Dual-Targeting Nanovesicles for In Situ Intracellular Imaging of and Discrimination between Wild-type and Mutant p53.

scientific article published on 27 November 2015

Dual-Targeting Nanovesicles for In Situ Intracellular Imaging of and Discrimination between Wild-type and Mutant p53. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1002/ANIE.201510142
P698PubMed publication ID26611768

P2093author name stringYue Cao
Yi-Tao Long
Ruocan Qian
P2860cites workNano-flares: probes for transfection and mRNA detection in living cellsQ38811566
Simultaneous and label-free determination of wild-type and mutant p53 at a single surface plasmon resonance chip preimmobilized with consensus DNA and monoclonal antibodyQ39796590
p53 elevation in relation to levels and cytotoxicity of mono- and bifunctional melphalan-DNA adductsQ40525791
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Sequence-dependent cooperative binding of p53 to DNA targets and its relationship to the structural properties of the DNA targetsQ42701104
A simple method for preparation of immuno-magnetic liposomesQ43543111
Prognostic significance of new immunohistochemistry scoring of p53 protein expression in cutaneous squamous cell carcinoma of mice.Q44180273
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p53 protein overexpression in gallbladder carcinoma and its precursor lesions: an immunohistochemical studyQ50162214
Sensitive chemiluminescence detection of wild-type p53 protein captured by surface-confined consensus DNA duplexes.Q51057537
Localized surface plasmon resonance sensors.Q55054429
Size and Temperature Dependence of the Plasmon Absorption of Colloidal Gold NanoparticlesQ56443594
Two cellular proteins that bind to wild-type but not mutant p53Q24562261
Mutant p53 proteins bind DNA in a DNA structure-selective modeQ24791476
In vivo activation of the p53 pathway by small-molecule antagonists of MDM2Q27642888
p53, the cellular gatekeeper for growth and divisionQ27860990
Surfing the p53 networkQ28032484
Advanced transfection with Lipofectamine 2000 reagent: primary neurons, siRNA, and high-throughput applicationsQ28259567
Interaction of p53 with its consensus DNA-binding siteQ28639970
Why gold nanoparticles are more precious than pretty gold: noble metal surface plasmon resonance and its enhancement of the radiative and nonradiative properties of nanocrystals of different shapesQ33234991
The C-terminal domain of p53 recognizes DNA damaged by ionizing radiationQ33846651
Chrominance to dimension: a real-time method for measuring the size of single gold nanoparticles.Q34231752
P53 is a tumor suppressor geneQ34546732
Biosensing with plasmonic nanosensors.Q34780871
p53 domains: structure, oligomerization, and transformationQ36662699
Functional domains of wild-type and mutant p53 proteins involved in transcriptional regulation, transdominant inhibition, and transformation suppressionQ36698048
Plasmonic solar cells.Q37357048
Resonance scattering particles as biological nanosensors in vitro and in vivo.Q37919741
Capture of p53 by electrodes modified with consensus DNA duplexes and amplified voltammetric detection using ferrocene-capped gold nanoparticle/streptavidin conjugatesQ38294767
Stimulation of polyomavirus DNA replication by wild-type p53 through the DNA-binding siteQ38309561
Nanoplasmonic detection of adenosine triphosphate by aptamer regulated self-catalytic growth of single gold nanoparticlesQ38322881
New ELISA technique for analysis of p53 protein/DNA binding properties.Q38363788
P433issue2
P407language of work or nameEnglishQ1860
P1104number of pages5
P304page(s)719-723
P577publication date2015-11-27
P1433published inAngewandte Chemie International EditionQ62023953
P1476titleDual-Targeting Nanovesicles for In Situ Intracellular Imaging of and Discrimination between Wild-type and Mutant p53.
P478volume55

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cites work (P2860)
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