scholarly article | Q13442814 |
P356 | DOI | 10.1021/JA108441D |
P8608 | Fatcat ID | release_x6obwgjgzjc4xa3j46x2c4ah64 |
P932 | PMC publication ID | 3077470 |
P698 | PubMed publication ID | 21142161 |
P5875 | ResearchGate publication ID | 49668324 |
P50 | author | Robert H. Grubbs | Q202140 |
M. G. Finn | Q15074707 | ||
P2093 | author name string | David A Tirrell | |
Nicholas J Turro | |||
Jeffrey T Koberstein | |||
Yeon-Hee Lim | |||
Jeremiah A Johnson | |||
Alan O Burts | |||
Ying Y Lu | |||
P2860 | cites work | One-Pot Syntheses of Amphiphilic Centipede-like Brush Copolymers via Combination of Ring-Opening Polymerization and “Click” Chemistry | Q114554737 |
Click Chemistry: Diverse Chemical Function from a Few Good Reactions | Q28204398 | ||
A stepwise huisgen cycloaddition process: copper(I)-catalyzed regioselective "ligation" of azides and terminal alkynes | Q28219495 | ||
A new concept for macromolecular therapeutics in cancer chemotherapy: mechanism of tumoritropic accumulation of proteins and the antitumor agent smancs | Q28285226 | ||
Chemistry in living systems | Q28291334 | ||
Nanocarriers as an emerging platform for cancer therapy | Q29616699 | ||
Cell-selective metabolic labeling of proteins | Q30504516 | ||
Shell click-crosslinked (SCC) nanoparticles: a new methodology for synthesis and orthogonal functionalization | Q31021793 | ||
Biological evaluation of polyester dendrimer: poly(ethylene oxide) "bow-tie" hybrids with tunable molecular weight and architecture | Q33213506 | ||
Multivalent, bifunctional dendrimers prepared by click chemistry | Q33227769 | ||
Two-photon absorption-controlled multidose drug release: a novel approach for secondary cataract treatment | Q33248935 | ||
Gold, poly(beta-amino ester) nanoparticles for small interfering RNA delivery | Q33440795 | ||
The influence of polymer topology on pharmacokinetics: differences between cyclic and linear PEGylated poly(acrylic acid) comb polymers | Q33451490 | ||
Chemicals on demand with phototriggerable microcapsules | Q33500761 | ||
Psoralen photobiology and photochemotherapy: 50 years of science and medicine | Q33546968 | ||
Peptidotriazoles on solid phase: [1,2,3]-triazoles by regiospecific copper(i)-catalyzed 1,3-dipolar cycloadditions of terminal alkynes to azides | Q33958790 | ||
Photodynamic therapy for cancer | Q34194073 | ||
Selective identification of newly synthesized proteins in mammalian cells using bioorthogonal noncanonical amino acid tagging (BONCAT) | Q34686995 | ||
Ligand-accelerated Cu-catalyzed azide-alkyne cycloaddition: a mechanistic report | Q34698368 | ||
Robust, efficient, and orthogonal synthesis of dendrimers via thiol-ene "click" chemistry | Q34763588 | ||
Photoregulated release of caged anticancer drugs from gold nanoparticles. | Q34974579 | ||
PEGylated nanoparticles for biological and pharmaceutical applications | Q35082131 | ||
The dawning era of polymer therapeutics | Q35128900 | ||
A single dose of doxorubicin-functionalized bow-tie dendrimer cures mice bearing C-26 colon carcinomas | Q35130646 | ||
Applications of orthogonal "click" chemistries in the synthesis of functional soft materials | Q35190403 | ||
Impact of tumor-specific targeting on the biodistribution and efficacy of siRNA nanoparticles measured by multimodality in vivo imaging | Q35995110 | ||
Analysis and optimization of copper-catalyzed azide-alkyne cycloaddition for bioconjugation | Q36136380 | ||
The convergence of synthetic organic and polymer chemistries | Q36234575 | ||
Cylindrical polymer brushes | Q57344676 | ||
Functionalization of Micelles and Shell Cross-linked Nanoparticles Using Click Chemistry | Q57365256 | ||
Well-Defined (Co)polymers with 5-Vinyltetrazole Units via Combination of Atom Transfer Radical (Co)polymerization of Acrylonitrile and “Click Chemistry”-Type Postpolymerization Modification | Q57367467 | ||
Highly Efficient “Click” Functionalization of Poly(3-azidopropyl methacrylate) Prepared by ATRP | Q57367823 | ||
Preparation of orthogonally-functionalized core Click cross-linked nanoparticles | Q57370432 | ||
Bringing Efficiency to Materials Synthesis: The Philosophy of Click Chemistry | Q57371664 | ||
Accelerated Growth of Dendrimers via Thiol−Ene and Esterification Reactions | Q57381450 | ||
Combining ATRP and “Click” Chemistry: a Promising Platform toward Functional Biocompatible Polymers and Polymer Bioconjugates | Q57752633 | ||
Synthesis and Self-Assembly of Coil−Rod Double Hydrophilic Diblock Copolymer with Dually Responsive Asymmetric Centipede-Shaped Polymer Brush as the Rod Segment | Q58068925 | ||
Amphiphilic Cylindrical Core−Shell Brushes via a “Grafting From” Process Using ATRP | Q58216631 | ||
Synthesis of Hetero-Grafted Amphiphilic Diblock Molecular Brushes and Their Self-Assembly in Aqueous Medium | Q58875073 | ||
About Dendrimers: Structure, Physical Properties, and Applications | Q60357142 | ||
Development of Thermal and Photochemical Strategies for Thiol−Ene Click Polymer Functionalization | Q62049249 | ||
Pushing the Limits for Thiol−Ene and CuAAC Reactions: Synthesis of a 6th Generation Dendrimer in a Single Day | Q62115776 | ||
Micelle Formation from Amphiphilic“Cylindrical Brush”—Coil Block Copolymers Prepared by Metallocene Catalysis | Q62644408 | ||
'Click' Chemistry in Polymer and Materials Science | Q66816557 | ||
Combining Ring-Opening Metathesis Polymerization (ROMP) with Sharpless-Type 'Click' Reactions: An Easy Method for the Preparation of Side Chain Functionalized Poly(oxynorbornenes) | Q69262981 | ||
Construction of Linear Polymers, Dendrimers, Networks, and Other Polymeric Architectures by Copper‐Catalyzed Azide‐Alkyne Cycloaddition "Click" Chemistry | Q69986229 | ||
Large porous particles for pulmonary drug delivery | Q73427590 | ||
Drug delivery and targeting | Q74525964 | ||
Liquid-crystalline polymers from cationic dendronized polymer-anionic lipid complexes | Q79296443 | ||
Efficient synthesis of high molar mass, first- to fourth-generation distributed dendronized polymers by the macromonomer approach | Q79370530 | ||
Light-triggered molecule-scale drug dosing devices | Q80630338 | ||
The role of macromolecular architecture in passively targeted polymeric carriers for drug and gene delivery | Q81496717 | ||
Polyvalent Interactions in Biological Systems: Implications for Design and Use of Multivalent Ligands and Inhibitors | Q88519588 | ||
Polymer architecture and drug delivery | Q36360121 | ||
Tunable, temperature-responsive polynorbornenes with side chains based on an elastin peptide sequence | Q36452986 | ||
"Clickable" polymer-caged nanobins as a modular drug delivery platform | Q36831946 | ||
Plasma clearance of bacteriophage Qbeta particles as a function of surface charge | Q37134047 | ||
Viral capsid DNA aptamer conjugates as multivalent cell-targeting vehicles | Q37331276 | ||
Soluble polymer carriers for the treatment of cancer: the importance of molecular architecture | Q37381198 | ||
A direct route to cyclic organic nanostructures via ring-expansion metathesis polymerization of a dendronized macromonomer | Q37395660 | ||
Facile syntheses of cylindrical molecular brushes by a sequential RAFT and ROMP "grafting-through" methodology | Q37419774 | ||
Marrying click chemistry with polymerization: expanding the scope of polymeric materials | Q37716662 | ||
Biodegradable long-circulating polymeric nanospheres | Q38569096 | ||
A polymeric domain that promotes cellular internalization | Q39124266 | ||
One-pot synthesis of brush-like polymers via integrated ring-opening metathesis polymerization and polymerization of amino acid N-carboxyanhydrides. | Q39306138 | ||
Prodrugs forming high drug loading multifunctional nanocapsules for intracellular cancer drug delivery | Q39729675 | ||
Surface-functionalized ultrasmall superparamagnetic nanoparticles as magnetic delivery vectors for camptothecin | Q39863911 | ||
Profiling enzyme activities in vivo using click chemistry methods | Q40560071 | ||
The controlled intravenous delivery of drugs using PEG-coated sterically stabilized nanospheres. | Q42011060 | ||
ROMP from ROMP: A New Approach to Graft Copolymer Synthesis | Q42677958 | ||
Synthesis of a molecular charm bracelet via click cyclization and olefin metathesis clipping | Q43853933 | ||
Polyester dendritic systems for drug delivery applications: design, synthesis, and characterization | Q43992745 | ||
Efficient synthesis of narrowly dispersed brush copolymers and study of their assemblies: the importance of side chain arrangement | Q44005516 | ||
Designing macromolecules for therapeutic applications: polyester dendrimer-poly(ethylene oxide) "bow-tie" hybrids with tunable molecular weight and architecture | Q44222126 | ||
Photocontrolled reversible release of guest molecules from coumarin-modified mesoporous silica. | Q44286594 | ||
Synthesis and self-assembly of supramolecular dendritic "Bow-Ties": effect of peripheral functionality on association constants | Q44711618 | ||
Peptide-derivatized shell-cross-linked nanoparticles. 1. Synthesis and characterization | Q44986348 | ||
Dendronized linear polymers via "click chemistry". | Q45153078 | ||
Discovery and characterization of catalysts for azide-alkyne cycloaddition by fluorescence quenching | Q46315172 | ||
Site-specific prodrug release using visible light | Q46706308 | ||
Degradable-brushed pHEMA-pDMAEMA synthesized via ATRP and click chemistry for gene delivery | Q46957975 | ||
Benzimidazole and related ligands for Cu-catalyzed azide-alkyne cycloaddition | Q46967904 | ||
Ultrathin, responsive polymer click capsules. | Q50994941 | ||
Light-induced reversible formation of polymeric micelles. | Q51063595 | ||
Chemistry. Dendrimers at work. | Q51143720 | ||
Novel Polymer Capsules from Amphiphilic Graft Copolymers and Cross-Metathesis | Q51818189 | ||
Development of first photoresponsive prodrug of paclitaxel. | Q53614877 | ||
Nanoscience, nanotechnology, and chemistry. | Q54449432 | ||
A New Class of Polymers: Starburst-Dendritic Macromolecules | Q56486016 | ||
Mechanism of the Ligand-Free CuI-Catalyzed Azide-Alkyne Cycloaddition Reaction | Q56566538 | ||
Graft Copolymers by a Combination of ATRP and Two Different Consecutive Click Reactions | Q56906238 | ||
Synthesis of Molecular Brushes by “Grafting onto” Method: Combination of ATRP and Click Reactions | Q56906459 | ||
Efficient Divergent Synthesis of Dendronized Polymers with Extremely High Molecular Weight: Structural Characterization by SEC-MALLS and SFM and Novel Organic Gelation Behavior | Q56945689 | ||
Efficiency and Fidelity in a Click-Chemistry Route to Triazole Dendrimers by the Copper(I)-Catalyzed Ligation of Azides and Alkynes | Q56945806 | ||
Synthesis of narrow-polydispersity degradable dendronized aliphatic polyesters | Q56945880 | ||
Divergent Synthesis of Dendronized Poly(p-hydroxystyrene) | Q56946081 | ||
Fluorogenic 1,3-dipolar cycloaddition within the hydrophobic core of a shell cross-linked nanoparticle | Q57187386 | ||
P433 | issue | 3 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 559-566 | |
P577 | publication date | 2010-12-13 | |
P1433 | published in | Journal of the American Chemical Society | Q898902 |
P1476 | title | Core-clickable PEG-branch-azide bivalent-bottle-brush polymers by ROMP: grafting-through and clicking-to | |
P478 | volume | 133 |
Q50671915 | A UV-Cleavable Bottlebrush Polymer with o-Nitrobenzyl-Linked Side Chains. |
Q99631242 | A multifunctional biodegradable brush polymer-drug conjugate for paclitaxel/gemcitabine co-delivery and tumor imaging |
Q57179221 | A review on core-shell structured unimolecular nanoparticles for biomedical applications |
Q36584882 | ATRP Synthesis of Sunflower Polymers using Cyclic Multimacroinitiators |
Q58874847 | Advanced photoresist technologies by intricate molecular brush architectures: Diblock brush terpolymer-based positive-tone photoresist materials |
Q57705579 | Aziridine in polymers: a strategy to functionalize polymers by ring-opening reaction of aziridine |
Q35908348 | Biodegradable cationic polymeric nanocapsules for overcoming multidrug resistance and enabling drug-gene co-delivery to cancer cells |
Q40027452 | Bright Fluorescent Nanotags from Bottlebrush Polymers with DNA-Tipped Bristles |
Q39080911 | Brush-first and click: efficient synthesis of nanoparticles that degrade and release doxorubicin in response to light. |
Q38345484 | Building biomedical materials using photochemical bond cleavage |
Q33970635 | Catch and Release: Photocleavable Cationic Diblock Copolymers as a Potential Platform for Nucleic Acid Delivery |
Q44774109 | Cationic salt-responsive bottle-brush polymers |
Q37240107 | Chain-shattering polymeric therapeutics with on-demand drug-release capability |
Q57377114 | Construction of PEG-based amphiphilic brush polymers bearing hydrophobic poly(lactic acid) side chains via successive RAFT polymerization and ROP |
Q44474388 | Control of Grafting Density and Distribution in Graft Polymers by Living Ring-Opening Metathesis Copolymerization |
Q51662986 | Controlled-Release System of Small Molecules Triggered by the Photothermal Effect of Polypyrrole. |
Q58231445 | Densely grafted liquid crystalline copper phthalocyanine side chain polymer: synthesis and characterization |
Q35823338 | Design of polymeric nanoparticles for biomedical delivery applications |
Q46715527 | Design, Synthesis, and Self-Assembly of Polymers with Tailored Graft Distributions |
Q58120554 | Dual Polymerizations: Untapped Potential for Biomaterials |
Q46038005 | EPR study of spin labeled brush polymers in organic solvents. |
Q36321816 | Electrochemically stimulated drug release from flexible electrodes coated electrophoretically with doxorubicin loaded reduced graphene oxide |
Q50485654 | Exploiting aggregation to achieve phase separation in macrocyclization. |
Q51672890 | Facile Synthesis of DendriMac Polymers via the Combination of Living Anionic Polymerization and Highly Efficient Coupling Reactions. |
Q57344633 | Facile synthesis of ABCDE-type H-shaped quintopolymers by combination of ATRP, ROP, and click chemistry and their potential applications as drug carriers |
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Q47897300 | Glycosidase Inhibition by Multivalent Presentation of Heparan Sulfate Saccharides on Bottlebrush Polymers. |
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Q36882942 | Histone Deacetylase Inhibitors Delivery using Nanoparticles with Intrinsic Passive Tumor Targeting Properties for Tumor Therapy |
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