrolled in the study, which is designed as a two-phases protocol. During the first phase (0-12 weeks (w)) patients will be subjected to dietary intervention with hypocaloric MD; in a second phase (12-24w), melatonin 1mg/die before sleep will be added to the hypocaloric MD. The susceptibility to infections will be investigated through the evaluation of 1) the number of events - i.e. flu- or flulike syndromes, skin, respiratory, digestive, urinary infections-per patient of the 4 groups and the blood assays to detect the infection with Epstein-Barr, Cytomegalovirus, Varicella, Measles and SARS-CoV-2 IgG and IgM; hepatitis C and hepatitis B core antibodies and Quantiferon TB Gold, 2) the clock genes rhythm and TLRs expression in patient immune cells at baseline, 12w and 24w.The mutual relationship between biomedical values, environmental and social conditions, and lifestyle habits will be evaluated by structured questionnaires. Validation of questionnaires to explore the susceptibility to infections is another delivery planned for the current study.

详细描述

The current project aims at investigating 1) the susceptibility to infectious disease in obese patients, the role of tailored dietetic schemes of Mediterranean diet (MD), and melatonin supplementation on infective events; 2) association of the oral and/or gut microbiota signature with bacterial or viral infections in the above described obese cohorts; 3) the mutual relationship between biomedical values, environmental conditions and lifestyle habits through structured questionnaires and therefore the possible impact of this study on the National Health System (NHS).

The role of melatonin as chronobiologic influencer of circadian metabolic processes and as anti-obesogenic and weight-reducing effector comes to the fore in these last decades. Moreover, melatonin is also known to possess anti-inflammatory and antioxidant properties that may ameliorate the condition of low-grade chronic inflammation (metaflammation) observed in patients with obesity. Nevertheless, although there has been a tremendous interest in the role of the clock genes in regulating metabolic processes, relatively less effort has been expended examining how the regulation of circadian rhythms and metabolic inputs can affect the susceptibility to infections. To address this question, Unit 1 will enroll patients with essential obesity (20 subjects, BMI :30-35 Kg/m2) and with genetic forms of obesity (20 subjects) of both genders, aged 18-65yrs, to the main proof of concept pilot study.

At baseline (T0), patients will be subjected to anthropometric determinations, including body weight and height for BMI calculation, body composition by mean of DXA Scan, blood, serum and urine collection, oral cavity swab and stool sampling. Patients will undergo a session of behavioural dietary counselling by which patients will be educated to adhere to a hypocaloric MD for the first 12w (T1) and to add to the MD the supplementation with 1mg/die of melatonin for other 12w (T2). The same patients will be visited and subjected to the anthropometric determinations and biological samples at T0, T1, T2 of protocol. The endpoints for Unit 1 will be: 1.to investigate the impact of tailored hypocaloric MD and hypocaloric MD plus melatonin (supplement formulation, 1mg/die before sleep) on the number of events - i.e. flu- or flulike syndromes, skin, respiratory, digestive, urinary infections - per patient of the 4 groups, recording the number of infectious events during the clinical examinations in six months and 1 year follow up and detect the SARS-CoV-2, Epstein-Barr, Cytomegalovirus, Varicella and Measles IgG and IgM, hepatitis C and hepatitis B core antibodies and Quantiferon TB Gold (QFT-GIT). The obtained clinical results on infections events from the SIDERALE study will be used to formulate hypotheses for a prospective study and for the formulation of a specific validate questionnaire.

2.to assess the impact of a tailored hypocaloric MD and hypocaloric MD plus melatonin (supplement formulation, 1mg/die before sleep) on anthropometric determinations, glucose and lipid metabolism, thyroid and adrenal axis, leptin, adiponectin, IGFBP2, sirtuin 1 (SIRT1), ESR, high-sensitivity CRP, fibrinogen and inflammatory cytokines (TNF, IL-6, IL-1Beta, IL-18) and melatonin that will be evaluated at T0, T1, T2.

3.to assess the impact of a tailored hypocaloric MD and hypocaloric MD plus melatonin (supplement formulation, 1mg/die before sleep) on the entrainment of circadian clock misalignment, evaluating clock gene expression by RT-qPCR in peripheral blood mononuclear cells (PBMC) and concomitantly, on the regulation of Toll like-receptors (TLRs) and suppressor cytokine signaling 3 (SOCS3), known to play a crucial role in eliciting immunity and improving the well-known susceptibility to infections in patients with obesity, all evaluated by RT-qPCR in PBMC of all patients cohorts at 8 am, 12 pm and 12 am.

研究设计

研究类型
Interventional
分配方式
Non Randomized
干预模型
Crossover
主要目的
Diagnostic
盲法
None

入排标准

年龄范围
18 Years 至 65 Years(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • essential obesity (BMI : 30-35 Kg/m2)
  • genetic forms of obesity (BMI: 30-35 Kg/m2)
  • obesity (BMI:30-35 Kg/m2) associated with T2DM
  • obesity (BMI:30-35 Kg/m2) associated with endocrinopathies
  • lipodystrophy

排除标准

  • pregnancy, breast-feeding, alcohol and drug abuse, known severe haematological, cardiac, liver, kidney, mental diseases, hypogonadisms, hormonal treatments including estroprogestins, intolerance to melatonin or excipients

结局指标

主要结局

Investigation of the impact of hypocaloric MD and hypocaloric MD plus melatonin on the number of events - i.e. flu- or flulike syndromes, skin, respiratory, digestive, urinary infections in patients with obesity and lipodystrophy

时间窗: Change from baseline at 3-6-12 months

The primary outcome will be: to investigate the impact of tailored hypocaloric MD and hypocaloric MD plus melatonin (supplement formulation, 1mg/die before sleep) on the number of events - i.e. flu- or flulike syndromes, skin, respiratory, digestive, urinary infections - per all patients, recording the number of infectious events,trough specific surveys, during the clinical and biochemical examinations in six months and 1 year follow up and detect the SARS-CoV-2, Epstein-Barr, Cytomegalovirus, Varicella and Measles IgG and IgM, hepatitis C and hepatitis B core antibodies and Quantiferon TB Gold (QFT-GIT).

次要结局

  • Change in lipid profile assessed by blood triglycerides levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Change in IGFBP2 (insulin like growth factor binding protein 2) levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Changes affecting the adrenal axis assessed by dehydroepiandrosterone sulphate (DHEAS) levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Changes affecting the adrenal axis assessed by 17-hydroxyprogesterone (17-OHP) levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Change in low grade inflammation assessed by erythrocyte sedimentation rate (ESR) levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • BMI modification after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy: body weight (kg) will be combined with height (m) to obtain BMI (kg/m^2)(Change from baseline at 3-6-12 months)
  • Change in body composition assessed by DXA scan after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Change in lipid profile assessed by blood total cholesterol levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Changes affecting the thyroid axis assessed by free triiodothyronine (FT3) and free thyroxine (FT4) levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Changes affecting the thyroid axis assessed by calcitonin levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Change in waist and hip circumference after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Change in body composition assessed by Bioelectrical impedance analysis (BIA) after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy .(Change from baseline at 3-6-12 months)
  • Change in glucose profile assessed by blood glycated hemoglobin (HbA1c) levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Change in low grade inflammation assessed by high-sensitivity CRP levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Change in body weight (kg) after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Change in insulin profile assessed by blood insulin levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Change in lipid profile assessed by blood LDL cholesterol levels after hypocaloric MD and hypocaloric MD plus in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Change in leptin levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Change in adiponectin levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Change in sirtuin 1 (SIRT1) levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Changes affecting the thyroid axis assessed by antibodies against thyroglobulin (AbTG) and against thyroperoxidase (AbTPO) levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Changes in melatonin levels assessed by melatonin levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Change in glucose profile assessed by blood glucose levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Change in insulin resistance assessed by homeostasis model assessment - insulin resistance (HOMA-IR) Index after hypocaloric MD and hypocaloric MD plus in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Change in lipid profile assessed by blood HDL cholesterol levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Changes affecting the thyroid axis assessed by thyroid stimulating hormone (TSH) levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Change in low grade inflammation assessed by inflammatory cytokines (TNF, IL-6, IL-1Beta, IL-18) levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Changes affecting the adrenal axis assessed by adrenocorticotropic hormone (ACTH) levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Changes affecting the adrenal axis assessed by cortisol levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Change in low grade inflammation assessed by inflammatory chemokines (MCP-1, CXCL5) levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Evaluation of hypocaloric MD and hypocaloric MD plus melatonin effects on circadian gene expression in peripheral blood mononuclear cells (PBMCs) in patients with obesity and lipodystrophy.(Change from baseline at 3-6 months)
  • Evaluation of hypocaloric MD and hypocaloric MD plus melatonin effects on circadian Suppressor Cytokine Signaling 3 (SOCS3) gene expression in peripheral blood mononuclear cells (PBMCs) in patients with obesity and lipodystrophy.(Change from baseline at 3-6 months)
  • Evaluation of circadian rhythms after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months.)
  • Assessment of social determinants' impact on susceptibility to infections after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months.)
  • Change in low grade inflammation assessed by fibrinogen levels after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Change in oral/gut microbiota after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months)
  • Evaluation of sleep habits after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months.)
  • Evaluation of hypocaloric MD and hypocaloric MD plus melatonin effects on circadian Toll-like receptors (TLRs) gene expression in peripheral blood mononuclear cells (PBMCs) in patients with obesity and lipodystrophy(Change from baseline at 3-6 months)
  • In vitro analysis conducted on 3T3-L1 cells (mouse pre-adipocytes)(Change from baseline at 3-6 months)
  • Evaluation of adherence to MD (Mediterranean Diet) after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months.)
  • Reduction in the number of antibiotic and antiviral therapies after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months.)
  • Reduction in the number of ER (emergency room) admissions for infections after hypocaloric MD and hypocaloric MD plus melatonin in patients with obesity and lipodystrophy.(Change from baseline at 3-6-12 months.)

研究者

发起方
Federico II University
申办方类型
Other
责任方
Principal Investigator
主要研究者

Annamaria Colao

MD, PhD, Prof.

Federico II University

研究点 (8)

Loading locations...

相似试验

Susceptibility to Infectious Diseases in obEsity: an... | 临床试验