“Surface morphology and biochemical characteristics of electrospun cellulose nanofibril reinforced PLA/PBS hollow scaffold for tissue engineering”

Fibers and Polymers 23 (9), 2539-2548
Publisher: The Korean Fiber Society
تەتقىقات مەزمۇنى ۋە خۇلاسىسى (Abstract)
The treatment of organ failure is one of the primary concerns of healthcare because available organ transplantation techniques have multiple disadvantages. Currently, tissue engineering has emerged as an ingenious approach in which biocompatible and biodegradable scaffolds are used as the alternative to allograft. The PLA/PBS solid electrospun scaffolds have gained a boosted interest in this field. However deficient nutrient diffusion in the implanted area, poor permeability of the seeded cells and insufficient vascularization has been postponing clinical translation of the electrospun scaffolds. In the present research, we have fabricated CNF/PLA/PBS hollow fibrous scaffolds using two different core templates such as mineral oil and glycerol. The physical properties and function were analyzed by using tensile test, scanning electron microscope, contact angle and invitro degradation. The quantity of attached …
يىللىق نەقىل ئېشىش سۈرئىتى
12 total citationsئىلمىي نەقىل ئېلىش ۋە چۈشۈرۈش (Cite)
@article{saeed2022surfacem,
title = {Surface morphology and biochemical characteristics of electrospun cellulose nanofibril reinforced PLA/PBS hollow scaffold for tissue engineering},
author = {Usman Saeed, Turdimuhammad Abdullah, Hamad Al-Turaif},
journal = {Fibers and Polymers 23 (9), 2539-2548},
volume = {23},
number = {9},
pages = {2539--2548},
year = {2022},
publisher = {The Korean Fiber Society},
doi = {10.1007/s12221-023-00142-7},
url = {https://doi.org/10.1007/s12221-023-00142-7},
}بىبلىئوگرافىك نەشر ئۇچۇرلىرى
ئالاقىدار باشقا تەتقىقات ئەسەرلىرى
بارلىق ئىلمىي ئەسەرلەرگە قايتىش→“Designing 4D printed drug delivery systems based on smart polymers and hydrogels: principles, strategies, and future perspectives”
Progress in Biomedical Engineering
“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