课题基金 / 基金详情

Synchronized Intestinal Electrical Stimulation for Obesity

Synchronized Intestinal Electrical Stimulation for Obesity
同步肠道电刺激治疗肥胖
批准号:
9339514
负责人:
Jiande Chen
金额:
$0.0万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-04-01 至 2018-03-31

项目摘要

项目成果

Jiande Chen的其他基金

相似基金

相关文献

中文摘要
翻译
描述(由申请人提供): 在美国,肥胖及其并存每年造成约40万人死亡,造成1400亿美元的损失。在退伍军人中,肥胖甚至更加普遍,超过75%的患者超重或肥胖。然而,目前可用的治疗方法要么无效,要么有很大的发病率和死亡率风险。在这个项目中,我们提出了一种肠道电刺激(IES)治疗肥胖症的方法。初步数据表明,IES具有治疗肥胖症的潜力,这归因于它对肠道转运的加速作用,导致吸收减少,以及它对外周和中枢激素/肽的影响,导致食物摄入减少。为了使IES疗法更加有效和实用,我们进一步提出了1)同步IES方法(SIES),该方法已被证明可以改善肠道收缩,因此在加快肠道转运方面更有效;2)一种自动食物摄入量检测方法,利用该方法,IES/SIES可以在食物摄入时自动递送。我们的长期目标是证明所建议的SIES/IES方法在治疗肥胖方面的临床应用。本项目的主要目标是优化IES方法,使其在不产生副作用的情况下实现最有效的减肥,证明慢性IES/SIES的安全性和有效性,并探索涉及饮食诱导肥胖(DIO)大鼠胃肠运动和激素、中枢饱腹感神经元和饱腹感/食欲相关肽的多种机制。}{第一系列实验将在DIO大鼠身上进行,以得出IES的最佳刺激参数和最佳刺激配置和最佳治疗方案。第二系列实验旨在证明慢性IES/SIES在DIO大鼠产生体重减轻和改善代谢方面是安全有效的。该项目的第三部分是探索IES对体重的抑制作用的多种机制。实验旨在证明IES通过加速肠道转运减少营养吸收来减轻体重的基本假设。实验还将研究与饱腹感信号相关的二级机制,包括胃肠激素、中枢神经元反应和中枢性饱腹感/食欲相关多肽。所有实验都将使用先进技术,以便IES治疗可以在正常生理条件下进行,没有或几乎没有应激影响。}组建了一支全面的、有竞争力的团队,拥有电刺激、胃肠动力、肥胖、外科、基础实验室研究和统计方面的专业知识。该项目的完成将加深我们对胰岛素样生长因子的作用和机制的了解,并可能导致一种新的肥胖治疗方法。
英文摘要
DESCRIPTION (provided by applicant): Obesity and its co-morbidities cause about 400,000 deaths and cost $140 billion per year in USA. In veteran patients, obesity is even more prevalent with over 75% of patients overweight or obese. However, currently available therapies are either ineffective or with significant risks o morbidities and mortality. In this project we propose a method of intestinal electrical stimulatio (IES) for treating obesity. Preliminary data have suggested a therapeutic potential of IES for obesity, attributed to its accelerative effect on intestinal transit that leads to reduced absorptin and its effects on peripheral and central hormones/peptides that lead to reduced food intake. To make the IES therapy more potent and practical, we further propose 1) a synchronized IES method (SIES) that has been shown to improve intestinal contractions and is therefore more potent in speeding up intestinal transit; 2) an automatic food intake detection method with which IES/SIES can be delivered automatically upon food ingestion. Our long-term goal is to prove the clinical application of the proposed SIES/IES method for treating obesity. The major objectives of this project are to {optimize IES methodology such that it is most potent in producing weight loss without inducing side-effects, to prove the safety and efficacy of chronic IES/SIES and to explore multiple mechanisms involving gastrointestinal motility and hormones, and central satiety neurons and satiety/appetite-related peptides in diet- induced obese (DIO) rats (a well-established rodent model of human obesity).} {The first series of experiments will be performed in DIO rats to derive best stimulation parameters for IES and best stimulation configuration and best treatment regimen. The second series of experiments are designed to prove that chronic IES/SIES is safe and effective in producing weight loss and improving metabolisms in DIO rats. The third part of the project is to explore multiple mechanisms involved in the inhibitory effect o IES on body weight. Experiments are designed to prove the primary hypothesis that IES reduces body weight by decreasing nutrient absorption via acceleration of intestinal transit. Experiments will also be performed to study the secondary mechanisms associated with satiety signaling, including gastrointestinal hormones, central neuronal responses and central satiety/appetite-related peptides. Advanced technologies will be used for all experiments such that the IES treatment could be given under normal physiological conditions with no or little stress effects. } A comprehensive and competitive team has been assembled with expertise in electrical stimulation, gastrointestinal motility, obesity, surgery, basic laboratory research and statistics. The accomplishment of this project will enhance our understanding on the effects and mechanisms of IES and may lead to a novel therapy for obesity.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Interrogating the pathophysiological mechanisms of constipation in patients with systemic sclerosis
AccelBand, a leg-worn transcutaneous neuromodulation device for treating neurogenic bowel dysfunction in individuals with spinal cord injury
  • 批准号:
    10492922
  • 项目类别:
  • 资助金额:
    $60.87万
  • 财政年份:
    2022
  • 负责人:
    Jiande Chen
  • 依托单位:
Use of novel MRI technology to study pathophysiology diabetic gastroparesis
Functional Neural Circuits of Stomach-Brain Interoception
海外基金