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1.
Cells ; 13(8)2024 Apr 16.
Artigo em Inglês | MEDLINE | ID: mdl-38667306

RESUMO

Several studies have reported the successful use of bio-orthogonal catalyst nanoparticles (NPs) for cancer therapy. However, the delivery of the catalysts to the target tissues in vivo remains an unsolved challenge. The combination of catalytic NPs with extracellular vesicles (EVs) has been proposed as a promising approach to improve the delivery of therapeutic nanomaterials to the desired organs. In this study, we have developed a nanoscale bio-hybrid vector using a CO-mediated reduction at low temperature to generate ultrathin catalytic Pd nanosheets (PdNSs) as catalysts directly inside cancer-derived EVs. We have also compared their biodistribution with that of PEGylated PdNSs delivered by the EPR effect. Our results indicate that the accumulation of PdNSs in the tumour tissue was significantly higher when they were administered within the EVs compared to the PEGylated PdNSs. Conversely, the amount of Pd found in non-target organs (i.e., liver) was lowered. Once the Pd-based catalytic EVs were accumulated in the tumours, they enabled the activation of a paclitaxel prodrug demonstrating their ability to carry out bio-orthogonal uncaging chemistries in vivo for cancer therapy.


Assuntos
Vesículas Extracelulares , Vesículas Extracelulares/metabolismo , Humanos , Animais , Catálise , Camundongos , Paclitaxel/farmacologia , Paclitaxel/uso terapêutico , Paládio/química , Neoplasias/metabolismo , Neoplasias/tratamento farmacológico , Neoplasias/patologia , Linhagem Celular Tumoral , Distribuição Tecidual , Polietilenoglicóis/química , Nanopartículas/química , Pró-Fármacos , Camundongos Nus
2.
Chemistry ; 29(1): e202202222, 2023 Jan 02.
Artigo em Inglês | MEDLINE | ID: mdl-36173968

RESUMO

Bioplastics are one of the answers to environmental pollution and linear material flows. The most promising bioplastic polylactide (PLA) is already replacing conventional plastics in a number of applications. The properties of PLA, however, do not fit for all potential application areas, but they can be altered by the introduction of comonomers. The copolymerization of lactide (LA) with other lactones like ϵ-caprolactone (CL) has been established for several years. Nevertheless, controlling copolymerizations remains a challenge due to the high complexity of the system. Copolymerization of LA with other monomer classes is much less investigated, but has the chance to overcome the limitations in material properties that occur when only lactones are used. The crucial factor for all copolymerizations is the catalyst. It dominates the reaction kinetics and determines the resulting microstructure. In this review, copolymerization catalysts for LA are presented divided into catalysts for the synthesis of lactone block copolymers, lactone random copolymers, and multimechanistically synthesized copolymers. The selected catalysts are highlighted either owing to their industrially applicable polymerization conditions or their non-standard mechanism.


Assuntos
Poliésteres , Polímeros , Poliésteres/química , Polímeros/química , Lactonas/química , Biopolímeros , Plásticos
3.
Angew Chem Int Ed Engl ; 60(40): 21795-21800, 2021 09 27.
Artigo em Inglês | MEDLINE | ID: mdl-34270162

RESUMO

Copolymers are the answer to property limitations of homopolymers. In order to use the full variety of monomers available, catalysts active in more than one polymerization mechanism are currently investigated. Iron guanidine catalysts have shown to be extraordinarily active in ROP of lactide and herein prove their versatility by also promoting ATRP of styrene. The presented iron complex is the first polymerizing lactide and styrene simultaneously to a defined block copolymer in a convenient one-pot synthesis. Both mechanisms work hand in hand with ROP using the dominantly present FeII species on the dormant side of the ATRP equilibrium. This orthogonal copolymerization by a benign iron catalyst opens up new pathways to biocompatible polymerization procedures broadening the scope of ATRP applications.

4.
Chemistry ; 27(4): 1430-1437, 2021 Jan 18.
Artigo em Inglês | MEDLINE | ID: mdl-32896943

RESUMO

Dehydroalanine (Dha) residues are attractive noncanonical amino acids that occur naturally in ribosomally synthesised and post-translationally modified peptides (RiPPs). Dha residues are attractive targets for selective late-stage modification of these complex biomolecules. In this work, we show the selective photocatalytic modification of dehydroalanine residues in the antimicrobial peptide nisin and in the proteins small ubiquitin-like modifier (SUMO) and superfolder green fluorescent protein (sfGFP). For this purpose, a new water-soluble iridium(III) photoredox catalyst was used. The design and synthesis of this new photocatalyst, [Ir(dF(CF3 )ppy)2 (dNMe3 bpy)]Cl3 , is presented. In contrast to commonly used iridium photocatalysts, this complex is highly water soluble and allows peptides and proteins to be modified in water and aqueous solvents under physiologically relevant conditions, with short reaction times and with low reagent and catalyst loadings. This work suggests that photoredox catalysis using this newly designed catalyst is a promising strategy to modify dehydroalanine-containing natural products and thus could have great potential for novel bioconjugation strategies.


Assuntos
Irídio , Água , Alanina/análogos & derivados , Proteínas/química , Solubilidade
5.
Chemistry ; 24(48): 12728-12733, 2018 Aug 27.
Artigo em Inglês | MEDLINE | ID: mdl-29923249

RESUMO

Dehydroalanine (Dha) is a remarkably versatile non-canonical amino acid often found in antimicrobial peptides. Herein, we present the catalytic modification of Dha by a palladium-mediated cross-coupling reaction. By using Pd(EDTA)(OAc)2 as water-soluble catalyst, a variety of arylboronic acids was coupled to the dehydrated residues in proteins and peptides, such as Nisin. The cross-coupling reaction gave both the Heck product, in which the sp2 -hybridisation of the α-carbon is retained, as well as the conjugated addition product. The reaction can be performed under mild aqueous conditions, which makes this method an attractive addition to the palette of bio-orthogonal catalytic methods.


Assuntos
Alanina/análogos & derivados , Paládio/química , Proteínas/química , Alanina/química , Catálise , Compostos Organometálicos/química , Peptídeos/química , Água/química
6.
Chemistry ; 24(44): 11314-11318, 2018 Aug 06.
Artigo em Inglês | MEDLINE | ID: mdl-29939448

RESUMO

Dehydroalanine (Dha) and dehydrobutyrine (Dhb) are remarkably versatile non-canonical amino acids often found in antimicrobial peptides. This work presents the selective modification of Dha and Dhb in antimicrobial peptides through photocatalytic activation of organoborates under the influence of visible light. Ir(dF(CF3 )ppy)2 (dtbbpy)PF6 was used as a photoredox catalyst in aqueous solutions for the modification of thiostrepton and nisin. The mild conditions and high selectivity for the dehydrated residues show that photoredox catalysis is a promising tool for the modification of peptide-derived natural products.


Assuntos
Alanina/análogos & derivados , Aminobutiratos/química , Nisina/química , Tioestreptona/química , Alanina/química , Boratos/química , Catálise , Complexos de Coordenação/química , Irídio/química , Luz , Nisina/efeitos da radiação , Oxirredução , Processos Fotoquímicos , Rutênio/química , Tioestreptona/efeitos da radiação
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