Join an evening class to study about drugs

AI Thread Summary
The discussion centers on understanding how medications affect the immune system, particularly in the context of treating fever. Medications can influence the immune response depending on their type and the underlying cause of the fever, such as infection or inflammation. Drugs often target pyrogenic components to block the fever response, thus alleviating symptoms and reducing the immune system's workload. Specific examples include drugs that disrupt bacterial cell walls or interfere with pathogen metabolism, as well as monoclonal antibodies that inactivate molecules like TNFalpha and IgE, which are involved in immune reactions. The conversation also highlights that while some medications, such as Cox inhibitors (e.g., aspirin, ibuprofen), reduce fever, they do not directly treat infections but can help manage symptoms and improve overall comfort. Understanding the molecular interactions of drugs requires specificity regarding the type of drug and disease, as different mechanisms apply in various contexts.
Craps
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I actually join an evening class to study about drugs, and today a classmate asked me to explain how our immune system reacted when we took some medicines to cure fever, for example.

You know, I am not young any more, and it is really shameful if I told that young pretty lady that I knew nothing about it, and instead I promised her I would give her a "best" answer tomorrow night since i was quite busy with a bunch of unsigned, unchecked papers brought home from company.

So, could you help me out ? I really don't know how a certain dose of drugs can "help" our IS in case we get sick. Thank you, your God blesses you :wink:
 
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It depends on the type of the medication and the reason a person has fever (infection vs. inflammation). Usually, the medication will act on the fever inducing (pyrogenic) components itself, any component that interact with pyrogenic-components or any component down the chain. The idea is to block the interactions between molecules and stop the reaction chain.

Moonbear, adrenaline and DocToxyn will be able to give more details on the action of the medication.
 
How our immune system reacts to drugs? Drugs are there to support the immune system so that it has a lesser work load, drugs are there to inactivate the pathogen.

There are cases where the immune system does more harm then good, in case of auto-immune disease or in case of a very high fever. Our body is not able to withstand several days of very high fever, so medication is given to bring the temperature down.

There are many mechanisms by which drugs work, you need to be more specific what kind of disease you are talking about. Bacterial infection? Some drugs puncture holes in the bacterial cell wall (by a cholesterol analog), so that the bacteria become leaky. Other drugs interfere with the metabolism of pathogens, such as in the case of medications against virusses.
 
iansmith, I also know that dose of drugs taken can also affect patients' health, would you tell me how and what happens in our Immune system especially at the molecular level if we take, say, over the allowable limit of drugs?
Plus, could you be a little bit more specific about the interactions of molecules as you just mentioned in your post because I am admittedly a complete molecular biology novice, and it has been only a few weeks since our course started. I took it to only have general ideas about it, not to be a specialist. :wink: Thanks
 
You really need to specify what type of drug you are talking about.
 
:wink: Monique :wink:,
Thank you,
Precisely, I'd like to understand how our immune system works at the molecular level when a certain kind of drug is taken.
There are many mechanisms by which drugs work, you need to be more specific what kind of disease you are talking about.
How about HIV ? :wink:
 
Craps said:
Precisely, I'd like to understand how our immune system works at the molecular level when a certain kind of drug is taken.
As I said, drugs are directed towards a pathogen not towards the immune system. Unless you have a defective immune system that needs to be repaired.

Immune examples:
You can take drugs that inactivate TNFalpha (a molecule involved in anaphylactic shock), the drug is a monoclonal antibody that binds to the TNFalpha so that it cannot do its work anymore. Same approaches are taken for inactivating IgE (involved in allergic reactions) a monoclonal antibody will bind to the IgE so that it cannot bind to receptors of immune cells.
 
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Monique said:
As I said, drugs are directed towards a pathogen not towards the immune system. Unless you have a defective immune system that needs to be repaired.

Immune examples:
You can take drugs that inactivate TNFalpha (a molecule involved in anaphylactic shock), the drug is a monoclonal antibody that binds to the TNFalpha so that it cannot do its work anymore. Same approaches are taken for inactivating IgE (involved in allergic reactions) a monoclonal antibody will bind to the IgE so that it cannot bind to receptors of immune cells.
Thank you Monique :wink:
 
Craps said:
Plus, could you be a little bit more specific about the interactions of molecules as you just mentioned in your post because I am admittedly a complete molecular biology novice, and it has been only a few weeks since our course started. I took it to only have general ideas about it, not to be a specialist. :wink: Thanks

A good example would be antihistamine. The molecule is an antagonists that binds to the histamine receptor. Therefore the antihistamine do not activate the receptor and block the activation of the receptor by histamine. histamine is a key player in allergic reaction.

http://en.wikipedia.org/wiki/Antihistamine
 
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Well, if you're taking the drug for fever, and it's not an antiviral or antibiotic that actually treats the infection itself, then it's most likely a cyclooxygenase (Cox) inhibitor (aspirin, ibuprofen, acetaminophen). Cox is an enzyme involved in the synthesis of prostaglandins, which are the fever producing agents. Reducing fever doesn't really help you get better, it just helps you feel better, and keeps the fever from getting dangerously high. It can also help because when you're running a fever, you also often lose your appetite, so reducing the fever can also get your appetite back enough so you can provide yourself with the nourishment you need to keep your strength up while fighting the infection.
 

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