Christoph Westerhausen

University Name
Country flag
Germany

Research Interests

Explore related searches

Contact this professor

LinkedIn
ORCID
Google Scholar

Articles (17)

Transport Across Cell Membranes is Modulated by Lipid Order

This study measures the uptake of various dyes into HeLa cells and determines simultaneously the degree of membrane lipid chain order on a single cell level by spectral analysis of the membrane‐embedded dye Laurdan. First, this study finds that the mean generalized polarization (GP) value of single cells varies within a population in a range that is equivalent to a temperature variation of 9 K. This study exploits this natural variety of membrane order to examine the uptake as a function of GP at constant temperature. It is shown that transport across the cell membrane correlates with the membrane phase state. Specifically, higher membrane transport with increasing lipid chain order is observed. As a result, hypothermal‐adapted cells with reduced lipid membrane order show less transport. Environmental factors influence transport as well. While increasing temperature reduces lipid order, it is found that locally high cell densities increase lipid order and in turn lead to increased dye uptake. To demonstrate the physiological relevance, membrane state and transport during an in vitro wound healing process are analyzed. While the uptake within a confluent cell layer is high, it decreases toward the center where the membrane lipid chain order is lowest.

Year:

2023

Collaborators (6)

Nicolas Färber

University of Augsburg

GERMANY

Eva-Maria Hanschmann

Heinrich Heine University Düsseldorf

GERMANY

Janina Bahnemann

Full Professor of Life Sciences

University of Augsburg

GERMANY

Hubert Krenner

Professor

Westfälische Wilhelms-Universität Münster

GERMANY

Hanna Engelke

Graz University of Technology

AUSTRIA

Johannes Eble

University of Muenster

GERMANY
Social connections

How do I reach out?

Sign in for free to see their profile details and contact information.

Meet Kite AI