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LDL-mimetic lipid nanoparticles prepared by surface KAT ligation for in vivo MRI of atherosclerosis.
Fracassi, Alessandro; Cao, Jianbo; Yoshizawa-Sugata, Naoko; Tóth, Éva; Archer, Corey; Gröninger, Olivier; Ricciotti, Emanuela; Tang, Soon Yew; Handschin, Stephan; Bourgeois, Jean-Pascal; Ray, Ankita; Liosi, Korinne; Oriana, Sean; Stark, Wendelin; Masai, Hisao; Zhou, Rong; Yamakoshi, Yoko.
Afiliação
  • Fracassi A; Laboratorium für Organische Chemie, ETH Zürich Vladimir-Prelog-Weg 3 CH-8093 Zürich Switzerland yamakoshi@org.chem.ethz.ch.
  • Cao J; Department of Radiology, Institute for Translational Medicine and Therapeutics, University of Pennsylvania John Morgan 198, 3620 Hamilton Walk Philadelphia PA19104 USA rongzhou@pennmedicine.upenn.edu.
  • Yoshizawa-Sugata N; Department of Genome Medicine, Tokyo Metropolitan Institute of Medical Science 2-1-6 Kamikitazawa, Setagaya Tokyo 156-8506 Japan.
  • Tóth É; Centre de Biophysique Moléculaire, CNRS UPR 4301, Université dOrléans Rue Charles Sadron, 45071 Orléans Cedex 2 France.
  • Archer C; Institut für Geochemie und Petrologie, ETH Zürich Clausiusstrasse 25 CH-8092 Zürich Switzerland.
  • Gröninger O; Institute for Chemical and Bioengineering, ETH Zurich Vladimir-Prelog-Weg 1 CH-8093 Zurich Switzerland.
  • Ricciotti E; Department of Systems Pharmacology and Translational Therapeutics, University of Pennsylvania 3400 Civic Center Boulevard Philadelphia PA19104 USA.
  • Tang SY; Department of Systems Pharmacology and Translational Therapeutics, University of Pennsylvania 3400 Civic Center Boulevard Philadelphia PA19104 USA.
  • Handschin S; Scientific Center for Optical and Electron Microscopy, ETH Zürich Auguste-Piccard-Hof 1 Zürich CH-8093 Switzerland.
  • Bourgeois JP; University of Applied Science and Arts Western Switzerland Bd de Pérolles 80 CH-1700 Fribourg Switzerland.
  • Ray A; Laboratorium für Organische Chemie, ETH Zürich Vladimir-Prelog-Weg 3 CH-8093 Zürich Switzerland yamakoshi@org.chem.ethz.ch.
  • Liosi K; Laboratorium für Organische Chemie, ETH Zürich Vladimir-Prelog-Weg 3 CH-8093 Zürich Switzerland yamakoshi@org.chem.ethz.ch.
  • Oriana S; Laboratorium für Organische Chemie, ETH Zürich Vladimir-Prelog-Weg 3 CH-8093 Zürich Switzerland yamakoshi@org.chem.ethz.ch.
  • Stark W; Institute for Chemical and Bioengineering, ETH Zurich Vladimir-Prelog-Weg 1 CH-8093 Zurich Switzerland.
  • Masai H; Department of Genome Medicine, Tokyo Metropolitan Institute of Medical Science 2-1-6 Kamikitazawa, Setagaya Tokyo 156-8506 Japan.
  • Zhou R; Department of Radiology, Institute for Translational Medicine and Therapeutics, University of Pennsylvania John Morgan 198, 3620 Hamilton Walk Philadelphia PA19104 USA rongzhou@pennmedicine.upenn.edu.
  • Yamakoshi Y; Laboratorium für Organische Chemie, ETH Zürich Vladimir-Prelog-Weg 3 CH-8093 Zürich Switzerland yamakoshi@org.chem.ethz.ch.
Chem Sci ; 11(44): 11998-12008, 2020 Oct 07.
Article em En | MEDLINE | ID: mdl-34094421
ABSTRACT
Low-density lipoprotein (LDL)-mimetic lipid nanoparticles (LNPs), decorated with MRI contrast agents and fluorescent dyes, were prepared by the covalent attachment of apolipoprotein-mimetic peptide (P), Gd(iii)-chelate (Gd), and sulforhodamine B (R) moieties on the LNP surface. The functionalized LNPs were prepared using the amide-forming potassium acyltrifluoroborate (KAT) ligation reaction. The KAT groups on the surface of LNPs were allowed to react with the corresponding hydroxylamine (HA) derivatives of P and Gd to provide bi-functionalized LNPs (PGd-LNP). The reaction proceeded with excellent yields, as observed by ICP-MS (for B and Gd amounts) and MALDI-TOF-MS data, and did not alter the morphology of the LNPs (mean diameter ca. 50 nm), as shown by DLS and cryoTEM analyses. With the help of the efficient KAT ligation, a high payload of Gd(iii)-chelate on the PGd-LNP surface (ca. 2800 Gd atoms per LNP) was successfully achieved and provided a high r 1 relaxivity (r 1 = 22.0 s-1 mM-1 at 1.4 T/60 MHz and 25 °C; r 1 = 8.2 s-1 mM-1 at 9.4 T/400 MHz and 37 °C). This bi-functionalized PGd-LNP was administered to three atherosclerotic apoE -/- mice to reveal the clear enhancement of atherosclerotic plaques in the brachiocephalic artery (BA) by MRI, in good agreement with the high accumulation of Gd in the aortic arch as shown by ICP-MS. The parallel in vivo MRI and ex vivo studies of whole mouse cryo-imaging were performed using triply functionalized LNPs with P, Gd, and R (PGdR-LNP). The clear presence of atherosclerotic plaques in BA was observed by ex vivo bright field cryo-imaging, and they were also observed by high emission fluorescent imaging. These directly corresponded to the enhanced tissue in the in vivo MRI of the identical mouse.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Chem Sci Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Chem Sci Ano de publicação: 2020 Tipo de documento: Article