Impact of Reducing Dietary Intake of Red and Processed Meat Intake on Fasting Lipemia in Healthy Participants
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 入组人数
- 37
- 试验地点
- 2
- 主要终点
- Fasting Serum total cholesterol concentration
研究概览
简要总结
Excessive meat consumption, particularly of red and processed meat, is associated with increased risk of developing a range of chronic diseases. Meat production also significantly contributes to the production of global greenhouse gasses (GHG). Given the predicted global increase in the human population, coupled with the rise in demand for meat within emerging economies, it has been suggested that strategies to alter dietary patterns and reduce meat intake should be devised. With the provision of appropriate non- or reduced-meat alternatives, this study aims to investigate whether free living subjects can significantly reduce their meat intake, and whether such dietary changes positively impact on a range of health measures
详细描述
In UK adults, meat provides approximately 40% of the average daily protein intake and makes a significant contribution to intake of thiamin, niacin, vitamin B12, iron, zinc, potassium, and phosphorus. However, excessive consumption, particularly of red and processed meat, is associated with increased risk of developing a range of chronic diseases, including cardiovascular disease (CVD), obesity, type 2 diabetes and some cancers. Meat production significantly contributes to the production of greenhouse gasses (GHG) and hence global warming. Given the predicted global increase in the human population, coupled with the rise in demand for meat within emerging economies, it has been suggested that concerted efforts should be made to alter dietary patterns and reduce meat intake. Moreover, a number of reports have suggested that replacing meat with non-meat protein-rich products has health benefits. Such products tend to be inherently lower in total and saturated fat and, higher in fibre and as such, could also be cardioprotective.
The aim of this trial will be to investigate whether, with appropriate non/reduced-meat alternatives and motivational support, free living subjects can significantly reduce their meat intake and whether such dietary changes positively impact on a range of cardiovascular risk factors.
Trial design; A non-randomised, single group study design, with an initial control period will be used.
Participants; Forty healthy men and women will be recruited from the general population of Nottinghamshire, UK. All participants will attend the David Greenfield Human Physiology Unit (Queen's Medical Centre, Nottingham, UK) for an initial medical screening visit to confirm health status. In addition, blood pressure (BP) will be measured at the left upper arm (after lying semi-supine for 5min) using automated oscillometry, and body mass index (BMI) will be calculated from measured height and weight. If participants are suitable to take part with regards to their health questionnaire and BMI measures, a venous blood sample will then be taken to assess full blood count, urea, and electrolytes. Those taking lipid-lowering medication, or who report using nutritional strategies to lower their cholesterol, will be excluded. Participants will be accepted onto the trial if they report habitual consumption of 4-5 portions of red and/or processed meat per week (with 3-4 of these being consumed as main meals), they do not have food allergies related to soya or mycoprotein, and do not demonstrate any clinically significant abnormalities on screening.
Study Protocol; After recruitment, participants will be asked to record all food intake (including snacks and drinks) in a diet diary, for 4 days (3x week or work days, and 1x weekend or rest day) prior to assessment visit 1, for baseline assessment of macronutrient and energy intake. Individuals will be asked to complete further 4-day diet diaries in the week before assessment visits 2,3 and 4 (weeks 4, 10, and 16), to assess any changes in macronutrient or energy intake and meat consumption which may have occurred as a consequence of the intervention. Household measures will be used to estimate portion size, and diaries will be analysed using a food composition database. To calculate habitual diet composition, a mean daily intake will obtained from all 4 days of each recording period, and these data will be combined to produce group means.
研究设计
- 研究类型
- Interventional
- 分配方式
- Non Randomized
- 干预模型
- Single Group
- 主要目的
- Basic Science
- 盲法
- None
入排标准
- 年龄范围
- 21 Years 至 50 Years(Adult)
- 性别
- All
- 接受健康志愿者
- 是
入选标准
- •BMI 18 - 28 kg/m2 Healthy Females should be premenopausal Good spoken and written English Consume 4-5 portions of red and/or processed meat per week consumption of greater than 70g per day
排除标准
- •Smoking Chronic diseases Hypertension Pregnancy / Breast feeding Chronic medication use (excluding oral contraceptives) Participation in any other research study three months prior to the screening or during study duration Clinically significant findings at screening
结局指标
主要结局
Fasting Serum total cholesterol concentration
时间窗: Week 0, 4,10 and 16
Fasting Serum total cholesterol concentration
次要结局
- Fasting Serum LDL cholesterol concentration(Week 0, 4,10 and 16)
- Fasting Serum HDL cholesterol concentration(Week 0, 4,10 and 16)
- Body mass index calculated from measured height and weight (BMI)(Week 0, 4,10 and 16)
- % body fat determined by Bio-electrical Impedance(Week 0, 4,10 and 16)
- Dietary energy intake(Week 0, 4,10 and 16)
- Dietary macro-nutrient intake(Week 0, 4,10 and 16)
- Meat intake(Week 0, 4,10 and 16)
- Fasting whole blood glucose concentration(Week 0, 4,10 and 16)
- Fasting Serum Insulin concentration(Week 0, 4,10 and 16)
- Flow-mediated dilatation(Week 0, 4 and 16)
- Full blood count(Week 0,10 and 16)
- Resting, supine blood pressure(Week 0, 4,10 and 16)
- Quality of Life Questionnaire(Week 0, 4,10 and 16)
研究者
Elizabeth Simpson
Senior Research Fellow
University of Nottingham
