Home

Αδελφότητα ημερήσια διάταξη ο ΣΥΝΗΓΟΡΟΣ bioorthogonal palladium έκρηξη Αποσπώ Κέρδισε

Bioorthogonal release of anticancer drugs via gold-triggered  2-alkynylbenzamide cyclization - Chemical Science (RSC Publishing)  DOI:10.1039/D0SC04329J
Bioorthogonal release of anticancer drugs via gold-triggered 2-alkynylbenzamide cyclization - Chemical Science (RSC Publishing) DOI:10.1039/D0SC04329J

Palladium-mediated bioorthogonal conjugation of dual-functionalised  nanoparticles and their cellular delivery - Chemical Science (RSC  Publishing)
Palladium-mediated bioorthogonal conjugation of dual-functionalised nanoparticles and their cellular delivery - Chemical Science (RSC Publishing)

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

NHC-gold(I)-alkyne complexes induced hepatocellular carcinoma cell death  through bioorthogonal activation by palladium complex in living system -  ScienceDirect
NHC-gold(I)-alkyne complexes induced hepatocellular carcinoma cell death through bioorthogonal activation by palladium complex in living system - ScienceDirect

Integration of Palladium Nanoparticles with Surface Engineered  Metal–Organic Frameworks for Cell-Selective Bioorthogonal Catalysis and  Protein Activity Regulation | ACS Applied Materials & Interfaces
Integration of Palladium Nanoparticles with Surface Engineered Metal–Organic Frameworks for Cell-Selective Bioorthogonal Catalysis and Protein Activity Regulation | ACS Applied Materials & Interfaces

Palladium mediated catalysis works in preclinical mouse model | The  University of Edinburgh
Palladium mediated catalysis works in preclinical mouse model | The University of Edinburgh

Cancer-derived exosomes loaded with ultrathin Palladium nanosheets for  targeted bioorthogonal catalysis. – NFP Research Group
Cancer-derived exosomes loaded with ultrathin Palladium nanosheets for targeted bioorthogonal catalysis. – NFP Research Group

Cancer-derived exosomes loaded with ultrathin palladium nanosheets for  targeted bioorthogonal catalysis | Nature Catalysis
Cancer-derived exosomes loaded with ultrathin palladium nanosheets for targeted bioorthogonal catalysis | Nature Catalysis

Bioorthogonal Palladium-Labile Prodrugs for Site-Specific Anticancer  Therapy Video | LabTube
Bioorthogonal Palladium-Labile Prodrugs for Site-Specific Anticancer Therapy Video | LabTube

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

Palladium-loaded PLGA-chitosan NPs as efficient catalysts for bioorthogonal  chemistry
Palladium-loaded PLGA-chitosan NPs as efficient catalysts for bioorthogonal chemistry

A thioether-directed palladium-cleavable linker for targeted bioorthogonal  drug decaging - Chemical Science (RSC Publishing)
A thioether-directed palladium-cleavable linker for targeted bioorthogonal drug decaging - Chemical Science (RSC Publishing)

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

Bioorthogonal Catalysis Goes Chiral - ScienceDirect
Bioorthogonal Catalysis Goes Chiral - ScienceDirect

Bioorthogonal Uncaging of the Active Metabolite of Irinotecan by Palladium‐Functionalized  Microdevices - Adam - 2018 - Chemistry – A European Journal - Wiley  Online Library
Bioorthogonal Uncaging of the Active Metabolite of Irinotecan by Palladium‐Functionalized Microdevices - Adam - 2018 - Chemistry – A European Journal - Wiley Online Library

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

Bioorthogonal strategies for the in vivo synthesis or release of drugs -  ScienceDirect
Bioorthogonal strategies for the in vivo synthesis or release of drugs - ScienceDirect

Bioorthogonal Uncaging of the Active Metabolite of Irinotecan by Palladium‐Functionalized  Microdevices - Adam - 2018 - Chemistry – A European Journal - Wiley  Online Library
Bioorthogonal Uncaging of the Active Metabolite of Irinotecan by Palladium‐Functionalized Microdevices - Adam - 2018 - Chemistry – A European Journal - Wiley Online Library

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

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

The bioorthogonal revolution | Feature | Chemistry World
The bioorthogonal revolution | Feature | Chemistry World

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

In‐Cell Dual Drug Synthesis by Cancer‐Targeting Palladium Catalysts -  Clavadetscher - 2017 - Angewandte Chemie International Edition - Wiley  Online Library
In‐Cell Dual Drug Synthesis by Cancer‐Targeting Palladium Catalysts - Clavadetscher - 2017 - Angewandte Chemie International Edition - Wiley Online Library

Bioorthogonally activated palladium-labile prodrug strategy and... |  Download Scientific Diagram
Bioorthogonally activated palladium-labile prodrug strategy and... | Download Scientific Diagram

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