“The effect of poly (glycerol sebacate) incorporation within hybrid chitin–lignin sol–gel nanofibrous scaffolds”
Özet ve Araştırma Bulguları (Abstract)
Chitin and lignin primarily accumulate as bio-waste resulting from byproducts of crustacean crusts and plant biomass. Recently, their use has been proposed for diverse and unique bioengineering applications, amongst others. However, their weak mechanical properties need to be improved in order to facilitate their industrial utilization. In this paper, we fabricated hybrid fibers composed of a chitin–lignin (CL)-based sol–gel mixture and elastomeric poly (glycerol sebacate) (PGS) using a standard electrospinning approach. Obtained results showed that PGS could be coherently blended with the sol–gel mixture to form a nanofibrous scaffold exhibiting remarkable mechanical performance and improved antibacterial and antifungal activity. The developed hybrid fibers showed promising potential in advanced biomedical applications such as wound care products. Ultimately, recycling these sustainable biopolymers and other bio-wastes alike could propel a “greener” economy.
Yıllık Atıf Gelişimi & Dinamiği
32 total citationsAlıntı Yap ve Dışa Aktar (Cite)
@article{abdullah2018theeffec,
title = {The effect of poly (glycerol sebacate) incorporation within hybrid chitin–lignin sol–gel nanofibrous scaffolds},
author = {Turdimuhammad Abdullah, Lassaad Gzara, Giovanna Simonetti, Ahmed Alshahrie, Numan Salah, Pierfrancesco Morganti, Angelo Chianese, Afsoon Fallahi, Ali Tamayol, Sidi A Bencherif, Adnan Memic},
journal = {Materials 11 (3), 451},
volume = {11},
number = {3},
pages = {451},
year = {2018},
publisher = {MDPI},
doi = {10.3390/MA11030451},
url = {https://doi.org/10.3390/MA11030451},
}Bibliyografik Yayın Bilgileri
İlgili Diğer Akademik Çalışmalar
Tüm Akademik Eserlere Dön →“Oxygen-Generating Metal Peroxide Particles for Cancer Therapy, Diagnosis, and Theranostics”
Future Pharmacology 5 (3), 41
“Designing lignin-based biomaterials as carriers of bioactive molecules”
Pharmaceutics 15 (4), 1114
“Designing silk-based cryogels for biomedical applications”
Biomimetics 8 (1), 5