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临床试验/NCT06000605
NCT06000605尚未招募不适用

Does Cerebral Substrate Switching Underlie the Beneficial Brain Adaptations of Fasting and Exercise?

University of British Columbia1 个研究点 分布在 1 个国家目标入组 12 人开始时间: 2023年10月1日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
尚未招募
入组人数
12
试验地点
1
主要终点
Brain-derived neurotrophic factor, secreted amyloid beta precursor protein

研究概览

简要总结

The brain is constantly active and energetically expensive, making up a quarter of the body's energy budget despite occupying only 2% of its mass. To fuel this incessant activity, the brain relies on glucose, which accommodates 99% of its metabolic needs. In most cases, glucose is the ideal fuel since it is in constant surplus owing to 24-hr access to sugar-rich food. However, the brain is metabolically flexible and capable of metabolizing alternative fuels when glucose is scarce, or, decreasing rapidly. For example, during fasting when glucose stores are dwindling, ketone bodies can supplement the brain's metabolic needs. During intense exercise, when glucose stores are being rapidly depleted, lactate - a byproduct of this glucose turnover - similarly acts as an alternative fuel for the brain. In healthy individuals, exploiting this 'brain metabolic flexibility' may be beneficial in protecting the brain from aging.

The main question is: Does the brain substrate switch that occurs during fasting and high-intensity exercise underlie the beneficial effects on the brain?

Young, healthy participants will fast for 3 days and complete high-intensity cycling exercise, each of which will induce a brain substrate switch. Participants will also be passively infused with ketones (to simulate fasting) and lactate (to simulate high-intensity exercise) in the fed and rested state. In doing so, the investigators will isolate the brain substrate switch from the broader, pluripotent stressors that encompass fasting and exercise.

The main outcome variables are the brain biomarkers: brain-derived neurotrophic factor (BDNF) and secreted amyloid beta precursor protein (sAPPA).

详细描述

Objectives:

Primary:

• To determine if brain ketone and lactate metabolism cause the beneficial neurotrophic responses associated with fasting and exercise, respectively.

Secondary:

• To determine if fasting and exercise improve the brain's uptake of glucose, ketones and lactate.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Crossover
主要目的
Basic Science
盲法
Single (Investigator)

盲法说明

The participant will not be blinded because they must consciously adhere to study requirements, i.e., fasting for 3 days. The investigators will be blinded to the fasting and fed conditions.

入排标准

年龄范围
19 Years 至 40 Years(Adult)
性别
All
接受健康志愿者
是

入选标准

  • •Regularly physically active, as determined via questionnaires

排除标准

  • •Current smokers
  • •Acute bronchial asthma, chronic obstructive airway or status asthmaticus
  • •Obese (body mass index greater than 30 kg m-2)
  • •Requiring daily prescription medications that may affect responses to exercise, e.g., anti-hypertensives, anti-arrhythmogenics, inhalers
  • •History of disease/dysfunction that could cause complication with exercise, e.g. cardiovascular, respiratory, neurological or musculoskeletal diseases
  • •Irregular or absent menstrual cycle (females)
  • •Pregnant or may suspect pregnancy, or post-menopausal (females)
  • •Any unexpected adverse responses to pre-experimental exercise tests
  • •Any contraindication to a lumbar subarachnoid access

研究组 & 干预措施

Fed

Active Comparator

Exercise and passive infusions of ketones and lactate in the fed state. Participants will be fed a small meal in the middle of the protocol, also.

干预措施: Fed (Other)

Fasted

Experimental

Exercise and passive infusions of ketones and lactate in the fasted state. Participants will be required to fast for 72 hours prior to arriving to the lab for this testing arm.

干预措施: Fasted (Other)

结局指标

主要结局

Brain-derived neurotrophic factor, secreted amyloid beta precursor protein

时间窗: Data collected at rest, during graded infusions of lactate and ketones, pre- and post- 6 minutes of high-intensity cycling exercise

Biomarker to index neuroplasticity and resilience

次要结局

  • Brain substrate metabolism(Data collected at rest, during graded infusions of lactate and ketones, pre- and post- 6 minutes of high-intensity cycling exercise)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Phil Ainslie

Professor

University of British Columbia

研究点 (1)

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