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Prebiotics and Immune Function in Middle Aged Humans

Investigation of the Effects of a Prebiotic Supplement on Immune Function in Healthy Human Adults

Prebiotics are naturally occurring carbohydrates found in a variety of edible plants. They are not digested by mammalian enzymes, and so reach the gut intact, where they are fermented by some species of intestinal bacteria. This fermentation is thought to have several benefits for the host including improving immune function. There are numerous methods available for assessing the human immune response. Response to vaccination is thought to be a good method for this. Not many studies have examined the effect of prebiotics on the human immune response to vaccination. Thus the investigators propose to test the effect of a prebiotic on the immune response in healthy volunteers including their response to the current flu vaccine. The investigators hypothesise that the prebiotic will enhance the immune response including the response to the vaccine.

研究概览

详细说明

Prebiotics are naturally occurring carbohydrates found in a variety of edible plants. They are not digested by mammalian enzymes, and so reach the gut intact, where they are fermented by some species of intestinal bacteria. This fermentation is thought to have several benefits for the host including improving the immune response. Inulin-type fructans (oligofructose and inulin) are classified as prebiotics. Inulin is found naturally in significant amounts in a variety of plants foods, such as bananas, leeks, onions, artichokes, wheat and chicory. Synergy1 is a prebiotic preparation produced by Beneo-Orafti, and containing a mixture of oligofructose and inulin derived from chicory. Fructooligosaccharides including Synergy1 are widely used by the food industry and are commonly found as a source of insoluble fibre in many biscuit, bakery, cereal and dairy products.

There is increasing evidence that the changes in the intestinal microflora that occur with the consumption of fructooligosaccharides can modulate immune parameters, not only in the gut-associated lymphoid tissue, but also secondary lymphoid tissues and the peripheral circulation. Much of the evidence for beneficial effects of fructooligosaccharides on immune function comes from animal models e.g. rats, mice, dogs and pigs. Results from these studies show that the innate and adaptive immune systems of both the gut associated lymphoid tissue and the systemic immune system can be modified by fructooligosaccharides. However, there are few human studies so far which have investigated the effects of prebiotics on immune function, and these studies mostly rely on systemic markers of immunity. The results show little effect of fructooligosaccharides on innate immune function, but mixed results are reported regarding the adaptive immune system, suggesting that there may by improvement on this aspect of immunity with increased intake of fructooligosaccharides. The small number of published human studies led Watzl et al. (2005) to suggest that more human studies are needed to find out whether inulin and/or oligofructose have the potential to modulate systemic immunity in well-nourished individuals.

There are numerous methods available for assessing the human immune response. These have been evaluated by a panel of European experts (Albers et al. 2005). Based on its biological relevance, sensitivity and practical feasibility, response to vaccination was identified by this panel as the gold standard for measuring the functioning of the immune system in vivo (Albers et al. 2005). A small number of studies have studied the effect of fructooligosaccharides on the human immune response using vaccination response as the outcome, but only four of these examined fructooligosaccharides in the absence of other additional nutrients and of these two studies were in infants. Thus, the number of studies examining the immunologic impact of fructooligosaccharides in adult humans and using the gold standard outcome is very limited. From a public health perspective, it would be of importance, if fructooligosaccharides can improve immune function especially in older adults who are at risk of age-related immune decline. Thus, we propose to use a commercially available influenza vaccine (Imuvac®) to stimulate the immune response in healthy human adults, and to use this to assess the effect of a well defined prebiotic preparation commonly used in the food industry (Synergy1).

研究类型

介入性

注册 (实际的)

49

阶段

  • 阶段2
  • 阶段1

联系人和位置

本节提供了进行研究的人员的详细联系信息,以及有关进行该研究的地点的信息。

学习地点

      • Southampton、英国、SO16 6YD
        • University of Southampton

参与标准

研究人员寻找符合特定描述的人,称为资格标准。这些标准的一些例子是一个人的一般健康状况或先前的治疗。

资格标准

适合学习的年龄

45年 至 66年 (成人、年长者)

接受健康志愿者

是的

有资格学习的性别

全部

描述

Inclusion Criteria:

  1. Aged 45-65 years
  2. Body mass index 20 to 32 kg/m2.
  3. Not consuming probiotic supplements, yoghurts, drinks or other foods
  4. Not consuming prebiotic supplemented drinks or foods
  5. In general good health
  6. No antibiotic use in the 2 months prior to entering the study or during the study
  7. Not been vaccinated with the current season's influenza vaccine
  8. Being able to provide written informed consent

Exclusion Criteria:

  1. Aged < 45 or > 66 years
  2. Body mass index < 20 or > 32 kg/m2.
  3. Being diabetic (type 1 or type 2)
  4. Displaying manifestations of allergy - asthma, hay-fever, dermatitis - or being treated for these
  5. Being egg allergic
  6. Use of any prescribed medicine (unless deemed to be acceptable by the PI)
  7. Suffering from any infectious illness
  8. Chronic gastrointestinal problems (e.g. IBD, IBS, cancer)
  9. Recent blood donation
  10. Participation in another clinical trial
  11. Use of prebiotic or probiotic supplements, foods or drinks
  12. Consuming vitamin, mineral or oil supplements
  13. Previously vaccinated with the influenza vaccine being used.

学习计划

本节提供研究计划的详细信息,包括研究的设计方式和研究的衡量标准。

研究是如何设计的?

设计细节

  • 主要用途:基础科学
  • 分配:随机化
  • 介入模型:并行分配
  • 屏蔽:三倍

武器和干预

参与者组/臂
干预/治疗
安慰剂比较:麦芽糊精
麦芽糖糊精作为安慰剂
其他名称:
  • 麦芽糊精
实验性的:Prebiotic
Inulin type fructooligosaccharides
Inulin type fructooligosaccharides
其他名称:
  • 协同作用1

研究衡量的是什么?

主要结果指标

结果测量
大体时间
Serum anti-vaccine antibody concentrations
大体时间:Weeks 2 and 4 post-vaccination
Weeks 2 and 4 post-vaccination

次要结果测量

结果测量
大体时间
Serum total antibody (IgG, IgA, IgM) concentrations
大体时间:Weeks -4, 0, 2 and 4 with respect to vaccination
Weeks -4, 0, 2 and 4 with respect to vaccination
Innate immune responses - neutrophil and monocyte phagocytosis and respiratory burst
大体时间:Weeks -4, 0, 2 and 4 with respect to vaccination
Weeks -4, 0, 2 and 4 with respect to vaccination
Ex vivo T lymphocyte responses to mitogen (activation, proliferation and cytokine production)
大体时间:Weeks -4, 0, 2 and 4 with respect to vaccination
Weeks -4, 0, 2 and 4 with respect to vaccination
Ex vivo T lymphocyte responses to vaccine (activation, proliferation and cytokine production)
大体时间:Weeks 0, 2 and 4 with respect to vaccination
Weeks 0, 2 and 4 with respect to vaccination
Ex vivo natural killer cell activity
大体时间:Weeks -4, 0, 2 and 4 with respect to vaccination
Weeks -4, 0, 2 and 4 with respect to vaccination
Faecal microflora
大体时间:Weeks -4 and 0 with respect to vaccination
Weeks -4 and 0 with respect to vaccination
Salivary IgA concentration
大体时间:Weeks -4, 0, 2 and 4 with respect to vaccination
Weeks -4, 0, 2 and 4 with respect to vaccination

合作者和调查者

在这里您可以找到参与这项研究的人员和组织。

调查人员

  • 首席研究员:Philip C Calder, PhD、University of Southampton

研究记录日期

这些日期跟踪向 ClinicalTrials.gov 提交研究记录和摘要结果的进度。研究记录和报告的结果由国家医学图书馆 (NLM) 审查,以确保它们在发布到公共网站之前符合特定的质量控制标准。

研究主要日期

学习开始

2009年4月1日

初级完成 (实际的)

2009年10月1日

研究完成 (实际的)

2010年7月1日

研究注册日期

首次提交

2009年4月20日

首先提交符合 QC 标准的

2009年5月11日

首次发布 (估计)

2009年5月12日

研究记录更新

最后更新发布 (估计)

2014年12月2日

上次提交的符合 QC 标准的更新

2014年11月26日

最后验证

2010年7月1日

更多信息

与本研究相关的术语

其他研究编号

  • RHMNUT0055

此信息直接从 clinicaltrials.gov 网站检索,没有任何更改。如果您有任何更改、删除或更新研究详细信息的请求,请联系 register@clinicaltrials.gov. clinicaltrials.gov 上实施更改,我们的网站上也会自动更新.

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