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[HTML][HTML] Poly-l-lactic acid (PLLA)-based biomaterials for regenerative medicine: a review on processing and applications
Synthetic biopolymers are effective cues to replace damaged tissue in the tissue
engineering (TE) field, both for in vitro and in vivo application. Among them, poly-l-lactic acid …
engineering (TE) field, both for in vitro and in vivo application. Among them, poly-l-lactic acid …
Current progress in application of polymeric nanofibers to tissue engineering
Tissue engineering uses a combination of cell biology, chemistry, and biomaterials to
fabricate three dimensional (3D) tissues that mimic the architecture of extracellular matrix …
fabricate three dimensional (3D) tissues that mimic the architecture of extracellular matrix …
[HTML][HTML] Surface potential and roughness controlled cell adhesion and collagen formation in electrospun PCL fibers for bone regeneration
Surface potential of biomaterials is a key factor regulating cell responses, driving their
adhesion and signaling in tissue regeneration. In this study we compared the surface and …
adhesion and signaling in tissue regeneration. In this study we compared the surface and …
Polymeric scaffolds in tissue engineering: a literature review
M Jafari, Z Paknejad, MR Rad… - … Research Part B …, 2017 - Wiley Online Library
The tissue engineering scaffold acts as an extracellular matrix that interacts to the cells prior
to forming new tissues. The chemical and structural characteristics of scaffolds are major …
to forming new tissues. The chemical and structural characteristics of scaffolds are major …
Plasma-assisted surface alteration of industrial polymers for improved adhesive bonding
The wide-ranging applications of industrial polymers are limited due to their poor surface
properties like low free energy, dynamic nature, and ineffective adhesion with self or other …
properties like low free energy, dynamic nature, and ineffective adhesion with self or other …
Fabrication and plasma modification of nanofibrous tissue engineering scaffolds
This paper provides a comprehensive overview of nanofibrous structures for tissue
engineering purposes and the role of non-thermal plasma technology (NTP) within this field …
engineering purposes and the role of non-thermal plasma technology (NTP) within this field …
Effective immobilization of BMP-2 mediated by polydopamine coating on biodegradable nanofibers for enhanced in vivo bone formation
H Cho, SK Madhurakkat Perikamana… - … applied materials & …, 2014 - ACS Publications
Although bone morphogenic proteins (BMPs) have been widely used for bone regeneration,
the ideal delivery system with optimized dose and minimized side effects is still active area …
the ideal delivery system with optimized dose and minimized side effects is still active area …
Fabrication of chitosan/heparinized graphene oxide multilayer coating to improve corrosion resistance and biocompatibility of magnesium alloys
F Gao, Y Hu, Z Gong, T Liu, T Gong, S Liu… - Materials Science and …, 2019 - Elsevier
Due to its good biodegradability and mechanical properties, magnesium alloys are
considered as the ideal candidate for the cardiovascular stents. However, the rapid …
considered as the ideal candidate for the cardiovascular stents. However, the rapid …
Electrospinning of chitosan-based nanofibers: From design to prospective applications
Chitosan is a biopolymer originating from renewable resources, with great properties which
make it an attractive candidate for plenty of applications of contemporary interest. By …
make it an attractive candidate for plenty of applications of contemporary interest. By …
Surface modification of electrospun fibres for biomedical applications: A focus on radical polymerization methods
The development of electrospun ultrafine fibres from biodegradable and biocompatible
polymers has created exciting opportunities for biomedical applications. Fibre meshes with …
polymers has created exciting opportunities for biomedical applications. Fibre meshes with …