Regional and bilateral MRI and gene signatures in facioscapulohumeral dystrophy: implications for clinical trial design and mechanisms of disease progression.
Chao-Jen WongSeth D FriedmanLauren SniderSean R BennettTakako I JonesPeter L JonesDennis W W ShawSilvia S BlemkerLara RiemOlivia DuCharmeRichard J L F LemmersSilvère M van der MaarelLeo H WangRabi TawilJeffrey M StatlandStephen J TapscottPublished in: Human molecular genetics (2024)
Identifying the aberrant expression of DUX4 in skeletal muscle as the cause of facioscapulohumeral dystrophy (FSHD) has led to rational therapeutic development and clinical trials. Several studies support the use of MRI characteristics and the expression of DUX4-regulated genes in muscle biopsies as biomarkers of FSHD disease activity and progression. We performed lower-extremity MRI and muscle biopsies in the mid-portion of the tibialis anterior (TA) muscles bilaterally in FSHD subjects and validated our prior reports of the strong association between MRI characteristics and expression of genes regulated by DUX4 and other gene categories associated with FSHD disease activity. We further show that measurements of normalized fat content in the entire TA muscle strongly predict molecular signatures in the mid-portion of the TA, indicating that regional biopsies can accurately measure progression in the whole muscle and providing a strong basis for inclusion of MRI and molecular biomarkers in clinical trial design. An unanticipated finding was the strong correlations of molecular signatures in the bilateral comparisons, including markers of B-cells and other immune cell populations, suggesting that a systemic immune cell infiltration of skeletal muscle might have a role in disease progression.
Keyphrases
- skeletal muscle
- disease activity
- clinical trial
- genome wide
- contrast enhanced
- rheumatoid arthritis
- systemic lupus erythematosus
- magnetic resonance imaging
- poor prognosis
- rheumatoid arthritis patients
- diffusion weighted imaging
- ankylosing spondylitis
- insulin resistance
- genome wide identification
- dna methylation
- juvenile idiopathic arthritis
- computed tomography
- copy number
- study protocol
- adipose tissue
- open label
- early onset
- phase ii
- ultrasound guided
- muscular dystrophy
- long non coding rna
- magnetic resonance
- single molecule
- type diabetes
- emergency department
- randomized controlled trial
- phase iii