Nanocarrier imaging at single-cell resolution across entire mouse bodies with deep learning

Efficient and accurate nanocarrier development for targeted drug delivery is hindered by a lack of methods to analyze its cell-level biodistribution across whole organisms. Here we present Single Cell Precision Nanocarrier Identification (SCP-Nano), an integrated experimental and deep learning pipel...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Nature biotechnology 2025-01
Hauptverfasser: Luo, Jie, Molbay, Muge, Chen, Ying, Horvath, Izabela, Kadletz, Karoline, Kick, Benjamin, Zhao, Shan, Al-Maskari, Rami, Singh, Inderjeet, Ali, Mayar, Bhatia, Harsharan Singh, Minde, David-Paul, Negwer, Moritz, Hoeher, Luciano, Calandra, Gian Marco, Groschup, Bernhard, Su, Jinpeng, Kimna, Ceren, Rong, Zhouyi, Galensowske, Nikolas, Todorov, Mihail Ivilinov, Jeridi, Denise, Ohn, Tzu-Lun, Roth, Stefan, Simats, Alba, Singh, Vikramjeet, Khalin, Igor, Pan, Chenchen, Arús, Bernardo A, Bruns, Oliver T, Zeidler, Reinhard, Liesz, Arthur, Protzer, Ulrike, Plesnila, Nikolaus, Ussar, Siegfried, Hellal, Farida, Paetzold, Johannes, Elsner, Markus, Dietz, Hendrik, Erturk, Ali
Format: Artikel
Sprache:eng
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:Efficient and accurate nanocarrier development for targeted drug delivery is hindered by a lack of methods to analyze its cell-level biodistribution across whole organisms. Here we present Single Cell Precision Nanocarrier Identification (SCP-Nano), an integrated experimental and deep learning pipeline to comprehensively quantify the targeting of nanocarriers throughout the whole mouse body at single-cell resolution. SCP-Nano reveals the tissue distribution patterns of lipid nanoparticles (LNPs) after different injection routes at doses as low as 0.0005 mg kg -far below the detection limits of conventional whole body imaging techniques. We demonstrate that intramuscularly injected LNPs carrying SARS-CoV-2 spike mRNA reach heart tissue, leading to proteome changes, suggesting immune activation and blood vessel damage. SCP-Nano generalizes to various types of nanocarriers, including liposomes, polyplexes, DNA origami and adeno-associated viruses (AAVs), revealing that an AAV2 variant transduces adipocytes throughout the body. SCP-Nano enables comprehensive three-dimensional mapping of nanocarrier distribution throughout mouse bodies with high sensitivity and should accelerate the development of precise and safe nanocarrier-based therapeutics.
ISSN:1087-0156
1546-1696
1546-1696
DOI:10.1038/s41587-024-02528-1