Spinal Bulbar Muscular Atrophy

Spinal Bulbar Muscular Atrophy (SBMA), also known as Kennedy disease, is an X-linked motor neuron disorder that progressively weakens lower motor neurons controlling limb, facial, and bulbar muscles. It results from an expanded CAG repeat in the androgen receptor gene, producing a polyglutamine-expanded receptor that becomes toxic, particularly when activated by androgens, disrupting neuronal function and survival. SBMA research in neuroscience examines motor neuron degeneration, neuromuscular transmission, and the relationship between genetic expansion and disease severity. Genetic testing, cellular and animal models, and studies of androgen signaling support diagnosis, clarify disease mechanisms, and guide development of targeted treatments.

Spinal Bulbar Muscular Atrophy - Related Videos

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JoVE EoE - Neurotherapeutics

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2025

Source:Pourshafie, N., et al. Systemic Delivery of MicroRNA Using Recombinant Adeno-associated Virus Serotype 9 to Treat Neuromuscular Diseases in Rodents. J. Vis. Exp. (2018).In this video, a spinal and bulbar muscular atrophy or SBMA-affected mouse undergoes tail vein injection of recombinant AAV (Adeno-associated vectors) vectors carrying a plasmid encoding therapeutic microRNA. The vector produces microRNA that binds to mutant AR (Androgen receptor)-mRNA (messenger ribonucleic acid),...

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JoVE Journal - Medicine
Free Sample

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Cited by 40 •

2011

Objective assessments of the physiological mechanisms that support speech are needed to monitor disease onset and progression in persons with ALS and to quantify treatment effects in clinical trials. In this video, we present a comprehensive, instrumentation-based protocol for quantifying speech motor performance in clinical populations.

Detection of Brain Atrophy by Hematoxylin and Eosin Staining

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2025

To detect brain atrophy, begin with slides carrying the deparaffinized brain sections from neurodegenerative mouse models at various ages.

Education

JoVE Core - Anatomy and Physiology

The Muscular System

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2024

The muscular system is essential to the body's overall structure and function, playing a crucial role in movement, stability, and internal processes. It consists of three distinct types of muscle tissue: the skeletal, the smooth, and the cardiac muscles. Skeletal Muscles: These muscles are under our conscious control and enable movement. They are attached to bones by tendons, and their contraction and relaxation allow us to move. Additionally, they generate heat during physical activity,...

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Cited by 38 •

2013

The tibial nerve transection model is a well-tolerated, validated, and reproducible model of skeletal muscle atrophy. The model surgical protocol is described and demonstrated in C57Black6 mice.

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