Dies ist eine Übersichtsseite mit Metadaten zu dieser wissenschaftlichen Arbeit. Der vollständige Artikel ist beim Verlag verfügbar.
Natural <scp>D</scp>‐glucose as a biodegradable MRI contrast agent for detecting cancer
333
Zitationen
8
Autoren
2012
Jahr
Abstract
PURPOSE: Modern imaging technologies such as CT, PET, SPECT, and MRI employ contrast agents to visualize the tumor microenvironment, providing information on malignancy and response to treatment. Currently, all clinical imaging agents require chemical labeling, i.e. with iodine (CT), radioisotopes (PET/SPECT), or paramagnetic metals (MRI). The goal was to explore the possibility of using simple D-glucose as an infusable biodegradable MRI agent for cancer detection. METHODS: D-glucose signals were detected using chemical exchange saturation transfer (glucoCEST) MRI of its hydroxyl groups. Feasibility was established in phantoms as well as in vivo using two human breast cancer cell lines, MDA-MB-231 and MCF-7, implanted orthotopically in nude mice. PET and contrast-enhanced MRI were also acquired. RESULTS: Both tumor types exhibited significant glucoCEST signal enhancement during systemic sugar infusion (mild hyperglycemia), allowing their noninvasive visualization. GlucoCEST showed differences between types, while PET and CE-MRI did not. Data are discussed in terms of signal contributions from the increased vascular volume in tumors and especially from the acidic extracellular extravascular space (EES), where glucoCEST signal is expected to be enhanced due to a slow down of hydroxyl proton exchange. CONCLUSIONS: This observation opens up the possibility for using simple non-toxic sugars as contrast agents for cancer detection with MRI by employing hydroxyl protons as a natural label.
Ähnliche Arbeiten
A Theory of Sensitized Luminescence in Solids
1953 · 8.839 Zit.
A Film Detection Method for Tritium‐Labelled Proteins and Nucleic Acids in Polyacrylamide Gels
1974 · 8.651 Zit.
Introduction to Metal–Organic Frameworks
2012 · 7.506 Zit.
Intensities of Crystal Spectra of Rare-Earth Ions
1962 · 7.383 Zit.
Brain magnetic resonance imaging with contrast dependent on blood oxygenation.
1990 · 6.480 Zit.