Magnetic Nanoparticles with Dual Surface Functions-Efficient Carriers for Metalloporphyrin-Catalyzed Drug Metabolite Synthesis in Batch and Continuous-Flow Reactors

具有双表面功能的磁性纳米粒子——间歇和连续流反应器中金属卟啉催化药物代谢物合成的高效载体

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作者:Diána Balogh-Weiser, Balázs Decsi, Réka Krammer, Gergő Dargó, Ferenc Ender, János Mizsei, Róbert Berkecz, Benjámin Gyarmati, András Szilágyi, Róbert Tőtős, Csaba Paizs, László Poppe, György T Balogh

Abstract

The dual functionalization of magnetic nanoparticles with inert (methyl) and reactive (aminopropyl) groups enables efficient immobilization of synthetic metalloporphyrins (such as 5,10,15,20-tetrakis(2,3,4,5,6-pentafluorophenyl)iron(II) porphyrin and 5,10,15,20-tetrakis-(4-sulfonatophenyl)iron(II) porphyrin) via covalent or ionic interactions. The proportion of reactive function on the surface has significant effect on the biomimetic activity of metalloporphyrins. The optimized magnetic nanocatalyst containing porphyrin was successfully applied for biomimetic oxidation of antihypertensive drug Amlodipine in batch and continuous-flow reactors as well.

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