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K Crilly

Publications and source records attributed to K Crilly.

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Ethanol potentiates the stimulatory effects of phorbol ester, sphingosine and 4-hydroxynonenal on the hydrolysis of phosphatidylethanolamine in NIH 3T3 cells.

Ethanol and other alcohols have been shown to specifically stimulate phospholipase-D-mediated hydrolysis of phosphatidylethanolamine (PtdEtn) in NIH 3T3 fibroblasts. Here, we further examined the possible mechanism of this ethanol action. Ethanol (10-300 mM) and the protein kinase C (PKC) activator 12-O-tetradecanoyl-phorbol 13-acetate (TPA) had synergistic stimulatory effects on the degradation of preformed [14C]PtdEtn when added in combination to [14C]ethanolamine-labelled suspended NIH 3T3 cells 30 min after collection of cells by scraping. Scraping caused a transient increase, lasting for less than 30 min, in the cellular content of 1,2-diacylglycerol, another PKC activator. Initially (0-50 min incubation), the main water-soluble product of [14C]PtdEtn degradation in ethanol plus TPA-treated cells was [14C]ethanolamine, while later (90 min) the main product of [14C]PtdEtn hydrolysis was [14C]ethanolamine phosphate in the presence of these agents. Ethanol also potentiated the specific stimulatory effects of sphingosine (through phospholipase D) and 4-hydroxynonenal (not involving phospholipase D) on PtdEtn hydrolysis. The effects of these latter agents were unrelated to PKC activation. These data indicate that the observed potentiating effects of ethanol on PtdEtn hydrolysis do not involve direct regulation of PKC or phospholipase D activities.

Aldehydes↗

Fetal rhesus monkey lung cells can be grown in serum-free medium for the replication of dengue-2 vaccine virus.

Serum-free media were developed to grow diploid fetal rhesus monkey lung (DBS-FRhL-2) cells and to propagate dengue-type 2 virus vaccine strain PR-159 (dengue-2 vaccine virus). Vitamins, amino acids, growth factors, hormones and other organic compounds, and inorganic salts were substituted for fetal bovine serum. The composition of the medium that was optimal for growth of DBS-FRhL-2 cells differed from medium optimal for the propagation of dengue-2 vaccine virus. Insulin, epidermal growth factor, fibroblast growth factor, and platelet-derived growth factor were required for DBS-FRhL-2 cell proliferation in serum-free medium but were inhibitory for virus propagation. Adenosine, cytidine, guanosine, uridine, and thymidine, each at 0.01 mM concentration, were necessary as medium supplements to obtain a high yield of dengue-2 vaccine virus in DBS-FRhL-2 cells under serum-free conditions. DBS-FRhL-2 cells grown in serum-free medium produced dengue-2 vaccine virus with yields similar to those of cells grown in the presence of serum. Dengue-2 vaccine virus obtained under serum-free conditions retained its phenotypic markers such as temperature sensitivity and small plaque size.

Animals↗

Effects of fatty acids on motility retention by Treponema pallidum in vitro.

Treponema pallidum (Nichols virulent strain) was incubated under 75% N2 + 20% H2 + 5% CO2 in prereduced serum-free modified Eagle-Richter medium supplemented with different concentrations of various long-chain fatty acids complexed with fatty acid-free bovine serum albumin. Motility retention was greater in medium with oleic acid containing 15 rather than 2 mg of albumin per ml. Palmitic, stearic, oleic, or linoleic acid alone caused rapid loss of motility at concentrations as low as 5 microgram/ml. Elaidic acid (92 microgram/ml) alone had no effect on motility. Various combinations of saturated plus unsaturated fatty acids did not inhibit motility retention or were less inhibitory than either of the individual fatty acid components. The combination of palmitic plus oleic acids was least toxic. Rapid loss of motility occurred with pairs of unsaturated or saturated fatty acids, or with Tween 40, 60, or 80, alone or combined. Autoxidation of oleic acid resulted in decreased toxicity for T. pallidum but increased toxicity for baby hamster kidney cells.

Culture Media↗

Leading questions.

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ACE on ageing.

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