Search PubMedSearch

PubMed · 6719390

Plasma contact activation and decrease of factor V activity on negatively-charged polyelectrolytes.

Abstract

The effect of negatively-charged polymers, used in some artificial devices, on plasma clotting and kinin systems was studied in vitro using polyelectrolyte complexes. Contact activation was observed as an immediate, transient and surface-dependent phenomenon. After incubation of the plasma with the polymer a small decrease of factor XII activity was noticed, which corresponded to a greater reduction of prekallikrein activity and to a marked kinin release. No significant decrease of factor XII, prekallikrein, HMW kininogen could be detected immunologically. Only the initial contact of the plasma with the polyelectrolyte lead to activation, subsequently the surface became inert. Beside contact activation, factor V activity also decreased in the plasma. The decrease was surface and time-dependent. It was independent of contact factor activation, and appeared to be related to the sulfonated groups of the polymer. If purified factor V was used instead of plasma factor V, inactivation was immediate and not time-dependent suggesting a direct adsorption on the surface. A second incubation of the plasma-contacted polymer with fresh plasma resulted in a further loss of Factor V activity.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

M C Boffa, B Dreyer, C Pusineri. 1984-02-28. Plasma contact activation and decrease of factor V activity on negatively-charged polyelectrolytes.. https://pubmed.ncbi.nlm.nih.gov/6719390/

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

KEEP EXPLORING

Related citations

Chiral separation of leucovorin with bovine serum albumin using affinity capillary electrophoresis.

A method for the determination of the (6R)- and (6S)-stereoisomers of leucovorin using electrokinetic chromatography (EKC) in the affinity mode has been developed. Bovine serum albumin (BSA) is used as a run buffer additive to incorporate enantiomeric selectivity into the system. Protein-wall interactions are minimized by using a poly(ethylene glycol) (PEG) coated capillary. Chiral resolution is obtained in 12.5 min with efficiencies greater than 200,000 theoretical plates using BSA as an additive, while no resolution is obtained in the absence of BSA. A general equation is derived to calculate the free energy of interaction between the leucovorin isomers and the BSA molecule. This method represents a new means of obtaining thermodynamic data for substrate binding interactions and for the general study of drug cross-reactions and interactions of drugs with serum and other proteins.

Electrolytes

X-ray microanalysis of bulk hydrated specimens of neoplastic and non-neoplastic human urothelium.

Specimens of neoplastic and non-neoplastic human urothelium were rapidly frozen against a copper block immersed in liquid nitrogen, planed in a cryoultramicrotome and then examined by low-temperature scanning electron microscopy (LTSEM) following coating by aluminium. Energy dispersive X-ray microanalysis (XRMA) was performed on the superficial urothelial cells and on gelatin blocks mounted in parallel which had known concentrations of sodium, potassium, chloride, and phosphorus. The neoplastic urothelial cells had significantly less phosphorus (P less than 0.05) than non-neoplastic cells and the ratios K+/P,K+/Na+, and K+/Cl- were significantly higher in neoplastic cells than in non-neoplastic cells (P less than 0.00001). These results are consistent with those expected in cells with a sustained increase in intracellular pH caused by stimulation of Na+/H+ ion membrane exchange.

Electrolytes

Water and electrolyte solutions. Concentration and activity.

In this work we briefly describe the concept of activity of a solution. We treat the case of electrolyte solutions and the existing experimental difficulties to determine single ion activities. Then, we review the theoretical methods available to compute ionic activities. The mean spherical approximation (MSA) provides a simple and reliable method for computation of single ion activities. We present the case of an arbitrary mixture of ions. Particular attention is given to biological-like solutions, including magnesium and calcium ions.

Electrolytes