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Synthesis and Application of Glycopeptide and Glycoprotein Mimetics.

Preparation, Characterization, and Application of Poly(vinyl alcohol)-graft-Poly(ethylene glycol) Resins: Novel Polymer Matrices for Solid-Phase Synthesis.

Photovoltaic Properties of New Cyanine-Naphthalimide Dyads Synthesized by 'Click' Chemistry.
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Synthesis of NPCP-Cy5.5-CTX nanoprobes. (A) PEG-grafted chitosan, (B) sulfhydryl functionalization of CTX, and (C) CTX and Cy5.5 conjugation to NPCP. Reproduced with permission from ref. [].

Recent Advances in the Synthesis of Well-Defined Glycopolymers.

Copper-Catalyzed Synthesis of -Sulfonyl-1,2,3-Triazoles: Controlling Selectivity.
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188. Li GF, Fan JD, Jiang R, Gao Y. Cross-linking the linear polymeric chains in the ATRP synthesis of iron oxide/polystyrene core/shell nanoparticles. 2004;16:1835-7

187. Wang Y, Teng XW, Wang JS, Yang H. Solvent-free atom transfer radical polymerization in the synthesis of Fe2O3@ polystyrene core-shell nanoparticles. 2003;3:789-93

Synthesis of Functionalized Bisphosphonates via Click Chemistry.

Synthesis of Saccharide-Terminated Poly(ε-caprolactone) via Michael Addition and 'Click' Chemistry.
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Ellington . used this bioconjugation method to conjugate an anti-EGFR aptamer onto GNPs to demonstrate the targeting specificity of a newly identified aptamer []. As described above, they coated GNPs with thiol-modified capture ONTs that hybridized to an extended anti-EGFR aptamer to generate anti-EGFR aptamer-conjugated GNPs. Jon . utilized the hybridization method to conjugate an anti-PSMA-aptamer to iron oxide nanoparticle surfaces []. In their study, CG-rich duplexes were constructed at the ends of the aptamers to achieve multiple Dox-binding on the nanoparticles. They immobilized amine-functionalized capture ONTs (5'NH2-A10-(TCG)7-3') on the surfaces of the carboxyl-modified iron oxide nanoparticles. Magnet purification yielded the capture ONT-coated iron oxide nanoparticles. A (CGA)7-extended anti-PSMA-aptamer was synthesized by transcription, and the aptamers were added to the ONT-coated nanoparticles to produce Apt--TCL-SPIONs. Thermal gravimetric analysis (TGA) indicated that PSMA aptamers (28,451 Da) hybridized to approximately 33% of the ONTs (9,708 Da) conjugated to the nanoparticles. aptamers capture ONTshe surface of nanoparticles via staining in larger samples (106 cells).ons [nitude highenn

Synthesis of Enantiomerically Pure α-[4-(1-Substituted)-1,2,3-triazol-4-yl]-benzylacetamides via Microwave-Assisted Click Chemistry: Towards New Potential Antimicrobial Agents.

The Potential of Cycloaddition Reactions in the Synthesis of Dendritic Polymers.
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Synthesis and Versatile Reactions of β-Azidotetraarylporphyrins.

136. Lee H, Yu MK, Park S, Moon S, Min JJ, Jeong YY. . Thermally cross-linked superparamagnetic iron oxide nanoparticles: synthesis and application as a dual imaging probe for cancer in vivo. 2007;129:12739-45

Synthesis of New Substituted Lactones by "Click" Chemistry.

171. Lutz JF, Stiller S, Hoth A, Kaufner L, Pison U, Cartier R. One-pot synthesis of PEGylated ultrasmall iron-oxide nanoparticles and their invivo evaluationasmagnetic resonance imaging contrast agents. 2006;7:3132-8

Synthesis of a Benzolactone Collection using Click Chemistry.

R.; Lober, S.; Hubner, H.; Gmeiner, P., Click chemistry on solid phase: parallel synthesis of -benzyltriazole carboxamides as super-potent G-protein coupled receptor ligands.

Estrogenic Analogues Synthesized by Click Chemistry.

R., Activity-Based Protein Profiling Reagents for Protein Arginine Deaminase 4 (PAD4): Synthesis and in vitro Evaluation of a Fluorescently Labeled Probe.

Modular Synthesis of ABC Type Block Copolymers by "Click" Chemistry.

180. Park J, Yu MK, Jeong YY, Kim JW, Lee K, Phan VN. . Antibiofouling amphiphilic polymer-coated superparamagnetic iron oxide nanoparticles: synthesis, characterization, and use in cancer imaging in vivo. 2009;19:6412-7

Aziridines in Parallel- and Solid-Phase Synthesis.

L.; Struthers, H.; Brans, L.; Anguelov, T.; Schweinsberg, C.; Maes, V.; Tourwe, D.; Schibli, R., "Click to Chelate": Synthesis and Installation of Metal Chelates into Biomolecules in a Single Step.

Synthesis of Triazole-Linked Pseudo-Starch Fragments.

B., Synthesis of azide-alkyne fragments for click' chemical applications; formation of oligomers from orthogonally protected trialkylsilyl-propargyl azides and propargyl alcohols.

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