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Identification of endocrine-disrupting chemicals targeting key OP-associated genes via bioinformatics and machine
Xin-Zhou Huang1, He Huang1, Hui Chen2
1Department of Orthopedics, 3201 Hospital of Xi'an Jiaotong University Health Science Center, Hanzhong, China.
Abstract:
Osteoporosis (OP), a metabolic disorder predominantly impacting postmenopausal women, has seen considerable progress in diagnosis and treatment over the past few decades. However, the intricate interplay between genetic factors and endocrine disruptors (EDCs) in the pathogenesis of OP remains inadequately elucidated. The objective of this research is to examine the environmental pollutants and their regulatory mechanisms that could potentially influence the pathogenesis of OP, in order to establish a theoretical foundation for the targeted prevention and medical management of individuals with OP. Utilizing CTD and GEO datasets, network toxicology and bioinformatics analyses were conducted to identify target genes from a pool of 98 co-associated genes. Subsequently, a novel prediction model was developed employing a multiple machine learning algorithm. The efficacy of the model was validated based on the area under the receiver operating characteristic curve. Finally, real-time quantitative polymerase chain reaction (qRT-PCR) was used to confirm the expression levels of key genes in clinical samples. We have identified significant genes (FOXO3 and LUM) associated with OP and conducted Gene Ontology, Kyoto Encyclopedia of Genes and Genomes enrichment analysis, immune infiltration analysis, and molecular docking analysis. Through the analysis of these key genes, we have identified 13 EDCs that have the potential to impact OP. Several endocrine disruptors, such as Dexamethasone, Perfluorononanoic acid, genistein, cadmium, and bisphenol A, have been identified as notable environmental pollutants that impact the OP. Molecular docking analysis revealed significant binding affinity of major EDCs to the post-translational protein structures of key genes. This study demonstrates that EDCs, including dexamethasone, perfluorononanoic acid, genistein, cadmium, and bisphenol A, can be identified as important environmental pollutants affecting OP, and that FOXO3 and LUM have the potential to be diagnostic markers for OP. These results elucidate a novel association between EDCs regulated by key genes and the onset of OP.
Insights
Environmental pollutants like cadmium and bisphenol A may contribute to osteoporosis (OP) by affecting key genes FOXO3 and LUM. This research identifies potential diagnostic markers and environmental factors for OP prevention.
Area of Science:
- Environmental toxicology and bioinformatics
- Metabolic bone disease research
- Genetics and epigenetics of osteoporosis
Background:
- Osteoporosis (OP) is a significant metabolic disorder, particularly affecting postmenopausal women.
- The roles of genetic factors and endocrine disruptors (EDCs) in OP pathogenesis require further elucidation.
- Understanding environmental influences is crucial for targeted OP prevention and management.
Purpose of the Study:
- To investigate environmental pollutants and their regulatory mechanisms influencing OP pathogenesis.
- To establish a theoretical foundation for targeted OP prevention and medical management.
- To identify novel diagnostic markers for osteoporosis.
Main Methods:
- Network toxicology and bioinformatics analyses using CTD and GEO datasets.
- Development and validation of a machine learning prediction model.
- Real-time quantitative polymerase chain reaction (qRT-PCR) for gene expression analysis.
- Molecular docking and pathway enrichment analyses (GO, KEGG).
Main Results:
- Identified FOXO3 and LUM as significant genes associated with OP.
- Identified 13 EDCs with potential impact on OP, including Dexamethasone, Perfluorononanoic acid, genistein, cadmium, and bisphenol A.
- Demonstrated significant binding affinity of EDCs to key gene protein structures via molecular docking.
- FOXO3 and LUM show potential as diagnostic markers for OP.
Conclusions:
- Endocrine disruptors (EDCs) are identified as important environmental pollutants affecting OP, mediated by key genes like FOXO3 and LUM.
- FOXO3 and LUM represent potential novel diagnostic markers for osteoporosis.
- This study reveals a new link between EDCs, key genes, and the onset of OP, offering insights for prevention and treatment.
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