PubMed HealthSearch

PubMed · 2616955

Polyurethane support films: structure and cellular adhesion.

Abstract

It is desirable to examine the cytobiology of cell adhesion to the same materials which are contemplated for use in biomedical and biotechnological devices. It is also of fundamental interest to examine adhesion to substrates with properties which are likely to influence adhesion in controlled ways. In many of these applications the materials of choice are polyurethane elastomers due to their physical properties and resistance to biodegradation. Polyurethanes have a two phase microstructure consisting of hydrophilic hard segments and hydrophobic soft segment domains. Variations of both the chemistry and the morphology of these microdomains may be produced. It is well understood that the hydrophilic/hydrophobic nature of surfaces affects cellular adhesion and the adsorption of extracellular proteins. Since polyurethane microdomains have dimensions in the range of 10-100 nm, hence the size of proteins and cell-surface receptors, polyurethane microdomain structure could influence order at the cell-material interface. Polyurethanes may be prepared as thin films with excellent properties for use as specimen supports in High Voltage transmission Electron Microscopy (HVEM) at 1 MeV. This permits the imaging of the cytoskeleton and other internal features of whole mounts of adherent cells, rather than tedious thin sectioning required for conventional TEM. Subsequently the surface morphology of these preparations may be imaged with high resolution SEM. Finally, the polyurethane itself may be stained and imaged by either HVEM or high resolution SEM in order to relate polyurethane micro-morphology to cellular features.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

S L Goodman, S L Cooper, R M Albrecht. 1989. Polyurethane support films: structure and cellular adhesion.. https://pubmed.ncbi.nlm.nih.gov/2616955/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

[Value of routine follow-up after infrainguinal arterial reconstruction].

Longterm patency of infrainguinal bypass procedures may be established on the basis of clinical evaluation and ankle pressure measurements. With the aim of assessing whether these parameters could predict grafts at risk for occlusion, we identified 24 patients in whom the bypass had occluded between 3 and 12 months postoperatively, but following at least one follow-up. These patients were compared with a control group consisting of further 24 patients operated on during the same period, but in whom the bypass was patent. Prior to graft occlusion only nine (39%) patients had complained of claudication, and a significant drop in ankle pressure was demonstrated in seven (29%) patients. These figures were significantly higher than the one (4%) patient in the control group who complained of claudication and the other (4%) patient who developed a drop in ankle pressure (p < 0.02 and 0.05, respectively). Graft surveillance based on patients' history and ankle pressure measurements are insufficient parameters for identification of grafts at risk for occlusion. However, the occurrence of claudication and/or a significant drop in ankle pressures are associated with a high incidence of graft thrombosis.

Biocompatible Materials

[Implantation of a Stecker metal prosthesis in malignant stenosis of the gastric stump].

A 55 year old patient 3 years after gastric resection (Billroth II) has got gastric outlet stenosis. Half year ago was established a tumour recidive, that the time of reoperation was inoperable. Under endoscopic and radiological control we have introduced and placed a 19 mm diameter, 4 cm long balloon expandable tantalum stent (Strecker stent). The gastric passage has normalised and after 6 month the patient is symptom free.

Biocompatible Materials