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Bioorthogonal chemistry-driven anticancer nanotherapeutics: Trends in  Chemistry
Bioorthogonal chemistry-driven anticancer nanotherapeutics: Trends in Chemistry

Bioorthogonal Ligations and Cleavages in Chemical Biology - Li - 2020 -  ChemistryOpen - Wiley Online Library
Bioorthogonal Ligations and Cleavages in Chemical Biology - Li - 2020 - ChemistryOpen - Wiley Online Library

Palladium-catalysed cross-coupling of lithium acetylides | Nature Catalysis
Palladium-catalysed cross-coupling of lithium acetylides | Nature Catalysis

Development and Bioorthogonal Activation of Palladium-Labile Prodrugs of  Gemcitabine | Journal of Medicinal Chemistry
Development and Bioorthogonal Activation of Palladium-Labile Prodrugs of Gemcitabine | Journal of Medicinal Chemistry

Expanding Transition Metal-Mediated Bioorthogonal Decaging to Include C–C  Bond Cleavage Reactions | Journal of the American Chemical Society
Expanding Transition Metal-Mediated Bioorthogonal Decaging to Include C–C Bond Cleavage Reactions | Journal of the American Chemical Society

Bioorthogonal Catalysis: A General Method To Evaluate Metal-Catalyzed  Reactions in Real Time in Living Systems Using a Cellular Luciferase  Reporter System | Bioconjugate Chemistry
Bioorthogonal Catalysis: A General Method To Evaluate Metal-Catalyzed Reactions in Real Time in Living Systems Using a Cellular Luciferase Reporter System | Bioconjugate Chemistry

a-c) Main bioorthogonal reaction schemes discussed in this review,... |  Download Scientific Diagram
a-c) Main bioorthogonal reaction schemes discussed in this review,... | Download Scientific Diagram

Palladium-Mediated Dealkylation of N-Propargyl-Floxuridine as a  Bioorthogonal Oxygen-Independent Prodrug Strategy | Scientific Reports
Palladium-Mediated Dealkylation of N-Propargyl-Floxuridine as a Bioorthogonal Oxygen-Independent Prodrug Strategy | Scientific Reports

Designing Bioorthogonal Reactions for Biomedical Applications | Research
Designing Bioorthogonal Reactions for Biomedical Applications | Research

Rational Utilization of Black Phosphorus Nanosheets to Enhance Palladium‐Mediated  Bioorthogonal Catalytic Activity for Activation of Therapeutics - Rong -  2023 - Angewandte Chemie International Edition - Wiley Online Library
Rational Utilization of Black Phosphorus Nanosheets to Enhance Palladium‐Mediated Bioorthogonal Catalytic Activity for Activation of Therapeutics - Rong - 2023 - Angewandte Chemie International Edition - Wiley Online Library

Dual-Bioorthogonal Catalysis by a Palladium Peptide Complex | Journal of  Medicinal Chemistry
Dual-Bioorthogonal Catalysis by a Palladium Peptide Complex | Journal of Medicinal Chemistry

Nano-palladium is a cellular catalyst for in vivo chemistry | Nature  Communications
Nano-palladium is a cellular catalyst for in vivo chemistry | Nature Communications

Designed heterogeneous palladium catalysts for reversible light-controlled  bioorthogonal catalysis in living cells | Nature Communications
Designed heterogeneous palladium catalysts for reversible light-controlled bioorthogonal catalysis in living cells | Nature Communications

Bioorthogonal Nanozymes: Progress towards Therapeutic Applications: Trends  in Chemistry
Bioorthogonal Nanozymes: Progress towards Therapeutic Applications: Trends in Chemistry

Palladium-mediated chemistry in living cells - ScienceDirect
Palladium-mediated chemistry in living cells - ScienceDirect

Designed heterogeneous palladium catalysts for reversible light-controlled  bioorthogonal catalysis in living cells | Nature Communications
Designed heterogeneous palladium catalysts for reversible light-controlled bioorthogonal catalysis in living cells | Nature Communications

Bioorthogonal catalysis for biomedical applications: Trends in Chemistry
Bioorthogonal catalysis for biomedical applications: Trends in Chemistry

Dual-Bioorthogonal Catalysis by a Palladium Peptide Complex | Journal of  Medicinal Chemistry
Dual-Bioorthogonal Catalysis by a Palladium Peptide Complex | Journal of Medicinal Chemistry

Core-Shell Palladium/MOF Platforms as Diffusion-Controlled Nanoreactors in  Living Cells and Tissue Models - ScienceDirect
Core-Shell Palladium/MOF Platforms as Diffusion-Controlled Nanoreactors in Living Cells and Tissue Models - ScienceDirect

Palladium-mediated chemistry in living cells. | Semantic Scholar
Palladium-mediated chemistry in living cells. | Semantic Scholar

Development and Bioorthogonal Activation of Palladium-Labile Prodrugs of  Gemcitabine | Journal of Medicinal Chemistry
Development and Bioorthogonal Activation of Palladium-Labile Prodrugs of Gemcitabine | Journal of Medicinal Chemistry

Extracellular palladium-catalysed dealkylation of  5-fluoro-1-propargyl-uracil as a bioorthogonally activated prodrug approach  | Nature Communications
Extracellular palladium-catalysed dealkylation of 5-fluoro-1-propargyl-uracil as a bioorthogonally activated prodrug approach | Nature Communications

Recent advances in bioorthogonal reactions for site-specific protein  labeling and engineering - ScienceDirect
Recent advances in bioorthogonal reactions for site-specific protein labeling and engineering - ScienceDirect

Supramolecular regulation of bioorthogonal catalysis in cells using  nanoparticle-embedded transition metal catalysts | Nature Chemistry
Supramolecular regulation of bioorthogonal catalysis in cells using nanoparticle-embedded transition metal catalysts | Nature Chemistry

Chemical remodeling of cell-surface sialic acids through a palladium-triggered  bioorthogonal elimination reaction. | Semantic Scholar
Chemical remodeling of cell-surface sialic acids through a palladium-triggered bioorthogonal elimination reaction. | Semantic Scholar