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Perfusion Pharmacology ABCP Exam Comprehensive Questions A+ Graded Answers | With Expert Solutions

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Perfusion Pharmacology ABCP Exam Comprehensive Questions A+ Graded Answers | With Expert Solutions

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Perfusion Pharmacology ABCP Exam
Comprehensive Questions A+ Graded
Answers | With Expert Solutions


Q: pharmacokinetics
Answer: what the body does to the drug

Q: Pharmacodynamics
Answer: what the drug does to the body

Q: upregulation
Answer: increase density of receptors

Q: chronic decrease in receptor stimulation

Q: ex. chronic use of beta-blockers increases the number of B-receptors

Q: downregulation
Answer: decrease density of receptors

Q: caused by a chronic increase in receptor activation
ex. chronic treatment of asthma with albuterol (beta 2 agonist) reduces the number of Breceptors

Q: what protein does alpha-adrenergic agonists increase
Answer: protein kinase C

Q: which faciliates an increase in contraction in smooth muscle cells

Q: what do beta-adrenergic receptor agonists increase?
Answer: intracellular cAMP

Q: increases heart rate, contraction, and relaxation

Q: Factors that reduce cellular response to receptor activation
Answer: acidosis (need bicarb to decrease acidosis for drugs to work during CPR)

Q: hypoxia

Q: drug interactions

Q: Where are alpha 1 receptors located?
Answer: vascular smooth muscle

Q: constrict peripheral blood vessels both arterial and venous

Q: where are alpha 2 receptors located



Page 1

, Answer: presynaptic nerve terminals

Q: inhibit NE release through negative feedback loop

Q: Where are beta 1 receptors located?
Answer: primarily in the heart

Q: increase:

Q: HR

Q: contractility

Q: conduction velocity

Q: automaticity

Q: risk of arrhythmias (bad)

Q: Where are beta 2 receptors found
Answer: bronchiole smooth muscle

Q: vasodilation and bronchodilation

Q: increase HR and contraclity (less potent than B1)

Q: phenylephrine
-- MOA
-- metabolism
-- advantages
-- disadvantages
-- indications for use
-- dosing
Answer: -- MOA: alpha 1 agonist causing vasoconstriction in mostly arterioles

-- metabolism: MAO (monoamine oxidase) metabolism
-- advantages: direct agonist with short duration, increases coronary perfusion pressure w/o
affecting contractility, MVO2 does not increase significantly
-- disadvantages: may decrease SV and CO due to increase in afterload, may decrease renal,
mesenteric, and extremity perfusion
-- indications for use: hypotension, oppose acute R-->L shunting in cyanotic spells in TOF patients
-- dosing: IV infusion: 0.5 to 10 mcg/kg/min, bolus: 1 to 10 mcg/kg (40-100mcg/ml)

Q: ephedrine
-- MOA
-- metabolism
-- advantages
-- disadvantages
-- indications for use



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