[HTML][HTML] Electrospun biomimetic nanofibrous scaffolds: a promising prospect for bone tissue engineering and regenerative medicine

S Anjum, F Rahman, P Pandey, DK Arya… - International Journal of …, 2022 - mdpi.com
Skeletal-related disorders such as arthritis, bone cancer, osteosarcoma, and osteoarthritis
are among the most common reasons for mortality in humans at present. Nanostructured …

[HTML][HTML] Bio-based electrospun fibers for wound healing

B Azimi, H Maleki, L Zavagna, JG De la Ossa… - Journal of functional …, 2020 - mdpi.com
Being designated to protect other tissues, skin is the first and largest human body organ to
be injured and for this reason, it is accredited with a high capacity for self-repairing …

[HTML][HTML] Poly (lactic acid)-based electrospun fibrous structures for biomedical applications

H Maleki, B Azimi, S Ismaeilimoghadam, S Danti - Applied Sciences, 2022 - mdpi.com
Poly (lactic acid)(PLA) is an aliphatic polyester that can be derived from natural and
renewable resources. Owing to favorable features, such as biocompatibility …

[HTML][HTML] Promising role of polylactic acid as an ingenious biomaterial in scaffolds, drug delivery, tissue engineering, and medical implants: research developments …

L Ranakoti, B Gangil, P Bhandari, T Singh, S Sharma… - Molecules, 2023 - mdpi.com
In the present scenario, the research is now being focused on the naturally occurring
polymers that can gradually replace the existing synthetic polymers for the development of …

[HTML][HTML] 3D printed polylactic acid/gelatin-nano-hydroxyapatite/platelet-rich plasma scaffold for critical-sized skull defect regeneration

M Bahraminasab, N Doostmohammadi… - BioMedical Engineering …, 2022 - Springer
Abstract Background Three-dimensional (3D) printing is a capable approach for the
fabrication of bone tissue scaffolds. Nevertheless, a purely made scaffold such as polylactic …

[HTML][HTML] Geometry-based computational fluid dynamic model for predicting the biological behavior of bone tissue engineering scaffolds

AM Omar, MH Hassan, E Daskalakis, G Ates… - Journal of Functional …, 2022 - mdpi.com
The use of biocompatible and biodegradable porous scaffolds produced via additive
manufacturing is one of the most common approaches in tissue engineering. The geometric …

In vivo investigations of polymers in bone tissue engineering: A review study

A A. Al-allaq, JS Kashan… - International Journal of …, 2024 - Taylor & Francis
Bone tissue engineering (BTE) applications and regenerative strategies have been used to
improve the clinical practice of repairing large bone defects associated with surgical …

[HTML][HTML] Fabrication of robust poly L-lactic acid/cyclic olefinic copolymer (PLLA/COC) blends: study of physical properties, structure, and cytocompatibility for bone …

F Nazir, M Iqbal, AN Khan, M Mazhar… - journal of materials …, 2021 - Elsevier
Abstract Poly (l-lacticacid)(PLLA) is an FDA approved material for bone tissue engineering
but its inherent brittleness and low melting ability are major challenges for its large-scale …

[PDF][PDF] Poly (Lactic acid) and its composites as functional materials for 3-d scaffolds in biomedical applications: A mini-review of recent trends

ST Sikhosana, TP Gumede, NJ Malebo… - eXPRESS Polymer …, 2021 - researchgate.net
Patients sometimes lose organs and/or organ functions due to disease and injury, which
may result in permanent disabilities. Advanced biotechnological practices can now afford …

In-vitro and in-vivo studies of 4D printed shape memory scaffolds with bioactive fillers and coating for enhanced bone tissue regeneration

W Zhou, X Dong, Y He, W Zheng… - Smart Materials and …, 2022 - iopscience.iop.org
Bone tissue engineering is considered one of the pivotal treatments for bone defects in
patients. However, the conventional strategies for repairing irregular and complex bone …