Pinacho-Olaciregui Jokin, Verde-Sesto Ester, Taton Daniel, Pomposo José A
Centro de Física de Materiales (CSIC-UPV/EHU)-Materials Physics Center MPC, Pº Manuel Lardizabal 5, E-20018 Donostia, Spain.
Laboratoire de Chimie des Polymères Organiques (LCPO), Université de Bordeaux INP-ENSCBP, 16 av. Pey Berland, 33607 Pessac CEDEX, France.
Polymers (Basel). 2024 Jan 30;16(3):378. doi: 10.3390/polym16030378.
Metalloenzymes are able to catalyze complex biochemical reactions in cellular (aqueous) media with high efficiency. In recent years, a variety of metal-containing single-chain nanoparticles (SCNPs) have been synthesized as simplified metalloenzyme-mimetic nano-objects. However, most of the metal-containing SCNPs reported so far contained complexed metal ions but not metal nanoclusters (NCs) with diameter <5 nm, which could be used as powerful, emerging catalysts. Herein, we report the synthesis of gold nanoclusters (Au-NCs) within SCNPs and the further use of Au-NCs/SCNPs as catalytic nanoreactors in water. We demonstrate that a common motif contained in several drugs (i.e., the aminophenyl-oxazolidinone fragment present in Rivaroxaban, Sutezolid, and Linezolid) can be efficiently prepared in water from a hydrophobic precursor compound by using the Au-NCs/SCNPs as efficient catalytic nanoreactors. In summary, this work paves the way forthe synthesis of metal-NCs/SCNPs for advanced catalysis in aqueous media.
金属酶能够在细胞(水性)介质中高效催化复杂的生化反应。近年来,人们合成了多种含金属的单链纳米颗粒(SCNP),作为简化的模拟金属酶纳米物体。然而,迄今为止报道的大多数含金属SCNP都含有络合金属离子,而非直径小于5nm的金属纳米团簇(NC),而后者可作为强大的新兴催化剂。在此,我们报道了在SCNP中合成金纳米团簇(Au-NC),并进一步将Au-NC/SCNP用作水中的催化纳米反应器。我们证明,通过使用Au-NC/SCNP作为高效催化纳米反应器,可以在水中由疏水前体化合物高效制备几种药物中含有的常见基序(即利伐沙班、舒他唑啉和利奈唑胺中存在的氨基苯基-恶唑烷酮片段)。总之,这项工作为在水性介质中合成用于高级催化的金属-NC/SCNP铺平了道路。