Subcutaneous Adipose Tissue Transcriptome Highlights Specific Expression Profiles in Severe Pediatric Obesity: A Pilot Study

Author:

Berardo Clarissa12ORCID,Calcaterra Valeria34ORCID,Mauri Alessia12ORCID,Carelli Stephana12ORCID,Messa Letizia25,Destro Francesca6ORCID,Rey Federica12ORCID,Cordaro Erika3ORCID,Pelizzo Gloria67,Zuccotti Gianvincenzo14ORCID,Cereda Cristina2ORCID

Affiliation:

1. Pediatric Clinical Research Center “Romeo ed Enrica Invernizzi”, Department of Biomedical and Clinical Science, University of Milan, 20157 Milan, Italy

2. Center of Functional Genomics and Rare Diseases, Department of Pediatrics, Buzzi Children’s Hospital, 20154 Milan, Italy

3. Pediatric and Adolescent Unit, Department of Internal Medicine, University of Pavia, 27100 Pavia, Italy

4. Department of Pediatrics, Buzzi Children’s Hospital, 20154 Milan, Italy

5. Department of Electronics, Information and Bioengineering (DEIB), Politecnico di Milano, 20133 Milan, Italy

6. Surgery Department, Buzzi Children’s Hospital, 20154 Milan, Italy

7. Department of Biomedical and Clinical Science, University of Milan, 20157 Milan, Italy

Abstract

The prevalence of pediatric obesity is rising rapidly worldwide, and “omic” approaches are helpful in investigating the molecular pathophysiology of obesity. This work aims to identify transcriptional differences in the subcutaneous adipose tissue (scAT) of children with overweight (OW), obesity (OB), or severe obesity (SV) compared with those of normal weight (NW). Periumbilical scAT biopsies were collected from 20 male children aged 1–12 years. The children were stratified into the following four groups according to their BMI z-scores: SV, OB, OW, and NW. scAT RNA-Seq analyses were performed, and a differential expression analysis was conducted using the DESeq2 R package. A pathways analysis was performed to gain biological insights into gene expression. Our data highlight the significant deregulation in both coding and non-coding transcripts in the SV group when compared with the NW, OW, and OB groups. A KEGG pathway analysis showed that coding transcripts were mainly involved in lipid metabolism. A GSEA analysis revealed the upregulation of lipid degradation and metabolism in SV vs. OB and SV vs. OW. Bioenergetic processes and the catabolism of branched-chain amino acids were upregulated in SV compared with OB, OW, and NW. In conclusion, we report for the first time that a significant transcriptional deregulation occurs in the periumbilical scAT of children with severe obesity compared with those of normal weight or those with overweight or mild obesity.

Publisher

MDPI AG

Subject

General Medicine

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