Christophe-Sébastien Arnold
Immunology and Microbiology · University of Michigan
Publications
18
Citations
243
Est. group size
—
Recurring co-author estimate
Active years
7
Publishing since 2020
Typically publishes in teams of ~11 · 13% small-team papers (≤3 authors) · across 11 venues
- TgSEC14-LTP1 is a vacuole-secreted SEC14/CRAL-TRIO-like protein required for host DAG flux and PC homeostasis in T. gondii
Cell Reports · 2026
- A P5-ATPase, TgFLP12, diverging from plant chloroplast lipid transporters mediates apicoplast fatty export in Toxoplasma
Nature Communications · 2025
- TgSEC14-LTP1 is a Vacuole-Secreted SEC14-Domain Lipid Transfer Protein Essential for Host Phosphatidylcholine Trafficking and Lipid Homeostasis in Toxoplasma Gondii
SSRN Electronic Journal · 2025
- EMBO Workshop Host–Parasite Relationship 2025: cutting-edge science from the shores of Les Embiez
Trends in Parasitology · 2025
- Toxoplasma acyl-CoA synthetase TgACS3 is crucial to channel host fatty acids in lipid droplets and for parasite propagation
Journal of Lipid Research · 2024
- The acyl-CoA synthetase <i>Tg</i> ACS1 allows neutral lipid metabolism and extracellular motility in <i>Toxoplasma gondii</i> through relocation via its peroxisomal targeting sequence (PTS) under low nutrient conditions
mBio · 2024
- A Plasmodium falciparum lysophospholipase regulates host fatty acid flux via parasite lipid storage to enable controlled asexual schizogony
Cell Reports · 2023
- Membrane biogenesis in Apicomplexa parasites : How trafficking and recycling lipid sources for dynamic membrane remodeling sustain parasite survival within its human host
2023
- Membrane biogenesis in Apicomplexa parasites : How trafficking and recycling lipid sources for dynamic membrane remodeling sustain parasite survival within its human host
2023
- The flexibility of Apicomplexa parasites in lipid metabolism
PLoS Pathogens · 2022
- Toxoplasma LIPIN is essential in channeling host lipid fluxes through membrane biogenesis and lipid storage
Nature Communications · 2021
- Artemisinin-independent inhibitory activity of <i>Artemisia</i> sp. infusions against different <i>Plasmodium</i> stages including relapse-causing hypnozoites
Life Science Alliance · 2021
- Antiplasmodial 2-thiophenoxy-3-trichloromethyl quinoxalines target the apicoplast of Plasmodium falciparum
European Journal of Medicinal Chemistry · 2021
- 2-Phenoxy-3-Trichloromethylquinoxalines Are Antiplasmodial Derivatives with Activity against the Apicoplast of Plasmodium falciparum
Pharmaceuticals · 2021
- Artemisinin-independent inhibitory activity of <i>Artemisia</i> sp. infusions against different <i>Plasmodium</i> stages including relapse-causing hypnozoites
bioRxiv (Cold Spring Harbor Laboratory) · 2021
- Cell Reports×3
- bioRxiv (Cold Spring Harbor Laboratory)×3
- Nature Communications×2
- PLoS Pathogens×1
- Life Science Alliance×1
- Tracey L. Schultz
Immunology and Microbiology · University of Michigan
- Pariyamon Thaprawat
Immunology and Microbiology · University of Michigan
- Geetha Kannan
Immunology and Microbiology · University of Michigan
- Alfredo J. Guerra
Immunology and Microbiology · University of Michigan
- Vern B. Carruthers
Immunology and Microbiology · University of Michigan
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 25, 2026.
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