17.1
تُقاس سُمِّيَّةُ الدواء بمدى الضرر الذي يسببه المركب للكائن الحي، وتختلف هذه السمية باختلاف الجرعة، وقد تؤثر في أجهزة الجسم بأكملها أو في أعضاء محددة…
تشير سمية الدواء، التي غالبا ما تنتج عن جرعة زائدة، إلى التأثيرات الضارة التي يمكن أن تسببها المادة الكيميائية على الكائن الحي. قد تستهدف هذه التأثيرات أعضاء معينة، مثل الكبد، أو تؤثر على الجهاز العصبي المركزي.
على سبيل المثال، جرعة زائدة من مسكن الألم بدون وصفة طبية يمكن أن تسبب ردود فعل سلبية، مثل تلف الكبد، نزيف المعدة، وأمراض الكلى.
من ناحية أخرى، فإن رد الفعل السلبي للدواء، أو ADR، هو استجابة ضارة وغير مقصودة للدواء عند استخدامه ضمن نافذة علاجه.
يمكن أن تكون حادة، تبدأ خلال ساعة واحدة؛ تحت حادة، وحدثت خلال 24 ساعة؛ أو ردود فعل كامنة، تظهر بعد أسابيع إلى أشهر من التعرض.
على سبيل المثال، قد تسبب أدوية ارتفاع ضغط الدم انخفاض ضغط الدم، مما يؤدي إلى الدوار أو الدوار.
يمكن تصنيف ADRs إلى ستة أنواع، تحمل علامات من A إلى F.
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Q1: What is the difference between drug toxicity and an adverse drug reaction?
Drug toxicity refers to harmful effects from a chemical substance, often resulting from overdose and potentially targeting specific organs like the liver or CNS. An adverse drug reaction (ADR) is a harmful, unintended response to a drug used within its therapeutic window. While toxicity typically involves exceeding safe doses, ADRs occur at therapeutic levels and represent unexpected responses to medications.
Q2: How are adverse drug reactions classified by onset time?
ADRs are classified by onset timing: acute reactions start within one hour, subacute reactions occur within 24 hours, and latent reactions appear weeks to months after exposure. For example, antihypertensive drugs may cause acute hypotension leading to dizziness. This classification helps clinicians recognize and manage reactions based on when symptoms emerge after drug administration.
Q3: What are Type A and Type B adverse drug reactions?
Type A ADRs are dose-related and predictable, resulting from the drug's pharmacological action, such as hypoglycemia from diabetes medication. Type B ADRs are unpredictable and not dose-dependent, often severe, affecting organs like the liver or skin through idiosyncratic or allergy-like reactions influenced by genetic and environmental factors.
Q4: What factors determine how toxic a substance is to an organism?
Substance toxicity depends on multiple factors including dose, exposure duration, chemical structure, and individual factors. Environmental toxins and mycotoxins pose significant risks through various mechanisms. Some substances like heroin and GHB are particularly lethal because their effective doses are close to toxic doses, leaving little margin for safety.
Q5: What are examples of common acute poisoning cases?
Common acute poisoning cases include ethanol intoxication and overdose of pain or fever medications like over-the-counter painkillers, which can cause liver damage, stomach bleeding, and kidney disease. Venomous insect or spider bites can also cause acute poisoning with effects ranging from mild symptoms to severe outcomes such as brain damage or death.
Q6: What do Type C, D, E, and F adverse drug reactions represent?
Type C ADRs are dose- and time-dependent effects. Type D reactions are delayed responses like carcinogenesis. Type E reactions involve withdrawal symptoms when medication is discontinued. Type F reactions represent unexpected therapy failure. These classifications extend beyond Type A and B to capture the full spectrum of adverse drug response patterns.
Q7: How does severity range in adverse drug reactions?
ADR severity ranges from mild to life-threatening, with severe cases requiring significant medical intervention or causing permanent damage. Reactions can be acute, subacute, or chronic based on onset timing. Understanding severity helps clinicians prioritize treatment and predict whether a reaction requires hospitalization, supportive care, or long-term management.