Nanofibrous scaffolds electrospun from elastomeric biodegradable poly(L-lactide-co-ε-caprolactone) copolymer
Explore this paper's citation graph
Summary
It has been successfully demonstrated that by increasing the rotation speed of the collector mandrel, the alignment of the fibers can be controlled in a preferred direction and contribute to determining the functional conditions to electrospin this biodegradable elastomeric copolymer which has potential as a scaffold material for vascular tissue engineering.
- Type
- article
- Published
- 2009-02-04
- Cited by
- 42
- References
- 30
- OpenAlex
- https://openalex.org/W19193973
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:43692140
Keywords
Medicine
References
- Electrospun P(LLA-CL) nanofiber: a biomimetic extracellular matrix for smooth muscle cell and endothelial cell proliferation.
- Electrospinning of Polymeric Nanofibers for Tissue Engineering Applications: A Review
- Electrospun nano- to microfiber fabrics made of biodegradable copolyesters: structural characteristics, mechanical properties and cell adhesion potential.
- Nano-Featured Scaffolds for Tissue Engineering: A Review of Spinning Methodologies
- Aligned biodegradable nanofibrous structure: a potential scaffold for blood vessel engineering.
- Electrospun Nanofiber Fabrication as Synthetic Extracellular Matrix and Its Potential for Vascular Tissue Engineering
- Electrospun polymer nanofibres with small diameters
- Beaded nanofibers formed during electrospinning
- Porous tubular structures with controlled fibre orientation using a modified electrospinning method
- Electrospinning of silk fibroin nanofibers and its effect on the adhesion and spreading of normal human keratinocytes and fibroblasts in vitro.
- Applications of polymer nanofibers in biomedicine and biotechnology
- Mechanical responses of a compliant electrospun poly(L-lactide-co-epsilon-caprolactone) small-diameter vascular graft.
- Potential of Nanofiber Matrix as Tissue-Engineering Scaffolds
- Electrospun nanofibrous structure: a novel scaffold for tissue engineering.
- Mesoscopic spatial designs of nano- and microfiber meshes for tissue-engineering matrix and scaffold based on newly devised multilayering and mixing electrospinning techniques.
- Nano-fibrous scaffolds for tissue engineering.
- Biodegradable lactone copolymers. I: Characterization and mechanical behavior of ε-caprolactone and lactide copolymers
- The effect of processing variables on the morphology of electrospun nanofibers and textiles
- A biodegradable nanofiber scaffold by electrospinning and its potential for bone tissue engineering.
- Nanometre diameter fibres of polymer, produced by electrospinning
Cited by
- CHARACTERIZATION AND IMPLEMENTATION OF A DECELLULARIZED PORCINE VESSEL AS A BIOLOGIC SCAFFOLD FOR A BLOOD VESSEL MIMIC
- Developing methods for distributing particles in electrospun materials
- Enhanced mechanical properties of poly (ε-caprolactone) nanofibers produced by the addition of non-stoichiometric inclusion complexes of poly (ε-caprolactone) and α-cyclodextrin
- Nanometer depth resolution in 3D topographic analysis of drug-loaded nanofibrous mats without sample preparation.
- Responsive poly (γ-glutamic acid) fibres for biomedical applications.
- Foaming Strategies for Bioabsorbable Polymers in Supercritical Fluid Mixtures. Part II. Foaming of poly (ɛ-caprolactone-co-lactide) in carbon dioxide and carbon dioxide+acetone fluid mixtures
- Polyblend nanofibers for biomedical applications: perspectives and challenges.
- Peripheral Nerve Repair in Rats Using Composite Hydrogel-Filled Aligned Nanofiber Conduits with Incorporated Nerve Growth Factor
- Design concepts and strategies for tissue engineering scaffolds
- Nanoscale engineering of biomimetic surfaces: cues from the extracellular matrix
- Complex phase behavior and state of miscibility in Poly(ethylene glycol)/Poly(l‐lactide‐co‐ε‐caprolactone) Blends
- Aligned electrospun siloxane-doped vaterite/poly(l-lactide) composite fibremats: evaluation of their tensile strength and cell compatibility
- Electrospun Poly(ester-Urethane)- and Poly(ester-Urethane-Urea) Fleeces as Promising Tissue Engineering Scaffolds for Adipose-Derived Stem Cells
- Self-Assembled Rosette Nanotube/Hydrogel Composites for Cartilage Tissue Engineering
- Multifunctional hybrid three-dimensionally woven scaffolds for cartilage tissue engineering
- Novel scaffold design with multi-grooved PLA fibers
- Bioresorbable elastomeric vascular tissue engineering scaffolds via melt spinning and electrospinning.
- Porcine carotid artery replacement with biodegradable electrospun poly-e-caprolactone vascular prosthesis.
- Investigating the effect of PGA on physical and mechanical properties of electrospun PCL/PGA blend nanofibers
- New perspectives for the amorphization and physical stabilization of poorly water-soluble drugs and understanding their dissolution behavior
Related papers
No related papers recorded.