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Author Spotlight: Exploring Advanced Therapeutic Targets in Osteosarcoma Through Spatial Transcriptomics
Published on: May 3, 2024
Identification of therapeutic targets for osteosarcoma by integrating single-cell RNA sequencing and network
Yan Wang1, Di Qin2, Yiyao Gao1
1Science Research Center, China-Japan Union Hospital of Jilin University, Changchun, China.
Abstract:
Background: Osteosarcoma (OS) is a common primary tumor with extensive heterogeneity. In this study, we used single-cell RNA sequencing (scRNA-seq) and network pharmacology to analyze effective targets for Osteosarcoma treatment. Methods: The cell heterogeneity of the Osteosarcoma single-cell dataset GSE162454 was analyzed using the Seurat package. The bulk-RNA transcriptome dataset GSE36001 was downloaded and analyzed using the CIBERSORT algorithm. The key targets for OS therapy were determined using Pearson's correlation analysis. Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) analyses were performed on key targets. The DeepDR algorithm was used to predict potential drugs for Osteosarcoma treatment. Molecular docking analysis was performed to verify the binding abilities of the predicted drugs and key targets. qRT-PCR assay was used to detect the expression of key targets in osteoblasts and OS cells. Results: A total of 21 cell clusters were obtained based on the GSE162454 dataset, which were labeled as eight cell types by marker gene tagging. Four cell types (B cells, cancer-associated fibroblasts (CAFs), endothelial cells, and plasmocytes) were identified in Osteosarcoma and normal tissues, based on differences in cell abundance. In total, 17 key targets were identified by Pearson's correlation analysis. GO and KEGG analysis showed that these 17 genes were associated with immune regulation pathways. Molecular docking analysis showed that RUNX2, OMD, and CD4 all bound well to vincristine, dexamethasone, and vinblastine. The expression of CD4, OMD, and JUN was decreased in Osteosarcoma cells compared with osteoblasts, whereas RUNX2 and COL9A3 expression was increased. Conclusion: We identified five key targets (CD4, RUNX2, OMD, COL9A3, and JUN) that are associated with Osteosarcoma progression. Vincristine, dexamethasone, and vinblastine may form a promising drug-target pair with RUNX2, OMD, and CD4 for Osteosarcoma treatment.
Insights
This study identifies five key targets (CD4, RUNX2, OMD, COL9A3, and JUN) for Osteosarcoma treatment. Vincristine, dexamethasone, and vinblastine show promise as potential drugs targeting RUNX2, OMD, and CD4 in Osteosarcoma.
Area of Science:
- Oncology
- Genomics
- Pharmacology
Background:
- Osteosarcoma (OS) is a heterogeneous primary bone tumor.
- Understanding OS cell heterogeneity is crucial for effective treatment strategies.
- Current therapeutic targets for OS require further investigation.
Purpose of the Study:
- To identify novel therapeutic targets for Osteosarcoma using single-cell RNA sequencing (scRNA-seq) and network pharmacology.
- To analyze the cell heterogeneity within Osteosarcoma.
- To predict potential drug candidates for Osteosarcoma treatment.
Main Methods:
- Analysis of Osteosarcoma scRNA-seq dataset (GSE162454) for cell heterogeneity using Seurat.
- Differential expression analysis of bulk-RNA transcriptome dataset (GSE36001) using CIBERSORT.
- Identification of key therapeutic targets via Pearson's correlation analysis.
- Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway enrichment analyses.
- Drug prediction using the DeepDR algorithm and molecular docking validation.
- Quantitative real-time PCR (qRT-PCR) for target gene expression analysis.
Main Results:
- Eight distinct cell types were identified within Osteosarcoma, with four cell types (B cells, cancer-associated fibroblasts, endothelial cells, and plasmocytes) showing differential abundance.
- Seventeen key targets were identified, primarily associated with immune regulation pathways.
- Molecular docking confirmed binding of vincristine, dexamethasone, and vinblastine to RUNX2, OMD, and CD4.
- Expression analysis revealed decreased CD4, OMD, and JUN, and increased RUNX2 and COL9A3 in Osteosarcoma cells compared to osteoblasts.
Conclusions:
- Five key genes (CD4, RUNX2, OMD, COL9A3, and JUN) were identified as critical for Osteosarcoma progression.
- Vincristine, dexamethasone, and vinblastine represent potential therapeutic agents for Osteosarcoma, targeting RUNX2, OMD, and CD4.
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