“Designing 4D printed drug delivery systems based on smart polymers and hydrogels: principles, strategies, and future perspectives”
تەتقىقات مەزمۇنى ۋە خۇلاسىسى (Abstract)
The development of advanced drug delivery systems (DDS) has revolutionized pharmaceutical applications by enabling precise, controlled, and targeted drug release.Polymer-based biodegradable systems have garnered notable attention within the field due to their inherent biocompatibility and the capacity to facilitate localized and sustained drug administration. Nonetheless, their widespread clinical adoption is hindered by challenges such as uncontrolled drug release kinetics, limited patient-specific customization, and scalability constraints. 3D printing overcomes these limitations by offering unparalleled design flexibility and customization, while 4D printing further addresses dynamic control challenges by enabling stimuli-responsive drug carriers for precise and targeted release. This review offers a comprehensive overview of 4D printing technologies for drug delivery applications, with a particular focus on a …
ئىلمىي نەقىل ئېلىش ۋە چۈشۈرۈش (Cite)
@article{abdullah2026designin,
title = {Designing 4D printed drug delivery systems based on smart polymers and hydrogels: principles, strategies, and future perspectives},
author = {Turdimuhammad Abdullah, Ayimgül Uzunyol, Suleyman Hekim, Cemil Dizman, Gamze Aydin, Oguz Okay, Adnan Memic},
journal = {Progress in Biomedical Engineering},
year = {2026},
doi = {10.1088/2516-1091/aea7ea},
url = {https://doi.org/10.1088/2516-1091/aea7ea},
}بىبلىئوگرافىك نەشر ئۇچۇرلىرى
ئالاقىدار باشقا تەتقىقات ئەسەرلىرى
بارلىق ئىلمىي ئەسەرلەرگە قايتىش →“High-solid acrylic resins based on bio-derived lauryl methacrylate for varnish and paint applications”
Journal of Polymer Research 33 (3), 92
“Computational modeling-enhanced photo-DSC for rapidly developing 4D printable body temperature-responsive self-healing and shape-memory photopolymers”
Smart Materials and Structures 35 (2), 025019
“Dual pH‐and Temperature‐Responsive P (AAc‐co‐C16A) Shape‐Memory Hydrogels for Controlled Drug Release”
Macromolecular Materials and Engineering 311 (1), e00370