PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Proscillaridin”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

[Investigations on the Stability of Proscillaridine, Proscillaridine-3'-methylether and Proscillaridine-4'-methylether in Artificial Gastric and Intestinal Fluids (author's transl)].

The stability of bufadienolides in artificial gastric and intestinal fluids was investigated at different pH-values as a function of incubation time using proscillaridine, proscillaridine-3'-methylether and proscillaridine-4'-methylether. These glycosides were completely stable on pH 3.0--8.5 during the investigated time interval of 1 h. At lower pH-values cleavage of the glycosidic bond occurred. At pH 1.0 73% of proscillaridine, 33% of proscillaridine-3'-methylether and 41% of proscillaridine-4'-methylether were decomposed. At pH 2.0 only about 10% decomposition of these compounds could be detected. These experiments show that the stability of proscillaridine in gastric juice is comparable with the stability of digitalis glycosides and digoxin derivatives. The stability of methylated proscillaridine derivatives in artificial digestion fluids, however, proved to be superior to any orally administered cardiac glycoside.

Administration, Oral↗

[14,15-beta-oxido analog of proscillaridin (HOE 040). A new cardiac glycoside with low arrhythmic activity and greater absorption ratio].

The 14,15-beta-oxido analogue of proscillaridin A (HOE 040), in a dose 4 times higher showed equally positive-inotropic effect on the isolated guinea pig heart as did proscillaridin A. In the dog in vivo HOE 040 was equally positive-inotropic, as measured by the increase of dp/dt of the left ventricle of the heart, as proscillaridin A. In combination with aconitine, HOE 040 also in 4fold higher dose caused less cardiac fibrillation on the isolated guinea pig heart than did proscillaridin A. The dose of HOE 040 which by infusion in the guinea pig in vivo precipitates cardiac arrhythmias was 4 times higher than that of proscillaridin A, the lethal dose was 5 times higher. In dogs in vivo the dose of HOE 040 by infusion causing prolongation of PQ or cardiac arrhythmias, resp., was twice the dose necessary of proscillaridin A, the lethal dose was nearly 5 times higher. The decrease of cardiac activity in Rhesus monkeys amounted to 69% in 24 h, whereas proscillaridin A decreased cardiac activity only by 41% in 24 h. The absorption of HOE 040 from the duodenum of dogs anesthetized with pentobarbital amounted to 72%, whereas proscillaridin A is observed by only between 14 and 25%. The concentration of the drug HOE 040 in hearts of rats was twice, in the hearts of dogs 3 fold that of proscillaridin A. The concentrations of both drugs in the brain of rats and dogs were not different. In the biochemical test system in vitro the blocking effect of both drugs on the Na+K+-ATPase of ox brain was not different.

Animals↗

Pulse pressure correlates in humans with a proscillaridin A immunoreactive compound.

Endogenous digitalis-like factors in humans are presumably cardenolides and bufadienolides. To test whether bufadienolide-like substances may circulate in human blood, we used antibodies from rabbits against the bufadienolide proscillaridin A to measure the concentration of cross-reacting material in human plasma with an indirect enzyme-linked immunosorbent assay. IgG had an apparent affinity of 2 x 10(-9) mol/L for proscillaridin A. It was specific for bufadienolides and did not cross-react with cardenolides or several steroid hormones. Extraction of human plasma with ethanol and fractionation of this extract over a high-performance liquid chromatographic reverse-phase C18 column with a propanol/isopropanol gradient resulted in the separation of three peaks of increasing hydrophobicity (ED1, ED2, ED3) that inhibited the sodium pump of human red blood cells and cross-reacted with proscillaridin A antibodies. The concentration of the proscillaridin A immunoreactivity ED1 in normotensive subjects had a geometric mean of 0.1 nmol/L, with a dispersion factor of 8.77. ED1 correlated positively in a group of 60 normotensive subjects, 22 patients with hypertension, and 19 patients with chronic renal failure with mean arterial blood pressure (log ED1 [nmol/L] = 0.013 x mm Hg-2.17, r = .25, P < .05), systolic pressure (log ED1 [nmol/L] = 0.010 x mm Hg-2.23, r = .32, P < .01), and pulse pressure (log ED1 [nmol/L] = 0.019 x mm Hg-1.80, r = .38, P < .0001). There was no correlation with other parameters of the donors. We conclude that several substances cross-reacting with proscillaridin A antibodies and inhibiting the sodium pump of human red blood cells circulate in human blood. The level of one of these substances (ED1) correlates with mean arterial and pulse pressures.

Adult↗

Inhibition of DNA topoisomerases I and II, and growth inhibition of breast cancer MCF-7 cells by ouabain, digoxin and proscillaridin A.

We evaluated the cytotoxicity and underlying mechanisms of cardiac glycosides, including digoxin, ouabain and proscillaridin A, on the proliferation of breast cancer MCF-7 cells. In terms of inhibition of cell proliferation of MCF-7 cells, the compounds rank in the order proscillaridin A>digoxin>ouabain. While both digoxin and ouabain inhibited topoisomerase II catalytic activity at nanomolar concentrations (100 nM), neither agent inhibited topoisomerase I catalytic activity even at concentrations as high as 100 microM. On the other hand, proscillaridin A was a potent poison of topoisomerase I and II activity at nanomolar drug concentrations (30 nM, 100 nM, respectively), suggesting that this agent may produce its cytotoxic activity by targeting both enzymes simultaneously. These studies suggest that the stabilization of DNA-topoisomerase II complexes is closely linked to the mechanism of digoxin, ouabain and proscillaridin A cytotoxicity. The potential DNA-binding properties of the cardiac glycosides have been assessed by measuring the displacement of ethidium bromide from calf thymus DNA. These results indicate that digoxin, ouabain and proscillaridin A neither intercalate nor interact with the minor groove of DNA.

Breast Neoplasms↗

Determination of proscillaridin in plasma by radioimmunoassay.

The development of a sensitive and selective radioimmunoassay for determination of proscillaridin in plasma is described. Antiserum against proscillaridin was obtained from guinea pig immunized with an immunogen prepared by conjugating methylproscillaridin, 14 beta-hydroxy-3 beta-[(4-O-methyl-alpha-L-rhamnosyl)oxy]bufa-4,20,20, 22-trienolid to bovine serum albumin. Methyl N-[3-[(14 beta-hydroxybufa-4,20,22-trienolid-3 beta-yl)oxy-carbonyl] propanoyl]-L-[3',5'-125I2] diiodotyrosinate ([125I] SST) was used as a radioactive ligand. [125I] SST and antiserum were added to the recovered sample from plasma using a Bond Elut column. After overnight incubation, the antibody-bound and free [125I] SST were separated using polyethylene glycol. The mean coefficients of variation of intra and interassay at four different plasma concentrations were 4.0 and 5.0%, respectively. The assay was able to determine as little as 125 pg/ml of proscillaridin in plasma by using 1.5 ml of sample. Beagle dogs were orally administered one tablet (Talusin) containing 0.25 mg of proscillaridin. Proscillaridin was rapidly absorbed, exhibiting plasma maximum concentration of 2.06 ng/ml at 20 min. Thereafter, the plasma level declined biphasically with half-lives of 0.6 and 25.4 h.

Animals↗

On the pharmacokinetics of proscillaridin A in man.

The plasma concentration of proscillaridin was measured by a modified 86Rb method during treatment with multiple doses of a commercial preparation of proscillaridin. Despite high doses, very low plasma levels were found, and there were only minute amounts of glycoside activity in urine and faeces. Administration of an enteric-coated proscillaridin preparation gave higher plasma levels, which raises the possibility of inactivation of the glycoside by acid gastric juice. The results suggest that proscillaridin has low biological availability when given orally, and that it is extensively metabolised in the body.

Adult↗

Proscillaridin activity in portal and peripheral venous blood after oral administration to man.

The absorption of proscillaridin A was studied in four patients undergoing catheterization of the portal vein for diagnostic purposes. Proscillaridin 1.5 mg was given as a single oral dose and plasma glycoside activity was analyzed by the 86Rb-uptake inhibition technique. Proscillaridin appeared rapidly in the portal blood, peak activity being found after 15 min in three and after 30 min in one patient. In peripheral blood the peak activity occurred after approximately 35 min. Despite rapid passage across the gut wall, porto-peripheral differences in glycoside activity were small; they were zero after 4h. The mean amount absorbed as active porscillaridin during the first 4h after the dose was calculated to be only 7.1% of the given amount. Late porto-peripheral differences, probably due to enterohepatic recycling, appeared after 6h in three patients; The results suggest that proscillaridin undergoes first pass inactivation in the gut wall. Enterohepatic recirculation may contribute to the amounts of active glycoside that reach the systemic circulation.

Administration, Oral↗

Biliary excretion and enterochepatic recycling of proscillaridin A after oral adminstration to man.

A single oral dose of proscillaridin A (1.0-1.5 mg) was given to six patients with T-tube drainage of the common bile duct, and simultaneous samples of bile and plasma were collected at various times during the following 24 hours. Glycoside activity was assayed by the 86Rb-uptake inhibition technique. Peak activities in plasma (mean 0.80 ng/ml) were attained after 0.5-2h, and in bile (mean 6.9 ng/ml) after 1-4h. Subsequently, proscillaridin activity in bile was less than 5 ng/ml for the remainder of the sampling period, and 10-100 times higher than that in plasma. Bile samples treated with beta-glucuronidase and sulphatase showed 100-200 fold increase in glycoside activity. Deconjugation was also produced by treatment with enteric contents. The results suggest that conjugation of unchanged proscillaridin is a major metabolic route. After excretion in the bile, the conjugates may be split in the intestine and reabsorbed as active glycoside.

Administration, Oral↗

Bovine adrenals and hypothalamus are a major source of proscillaridin A- and ouabain-immunoreactivities.

Besides an isomer of the cardenolide ouabain, a material with a similar HPLC retention time as ouabain but cross-reactivating with antibodies against the bufadienolide proscillaridin A and inhibiting the sodium pump is known to circulate in human blood plasma (B. SICH et al., Hypertension 27, 1073-1078 (1996).). The concentrations of both substances are known to correlate with the blood pressure. It was the intention of this work to localize tissues that contain the highest concentrations of the proscillaridin A immunoreactive material, to correlate its concentration with that of ouabain and to get information whether the concentration of this material simply reflects the number of sodium pumps of the tissue extracted. Specific antibodies for each cardiotonic steroid were used to test the tissue concentration. This report shows that in bovine tissues the distribution pattern of proscillaridin A and ouabain immunoreactivities are similar and that hypothalamus and adrenals show the highest concentrations. The cross-reactive material did not reflect the number of sodium pumps per g of wet weight tissue as measured by [3H]ouabain binding. Therefore, it is unlikely that the tissue concentrations in both immunoreactivities reflects the tissue capacity of sodium pumps labeled with cardiotonic steroids via the blood plasma. The study rather favors the concept that two different types of inhibitors of the sodium pump exist within both tissues.

Adrenal Glands↗

On the absorption of proscillaridin A after single oral doses to normal and achlorhydric subjects.

Proscillaridin A was given in single oral doses (1.5-2.5 mg) to normal and achlorhydric subjects. Plasma activities of the glycoside were analysed by 86Rb-technique. The absorption pattern was similar in both groups. A marked first peak of proscillaridin activity was seen after about 30 min. After a first minimum, a second peak of activity was registered within 6-12 hrs. An estimate of the amount of active glycoside absorbed during the first 12 hrs after the administration was obtained by calculating the areas under the plasma activity curves (AUC). When corrected for differences in dose per kg body weight, the mean AUC in the achlorhydric group was about 60 per cent greater than in the normal group. The results suggest that proscillaridin is rapidly absorbed; gastric acidity seems to contribute to inter-individual differences in the bio-availability of the glycoside.

Achlorhydria↗

Activities of proscillaridin A in thoracic duct lymph after single oral doses in man.

In order to study the possibility that orally administered proscillaridin after absorption is transported by the lymph to the systemic circulation, the concentrations of the glycoside in thoracic duct lymph were analyzed in two patients with thoracic duct drainage. They received the drug as a single oral dose; plasma and lymph concentrations were measured by 86Rb-technique. Lymph was collected at various intervals for 24 hrs. The proscillaridin activity in thoracic duct lymph was low and followed closely that the plasma. During the sampling period, a total of 300 ng and 240 ng, respectively, was recovered in the lymph, corresponding to less than 0.03% of the administered dose. The results indicate that proscillaridin is not transported by the thoracic duct lymph.

Administration, Oral↗

In vitro stability of proscillaridin A.

In an in vitro study, proscillardin A was found to be rapidly inactivated at low pH. More than 50 per cent of its activity, measured by 86Rb assay, was lost after incubation for 15 minutes at pH 1 and 37 degrees C. Compared with proscillaridin, the rate of inactivation of digoxin was lower in these experiments. The rapid inactivation of proscillaridin might be of clinical importance when treating patients with this glycoside.

Adenosine Triphosphatases↗

Specific anti-digoxin Fab fragments: an available antidote for proscillaridin and scilliroside poisoning?

The purpose of this study was to evaluate the capacity of specific anti-digoxin Fab fragments to bind to and neutralize scilliroside and proscillaridin in acute poisoning. Apparent affinity constants were determined with values of 2.6 10(8)M-1 for scilliroside and 3.8 10(7)M-1 for proscillaridin. These results are in accordance with a possible in-vivo neutralization of these toxins.

Antibody Affinity↗

Studies on cardiac ingredients of plants. VII: Chemical transformation of proscillaridin by means of the Diels-Alder reaction and biological activities of its derivatives.

The Diels-Alder reactions of a cardiac glycoside, proscillaridin (1), with some dienophiles were investigated. The reaction of 1 with alkenes such as methyl vinyl ketone and methyl acrylate afforded 3-oxo-2-oxabicyclo[2.2.2]oct-7-enes (2-5) and para-substituted benzene derivatives (6 and 7), while 1 reacted with alkynes (3-butyn-2-one, methyl propiolate) to yield para- or meta-substituted benzene derivatives (6-9). The biological activities of the resulting derivatives were evaluated by the use of isolated guinea-pig papillary muscle preparations and Na+,K(+)-adenosine triphosphatase (ATPase) preparation from dog kidney. Among the proscillaridin derivatives, compounds 4 and 7 moderately inhibited Na+,K(+)-ATPase activity. Furthermore, the concentration range of 7 over which its positive inotropic effect on guinea-pig papillary muscle preparations, increased from 5% to 95% of maximum was broader than that of 1, i.e., concentration dependency was maintained over a greater range of concentration.

Adenosine Triphosphatases↗

[Studies on cardiac ingredients of plants. VIII. Preparation of nitrates of proscillaridin and their pharmacological activities].

To reduce the vascular contracting effect of the cardiac glycoside, proscillaridin (1), all kinds of its nitrates were prepared by utilizing effectively an isopropylidene function as a protective group. The pharmacological activities of proscillaridin nitrates were evaluated by the use of isolated guinea-pig papillary muscle preparations and Na+,K(+)-adenosine triphosphatase preparations from the dog kidney. Furthermore, the effect for smooth muscle using the helical strips isolated from 13-week old spontaneously hypertensive rat was examined. The positive inotropic effects and Na+, K(+)-adenosine triphosphatase inhibition activities of mononitrates (6, 9, 15) and dinitrates (3, 4, 5) were a little less potent than 1, but those of trinitrate (2) were much reduced. Every nitrate did not exhibited a vascular contracting effect but a relaxing effect. Among them, the vascular relaxing effects of 2',3'-dinitrate (3) and 2',4'-dinitrate (4) were more potent than those of the other nitrates.

Animals↗

[Preparation of phenylpropylsilica and its application to high performance liquid chromatographic analysis of proscillaridin].

Proscillaridin in commercial tablet preparations was analyzed by HPLC on a phenylpropyl chemically bonded stationary phase, prepared by treating porous silica with phenylpropyldimethylchlorosilane (PHP). From the elemental analysis data for carbon, the number of bonded PHP surface groups per 1 nm2 of silica (mean pore diameter 13.1 nm, specific surface area 330 m2/g, mean particle size 5.5 microns) in PHP gel was calculated to be 2.07. Using methanol-distilled water (80:20, v/v) as an eluent, the separation of proscillaridin was successfully performed on the PHP column.

Chromatography, High Pressure Liquid↗

[Studies on cardiac ingredients of plants (IV). Effect of reduced proscillaridins on guinea-pig hearts].

Five hydrogenated proscillaridins (bufa-4,20-dienolide (PH21), bufa-4,20 (22)-dienolide (PH22), 20R-bufa-4-enolide (PH4-R), 20S-bufa-4-enolide (PH4-S), chola-4-enoate (PH4-E) ) were prepared semi-synthetically, and their pharmacological effect was studied using guinea pigs. The positive inotropic effect (PIE) was examined in papillary muscles isolated from guinea-pig hearts. These compounds produced PIE, dose-dependently; the Dose-PIE curve was characterized by a faster PIE development than that by the parent compound proscillaridin (PS). The concentrations at which half maximum PIE just developed (pD2) were as follows: PS, 7.4; PH22, 6.2; PH21, 5.8; PH4-R, 5.3; PH4-E, 5.0; and PH4-S, 4.9. The time required to the half maximum effect (T50) at a given concentration of pD2 was measured in min: PS, 33; PH4-E, 22; PH22, 15; PH21, 7; PH4-S, 7; and PH4-R, 2. The speeds of inotropy of these compounds depended on the position of lactone ring reduction, though they have the same lipophilicity (Rm). Concentration-PIE curves of reduced PS-compounds were characterized by a decrease in potency and an increase in efficacy. PH21 and PH4-R produced PIE over wider range of concentrations than those of the other compounds. When PH21 at the dose of 11.9 mg/kg, an equivalent dose of 4.4 times the pD2 values, was administrated intravenously by bolus injection into guinea pigs, no arrhythmias were observed on the ECG.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Proscillaridin A immunoreactivity: its purification, transport in blood by a specific binding protein and its correlation with blood pressure.

A material crossreacting with antibodies against the bufadienolide proscillaridin A and inhibiting the sodium pump was found in human blood plasma. The concentration of the material with a retention time similar to ouabain in a reversed phase HPLC correlated to systolic blood pressure and pulse pressure. Affinity purification of this compound from bovine adrenals resulted in the isolation of a compound with molecular mass of 600 Da that was not identical with ouabain. Consistent with the postulate that endogenous ouabain and proscillaridin A immunoreactivities may belong to a new class of cardiotonic steroid hormones, a protein of Mr = 60 kDa has been found in bovine serum by affinity-labeling with N-hydroxysuccimidyl digoxigenin-3-O-methylcarbonyl-epsilon-aminocaproate.

Adrenal Glands↗