PubMed HealthSearch

SEARCH · PubMed Health

Results for “Solanine”

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

An outbreak of suspected solanine poisoning in schoolboys: Examinations of criteria of solanine poisoning.

Seventy eight schoolboys became ill after eating potato at lunch on the second day of the autumn term. Seventeen of the boys required admission to hospital. The gastrointestinal, circulatory, neurological and dermatological findings and the results of laboratory investigations were in keeping with solanine poisoning. The illness affected the junior boys and all the monitors but no other senior boys or staff. This pattern was compatible with the consumption of a relatively small number of toxic potatoes believed to have come from a bag (A) left in the stores since the summer term. The amount of solanine in potato waste recovered after the meal was excessive as assessed by its anticholinesterase activity. The amount of alpha-solanine and alpha-chaconine in the flesh and peel of potatoes from a bag (B) known to have been left from the previous term was high. The anomalously narrow margin between the solanidine alkaloid content reported for normal and toxic potatoes might perhaps result from an excessive synthesis by the latter of additional, related steroids, such as sapogenins and saponins, which, by promoting gastrointestinal absorption or other means, might enhance the toxicity of solanidine alkaloid.

Adolescent

Changes in the mitotic cycle induced by alpha-solanine.

Low concentrations of alpha-solanine stimulated the growth of cultured human fibroblasts, while higher concentrations (greater 30 mug ml-1) had a markedly inhibitory effect. Autoradiographic studies indicated that the stimulation of cell growth was due to a shortening of the G1 phase. Feulgen microdensitometry of cells treated with high doses of alpha-solanine revealed an abnormal accumulation of cells in G2. The response of cultured human fibroblasts to low doses of alpha-solanine is comparable to that of sex hormones on target tissues. It is concluded that by virtue of either its stimulatory or its inhibitory effect on cell growth, alpha-solanine could act as a human teratogen.

Autoradiography

Absence of genotoxicity of potato alkaloids alpha-chaconine, alpha-solanine and solanidine in the Ames Salmonella and adult and foetal erythrocyte micronucleus assays.

To assess whether reported toxicities of potato-derived glycoalkaloids could be the result of interactions with cellular DNA, the genotoxic effects of alpha-solanine, alpha-chaconine and solanidine were studied, using the Ames test (Salmonella strains TA98 and TA100), the mouse peripheral blood micronucleus test and the mouse transplacental micronucleus test. The Ames test for mutagenicity with alpha-solanine was weakly positive in TA100 with S-9 activation (29 revertants per millimole per plate). However, pooled data from duplicate tests gave a negative effect. Pooled data from two experiments with alpha-chaconine gave a weak positive response in TA98 without microsomes (17 revertants per millimole per plate). The micronucleus tests for clastogenicity using male mouse and foetal blood were negative. The absence of mutagenicity and clastogenicity suggests lack of damage to intracellular DNA for potato alkaloid toxicity.

Animals

Teratogenic effects in early chick embryos of solanine and glycoalkaloids from potatoes infected with late-blight, Phytophthora infestans.

Solanine or a preparation of mixed glycoalkaloids from potatoes naturally infected with the late-blight fungus, Phytophthora infestans, was injected into fertile chicken eggs between 0 and 26 h of incubation, before formation of the neural tube. The embryos were examined after a total of 72 h of incubation. Various abnormalities were found, the most conspicuous being absence of the tail or trunk below the wing bud (rumplessness). A statistically significant proportion of the abnormal embryos showed malformations that seemed to be related to this condition; these included fluid- or blood-filled vesicles in the lower trunk or tail region on one or both sides of the neural tube. Such abnormalities were not observed in control embryos.

Abnormalities, Drug-Induced

An evaluation of the embryotoxic effects of blighted potatoes on chicken embryos.

The embryotoxic properties of an ethanol extract of boiled potatoes infected with Phytophthora infestans were investigated in White Leghorn chicken embryos, using controlled subgerminal injection on the second day of incubation and intraamniotic injection on the third and fourth days. A dose of 0.3 mg of sublimation-dried extract interfered at the somite stages with the function of the caudal morphogenetic system and induced various degrees of the caudal regression syndrome. Administration on the third and fourth days led to the development of a malformation syndrome comprising cranioschisis, celosoma, and cardiac septal defects. An equivalent amount of extract of healthy potatoes of the same variety and injection of pure solanine had the same effect. The results warrant the claim that the main factor responsible for the direct embryotoxicity of potatoes attacked by P. infestans is solanine, which evokes tonic contraction of the smooth muscle elements of the amnion.

Abnormalities, Multiple

Dual specificity of sterol-mediated glycoalkaloid induced membrane disruption.

In this study the effects of the glycoalkaloids alpha-solanine, alpha-chaconine, alpha-tomatine and the aglycone solanidine on model membranes composed of PC in the absence and presence of sterols have been analysed via permeability measurements and different biophysical methods. The main result is that glycoalkaloids are able to interact strongly with sterol containing membranes thereby causing membrane disruption in a way which is specific for the type of glycoalkaloid and sterol. For this dual specificity both the sugar moiety of the glycoalkaloid and the side-chain of the sterol on position 24 turned out to be of major importance for the membrane disrupting activity. The order of potency of the glycoalkaloids was alpha-tomatine > alpha-chaconine > alpha-solanine. The plant sterols beta-sitosterol and fucosterol showed higher affinity for glycoalkaloids as compared to cholesterol and ergosterol. The mode of action of the glycoalkaloids is proposed to consist of three main steps: (1) Insertion of the aglycone part in the bilayer. (2) Complex formation of the glycoalkaloid with the sterols present. (3) Rearrangement of the membrane caused by the formation of a network of sterol-glycoalkaloid complexes resulting in a transient disruption of the bilayer during which leakage occurs.

Calorimetry, Differential Scanning

Pharmacology and toxicology of chaconine and tomatine.

The pharmacological responses produced by alpha chaconine and tomatine on guinea pig ileum, on the isolated electrically stimulated frog ventricle, and recordings of EEG, ECG, respiration and blood pressure in the rabbit showed no essential differences from those produced by alpha solanine. The LD50 values of chaconine and solanine in the mouse and rabbit are also similar and suggest that compounds other than these are probably responsible for the predominant toxic effects of certain hybrid potatoes in man and animals. The failure of the three glycoalkaloids to produce a significant teratological effect in the chick embryo lends no support to the hypothesis that they may be the teratogens responsible for certain congenital malformations in man.

Abnormalities, Drug-Induced

A novel pathway for the synthesis of solanidine in the isolated chloroplast from greening potatoes.

Synthesis of chlorophyll always preceded the synthesis of solanine in cold-stored potatoes in the presence of dim light (30--40 lux). Isolated chloroplasts from green peelings were able to fix CO2. The evidence obtained showed a direct reduction of CO2 to formate, which was the primary product of fixation. Apart from this the chloroplasts were capable of incorporating NaH14CO3, [14C]formate, [2-14/C]glycine, [2-14C]pyruvate, [2-14C]acetate, [2-14C]mevalonate and [U-14C]serine into the solanidine moiety of the alkaloid. The intermediates in the pathway between CO2 and acetate have been identified as formate, glycine, serine and pyruvate. The localization of the enzymes involved in the reaction sequence viz. serine hydroxymethyl-transferase, and pyruvic dehydrogenase complex, in the isolated chloroplast has been established.

Chlorophyll

Antibiotic action of Solanum incanum Linnaeus.

The fruits of Solanum incanum Linnaeus are extensively used in Kenya for the treatment of cutaneous mycotic infections and other pathological conditions. The therapeutic activity of the berries has been attributed to their content of solanine and related glycoalkaloids, which are saponins and cytostatic poisons. In the present study, however, a simpler more potent antimicrobial substance with a phosphorylated structure similar to the purine adenine was isolated from the berries. The crystals of this compound were effective inhibitors of the growth of gram-positive and -negative bacteria, yeasts, dermatophytes, and some pathogens of agricultural produce. High concentrations of the substance caused hemolysis of erythrocytes.

Animals

Positive inotropic action of Solanaceae glycoalkaloids.

Six glycoalkaloids and one aglycone were tested for cardiotonic activities and compared with K-strophanthoside by use of the isolated frog heart. The decreasing order of potency was as follows: K-strophanthoside greater than tomatine greater than alpha-chaconine=alpha-solanine greater than demissine=commersonine greater than beta-chaconine greater than solanidine. Cardiotonic activity was directly related to the number of sugars in the molecule in which the glycoalkaloids had a common aglycone. On the other hand, glycoalkaloids with dissimilar aglycones, but with identical sugars, such as tomatine and demissine, differed significantly with respect to cardiotonic potency. Apparently, therefore, the cardiotonic activity of glycoalkaloids on the frog heart is determined by the nature of the aglycone and the number of sugars and not by the kinds of sugars or their stereochemical configuration.

Animals

Excretion, distribution and metabolic fate of 3H-alpha-chaconine.

3H-alpha-Chaconine was poorly absorbed from the gastrointestinal tract and rapidly excreted in feces when administered orally to male rats. Intraperitoneal administration of low doses (5 to 10 mg/kg) resulted in urinary and fecal excretion of metabolites, and probably involved biliary excretion. High, toxic, intraperitoneal doses (15 to 25 mg/kg) depressed fecal and urinary elimination, and resulted in accumulation of tritium in various tissues. The major metabolite appeared to be the aglycone, solanidine. Alpha-chaconine is very similar to alpha-solanine in its elimination by and distribution in tissues of rats.

Administration, Oral

Inhibition of insect acetylcholinesterase by the potato glycoalkaloid alpha-chaconine.

Homogenates from several insect species were assayed for inhibition of acetylcholinesterase by the potato glycoalkaloid alpha-chaconine. Colorado potato beetle acetylcholinesterase was up to 150-fold less sensitive than other species tested. Acetylcholinesterase from an insecticide-resistant strain of Colorado potato beetles was more sensitive to inhibition than the susceptible strain. Most insect species tested had inhibitory concentrations causing a 50% reduction in activity in the 5 to 40 microM range. Sensitive insect acetylcholinesterases were similar to mammalian cholinesterases in their response to alpha-chaconine. The results indicate that pesticides and host plant resistance factors may interact at the same target. Changes in the target due to selection pressure from either pesticides or host plant resistance factors could affect the efficacy of both control strategies.

Adaptation, Physiological