Histological analysis of the gastrocnemius muscle in preschool and school age children with cerebral palsy compared to age-matched typically developing children

Author:

Deschrevel Jorieke1,Andries Anke1,Maes Karen2,Peeters Jules1,van Opstal Axel1,Jiang Dina1,De Beukelaer Nathalie1,Corvelyn Marlies1,Staut Lauraine1,De Houwer Hannah1,Costamagna Domiziana1,Desloovere Kaat1,Van Campenhout Anja1,Gayan-Ramirez Ghislaine3

Affiliation:

1. KU-Leuven, Belgium

2. Department of Chronic Diseases and Metabolism, KU Leuven, Leuven, Belgium

3. KU Leuven, Leuven, Belgium

Abstract

Inconsistent alterations in skeletal muscle histology have been reported in adolescents with cerebral palsy (CP) and whether alterations are present in young children and differ from older children is not yet known. This study aimed to define histological alterations in the medial gastrocnemius (MG) of ambulant CP (Gross-motor classification system, GMFCS I-III) stratified in two age groups (preschool children, PS: 2-5 and school age children, SA: 6-9 years old) compared to age-matched typically developing (TD) children. We hypothesized that alterations in muscle microscopic properties are already present in PS-CP and are GMFCS level specific. Ultrasound guided percutaneous microbiopsies were collected in 46 CP (24-PS) and 45 TD (13-PS) children. Sections were stained to determine fiber cross-sectional area (fCSA) and proportion, capillary and satellite cell amount. Average absolute and normalized fCSA were similar in CP and TD, but a greater percentage of smaller fibers was found in CP. Coefficient of variation (CV) was significantly larger in PS-CP-GMFCS I-II and for type I fiber. In SA-CP, all fiber types contributed to the higher CV. Type IIx proportion was higher and type I lower in PS-CP-GMFCS-III, and for all SA-CP. Reduced capillary-to-fiber-ratio was present in PS-CP-GMFCS II-III and in all SA-CP. Capillary fiber density was lower in SA-CP. Capillary domain was enhanced in all CP, but capillary spatial distribution was maintained as was satellite cell content. We concluded that MG histological alterations are already present in very young CP but are only partly specific for GMFCS level and age.

Funder

KU-Leuven

Research Foundation Flanders

Publisher

American Physiological Society

Subject

Cell Biology,Physiology

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