International Scientific Advisory Board

The International Scientific Advisory Board plays a vital role in shaping the scientific vision and strategic direction of MACSYS. By offering expert guidance and global insights, the Board helps ensure our research remains at the forefront of international standards and innovation. Its contributions include advising executive leadership on long-term research strategies, benchmarking MACSYS against global peers, and identifying opportunities for impactful outcomes—such as new intellectual property, commercialisation pathways, and other forms of research translation. This Board is an invaluable source of strategic advice, helping MACSYS realise its research goals and maximise its global impact.

Hugh Possingham

Chair, International Scientific Advisory Board

Emeritus Professor Hugh Possingham FAA FNAS FRS is a Vice-Chancellor’s Senior Research Fellow at the University of Queensland’s Centre for Biodiversity and Conservation Science and is actively involved in conservation policy and advocacy.

He was previously a Professor of Mathematics, Zoology and held ARC Professorial, Laureate and Federation Fellowships in the Department of Mathematics and the School of the Environment. His has championed the application of operations research to conservation biology globally, including co-developing the spatial planning tool Marxan. Possingham was the Queensland Chief Scientist from 2020 to 2022, where he provided high-level strategic research and innovation advice to the Queensland Government and acted as an ambassador for science in Queensland. He is a foreign associate of the USA National Academy of Sciences and a Fellow of the Royal Society. Hugh likes counting birds.

Brenda Andrews

Professor Brenda Andrews is University Professor and Canada Research Chair in Systems Genetics and Cell Biology in the Donnelly Centre for Cellular and Biomolecular Research and the Department of Molecular Genetics at the University of Toronto.

Her lab has been at the forefront of research aimed at understanding cellular signalling processes and genetic networks in yeast using functional genomics, high content screening and gene expression tools. Her lab created the first complete genetic interaction map for a model eukaryotic cell.

Current work is linking genotype to phenotype by combining genetics and high content screening to assess changes in protein localization and abundance under a variety of genetic, environmental and chemical stresses using rapid image acquisition and analysis. Professor Andrews is a Companion of the Order of Canada, a Fellow of the Royal Society of Canada, a Fellow of the American Academy of Microbiology, and an International Member of the US National Academy of Sciences.

Thomas Lecuit

Professor Thomas Lecuit is the Dynamics of Life Chair at the Collège de France and leads a research team at the Institut de Biologie du Développement de Marseille.

He is the Director of the Marseille-based Turing Center for Living Systems. His lab addresses how information contained in living matter presides over its organization and propagation at different scales to ensures the development of an organism and its evolution. Professor Lecuit is noted for having embraced the physics and maths intersections with Biology very early on, to address the physical processes at the heart of the dynamics of cellular behaviours such as cell growth and division. Current interests now include the question of how shape, size and movement of cells are controlled at different scales of living organization in multicellular organisms. Professor Lecuit is a Fellow of the French Academy of Sciences and an elected member of the European Molecular Biology Organization.

Pamela Silver

Professor Pamela Silver is one of the founding members of the Department of Systems Biology at Harvard Medical School and is the Elliot T and Onie H Adams Professor of Biochemistry and Systems Biology.

Her lab is building synthetic cells that act as sensors, memory devices, bio-computers, producers of high value commodities and energy from the sun, and novel subsystems such as proteins with designed properties for therapeutic use. Among her most recent innovations are bacteria that can sense and respond to gut inflammation and the Bionic Leaf, which couples sunlight capture to bioproduction at an efficiency exceeding plants. Understanding how to program cells in a rational way will have value in stem cell design, drug therapy and the environment. Professor Silver is a member of the US National Academy of Sciences and was the first Director of the Harvard University Graduate Program.

Olga Troyanskaya

Professor Olga Troyanskaya is the Maduraperuma/Khot Professor of Computer Science and Genomics at Princeton University, where she is also the founding Director of Princeton Precision Health, an interdisciplinary initiative harnessing AI to transform our understanding of human health and disease.

She is also Deputy Director for Genomics at the Flatiron Institute of the Simons Foundation and has been recognized as one of MIT Technology Review’s top young innovators. Professor Troyanskaya’s research develops AI and data-driven methods to decode the human genome, uncover disease mechanisms, and enable precision medicine — with a particular focus on integrative modeling of genomic, multi-omic and clinical data. Her work spans applications from autism and cancer to kidney disease. Her honors include the Sloan Research Fellowship, NSF CAREER Award, Overton Prize from the International Society for Computational Biology, and the Ira Herskowitz Award from the Genetics Society of America.

David Wishart

Professor David Wishart is a Distinguished University Professor at the University of Alberta, holding appointments in both the Departments of Biological Sciences and Computing Science.

His research interests are broad and include metabolomics, analytical chemistry, food chemistry, natural product chemistry, molecular biology, protein chemistry and neuroscience. Professor Wishart has developed several widely used techniques using NMR spectroscopy, mass spectrometry, liquid chromatography and gas chromatography to characterize the structures of both large and small molecules, and the use of AI/ML to identify unknown metabolites and metabolic pathways. Professor Wishart is a Fellow of the Royal Society of Canada, was born and raised in Edmonton and identifies as Metis. He formerly served as Chair for Metabolomics Australia ISAB.

ARC Centre of Excellence for the Mathematical Analysis of Cellular Systems (MACSYS)

  • The University of Melbourne Victoria 3010 Australia
  • +61 3 8344 9188

© ARC Centre of Excellence for the Mathematical Analysis of Cellular Systems


The ARC Centre of Excellence for the Mathematical Analysis of Cellular Systems (MACSYS) acknowledges First Nations peoples as the first scientists, makers and innovators of this land and their continuing connection to Country. We pay our respects to all Aboriginal and Torres Strait Islander Peoples culture and to Elders past and present.

We pride ourselves in our commitment to foster and promote a diverse, safe and respectful environment free from discrimination, harassment, or victimisation based on individual identity and experience.

Privacy Preference Center