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A precision immuno-oncology turn? Hybridizing cancer genomics and immunotherapy through neoantigens-based adoptive
Luca Chiapperino1, Nils Graber1, Francesco Panese1
1University of Lausanne, Lausanne, Switzerland.
Abstract:
This article explores the development of T cell-based therapies in Switzerland. These therapies, which elicit the immunological potential of each patient to respond to tumor development, constitute a major promise for so-called 'precision oncology'. We document how immunological concepts, technologies, and practices are articulated given the centrality of genomics in 'precision oncology'. We consider 'precision immunotherapies' to probe whether and how change ensues in these established sociotechnical regimes of biomedicine. The case of genomics and immunology in oncology offers a unique insight into the conditions of possibility for change in such regimes. How does the present new wave of cancer immunotherapies challenge, integrate, and complement the centrality of genomics in 'precision oncology'? What are the specific processes that make possible the convergence, competition, or co-existence of distinct conceptions, infrastructures, and programs of innovative cancer medicine? Drawing from observations and interviews with researchers and clinicians, we qualify these sociotechnical processes as hybridizations. Bringing together different sociotechnical regimes of biomedical research is conditional to the articulation of core concepts, technologies, and translational practices of genomics and immunology. Pivotal to this objective are neoantigens, cell surface proteins originating from the somatic genetic mutations of tumors and which activate a patient's immune response. While neoantigens are an unstable entity in experimentation, they offer a conceptual and material substrate to renegotiate the dominance of cancer genomics, and initiate the production of a new, hybrid regime of 'immunogenomic precision' in oncology.
Insights
T cell-based therapies are advancing precision oncology by integrating immunology and genomics. This hybridization, centered on neoantigens, creates a new
Area of Science:
- Biomedical Research
- Oncology
- Immunology
Background:
- Precision oncology currently emphasizes genomics.
- T cell-based therapies offer a promising new avenue for cancer treatment.
- The integration of immunology into precision oncology is an evolving field.
Purpose of the Study:
- To explore the development of T cell-based therapies in Switzerland.
- To investigate the interplay between genomics and immunology in precision oncology.
- To analyze the sociotechnical processes driving innovation in cancer medicine.
Main Methods:
- Qualitative study involving observations and interviews with researchers and clinicians.
- Analysis of the articulation of immunological concepts, technologies, and practices within the context of genomics.
- Examination of the role of neoantigens in bridging genomics and immunology.
Main Results:
- The convergence of genomics and immunology in oncology is characterized by sociotechnical processes termed 'hybridizations'.
- Neoantigens serve as a crucial link, enabling the renegotiation of cancer genomics' dominance.
- A new hybrid regime of 'immunogenomic precision' is emerging in oncology.
Conclusions:
- Hybridization of biomedical research regimes is essential for advancing cancer therapies.
- Neoantigens are pivotal in creating a new framework for precision oncology.
- The integration of T cell-based therapies with genomics promises a more personalized approach to cancer treatment.
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