Deck 24: Drugs for Neurodegenerative Diseases

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Question
Severe hypomobility ("freezing")reactions in advanced Parkinson's disease may respond rapidly after injection of which drug?

A) apomorphine
B) dopamine
C) ropinirole
D) benztropine
E) tizanidine
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Question
Memantine is believed to benefit persons with Alzheimer's disease because of its ability to exert which action?

A) inhibit neurotransmitter degradation
B) increase neurotransmitter degradation
C) block neurotransmitter receptors
D) activate neurotransmitter receptors
E) block neurotransmitter reuptake
Question
Which agent is useful in persons with multiple sclerosis because it serves as a decoy for myelin-damaging T cells?

A) mitoxantrone
B) natalizumab
C) interferon beta-1b
D) glatiramer
E) prednisone
Question
Which action is responsible for the therapeutic effects of entacapone?

A) inhibition of monoamine oxidase-type B
B) stimulation of levodopa decarboxylation
C) decreased formation of 3-O-methyldopa
D) increased uptake of dopamine into the brain
E) increased release of dopamine from neurons
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Deck 24: Drugs for Neurodegenerative Diseases
1
Severe hypomobility ("freezing")reactions in advanced Parkinson's disease may respond rapidly after injection of which drug?

A) apomorphine
B) dopamine
C) ropinirole
D) benztropine
E) tizanidine
apomorphine
2
Memantine is believed to benefit persons with Alzheimer's disease because of its ability to exert which action?

A) inhibit neurotransmitter degradation
B) increase neurotransmitter degradation
C) block neurotransmitter receptors
D) activate neurotransmitter receptors
E) block neurotransmitter reuptake
block neurotransmitter receptors
3
Which agent is useful in persons with multiple sclerosis because it serves as a decoy for myelin-damaging T cells?

A) mitoxantrone
B) natalizumab
C) interferon beta-1b
D) glatiramer
E) prednisone
glatiramer
4
Which action is responsible for the therapeutic effects of entacapone?

A) inhibition of monoamine oxidase-type B
B) stimulation of levodopa decarboxylation
C) decreased formation of 3-O-methyldopa
D) increased uptake of dopamine into the brain
E) increased release of dopamine from neurons
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