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FUNDACIÓN PARA LA INVESTIGACIÓN MÉDICA APLICADA invites applications for a PhD student position in the Translational Immunomics in Hematological Neoplasms Group at CIMA Universidad de Navarra, Pamplona, Spain. The project focuses on flow cytometry-based translational research and MRD/CTC analysis to improve diagnosis and treatment monitoring.
The successful candidate will join an international team, contribute to genomics and immunomics studies, and pursue a PhD with strong translational impact
Organisation/Company FUNDACIÓN PARA LA INVESTIGACIÓN MÉDICA APLICADA Department Administration Research Field Other Researcher Profile First Stage Researcher (R1) Positions Master Positions Application Deadline 15 Nov 2026 - 00:00 (Europe/Madrid) Country Spain Type of Contract Temporary Job Status Full-time Is the job funded through the EU Research Framework Programme? Other EU programme Is the Job related to staff position within a Research Infrastructure? No
The Translational Immunomics in Hematological Neoplasms Group, led by Dr. Bruno Paiva at CIMA Universidad de Navarra (Pamplona, Spain), is looking for a highly motivated PhD student to join our team.
The translational model that governs our group is based on the hybrid nature of our flow cytometry laboratory, with its dual focus on diagnosis and research. First, we conduct research to improve the methods we use for the differential diagnosis, staging, and monitoring of patients with hematological malignancies. Second, our goal is to understand the biology of the tumor cells that we routinely detect in diagnostic settings (e.g., circulating tumor cells [CTCs], measurable residual disease [MRD], and immune monitoring).
Our laboratory is recognized for its leadership in translational research across the spectrum of monoclonal gammopathies. Our most notable scientific contributions are, as expected, in the clinical application of flow cytometry. Although multiple myeloma is the tumor we have studied most extensively (>150 publications in leading hematology journals over the past 10 years), we have also defined the clinical utility of flow cytometry in other malignancies, such as primary systemic amyloidosis (Paiva, Blood 2011; Paiva, Blood 2016; Puig, Leukemia 2019) and Waldenström macroglobulinemia (Paiva, Leukemia 2014; Paiva, Blood 2015).
In terms of innovative research in immunogenomics, within the field of multiple myeloma, we have contributed to advancing the field of clonal hematopoiesis (Maia, Blood 2020) and lymphopoiesis (Rodriguez, ASH 2020), monitoring of circulating tumor cells (CTCs) (Garces, J Clin Oncol 2022; Termini, Clin Cancer Res 2022), and the biology of clonal dissemination (Paiva, Blood 2013; Mishima, Cell Rep 2017; Garces, Leukemia 2020 [2]); measurable residual disease (MRD) monitoring (>15 publications in, for example, J Clin Oncol and Blood); and the biology of resistant clones (Paiva, Blood 2016; Goicoechea, Blood 2021), immune profiling (Paiva, Blood 2016 [2]; Botta, Blood Adv 2022; Termini, Clin Cancer Res 2022), and preclinical research in immunotherapy (Seckinger, Cancer Cell 2017; Moreno, Clin Cancer Res 2019).
In Waldenström macroglobulinemia, we were the first to identify its normal cellular counterpart (Paiva, Blood 2015) and to describe the presence of mutated MYD88 in normal lymphopoiesis in these patients (Rodríguez, Science Advances 2022). In light-chain amyloidosis, we pioneered the use of single-cell studies to identify unique transcriptional programs in this disease (Alameda, Blood 2021).
Much more important than our scientific output is its clinical impact. For example, our contributions to the study of solitary plasmacytoma (Paiva, Blood 2014) and MRD contributed, in part, to the subsequent development of new diagnostic criteria (Rajkumar, Lancet Oncol 2014) and response criteria (Kumar, Lancet Oncol 2016).
The successful candidate will work at the intersection of translational research applied to patients. Depending on the candidate's interests and background, the PhD project may involve:
The candidate will join a highly collaborative and international research environment. The project combines advanced genomics and flow cytometry technologies with a clear translational objective, offering the opportunity to contribute to a field with potential clinical impact.
We are particularly interested in candidates who are curious, creative, scientifically rigorous and motivated to develop their own ideas
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