FiloQuant reveals increased filopodia density during breast cancer progression

Author:

Jacquemet Guillaume1ORCID,Paatero Ilkka1,Carisey Alexandre F.23ORCID,Padzik Artur1,Orange Jordan S.23ORCID,Hamidi Hellyeh1,Ivaska Johanna14ORCID

Affiliation:

1. Turku Centre for Biotechnology, University of Turku and Åbo Akademi University, Turku, Finland

2. Center for Human Immunobiology, Texas Children’s Hospital, Houston, TX

3. Department of Pediatrics, Pathology and Immunology, Baylor College of Medicine, Houston, TX

4. Department of Biochemistry, University of Turku, Turku, Finland

Abstract

Defective filopodia formation is linked to pathologies such as cancer, wherein actively protruding filopodia, at the invasive front, accompany cancer cell dissemination. Despite wide biological significance, delineating filopodia function in complex systems remains challenging and is particularly hindered by lack of compatible methods to quantify filopodia properties. Here, we present FiloQuant, a freely available ImageJ plugin, to detect filopodia-like protrusions in both fixed- and live-cell microscopy data. We demonstrate that FiloQuant can extract quantifiable information, including protrusion dynamics, density, and length, from multiple cell types and in a range of microenvironments. In cellular models of breast ductal carcinoma in situ, we reveal a link between filopodia formation at the cell–matrix interface, in collectively invading cells and 3D tumor spheroids, and the in vitro invasive capacity of the carcinoma. Finally, using intravital microscopy, we observe that tumor spheroids display filopodia in vivo, supporting a potential role for these protrusions during tumorigenesis.

Funder

Academy of Finland

European Research Council

Sigrid Juselius Foundation

Finnish Cancer Organization

National Institutes of Health

European Molecular Biology Organization

Publisher

Rockefeller University Press

Subject

Cell Biology

Reference43 articles.

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