4.7 Article

Functionalization of Gold Nanostars with Cationic β-Cyclodextrin-Based Polymer for Drug Co-Loading and SERS Monitoring

期刊

PHARMACEUTICS
卷 13, 期 2, 页码 -

出版社

MDPI
DOI: 10.3390/pharmaceutics13020261

关键词

gold nanostars; cationic β -cyclodextrin-based polymer; phenylethylamine; piperine; drug co-loading; surface-enhanced Raman scattering

资金

  1. ANID [21180548]
  2. ANID-FONDECYT [3180706]
  3. ANID-FONDAP [15130011]
  4. ANID-FONDEQUIP EQM [140112]
  5. FONDECYT [1170929]
  6. Servicio General de Apoyo a las Investigacion (SAI, University of Zaragoza)

向作者/读者索取更多资源

Gold nanostars functionalized with cationic beta-cyclodextrin-based polymer (CCD/P) to load phenylethylamine and piperine were characterized and evaluated for potential biomedical applications. The system showed improved colloidal stability and high loading capacity, making it suitable for drug delivery and SERS-based detection.
Gold nanostars (AuNSs) exhibit modulated plasmon resonance and have a high SERS enhancement factor. However, their low colloidal stability limits their biomedical application as a nanomaterial. Cationic beta-cyclodextrin-based polymer (CCD/P) has low cytotoxicity, can load and transport drugs more efficiently than the corresponding monomeric form, and has an appropriate cationic group to stabilize gold nanoparticles. In this work, we functionalized AuNSs with CCD/P to load phenylethylamine (PhEA) and piperine (PIP) and evaluated SERS-based applications of the products. PhEA and PIP were included in the polymer and used to functionalize AuNSs, forming a new AuNS-CCD/P-PhEA-PIP nanosystem. The system was characterized by UV-VIS, IR, and NMR spectroscopy, TGA, SPR, DLS, zeta potential analysis, FE-SEM, and TEM. Additionally, Raman optical activity, SERS analysis and complementary theoretical studies were used for characterization. Minor adjustments increased the colloidal stability of AuNSs. The loading capacity of the CCD/P with PhEA-PIP was 95 +/- 7%. The physicochemical parameters of the AuNS-CCD/P-PhEA-PIP system, such as size and Z potential, are suitable for potential biomedical applications Raman and SERS studies were used to monitor PhEA and PIP loading and their preferential orientation upon interaction with the surface of AuNSs. This unique nanomaterial could be used for simultaneous drug loading and SERS-based detection.

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