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Identification of functional pathways and molecular signatures in neuroendocrine neoplasms by multi-omics analysis
Viola Melone1, Annamaria Salvati1,2, Domenico Palumbo1
1Laboratory of Molecular Medicine and Genomics, Department of Medicine, Surgery and Dentistry "Scuola Medica Salernitana", University of Salerno, via S. Allende, 84081, Baronissi, SA, Italy.
Background:
Neuroendocrine neoplasms (NENs) represent a heterogeneous class of rare tumors with increasing incidence. They are characterized by the ability to secrete peptide hormones and biogenic amines but other reliable biomarkers are lacking, making diagnosis and identification of the primary site very challenging. While in some NENs, such as the pancreatic ones, next generation sequencing technologies allowed the identification of new molecular hallmarks, our knowledge of the molecular profile of NENs from other anatomical sites is still poor.
Methods:
Starting from the concept that NENs from different organs may be clinically and genetically correlated, we applied a multi-omics approach by combining multigene panel testing, CGH-array, transcriptome and miRNome profiling and computational analyses, with the aim to highlight common molecular and functional signatures of gastroenteropancreatic (GEP)-NENs and medullary thyroid carcinomas (MTCs) that could aid diagnosis, prognosis and therapy.
Results:
By comparing genomic and transcriptional profiles, ATM-dependent signaling emerged among the most significant pathways at multiple levels, involving gene variations and miRNA-mediated regulation, thus representing a novel putative druggable pathway in these cancer types. Moreover, a set of circulating miRNAs was also selected as possible diagnostic/prognostic biomarkers useful for clinical management of NENs.
Conclusions:
These findings depict a complex molecular and functional landscape of NENs, shedding light on novel therapeutic targets and disease biomarkers to be exploited.
Insights
This study reveals ATM-dependent signaling as a common pathway in neuroendocrine neoplasms (NENs), offering a potential new therapeutic target. Circulating microRNAs were also identified as promising biomarkers for NEN diagnosis and prognosis.
Area of Science:
- Oncology
- Genomics
- Molecular Biology
Background:
- Neuroendocrine neoplasms (NENs) are rare, heterogeneous tumors with increasing incidence.
- Lack of reliable biomarkers complicates NEN diagnosis and primary site identification.
- Limited understanding of molecular profiles in NENs beyond pancreatic origin.
Purpose of the Study:
- To identify common molecular and functional signatures in gastroenteropancreatic (GEP)-NENs and medullary thyroid carcinomas (MTCs).
- To explore potential diagnostic, prognostic, and therapeutic targets for NENs.
- To leverage multi-omics data for a deeper understanding of NENs.
Main Methods:
- Applied a multi-omics approach combining multigene panel testing, CGH-array, transcriptome, and miRNome profiling.
- Utilized computational analyses to identify common signatures between GEP-NENs and MTCs.
- Compared genomic and transcriptional profiles to uncover shared molecular pathways.
Main Results:
- ATM-dependent signaling identified as a significant pathway across multiple molecular levels.
- Gene variations and miRNA-mediated regulation implicated in ATM-dependent signaling.
- A panel of circulating microRNAs identified as potential diagnostic/prognostic biomarkers.
Conclusions:
- Highlights ATM-dependent signaling as a novel, druggable pathway in NENs.
- Identifies circulating microRNAs as potential biomarkers for NEN clinical management.
- Provides insights into the complex molecular landscape of NENs for therapeutic and diagnostic advancements.
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