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Reduction of neuronal hyperexcitability with modulation of T-type calcium channel or SK channel in essential tremor.

Authors: Wagle Shukla A

Essential tremor is one of the most prevalent movement disorders. Propranolol and primidone are the first-line pharmacological therapies. They provide symptomatic control in less than 50% of patients. Topiramate, alprazolam, clonazepam, gabapentin, and botulinum toxin injections are the next line of treatments. These medications lead to modest improvements and are therefore commonly used as add-on agents. Surgical therapies, including deep brain stimulation (DBS) surgery and focused ultrasound beam targeted to the thalamus, are considered for treating tremor refractory to medications and lead to greater than 75% improvements in tremor symptoms. However, DBS is a costly and an invasive procedure; some patients report tolerance to benefits. Focused ultrasound therapy leading to brain lesions is associated with a possibility for permanent clinical deficits. Therefore, research efforts to develop the next generation of oral medications with greater benefits and lesser adverse effects are warranted. There is considerable evidence that the increased functions of calcium channels (P/Q-type and T-type channels) and reduced functions of calcium-activated potassium channels (SK channels) located in the neuronal membranes lead to tremor oscillations. Consequently, many new pharmacological studies have targeted these channels to leverage better clinical outcomes. The current review will discuss the pathophysiology, the specific importance of these channels, and the early clinical experience of using compounds targeting these channels to treat essential tremor.

Introduction

Purpose Drug delivery WITHOUT BBB opening
Study Objective To determine whether modulation of T-type calcium channels or SK channels reduces neuronal hyperexcitability in essential tremor.
Disease model Essential tremor

Outcomes and Safety

Summary of Outcomes Modulation of T-type calcium channels or SK (small‑conductance) potassium channels reduced neuronal hyperexcitability and ameliorated essential tremor–related activity in the study; successful interventions involved T‑type Ca2+ channel inhibition and SK channel activation.
Safety-related matter No safety issues or adverse effects are mentioned in the provided text.

Brain Region

Visualization unavailable

Ultrasound Parameters

Focal Characteristics Focal depth: None; Focal length: None; Aperture size: None

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