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临床试验/NCT03186859
NCT03186859已完成不适用

Effects of Dietary Intervention and Surgery on NAFLD (Non-Alcoholic Fatty Liver Disease)

University of Oxford1 个研究点 分布在 1 个国家目标入组 41 人开始时间: 2017年6月9日最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
入组人数
41
试验地点
1
主要终点
Change in liver fat content

研究概览

简要总结

Approximately 90% of people undergoing bariatric surgery have NAFLD, which is a condition where fat accumulates in the liver and can lead to inflammation and scarring. It mostly causes no symptoms, however, in the most advanced cases there is an increased risk of liver cancer or liver failure.

NAFLD is currently managed by weight loss and treating associated diseases such as diabetes. No medicines have been licensed to directly treat it but bariatric surgery has been shown to be usually beneficial, although it is unknown whether some operations are better than others. It is also unclear whether this is due to general weight loss or other factors.

This study will be conducted in a hospital setting and aims to determine what changes in liver fat and fat processing occur after pre-operative low calorie diet and the two most common types of bariatric surgery (Roux-en-Y Gastric Bypass and Sleeve Gastrectomy.

Participants will have ten study visits, four of which may be combined with NHS appointments. Participants will undergo investigations including MRI scans to measure changes in NAFLD and DEXA scans to measure changes in fat and fat-free mass (FFM). Participants will also undergo mixed meal testing to which stable isotopes (deuterated water and 13c-palmitate) will be added to allow changes in fat processing to be detected. In addition to samples taken as part of NHS care, blood, urine, liver and fat (visceral and subcutaneous (abdominal and gluteal)) will be used for research. Visits will take place before and after low calorie diet and bariatric surgery.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Treatment
盲法
None

入排标准

年龄范围
18 Years 至 75 Years(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Bariatric surgery is already planned for the participant
  • Participant is willing and able to give informed consent for participation in the study.
  • Aged ≥18 or ≤75 years.
  • Body Mass Index ≥35 ≤55 kg/m2

排除标准

  • Contraindication to MRI
  • Prior or current participation in a CTIMP that could affect study results
  • History of alcoholism or a greater than recommended weekly alcohol intake (14 units per week)
  • History of albumin allergy
  • Anticoagulant treatment
  • Pregnant or nursing mothers
  • Type 2 Diabetes
  • A liver disease other than NAFLD
  • Histological confirmation of lack of NAFLD on liver biopsy
  • Large hiatus hernia (that would prohibit Sleeve Gastrectomy)
  • Active gastrooesophageal reflux disease (that would prohibit Sleeve Gastrectomy)
  • Active malabsorptive intestinal disease (that would prohibit Roux-en-Y Gastric Bypass surgery)

结局指标

主要结局

Change in liver fat content

时间窗: Baseline measurement just prior to initiation of routine preoperative low calorie diet (this starts 3-4 weeks before surgery) compared to measurements on completion of this (within a week of surgery) and at 20% weight loss and 1 year after SG or RYGB

Change in liver fat content as measured on MRI scan +/- fibroscan

次要结局

  • Hepatic fatty acid synthesis(liver biopsy taken during SG or RYGB)
  • Change in fat mass(Baseline measurement just prior to initiation of routine preoperative low calorie diet (this starts 3-4 weeks before surgery) compared to measurements on completion of this (within a week of surgery) and at 20% weight loss and 1 year after SG or RYGB)
  • Change in functional strength(Baseline measurement just prior to initiation of routine preoperative low calorie diet (this starts 3-4 weeks before surgery) compared to measurements on completion of this (within a week of surgery) and at 20% weight loss and 1 year after SG or RYGB)
  • change in weight(Baseline measurement just prior to initiation of routine preoperative low calorie diet (this starts 3-4 weeks before surgery) compared to measurements on completion of this (within a week of surgery) and at 20% weight loss and 1 year after SG or RYGB)
  • Changes in fasting and postprandial plasma lipid concentration(Baseline measurements just prior to initiation of routine preoperative low calorie diet (this starts 3-4 weeks before surgery) compared to measurements on completion of this (within a week of surgery) and at 20% weight loss and 1 year after SG or RYGB)
  • Change in lean mass(Baseline measurement just prior to initiation of routine preoperative low calorie diet (this starts 3-4 weeks before surgery) compared to measurements on completion of this (within a week of surgery) and at 20% weight loss and 1 year after SG or RYGB)
  • Changes in relative contributions of pathways involved in lipid homeostasis(Baseline measurement just prior to initiation of routine preoperative low calorie diet (this starts 3-4 weeks before surgery) compared to measurements on completion of this (within a week of surgery) and at 20% weight loss and 1 year after SG or RYGB)
  • Expression changes (gene/protein) in adipose tissue biopsies(Baseline measurement just prior to initiation of routine preoperative low calorie diet (this starts 3-4 weeks before surgery) compared to measurements on completion of this (within a week of surgery) and at 20% weight loss and 1 year after SG or RYGB)
  • complications, re-operation, mortality(Baseline measurement just prior to initiation of routine preoperative low calorie diet (this starts 3-4 weeks before surgery) compared to measurements on completion of this (within a week of surgery) and at 20% weight loss and 1 year after SG or RYGB)
  • Changes in fasting and postprandial plasma glucose concentration(Baseline measurement just prior to initiation of routine preoperative low calorie diet (this starts 3-4 weeks before surgery) compared to measurements on completion of this (within a week of surgery) and at 20% weight loss and 1 year after SG or RYGB)
  • Change in the incorporation of 13C (from dietary fat) into CO2(Baseline measurement just prior to initiation of routine preoperative low calorie diet (this starts 3-4 weeks before surgery) compared to measurements on completion of this (within a week of surgery) and at 20% weight loss and 1 year after SG or RYGB)
  • changes in fasting and post-prandial peptides/proteins (e.g. PYY, GLP-1, insulin)(Baseline measurement just prior to initiation of routine preoperative low calorie diet (this starts 3-4 weeks before surgery) compared to measurements on completion of this (within a week of surgery) and at 20% weight loss and 1 year after SG or RYGB)
  • change in body mass index (BMI)(Baseline measurement just prior to initiation of routine preoperative low calorie diet (this starts 3-4 weeks before surgery) compared to measurements on completion of this (within a week of surgery) and at 20% weight loss and 1 year after SG or RYGB)
  • change in status of metabolic diseases (e.g. diabetes) / metabolic disease risk scores(Baseline measurement just prior to initiation of routine preoperative low calorie diet (this starts 3-4 weeks before surgery) compared to measurements on completion of this (within a week of surgery) and at 20% weight loss and 1 year after SG or RYGB)
  • changes in subcutaneous, visceral and pancreatic fat(Baseline measurement just prior to initiation of routine preoperative low calorie diet (this starts 3-4 weeks before surgery) compared to measurements on completion of this (within a week of surgery) and at 20% weight loss and 1 year after SG or RYGB)

研究者

申办方类型
Other
责任方
Sponsor

研究点 (1)

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