Effect of Botulinum Toxin on Sensori-Motor Integration in Movement Disorders: A Scoping Review.

Toxins 2025 Vol.17(8)

Das A, Jog M

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Abstract

The primary effect of Botulinum toxin (BoNT) is to cause weakness in the injected muscles by inhibiting the release of acetyl choline from presynaptic nerve terminals. Its effect on sensorimotor integration (SMI) has largely been confined to small studies. The aim of this review is to highlight effect of BoNT on SMI in the context of Parkinson's disease (PD), Cervical dystonia (CD), and Writer's cramp (WC). Using keywords "Botulinum toxin" and "sensorimotor integration" or "Freezing of gait (FOG)" or 'Tremor"or "Cervical dystonia" or "Parkinson's disease", or "Writer's cramp", PubMed database was searched for relevant articles supporting our view. The abstracts of all resultant articles (case reports, case series, randomized trials, observational studies) were reviewed to look for evidence of effects of botulinum toxin on SMI. The relevant articles were charted in excel sheet for further full text review. In FOG, chronic BoNT injections may alter central motor patterns with inclusion of alternative striatal systems, cerebellum, and its connections. In tremor, the afferent proprioceptive input may be modified with reduction of intracortical facilitation and increment of intracortical inhibition. In CD, BoNT can restore disorganized cortical somatotrophy, the key pathophysiology behind cervical dystonia. Similarly, in WC, both the deficient sensory system and abnormal reorganization of the sensorimotor cortex may be altered following chronic BoNT injections. There is preliminary evidence that BoNT may modulate SMI in PD, CD, and WC by altering inputs from the muscle spindles in short term and modifying circuits/particular anatomic cerebral cortices in the long term. Properly conducted randomized trials comparing BoNT with placebo or prospective large-scale studies to look for effect on various surrogate markers reflective of changes in SMI should be the next step to confirm these findings. Targeting the system of afferents like spindles and golgi tendon organs in muscles may be a better way of injecting BoNT, with lower amounts of toxin needed and potential for lesser side-effects like weakness and atrophy. However, this needs to be proven in controlled trials.

추출된 의학 개체 (NER)

유형영어 표현한국어 / 풀이UMLS CUI출처등장
시술 botulinum toxin 보툴리눔독소 주사 dict 4
해부 muscles scispacy 1
해부 presynaptic nerve terminals scispacy 1
해부 afferent scispacy 1
해부 cervical scispacy 1
해부 muscle scispacy 1
해부 circuits/particular scispacy 1
해부 cerebral scispacy 1
해부 golgi tendon organs scispacy 1
합병증 Cervical scispacy 1
합병증 sensorimotor scispacy 1
합병증 afferents like spindles scispacy 1
약물 choline C0008405
choline
scispacy 1
약물 BoNT → Botulinum toxin C0006055
Botulinum Toxins
scispacy 1
약물 SMI → sensorimotor integration C0678917
sensorimotor integration
scispacy 1
약물 acetyl choline scispacy 1
약물 intracortical scispacy 1
질환 Parkinson's disease C0030567
Parkinson Disease
scispacy 1
질환 dystonia C0013421
Dystonia
scispacy 1
질환 cramp C0026821
Muscle Cramp
scispacy 1
질환 FOG → Freezing of gait C0860515
Freezing of gait
scispacy 1
질환 Parkinson's disease", or "Writer's cramp scispacy 1
질환 tremor C0040822
Tremor
scispacy 1
질환 SMI → sensorimotor integration C0678917
sensorimotor integration
scispacy 1
질환 atrophy C0333641
Atrophic
scispacy 1
질환 sensorimotor cortex scispacy 1
질환 weakness C0004093
Asthenia
scispacy 1
기타 BoNT → Botulinum toxin scispacy 1
기타 FOG → Freezing of gait scispacy 1
기타 Parkinson scispacy 1
기타 striatal scispacy 1
기타 cerebellum scispacy 1
기타 cortical scispacy 1

MeSH Terms

Humans; Botulinum Toxins; Movement Disorders; Parkinson Disease; Animals

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