Electrospun polymer biomaterials
J Ding, J Zhang, J Li, D Li, C **ao, H **ao… - Progress in Polymer …, 2019 - Elsevier
Electrospinning provides a versatile technique for the preparation of matrices with
micro/nanoscopic fibers. The non-woven polymer materials produced by electrospinning …
micro/nanoscopic fibers. The non-woven polymer materials produced by electrospinning …
[HTML][HTML] Keratin-Based materials for biomedical applications
Keratin constitutes the major component of the feather, hair, hooves, horns, and wool
represents a group of biological material having high cysteine content (7–13%) as …
represents a group of biological material having high cysteine content (7–13%) as …
Fabrication of electrospun polymer nanofibers with diverse morphologies
C Wang, J Wang, L Zeng, Z Qiao, X Liu, H Liu, J Zhang… - Molecules, 2019 - mdpi.com
Fiber structures with nanoscale diameters offer many fascinating features, such as excellent
mechanical properties and high specific surface areas, making them attractive for many …
mechanical properties and high specific surface areas, making them attractive for many …
Designing biomimetic scaffolds for skin tissue engineering
There is a general increase in the number of patients with non-healing skin wounds,
imposing a huge social and economic burden on patients and healthcare systems. Severe …
imposing a huge social and economic burden on patients and healthcare systems. Severe …
Tissue engineering; strategies, tissues, and biomaterials
Current tissue regenerative strategies rely mainly on tissue repair by transplantation of the
synthetic/natural implants. However, limitations of the existing strategies have increased the …
synthetic/natural implants. However, limitations of the existing strategies have increased the …
Spatially and temporally controlled hydrogels for tissue engineering
Recent years have seen tremendous advances in the field of hydrogel-based biomaterials.
One of the most prominent revolutions in this field has been the integration of elements or …
One of the most prominent revolutions in this field has been the integration of elements or …
Electrospun nanofibers for improved angiogenesis: promises for tissue engineering applications
Angiogenesis (or the development of new blood vessels) is a key event in tissue
engineering and regenerative medicine; thus, a number of biomaterials have been …
engineering and regenerative medicine; thus, a number of biomaterials have been …
Double-layer nanofibrous sponge tube via electrospun fiber and yarn for promoting urethral regeneration
Insufficient bionic performance is a structural obstacle and makes urethral repair
unobtainable. To overcome this challenge, we mimicked the urethral matrix and applied two …
unobtainable. To overcome this challenge, we mimicked the urethral matrix and applied two …
Peripheral nerve injury: current challenges, conventional treatment approaches, and new trends in biomaterials-based regenerative strategies
Damage to peripheral nerves is a widely extended health problem, causing important
socioeconomic costs worldwide. Indeed, peripheral nerve injuries (PNI) have been …
socioeconomic costs worldwide. Indeed, peripheral nerve injuries (PNI) have been …
Fabrication of biohybrid cellulose acetate-collagen bilayer matrices as nanofibrous spongy dressing material for wound-healing application
G Ramanathan, LS Seleenmary Sobhanadhas… - …, 2020 - ACS Publications
Tissue engineering is currently one the fastest growing engineering fields, requiring
fabrication of advanced and multifunctional materials to be used as scaffolds or dressing for …
fabrication of advanced and multifunctional materials to be used as scaffolds or dressing for …