Anesthesia triggers drug delivery to experimental glioma in mice by hijacking caveolar transport

2021 | journal article. A publication with affiliation to the University of Göttingen.

Jump to: Cite & Linked | Documents & Media | Details | Version history

Cite this publication

​Anesthesia triggers drug delivery to experimental glioma in mice by hijacking caveolar transport​
Spieth, L.; Berghoff, S. A; Stumpf, S. K; Winchenbach, J.; Michaelis, T.; Watanabe, T. & Gerndt, N. et al.​ (2021) 
Neuro-Oncology Advances3(1) art. vdab140​.​ DOI: https://doi.org/10.1093/noajnl/vdab140 

Documents & Media

License

GRO License GRO License

Details

Authors
Spieth, Lena; Berghoff, Stefan A; Stumpf, Sina K; Winchenbach, Jan; Michaelis, Thomas; Watanabe, Takashi; Gerndt, Nina; Düking, Tim; Hofer, Sabine; Ruhwedel, Torben; Saher, Gesine
Abstract
Abstract Background Pharmaceutical intervention in the CNS is hampered by the shielding function of the blood–brain barrier (BBB). To induce clinical anesthesia, general anesthetics such as isoflurane readily penetrate the BBB. Here, we investigated whether isoflurane can be utilized for therapeutic drug delivery. Methods Barrier function in primary endothelial cells was evaluated by transepithelial/transendothelial electrical resistance, and nanoscale STED and SRRF microscopy. In mice, BBB permeability was quantified by extravasation of several fluorescent tracers. Mouse models including the GL261 glioma model were evaluated by MRI, immunohistochemistry, electron microscopy, western blot, and expression analysis. Results Isoflurane enhances BBB permeability in a time- and concentration-dependent manner. We demonstrate that, mechanistically, isoflurane disturbs the organization of membrane lipid nanodomains and triggers caveolar transport in brain endothelial cells. BBB tightness re-establishes directly after termination of anesthesia, providing a defined window for drug delivery. In a therapeutic glioblastoma trial in mice, simultaneous exposure to isoflurane and cytotoxic agent improves efficacy of chemotherapy. Conclusions Combination therapy, involving isoflurane-mediated BBB permeation with drug administration has far-reaching therapeutic implications for CNS malignancies.
Issue Date
2021
Journal
Neuro-Oncology Advances 
eISSN
2632-2498
Language
English

Reference

Citations


Social Media