Anupam Sengupta
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Recent Grants
Grant: Close
Microbial BIogenic Tunable Structures (μ-BITS)
Open Date: 2023-01-01
Close Date: 2024-12-01
Grant: Close
Cancer Microbiome: Emergent Organisation and Stability across scales (CAMEOS)
Open Date: 2021-07-01
Close Date: 2024-06-01
Grant: Close
Active phenomena across scales in biological systems (ACTIVE)
Open Date: 2021-03-01
Close Date: 2025-02-01
Grant: Close
Virus-surface Interactions In Dynamic Environments (VSIDE)
Open Date: 2020-05-01
Close Date: 2021-04-01
Grant: Close
Topological Fluid Mechanics: Decoding emergent dynamics in anisotropic fluids and living systems
Open Date: 2020-01-09
Close Date: 2023-08-31
Articles (10)
Curvature-mediated programming of liquid crystal microflows
We use experiments and numerical simulations to demonstrate that the curvature of microfluidic devices allows for flow programming in liquid crystals.
Year:
2023
Active reconfiguration of cytoplasmic lipid droplets governs migration of nutrient-limited phytoplankton
Nutrient availability, along with light and temperature, drives marine primary production. The ability to migrate vertically, a critical trait of motile phytoplankton, allows species to optimize nutrient uptake, storage, and growth. However, this traditional view discounts the possibility that migration in nutrient-limited waters may be actively modulated by the emergence of energy-storing organelles. Here, we report that bloom-forming raphidophytes harness energy-storing cytoplasmic lipid droplets (LDs) to biomechanically regulate vertical migration in nutrient-limited settings. LDs grow and translocate directionally within the cytoplasm, steering strain-specific shifts in the speed, trajectory, and stability of swimming cells. Nutrient reincorporation restores their swimming traits, mediated by an active reconfiguration of LD size and coordinates. A mathematical model of cell mechanics establishes the mechanistic coupling between intracellular changes and emergent migratory behavior. Amenable to the associated photophysiology, LD-governed behavioral shift highlights an exquisite microbial strategy toward niche expansion and resource optimization in nutrient-limited oceans.
Year:
2022
Collaborators (11)
Andre Castro
Lecturer
Instituto Politécnico de Leiria
Jonasz Słomka
ETH Zurich
Caterina Tomba
CNRS Délégation Rhône-Auvergne
Sarah Waters
University of Oxford
Paulo Rui Fernandes
Full Professor
Universidade de Lisboa Instituto Superior Técnico
Michaela Eder
Max Planck Institute of Colloids and Interfaces
Łucja Kowalewska
Assistan professor position in the research group dealing with structural and molecular basis of chloroplast function
University of Warsaw
Lars Behrendt
Assistant Professor (Tenure Track)
Uppsala University
Narges Kakavand
-
Rumiana Dimova
Prof.
Max Planck Institute of Colloids and Interfaces
Ioannis Papantoniou
Professor at KU Leuven
KU Leuven

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