scholarly article | Q13442814 |
P2093 | author name string | Ivan J Dmochowski | |
Najat S Khan | |||
Yubin Bai | |||
Garry K Seward | |||
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Click Chemistry: Diverse Chemical Function from a Few Good Reactions | Q28204398 | ||
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RGD and other recognition sequences for integrins | Q29616331 | ||
Cell attachment activity of fibronectin can be duplicated by small synthetic fragments of the molecule | Q29616413 | ||
MR imaging and spectroscopy using hyperpolarized 129Xe gas: preliminary human results | Q30470595 | ||
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Development of a functionalized xenon biosensor. | Q33209028 | ||
Design, synthesis, and evaluation of near infrared fluorescent multimeric RGD peptides for targeting tumors | Q33237917 | ||
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Large production system for hyperpolarized 129Xe for human lung imaging studies | Q33335477 | ||
Peptide-mediated cellular uptake of cryptophane | Q33377228 | ||
Xenon-based molecular sensors in lipid suspensions | Q33602630 | ||
Molecular MRI for sensitive and specific detection of lung metastases | Q33734761 | ||
Peptidotriazoles on solid phase: [1,2,3]-triazoles by regiospecific copper(i)-catalyzed 1,3-dipolar cycloadditions of terminal alkynes to azides | Q33958790 | ||
Arg-Gly-Asp: a versatile cell recognition signal | Q34382464 | ||
Head-to-tail peptide cyclodimerization by copper-catalyzed azide-alkyne cycloaddition | Q34391143 | ||
Crystallographic observation of 'induced fit' in a cryptophane host-guest model system | Q35018410 | ||
Integrin adhesion receptors in tumor metastasis | Q35125458 | ||
Molecular Mechanisms of Tumor Invasion and Metastasis: An Integrated View | Q35577251 | ||
Multimodality imaging of tumor integrin alphavbeta3 expression | Q36393728 | ||
A review: Integrin alphavbeta3-targeted molecular imaging and therapy in angiogenesis | Q36733031 | ||
Multimodality molecular imaging of tumor angiogenesis | Q37181539 | ||
Application of RGD-containing peptides as imaging probes for alphavbeta3 expression | Q37410061 | ||
Functionalized 129Xe contrast agents for magnetic resonance imaging | Q37633017 | ||
Synthesis and evaluation of a near-infrared fluorescent non-peptidic bivalent integrin alpha(v)beta(3) antagonist for cancer imaging | Q39747846 | ||
The cell attachment determinant in fibronectin | Q39837509 | ||
A xenon-129 biosensor for monitoring MHC-peptide interactions. | Q39858086 | ||
Ultrasmall c(RGDyK)-coated Fe3O4 nanoparticles and their specific targeting to integrin alpha(v)beta3-rich tumor cells | Q39979082 | ||
Transforming growth factor beta1 induces alphavbeta3 integrin expression in human lung fibroblasts via a beta3 integrin-, c-Src-, and p38 MAPK-dependent pathway | Q40000532 | ||
Cryptophanes and their complexes--present and future | Q40018002 | ||
alpha(v)beta(3) Integrin interacts with the transforming growth factor beta (TGFbeta) type II receptor to potentiate the proliferative effects of TGFbeta1 in living human lung fibroblasts | Q40547538 | ||
Activation of integrin alpha(V)beta(3) regulates cell adhesion and migration to bone sialoprotein | Q40905371 | ||
Three-dimensional model of human platelet integrin alphaIIb beta3 in solution obtained by small angle neutron scattering | Q41620098 | ||
Cryptophane xenon-129 nuclear magnetic resonance biosensors targeting human carbonic anhydrase | Q41963820 | ||
Regulation of human lung fibroblast phenotype and function by vitronectin and vitronectin integrins. | Q43781492 | ||
Large-scale purification of active platelet integrin glycoprotein IIb-IIIa | Q44105362 | ||
alphav beta 3 and alphav beta 5 integrin antagonists inhibit angiogenesis in vitro. | Q44739379 | ||
Molecular imaging using a targeted magnetic resonance hyperpolarized biosensor. | Q45980408 | ||
Spectrally resolved magnetic resonance imaging of a xenon biosensor. | Q46011933 | ||
A xenon-based molecular sensor assembled on an MS2 viral capsid scaffold | Q46064829 | ||
Thermodynamics of xenon binding to cryptophane in water and human plasma | Q48585250 | ||
Designing 129Xe NMR biosensors for matrix metalloproteinase detection. | Q53595624 | ||
A mechanism for modulation of cellular responses to VEGF: activation of the integrins | Q64380279 | ||
Binding of fibrinogen to platelet integrin alpha IIb beta 3 in solution as monitored by tracer sedimentation equilibrium | Q71301580 | ||
Thermally programmable gas storage and release in single crystals of an organic van der Waals host | Q73800247 | ||
"Molecular" molecular sieves: lid-free decamethylcucurbit[5]uril absorbs and desorbs gases selectively | Q74689298 | ||
Metabolic imaging by hyperpolarized 13C magnetic resonance imaging for in vivo tumor diagnosis | Q79362737 | ||
P433 | issue | 6 | |
P304 | page(s) | 1103-1110 | |
P577 | publication date | 2011-06-01 | |
P1433 | published in | Chemical Science | Q2962267 |
P1476 | title | Cell-compatible, integrin-targeted cryptophane-(129)Xe NMR biosensors | |
P478 | volume | 2 |
Q30598991 | "Clickable" hydrosoluble PEGylated cryptophane as a universal platform for 129Xe magnetic resonance imaging biosensors |
Q45899387 | 129Xe NMR chemical shift in Xe@C60 calculated at experimental conditions: essential role of the relativity, dynamics, and explicit solvent. |
Q42697584 | 129Xe NMR-based sensors: biological applications and recent methods |
Q28831191 | A "Smart" ¹²⁸Xe NMR Biosensor for pH-Dependent Cell Labeling |
Q47618169 | A cryptophane-based "turn-on" 129Xe NMR biosensor for monitoring calmodulin |
Q40819769 | A doubly responsive probe for the detection of Cys4-tagged proteins. |
Q27009286 | A review of responsive MRI contrast agents: 2005-2014 |
Q31131667 | An Expanded Palette of Xenon-129 NMR Biosensors. |
Q46412940 | Biomembrane interactions of functionalized cryptophane-A: combined fluorescence and 129Xe NMR studies of a bimodal contrast agent |
Q88754770 | Cryptophane Nanoscale Assemblies Expand 129Xe NMR Biosensing |
Q35464342 | Cryptophane-folate biosensor for (129)xe NMR. |
Q30941370 | Cucurbit[6]uril is an ultrasensitive (129)Xe NMR contrast agent |
Q92930910 | Cyclodextrin-Based Pseudorotaxanes: Easily Conjugatable Scaffolds for Synthesizing Hyperpolarized Xenon-129 Magnetic Resonance Imaging Agents |
Q30878972 | Degeneracy in cryptophane-xenon complex formation in aqueous solution |
Q58378186 | Design and Characterization of Two Bifunctional Cryptophane A-Based Host Molecules for Xenon Magnetic Resonance Imaging Applications |
Q52883486 | Functionalized 129Xe as a potential biosensor for membrane fluidity. |
Q39856225 | HyperCEST detection of cucurbit[6]uril in whole blood using an ultrashort saturation Pre-pulse train |
Q45947652 | Hyperpolarized 129 Xe Magnetic Resonance Imaging Sensor for H2 S. |
Q42367283 | Inside information on xenon adsorption in porous organic cages by NMR. |
Q38869805 | MRI-visible liposome nanovehicles for potential tumor-targeted delivery of multimodal therapies |
Q35090935 | Measurement of radon and xenon binding to a cryptophane molecular host |
Q41815271 | Metal ion sensing using ion chemical exchange saturation transfer 19F magnetic resonance imaging |
Q30612000 | Molecular imaging of cancer cells using a bacteriophage-based 129Xe NMR biosensor |
Q38973699 | NMR Hyperpolarization Techniques of Gases. |
Q90618697 | Paramagnetic Organocobalt Capsule Revealing Xenon Host-Guest Chemistry |
Q58378157 | Supramolecular Assays for Mapping Enzyme Activity by Displacement-Triggered Change in Hyperpolarized129Xe Magnetization Transfer NMR Spectroscopy |
Q58378161 | Supramolekulare Assays zur Lokalisation von Enzymaktivität durch Verdrängungs-induzierte Änderungen in der Magnetisierungstransfer-NMR-Spektroskopie mit hyperpolarisiertem129Xe |
Q56755854 | Synthesis and Methane-Binding Properties of Disulfide-Linked Cryptophane-0.0.0 |
Q52844477 | Synthesis and methane-binding properties of disulfide-linked cryptophane-0.0.0. |
Q30575118 | Utilizing a water-soluble cryptophane with fast xenon exchange rates for picomolar sensitivity NMR measurements |
Q58378167 | Xenon-MRT an lebenden Zellen mit Hyper-CEST-Biosensoren für metabolisch markierte Glykane an der Zelloberfläche |
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