How does caffeine work at the neuronal level and why does it stop us feeling sleepy?
Question
How does caffeine work at the neuronal level and why does it stop us feeling sleepy?
Solution
Caffeine works at the neuronal level by blocking the action of a neurotransmitter called adenosine. Here's how it works step by step:
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Normally, adenosine levels build up in your brain over the course of the day, gradually making you feel more and more tired.
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Adenosine works by binding to specific receptors in your brain. When it binds to these receptors, it inhibits the release of certain neurotransmitters, slowing down brain activity and making you feel sleepy.
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Caffeine is structurally similar to adenosine, and can bind to the same receptors. However, when caffeine binds to these receptors, it doesn't slow down brain activity like adenosine does. Instead, it prevents adenosine from binding to the receptors, effectively blocking its action.
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As a result, instead of slowing down because of the adenosine, your brain activity actually increases. This is why you feel more alert and awake after consuming caffeine.
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Additionally, because caffeine is blocking the adenosine receptors, the brain's natural stimulants, dopamine and glutamate, can function more effectively. This leads to increased arousal, vigilance, and fatigue resistance.
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Finally, the increased brain activity caused by caffeine consumption also stimulates the pituitary gland to secrete hormones that cause the adrenal glands to produce adrenaline. This further contributes to the feeling of alertness and energy.
So, in summary, caffeine works by blocking the action of the neurotransmitter adenosine, which normally slows down brain activity and makes you feel sleepy. By blocking adenosine, caffeine increases brain activity and stimulates the production of other chemicals that make you feel alert and awake.
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