2023
DOI: 10.1039/d2nr06056f
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Tetrazine bioorthogonal chemistry makes nanotechnology a powerful toolbox for biological applications

Abstract: Bioorthogonal chemistry enables researchist to manipulate bioactive molecules in living systems. These highly selective and biocompatible reactions can be carried out in various complex environments. Over the past two decades,...

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Cited by 10 publications
(2 citation statements)
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“…Interestingly, dual-responsive CPT nanoprodrugs relying on the promising inverse electron-demand Diels-Alder (iEDDA) ligation, a powerful toolbox which won the 2022 Nobel Prize in Chemistry, 166,246 have been developed for tumor theranostics. 247 This study combined cathepsin B and low pH dualstimulus-responsive nanocarriers, including tetrazine-masked aza-dipyrromethene boron difluoride (BOD) fluorescent probe (TZ-BOD) and vinyl ether-masked CPT (VE-CPT) nanoprodrugs, for the bioorthogonal reaction (among the tetrazine group of TZ-BOD and the vinyloxy group of VE-CPT)-activated tumor treatment (Fig.…”
Section: Dual-and Multi-responsive Cpt Prodrug Nanomedicinesmentioning
confidence: 99%
“…Interestingly, dual-responsive CPT nanoprodrugs relying on the promising inverse electron-demand Diels-Alder (iEDDA) ligation, a powerful toolbox which won the 2022 Nobel Prize in Chemistry, 166,246 have been developed for tumor theranostics. 247 This study combined cathepsin B and low pH dualstimulus-responsive nanocarriers, including tetrazine-masked aza-dipyrromethene boron difluoride (BOD) fluorescent probe (TZ-BOD) and vinyl ether-masked CPT (VE-CPT) nanoprodrugs, for the bioorthogonal reaction (among the tetrazine group of TZ-BOD and the vinyloxy group of VE-CPT)-activated tumor treatment (Fig.…”
Section: Dual-and Multi-responsive Cpt Prodrug Nanomedicinesmentioning
confidence: 99%
“…Over the years, researchers have mitigated these issues by developing a variety of pH-sensitive or responsive nanomaterials (NMs), including inorganic, organic, and hybrids, targeting live pH for cell organellespecific localization monitoring [61,63,69,70]. Based on these NMs, various strategies are employed to construct pH-responsive biosensors to capably distinguish the different acidic divisions in cell organelles, such as early endosomes (pH 6.0−6.5) and lysosomes (pH 4.5−5.5) [53,[71][72][73][74][75][76][77][78][79][80][81][82][83][84][85][86][87].…”
Section: Intracellular/ Extracellular Ph Sensingmentioning
confidence: 99%