Tailored Core‐Shell Nanocarrier for Therapeutic Drug Delivery via Visible Light Activation

D Deric Andrade‐Alarcón (UCAM‐SENS Universidad Católica San Antonio de Murcia UCAM HiTech Avda. Andres Hernandez Ros 1 Murcia 30107 Spain) V Víctor de la Asunción‐Nadal (UCAM‐SENS Universidad Católica San Antonio de Murcia UCAM HiTech Avda. Andres Hernandez Ros 1 Murcia 30107 Spain) G Gastón A. Crespo (UCAM‐SENS Universidad Católica San Antonio de Murcia UCAM HiTech Avda. Andres Hernandez Ros 1 Murcia 30107 Spain) M Maria Cuartero (UCAM‐SENS Universidad Católica San Antonio de Murcia UCAM HiTech Avda. Andres Hernandez Ros 1 Murcia 30107 Spain)

Abstract

Abstract We present a novel drug delivery nanocarrier consisting of 300 nm‐sized POT/Fe 3 O 4 /TRZ + TPB − nanoparticles (NPs). The mechanism is based on the (photo)oxidation of poly(3‐octylthiophene‐2,5‐diyl) (POT) (from POT 0 to POT + ), which facilitates the release of the positively charged drug trazodone (TRZ + ) encapsulated in the NPs. The primary factor guiding the overall process is the maintenance of the electroneutrality condition in each NP. The incorporation of a Fe 3 O 4 element enables the formation of an organic‐inorganic heterojunction (Fe 3 O 4 /POT) in the core of the NP. This heterojunction permits us to utilize visible light to induce the POT photooxidation to trigger the release of TRZ + , unlike other platforms based on a more energetic illumination requirement. The developed nanocarrier allows for a controlled drug release, achieving doses of 3.5 µg mL −1 of TRZ under 530 nm irradiation, 2.4 µg mL −1 at 625 nm, and 1.6 µg mL −1 at 470 nm within 1 h. The delivery is tested in undiluted blood serum, achieving an efficiency exceeding 90%. Overall, the integration of magnetic properties with a conductive polymer along with the adjustment of the band gap to enhance photooxidation performance in the visible range, constitute the conceptual innovation behind the controlled drug delivery system here presented, with TRZ as a model.

Article Details

Volume / Issue Vol. 65, Issue 2
Published January 09, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (4)

D

Deric Andrade‐Alarcón

UCAM‐SENS Universidad Católica San Antonio de Murcia UCAM HiTech Avda. Andres Hernandez Ros 1 Murcia 30107 Spain

V

Víctor de la Asunción‐Nadal

UCAM‐SENS Universidad Católica San Antonio de Murcia UCAM HiTech Avda. Andres Hernandez Ros 1 Murcia 30107 Spain

G

Gastón A. Crespo

UCAM‐SENS Universidad Católica San Antonio de Murcia UCAM HiTech Avda. Andres Hernandez Ros 1 Murcia 30107 Spain

M

Maria Cuartero

UCAM‐SENS Universidad Católica San Antonio de Murcia UCAM HiTech Avda. Andres Hernandez Ros 1 Murcia 30107 Spain