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The In ovo CAM-assay as a Xenograft Model for Sarcoma
Published on: July 17, 2013
Generation of sarconoids from angiosarcoma patients as a systematic-based rational approach to treatment
Da Jung Jung1, Jae Hee Byeon1, Young Chul Kim2
1Biomedical Engineering Research Center, Asan Institute for Life Sciences, Seoul, South Korea.
Abstract:
Angiosarcoma is a rare subtype of malignant neoplasm originating from vascular or lymphatic endothelial cells; its low incidence has posed significant challenges for comprehensive investigations into its pathogenic mechanisms and the development of innovative treatment modalities through in vitro and in vivo models. Recent endeavors spearheaded by patient-partnered research initiatives have aimed to elucidate the intricacies of angiosarcomas by leveraging biological omics approaches, with the overarching objective of enhancing prognostic indicators and therapeutic options for this uncommon pathology. To bridge the gap between preclinical research and translational applications, we engineered angiosarcoma-derived organoids from surgically resected primary tumors, hereafter referred to as "sarconoids," as a proof-of-concept model. A novel protocol for the establishment of these sarconoids has been developed and validated. To ensure that the sarconoids faithfully recapitulate the heterogeneity and complexities of the patients' original tumors, including transcriptomic signatures, cell-type specificity, and morphological traits, exhaustive histological and transcriptomic analyses were conducted. Subsequently, we expanded the scope of our study to include an evaluation of a sarconoid-based drug screening platform; for this purpose, a drug library (AOD IX), supplied by the National Cancer Institute's Developmental Therapeutics Program, was screened using 96-well plates. Our findings suggest that sarconoids can be reliably generated from angiosarcoma patient-derived tissues and can serve as accurate models for evaluating therapeutic responses, thereby holding far-reaching implications for translational research and clinical applications aimed at advancing our understanding and treatment of angiosarcoma.
Insights
Researchers developed novel angiosarcoma organoids, called "sarconoids," from patient tumors. These models accurately reflect tumor complexity and show promise for drug screening, advancing angiosarcoma treatment research.
Area of Science:
- Oncology
- Cancer Research
- Translational Medicine
Background:
- Angiosarcoma, a rare cancer of endothelial cells, presents challenges for research due to its low incidence.
- Developing effective in vitro and in vivo models is crucial for understanding angiosarcoma pathogenesis and treatment.
- Patient-partnered research and omics approaches are key to improving prognostic indicators and therapies.
Discussion:
- Engineered angiosarcoma-derived organoids ("sarconoids") from patient tumors serve as a proof-of-concept model.
- A novel protocol for establishing sarconoids has been developed and validated.
- Histological and transcriptomic analyses confirm sarconoids recapitulate original tumor heterogeneity, including transcriptomic signatures, cell-type specificity, and morphology.
Key Insights:
- Sarconoids accurately model patient angiosarcoma heterogeneity and complexity.
- A drug screening platform using sarconoids was successfully evaluated with the National Cancer Institute's AOD IX drug library.
- Sarconoids demonstrate reliability in predicting therapeutic responses.
Outlook:
- Sarconoids offer a viable preclinical model for evaluating drug efficacy in angiosarcoma.
- This platform has significant implications for advancing translational research and clinical applications.
- Further development of sarconoid models can accelerate the discovery of novel therapeutic strategies for angiosarcoma.

