Fabrication of biodegradable polymer foams for cell transplantation and tissue engineering.
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Summary
Tissue engineering and cell transplantation are fields emerging to resolve the missing tissue and organ problems.
- Type
- article
- Published
- 1999-01-01
- Cited by
- 107
- References
- 19
- OpenAlex
- https://openalex.org/W161387269
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:7780092
Keywords
Transplantation, Scarcity, Organ transplantation, Medicine, Tissue engineering
References
- Bioengineering in development of the hybrid artificial pancreas.
- Woven carbon surface replacement in the knee: independent clinical review.
- Biodegradable sponges for hepatocyte transplantation.
- Implantable biohybrid artificial organs.
- Fabrication of biodegradable polymer scaffolds to engineer trabecular bone.
- Treatment of deep cartilage defects in the knee with autologous chondrocyte transplantation.
- Laminated three-dimensional biodegradable foams for use in tissue engineering.
- Development of biomechanical properties and morphogenesis of in vitro tissue engineered cartilage.
- Recipes for reconstituting skin.
- Neocartilage formation in vitro and in vivo using cells cultured on synthetic biodegradable polymers.
- Preparation and characterization of poly(l-lactic acid) foams
- Tissue engineering by cell transplantation using degradable polymer substrates.
- Tissue engineering: from biology to biological substitutes.
- The effect of donor and recipient age on engraftment of tissue-engineered liver.
- Applications of ECM analogs in surgery
- Basic fibroblast growth factor released from synthetic guidance channels facilitates peripheral nerve regeneration across long nerve gaps
- Biomaterial-centered infection: microbial adhesion versus tissue integration.
- Ultrastructural observations of cells at the interface of a biodegradable polymer: Polyglactin 910.
- Bioerodible polyanhydrides as drug-carrier matrices. I: Characterization, degradation, and release characteristics.
Cited by
- Poly(alpha-hydroxyl acids)/hydroxyapatite porous composites for bone-tissue engineering. I. Preparation and morphology.
- Investigation Of Physiochemical Properties Of A Novel Gradient Calcium Polyphosphate Bone Scaffold And Its Influence On Cellular Behavior
- Design of Peptides with Targeted Apatite and Human Bone Marrow Stromal Cell Adhesion for Bone Tissue Engineering.
- Development of Silk based Bio-polymeric Porous Matrices for Tissue Engineering Applications
- Smart fibres, fabrics and clothing
- In vitro biocompatibility study of keratin/agar scaffold for tissue engineering.
- Developing bioactive composite scaffolds for bone tissue engineering
- NaOH-treated PLGA scaffolds allow for greater articular chondrocyte functions
- Characterization of bulk properties of nanofibrous scaffolds from nanomechanical properties of single nanofibers.
- Design Strategies of Tissue Engineering Scaffolds with Controlled Fiber Orientation
- Electrospun P(LLA-CL) nanofiber: a biomimetic extracellular matrix for smooth muscle cell and endothelial cell proliferation.
- Macroporous poly(3-hydroxybutyrate-co-3-hydroxyvalerate) matrices for bone tissue engineering.
- Three-Dimensional Scaffolds for Tissue Engineering Applications: Role of Porosity and Pore Size
- Synthetic nano-scale fibrous extracellular matrix.
- Vascularization and tissue infiltration of a biodegradable polyurethane matrix.
- Synthesis and characterization of macroporous chitosan/calcium phosphate composite scaffolds for tissue engineering.
- Polymeric Scaffolds for Bone Tissue Engineering
- Morphological and Functional Analysis of Rat Hepatocyte Spheroids Generated on Poly(L-lactic acid) Polymer in a Pulsatile Flow Bioreactor
- Novel hybrid scaffolds for the cultivation of osteoblast cells.
- Nano-fibrous poly(L-lactic acid) scaffolds with interconnected spherical macropores.
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