自愈水凝胶
树枝状大分子
两亲性
药物输送
化学
亲脂性
点击化学
控制释放
纳米技术
材料科学
组合化学
高分子化学
有机化学
共聚物
聚合物
作者
Judith Recio-Ruiz,Riccardo Carloni,Srivathsan Ranganathan,Laura Muñoz-Moreno,María J. Carmena,M. Francesca Ottaviani,F. Javier de la Mata,Sandra García-Gallego
标识
DOI:10.1021/acs.chemmater.2c03436
摘要
Carbosilane dendrimers are hyperbranched lipophilic scaffolds widely explored in biomedical applications. This work exploits, for the first time, the ability of these scaffolds to generate functional hydrogels with amphiphilic properties. The monodispersity and multivalency enable a precise synthetic control of the network, while the lipophilicity improves the compatibility with poorly soluble cargo. The first family of cleavable carbosilane dendrimers was designed for this purpose, overcoming one of the main drawbacks of these type of dendrimers. Biodegradable dendritic low-swelling hydrogels with aromatic nanodomains were easily prepared using the highly efficient click thiol–ene chemistry. Our studies through electron-paramagnetic resonance, molecular dynamics simulations, and experimental assays confirmed the impact of the carbosilane dendritic nanodomains in both the encapsulation and the release pattern of model drugs such as ibuprofen and curcumin. Curcumin-loaded hydrogels were further tested in in vitro assays against advanced prostate cancer cells. The dendritic hydrogels not only enabled drugs encapsulation; as proof of concept, ibuprofen was efficiently attached via fluoride-promoted esterification and was enzymatically cleaved, achieving a controlled release over time.
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