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Biomedical subjects

M Taub

Publications and source records attributed to M Taub.

At least 55 records · Page 3Linked to original sources

Growth of kidney epithelial cells in hormone-supplemented, serum-free medium.

Madin Darby canine kidney cells can grow in synthetic medium supplemented with 5 factors--insulin, transferrin, prostaglandin E1, hydrocortisone and triiodothyronine--as a serum substitute. These 5 factors permit growth for one month in the absence of serum, and a growth rate equivalent to that observed in serum-supplemented medium. Dibutyryl cAMP substitutes for prostaglandin E1 in the medium, suggesting that increased growth of Maden Darby canine kidney cells results from increased intracellular cAMP. Potential applications of the serum-free medium are discussed. The medium permits the selective growth of primary epithelial cell cultures in teh absence of fibroblast overgrowth, and a defined analysis of the mechanisms by which hormones regulate hemicyst formation.

Animals↗

Growth of Madin-Darby canine kidney epithelial cell (MDCK) line in hormone-supplemented, serum-free medium.

Madin-Darby canine kidney (MDCK) cells can grow in synthetic medium supplemented with five factors--insulin, transferrin, prostaglandin E1, hydrocortisone, and triiodothyronine--as a serum substitute. These five factors permit growth for 1 month in the absence of serum and a growth rate equivalent to that observed in serum-supplemented medium. Dibutyryl adenosine 3',5'-cyclic monophosphate substitutes for prostaglandin E1 in the medium. Potential applications of the serum-free medium are discussed. The medium permits a defined analysis of the mechanisms regulating hemicyst formation by hormones and permits the growth of primary kidney epithelial cell cultures in the absence of fibroblast overgrowth.

Animals↗

Isolation of amiloride-resistant clones from dog kidney epithelial cells.

The diuretic drug amiloride has been used to select variants from the dog kidney cell line MDCK which are partially resistant to killing by the drug. Evidence is presented suggesting that resistance to killing by amiloride is conferred by decreased uptake of amiloride, which reduces the intracellular drug concentration below the toxic level.

Amiloride↗

Inhibition by propranolol of bile acid- and PGE1-stimulated camp and intestinal secretion.

Three colonic and three ileal loops were prepared in six rabbits pretreated with propranolol (PR) 4 mg./kg. I.V. and in five untreated rabbits. In random order, 1 ml. of either deoxycholic acid (DCA) 6 mM., prostaglandin E1 (PGE1) 20 microgram./ml., or saline was placed in each colonic loop and 1 ml. of either cholera enterotoxin (CE) 10 microgram./ml., PGE1 20 microgram./ml., or saline was placed in each ileal loop. In untreated animals, DCA and PGE1 in the colon and CE and PGE1 in the ileum stimulated (P less than 0.01) adenylate cyclase (AC) and net secretion. In the colon, PR abolished DCA-stimulation of AC and net secretion and decreased PGE1-stimulated AC (P less than 0.01) and net secretion. In conclusion, at the doses and times studied, colonic-AC and net secretion stimulated by PGE1 or DCA was distinguished from small bowel-AC and net secretion stimulated by PGE1 or CE.

Adenylyl Cyclases↗

The mechanism of killing of mouse fibroblasts by the amino acid analogue 5-fluorotryptophan.

The mechanism of killing of A9 fibroblasts by 5-fluorotryptophan has been studied. L-tryptophan competitively relieves the growth inhibition caused by 5FT. After incubation with 5FT, 3H-5FT was incorporated into protein, replacing tryptophan residues. During the initial hours of incubation with 5FT, a specific inhibition was observed of the incorporation of L-tryptophan into protein; later this inhibition was followed by a general inhibition of protein synthesis and cell division. However, nuclear division continued after cell division had ceased. While 5FT was observed to be incorporated into protein after a 1 hour period in MEM + 0.40 mM 5FT in A9, no 3H-5FT was incorporated into protein in a mutant isolated by its resistance to killingy by 5FT. These results support the hypothesis that cell death occurs due to malfunctioning proteins which contain 5FT residues.

Animals↗

Effect of propranolol on bile acid- and cholera enterotoxin-stimulated cAMP and secretion in rabbit intestine.

Stimulation of net secretion by deoxycholic acid (DCA) in the colon and by cholera enterotoxin (CE) in the jejunum is mediated by cAMP. Propranolol (Pr) inhibits adenylate cyclase (AC) activity and net secretion induced by bile acid in the colon. The aim of this study was to assess the organ specificity of DCA and CE as well as the selectivity of Pr inhibition. Three colonic and three jejunal loops were prepared in each of 8 rabbits treated intravenously with Pr, 4 mg per kg, 1/2 hr before loop construction and in each of 10 untreated control rabbits. One milliliter of DCA, 6 mM, CE, 10 mug per ml, or heat-inactivated CE or 0.9% NaCl, as basal controls were injected in random order into each of the loops. The volume of luminal fluid and mucosal AC were measured in each intestinal loop 5 hr later. DCA in the colon stimulated AC 2-fold (P less than 0.01) and luminal fluid 15-fold (P less than 0.01). CE in the jejunum stimulated AC 2.3-fold (P less than 0.01) and luminal fluid 9-fold (P less that 0.01). No significant effects on volume or AC occurred in response to CE in the colon or to DCA in the jejunum. Pr pretreatment completely prevented the stimulation of AC and luminal fluid by DCA in the colon but did not affect the action of CE in the jejunum of the same animals. Thus, DCA and CE are organ-specific stimulants of cAMP systems, and Pr is a selective inhibitor of certain inducers of cAMP and net secretion.

Adenylyl Cyclases↗

Isolation and characterization of 5-fluorotryptophan-resistant mutants with altered L-tryptophan transport.

Mutants of A9 mouse fibroblast, resistant to the killing effect of 0.4 mM 5-flurotryptophan (5-FT), have altered L-tryptophan transport properties. The resistant phenotype is stable for at least 90 generations of growth in MEM. A fluctuation test indicated that clones resistant to 0.4 mM 5-FT occurred spontaneously. An average mutation rate was estimated at 1.6 X 10(-6). Treatment with N-methyl-N'-nitro-N-nitrosoguanidine increased the frequency of these clones by at least 100-fold. These results indicate that the resistant clones arose as a result of a mutation. All the resistant mutant tested accumulate less 5-FT at near steady-state conditions than the wild type. Lineweaver-Burk plots of initial rates of tryptophan uptake yield a biphasic curve suggesting that tryptophan is transported by two transport systems. Kinetic constants determined by a computer program indicate that both proposed transport systems were modified in each of two 5-FT resistant mutants.

Animals↗

Ephedrine in treatment of urinary incontinence.

Patients with urinary incontinence caused by various urologic disorders were evaluated and treated with oral ephedrine sulfate. The drug was found to improve continence in those patients with mild degrees of wetting due to urethral dysfunction regardless of cause. The failures occurred in severely damaged posterior urethras or denervated bladders and urogenital diaphragms.

Administration, Oral↗

Therapy questionably infarcted testis.

Observations made upon dogs and humans with apparent infarction of the testis secondary to torsion of the spermatic cord suggest that the treatment of choice for questionably viable testis is detorsion of the cord, replacement of the testis in its hemiscrotum, and fixation of the opposite testis. This form of therapy may be applicable to all "torsed testes" regardless of viability.

Animals↗

Phospholipids regulate growth and function of MDCK cells in hormonally defined serum free medium.

The effects of the simple phospholipids phosphatidic acid (PA) and lysophosphatidic acid (LPA) on the growth and function of Madin Darby Canine Kidney (MDCK) cells has been studied. We observed that PA and LPA not only stimulated the growth of MDCK cells (at 20 microM), but also stimulated the growth of normal rabbit kidney cells in serum free medium (albeit at a lower dosage of 5 microM). Evidence was obtained that PA interacts synergistically with insulin so as to elicit a growth stimulatory effect. Recently, extracellular PA and LPA were proposed to stimulate mitogenesis in several types of animal cells by binding to particular sites on the plasma membrane which are coupled to signaling mechanisms such as adenylate cyclase via a pertussis toxin sensitive, inhibitory guanosine triphosphate binding protein (Gi protein) (15). However, even when the pertussis toxin dosage was increased to 50 ng/ml, LPA still had a dramatic growth stimulatory effect on MDCK cells. In the absence of LPA pertussis toxin was slightly growth stimulatory to MDCK cells. Phospholipids such as PA and LPA have been observed to prevent prostaglandin-induced increases in adenylate cyclase activity in other cell types via their effects on such a pertussis toxin sensitive Gi protein. If PA and LPA act on MDCK cells in this manner, then these phospholipids may possibly prevent the effect of PGE1 on the growth of normal MDCK cells. However PGE1 was still growth stimulatory to normal MDCK cells. The effects of PA on PGE1 independent variants of MDCK cells, which have elevated intracellular cyclic AMP levels (22), were also examined. In the presence of PA, PGE1 remained growth inhibitory, rather than growth stimulatory to the PGE1 independent cells. However, the PA dosage required to elicit an optimal growth response (5 microM) was dramatically reduced, as compared with normal MDCK cells (20 microM). This altered dosage requirement could be explained by the elevated intracellular cyclic AMP levels in the PGE1 independent variants. Like PGE1 and 8-bromocyclic AMP, PA and LPA also significantly increased the initial rate of Rb+ uptake by confluent monolayers of MDCK cells. The increase in the initial rate of Rb+ uptake could be explained by an increase in the ouabain-sensitive component of Rb+ uptake. An increase in the initial rate of ouabain-insensitive Rb+ uptake was also observed in LPA treated MDCK cell cultures.

Adenylate Cyclase Toxin↗