Exploiting differences in sialoside expression for selective targeting of MRI contrast reagents
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- Type
- article
- Published
- 1999-04-16
- Cited by
- 114
- References
- 0
- OpenAlex
- https://openalex.org/W1966954785
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93269750
Keywords
Chemistry, Contrast (vision), Reagent, Cell biology, Biochemistry
References
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Cited by
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- Constructing azide-labeled cell surfaces using polysaccharide biosynthetic pathways.
- Metabolic labeling of glycoproteins with chemical tags through unnatural sialic acid biosynthesis.
- Assessment of tumor metastasis by the direct determination of cell-membrane sialic acid expression.
- Evaluation of ketone-oxime method for developing therapeutic on-demand cleavable immunoconjugates.
- Surface modification of mammalian cells with stimuli-responsive polymers.
- Surface molecular recognition
- Boronate derivatives of bioactive amines: potential neutral receptors for anionic oligosaccharides
- Targeted Complexes of Lanthanide(III) Ions as Therapeutic and Diagnostic Pharmaceuticals
- Cell surface engineering by a modified Staudinger reaction.
- Metabolic Glycoengineering Sensitizes Drug-Resistant Pancreatic Cancer Cells to Tyrosine Kinase Inhibitors Erlotinib and Gefitinib
- Insights into the use of paramagnetic Gd(III) complexes in MR‐molecular imaging investigations
- Progress in modifications and applications of fluorescent dye probe
- Enzyme-Activated Gd3+ Magnetic Resonance Imaging Contrast Agents with a Prominent Receptor-Induced Magnetization Enhancement.
- Amplification strategies in MR imaging: Activation and accumulation of sensing contrast agents (SCAs)
- Molecular recognition of sialic acid end groups by phenylboronates.
- Xenon-MRT an lebenden Zellen mit Hyper-CEST-Biosensoren für metabolisch markierte Glykane an der Zelloberfläche†
- An inhibitor of the human UDP-GlcNAc 4-epimerase identified from a uridine-based library: a strategy to inhibit O-linked glycosylation.
- Glycoconjugate probes and targets for molecular imaging using magnetic resonance.
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