27 results on '"Speelmans, G."'
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2. Na+ as coupling ion in energy transduction in extremophilic Bacteria and Archaea
3. Supporting young adults on the autism spectrum towards independence: Lessons from the Netherlands
4. The interaction of the anti-cancer drug cisplatin with phospholipids is specific for negatively charged phospholipids and takes place low chloride ion concentration
5. The role of negatively charged phospholipids on transport of the drug ethidium bromide by the EmrE system of Escherichia coli
6. The F- or V-type Na+-ATPase of the thermophilc bacterium Clostridium fervidus
7. ENERGY TRANSDUCTION AND AMINO-ACID-TRANSPORT IN THERMOPHILIC AEROBIC AND FERMENTATIVE BACTERIA
8. Transport of the anti-cancer drug doxorubicin across cytoplasmic membranes and membranes composed of phospholipids derived from Escherichia coli occurs via a similar mechanism
9. Verapamil competes with doxorubicin for binding to anionic phospholipids resulting in increased internal concentrations and rates of passive transport of doxorubicin
10. Energy transduction in the thermophilic anaerobic bacterium Clostridium fervidus is exclusively coupled to sodium ions.
11. Competition between verapamil and doxorubicin for binding to anionic phospholipids
12. Na+-coupled versus H+-coupled energy transduction in bacteria
13. Energy transduction in the thermophilic anaerobic bacterium Clostridium fervidus is exclusively coupled to sodium ions.
14. Amino acid transport in the thermophilic anaerobe Clostridium fervidus is driven by an electrochemical sodium gradient
15. Energy transduction and amino acid transport in thermophilic aerobic and fermentative bacteria
16. Energy transduction and amino acid transport in thermophilic aerobic and fermentative bacteria
17. Characterization of amino acid transport in membrane vesicles from the thermophilic fermentative bacterium Clostridium fervidus
18. Na +-coupled versus H +-coupled energy transduction in bacteria
19. Strain-specific effects of probiotics on gut barrier integrity following hemorrhagic shock.
20. Cisplatin complexes with phosphatidylserine in membranes.
21. The anionic phospholipid-mediated membrane interaction of the anti-cancer drug doxorubicin is enhanced by phosphatidylethanolamine compared to other zwitterionic phospholipids.
22. Transport of the anti-cancer drug doxorubicin across cytoplasmic membranes and membranes composed of phospholipids derived from Escherichia coli occurs via a similar mechanism.
23. The interaction of the anti-cancer drug cisplatin with phospholipids is specific for negatively charged phospholipids and takes place at low chloride ion concentration.
24. Verapamil competes with doxorubicin for binding to anionic phospholipids resulting in increased internal concentrations and rates of passive transport of doxorubicin.
25. Transport studies of doxorubicin in model membranes indicate a difference in passive diffusion across and binding at the outer and inner leaflets of the plasma membrane.
26. The F- or V-type Na(+)-ATPase of the thermophilic bacterium Clostridium fervidus.
27. Energy transduction and transport processes in thermophilic bacteria.
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