阿霉素
纳米颗粒
药物输送
脂质体
材料科学
纳米技术
磁性纳米粒子
超分子化学
控制释放
化学工程
化学
有机化学
分子
外科
工程类
化疗
医学
作者
Sérgio Rafael Silva Veloso,Ecem Tiryaki,Carlos Spuch,Loïc Hilliou,Carlos O. Amorim,V. S. Amaral,Paulo J. G. Coutinho,Paula M. T. Ferreira,Verónica Salgueiriño,Miguel A. Correa‐Duarte,Elisabete M. S. Castanheira
出处
期刊:Nanoscale
[Royal Society of Chemistry]
日期:2022-01-01
卷期号:14 (14): 5488-5500
被引量:11
摘要
Self-assembled short peptide-based gels are highly promising drug delivery systems. However, implementing a stimulus often requires screening different structures to obtain gels with suitable properties, and drugs might not be well encapsulated and/or cause undesirable effects on the gel's properties. To overcome this challenge, a new design approach is presented to modulate the release of doxorubicin as a model chemotherapeutic drug through the interplay of (di)phenylalanine-coated magnetic nanoparticles, PEGylated liposomes and doxorubicin co-assembly in dehydropeptide-based gels. The composites enable an enhancement of the gelation kinetics in a concentration-dependent manner, mainly through the use of PEGylated liposomes. The effect of the co-assembly of phenylalanine-coated nanoparticles with the hydrogel displays a concentration and size dependence. Finally, the integration of liposomes as doxorubicin storage units and of nanoparticles as composites that co-assemble with the gel matrix enables the tuneability of both passive and active doxorubicin release through a thermal, and a low-frequency alternating magnetic field-based trigger. In addition to the modulation of the gel properties, the functionalization with (di)phenylalanine improves the cytocompatibility of the nanoparticles. Hereby, this work paves a way for the development of peptide-based supramolecular systems for on-demand and controlled release of drugs.
科研通智能强力驱动
Strongly Powered by AbleSci AI