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Author Spotlight: Exploring Advanced Therapeutic Targets in Osteosarcoma Through Spatial Transcriptomics
Published on: May 3, 2024
Transcriptomic Analysis of Canine Osteosarcoma from a Precision Medicine Perspective Reveals Limitations of
Rebecca L Nance1,2, Sara J Cooper3, Dmytro Starenki3
1Scott-Ritchey Research Center, College of Veterinary Medicine, Auburn University, Auburn, AL 36849, USA.
Abstract:
Despite significant advances in cancer diagnosis and treatment, osteosarcoma (OSA), an aggressive primary bone tumor, has eluded attempts at improving patient survival for many decades. The difficulty in managing OSA lies in its extreme genetic complexity, drug resistance, and heterogeneity, making it improbable that a single-target treatment would be beneficial for the majority of affected individuals. Precision medicine seeks to fill this gap by addressing the intra- and inter-tumoral heterogeneity to improve patient outcome and survival. The characterization of differentially expressed genes (DEGs) unique to the tumor provides insight into the phenotype and can be useful for informing appropriate therapies as well as the development of novel treatments. Traditional DEG analysis combines patient data to derive statistically inferred genes that are dysregulated in the group; however, the results from this approach are not necessarily consistent across individual patients, thus contradicting the basis of precision medicine. Spontaneously occurring OSA in the dog shares remarkably similar clinical, histological, and molecular characteristics to the human disease and therefore serves as an excellent model. In this study, we use transcriptomic sequencing of RNA isolated from primary OSA tumor and patient-matched normal bone from seven dogs prior to chemotherapy to identify DEGs in the group. We then evaluate the universality of these changes in transcript levels across patients to identify DEGs at the individual level. These results can be useful for reframing our perspective of transcriptomic analysis from a precision medicine perspective by identifying variations in DEGs among individuals.
Insights
Osteosarcoma (OSA) is a complex bone cancer. This study identifies individual gene expression differences in canine OSA, advancing precision medicine approaches for better patient outcomes.
Area of Science:
- Oncology
- Genomics
- Comparative Medicine
Background:
- Osteosarcoma (OSA) is an aggressive bone cancer with poor patient survival due to genetic complexity and heterogeneity.
- Current treatments are limited by drug resistance and tumor variability, hindering the effectiveness of single-target therapies.
- Precision medicine aims to address tumor heterogeneity for improved patient outcomes.
Purpose of the Study:
- To identify differentially expressed genes (DEGs) in canine osteosarcoma.
- To evaluate the individual-specific expression patterns of these DEGs.
- To reframe transcriptomic analysis for a precision medicine approach in OSA.
Main Methods:
- Transcriptomic sequencing of RNA from primary canine OSA tumors and matched normal bone.
- Identification of group-level DEGs.
- Assessment of DEG universality across individual canine patients.
Main Results:
- Identified DEGs unique to canine osteosarcoma.
- Demonstrated significant variations in DEG expression among individual patients.
- Highlighted the limitations of traditional group-based DEG analysis for precision medicine.
Conclusions:
- Canine OSA serves as a relevant model for human osteosarcoma research.
- Individual-level DEG analysis is crucial for understanding OSA heterogeneity.
- This approach supports the development of personalized treatment strategies for osteosarcoma.

