Current Pharmacological Approaches to Reduce Chorea in Huntington's Disease

Emma M Coppen1, Raymund A C Roos2

  • 1Department of Neurology, Leiden University Medical Center, Albinusdreef 2, 2333 ZA, Leiden, The Netherlands.

Drugs
|December 19, 2016
PubMed

Insights

Huntington's disease (HD) chorea management lacks effective drugs. Current treatments like tetrabenazine and antipsychotics help motor and psychiatric symptoms, with new agents under development.

Area of Science:

  • Neuroscience
  • Pharmacology
  • Genetics

Background:

  • Huntington's disease (HD) is a rare, inherited neurodegenerative disorder with no cure.
  • Chorea, characterized by involuntary movements, significantly impacts daily life and requires management.
  • Existing pharmacological options for chorea lack extensive randomized controlled trial data.

Purpose of the Study:

  • To review current pharmacological treatments for chorea in Huntington's disease.
  • To evaluate the efficacy and clinical practice of available drugs.
  • To highlight emerging treatments and the need for further research.

Main Methods:

  • A comprehensive literature review was conducted.
  • Databases searched include PubMed, Cochrane, and Medline.
  • Focus on randomized controlled studies and expert clinical practice.

Main Results:

  • Tetrabenazine, tiapride, olanzapine, and risperidone are commonly prescribed for chorea in HD.
  • These agents demonstrate benefits in motor and psychiatric symptom severity.
  • Deutetrabenazine shows promise with potentially fewer side effects than tetrabenazine.

Conclusions:

  • Current treatments primarily manage chorea symptoms in HD.
  • A cautious approach with low-dose initiation and monitoring is recommended.
  • Further randomized controlled trials are essential for deutetrabenazine, pridopidine, and other novel agents.

Related Concept Videos

Parkinson's Disease: Treatment01:24

Parkinson's Disease: Treatment

Neurodegenerative disorders, such as Parkinson's Disease (PD), involve the gradual and irreversible destruction of neurons in particular brain areas. These disorders exhibit standard features like proteinopathies, selective vulnerability of some neurons, and an interaction of intrinsic properties, genetics, and environmental influences in neural injury.
Parkinson's Disease is primarily a result of the loss of dopaminergic neurons in the substantia nigra pars compacta. The cornerstone of...
1.3K
Indirect-Acting Cholinergic Agonists: Pharmacological Actions01:30

Indirect-Acting Cholinergic Agonists: Pharmacological Actions

Indirect-acting cholinergic agonists, also known as anticholinesterases, exert their pharmacological effects by enhancing cholinergic transmission in various body parts, including the neuromuscular junction, autonomic cholinergic synapses, and the brain.
At the neuromuscular junction, these agents work by inhibiting the breakdown of acetylcholine, allowing it to remain bound to the receptor and bind to nearby receptors. This process leads to repetitive firing of the endplate, causing muscle...
1.7K
Parkinson's Disease: Overview01:15

Parkinson's Disease: Overview

Neurodegenerative disorders are progressive diseases that cause irreversible damage and loss to neurons in specific brain areas. Examples of these disorders include Parkinson's disease, Alzheimer's disease, Multiple Sclerosis (MS), and Amyotrophic Lateral Sclerosis (ALS). These disorders share characteristics such as proteinopathies, selective neuronal vulnerability, and a complex interplay between genetic and environmental factors. The primary therapeutic goal for these conditions is...
2.3K
Alzheimer's Disease: Treatment01:22

Alzheimer's Disease: Treatment

Alzheimer's Disease (AD), a neurodegenerative disorder, is pathologically identified by amyloid plaques and neurofibrillary tangles composed of tau protein. AD pharmacotherapy aims to manage cognitive symptoms, delay disease progression, and treat behavioral symptoms. The treatment is primarily symptomatic and palliative, with no definitive disease-modifying therapy available. Cholinesterase inhibitors, including donepezil (Aricept), rivastigmine (Exelon), and galantamine (Razadyne), are...
1.1K
Indirect-Acting Cholinergic Agonists: Chemistry and Structure-Activity Relationship01:29

Indirect-Acting Cholinergic Agonists: Chemistry and Structure-Activity Relationship

Indirect-acting cholinergic agonists are agents that interact with the acetylcholinesterase enzyme in the synaptic cleft, preventing the breakdown of acetylcholine into choline and acetate. Consequently, the concentration of acetylcholine in the synaptic cleft increases. These agonists can be classified into reversible and irreversible inhibitors based on their duration of action.
Reversible inhibitors display short to medium durations of action. Short-acting agents include simple alcohols with...
1.1K
Indirect-Acting Cholinergic Agonists: Mechanism of Action01:18

Indirect-Acting Cholinergic Agonists: Mechanism of Action

Indirect-acting cholinergic agonists work by interacting with an enzyme called acetylcholinesterase (AChE) in the synaptic cleft. They can be reversible or irreversible inhibitors and have different effects on the enzyme.
Reversible inhibitors like edrophonium bind to a specific part of the enzyme called the anionic catalytic site. They form noncovalent bonds, which means they are not strongly attached to the enzyme. This creates a temporary and less stable enzyme–inhibitor complex,...
2.9K