Human Technopole is offering up to 2 fully funded PhD scholarships to young scientists from the national and international community who wish to undertake a doctoral degree on projects focused on
Data Science methods for molecular biomedicine and biological imaging,
Computer vision applied to biological data
Statistical physics, machine learning and systems biology for the prediction of antibiotic resistance
Cancer evolution and reconstruction of dynamical systems
Spatial modelling of gene expression in tissues
We encourage applications from highly motivated graduates with outstanding academic qualifications. Successful candidates will join research groups headed by top-level scientists and will carry out their research in cutting-edge fields in a stimulating environment.
An international collaborative study led by Human Technopole, Candiolo Cancer Institute IRCCS in Turin, the University of Turin, and the Wellcome Sanger Institute in Cambridge (UK) has identified new factors associated with therapeutic response in colorectal cancer. The research has led to the development of a machine-learning model capable of accurately predicting the effects of cetuximab, a drug in clinical use, on different colorectal tumour subtypes. Funded by the AIRC Foundation, the study paves the way to identifying molecular features that could serve as biomarkers for predicting treatment response in patients with this type of cancer.
The Human Technopole Director, Marino Zerial, has been awarded the 2024 Mercurio Prize in the “Research and Development” category, in recognition of the excellence of his research in the field of cell biology. Zerial, renowned for his studies on the mechanisms of endocytosis and cellular transport, has made significant contributions to the understanding of cellular dynamics, with potential therapeutic applications for diseases such as liver conditions.
Researchers from Human Technopole, the Institute of Molecular Biotechnology and Bicocca University established a method for developing brain assembloids that allows reproducing salient aspects of the antero-posterior polarity of the human cerebral cortex in vitro and opens new possibilities for disease modelling. The study is published in Nature Methods.
Meet Clelia Peano, Head of the National Facility for Genomics. The Facility offers cutting-edge services to develop robust experimental and analytical workflows to explore different genomic research areas, including DNA and RNA analysis, chromatin structure, and epigenetic mechanisms regulating transcription. The goal is to enhance genomic research in all its aspects, benefiting the entire Italian scientific community.
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