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At least 19 recordsLinked to original sources

Mutagenicity of crude senna and senna glycosides in Salmonella typhimurium.

The mutagenicity of senna glycosides and extracts of senna folium and senna fructus was investigated in the Salmonella typhimurium reversion assay. Senna glycosides were inactive in all strains, except for a slight, but significant increase in mutant frequency in TA102 in the absence and presence of liver microsomes. Extracts of senna fructus and senna folium demonstrated weak activity in TA97a, TA100 and TA102 in the presence of liver microsomes, and in TA97a and TA102 in the absence of liver microsomes. A strong increase in mutant frequency (3- to 5-fold above background frequency) was observed with all extracts in TA98 in the presence of liver microsomes. This activity increased further following enzymatic hydrolysis with hesperidinase of extracts of senna fructus from one source, and could be correlated to the release of the flavonol aglycones kaempferol and quercetin. The weak or lacking activity of anthraquinone aglycones in the tested strains of Salmonella typhimurium indicates that mutagenicity can not be attributed solely to the anthraquinone content of these plant materials. The chemical nature of other mutagenic components has not been elucidated.

Animals↗

Laxative potency and acute toxicity of some anthraquinone derivatives, senna extracts and fractions of senna extracts.

This paper investigates the laxative effect and acute toxicity of certain fractions of senna extracts in mice. The same tests were also carried out with several pure anthraquinone derivatives common in senna pods. The results show that the laxative and toxic components of senna pods and senna extracts can be separated. The most potent laxative components, sennosides A + B and Fraction V (relative potencies 1 and 0.9 respectively), have the lowest toxicity (relative intravenous toxicities 1 and less than 1). Fractions with very low laxative activity (rhein-8-glucoside and Fraction IV, relative potencies 0.56 and 0.05) have the highest acute toxicity (relative toxicities 10 and 32 respectively).

Animals↗

Influence of senna, fibre, and fibre + senna on colonic transit in loperamide-induced constipation.

Retarded colonic transit and disturbed defecation are the most prominent pathophysiological mechanisms in constipation. Both may be influenced by bulking agents and by laxatives such as senna. Direct measurements of the influence of such substances on colonic transit are rare mainly because of technical problems. We measured gastric emptying, small and large intestinal transit in 24 healthy volunteers by a newly developed method employing a metal detector. Twelve persons taking a normal diet received loperamide in a dose sufficient to double the individual transit time. All subjects measured gastrointestinal transit time under normal conditions and with Sennatin containing purified sennosides 20 mg, Agiocur (30 g) as a fibre product containing 20 g Plantago ovata seeds/husks, or Agiolax (10 g) as a combination of 5.4 g P. ovata seeds/husks + 1.2 g senna pod with a sennoside content of 30 mg. Colonic transit was reduced by Sennatin and by Agiolax from 39 +/- 4 h to 17 +/- 3 h (p < 0.005). Agiocur did not influence colonic transit (39 +/- 3 h). Loperamide prolonged colonic transit from 27 +/- 0.7 to 72 +/- 12 h. This effect was abolished by Sennatin (30 +/- 5 h) and Agiolax (27 +/- 1 h) (p < 0.005), but not by Agiocur (64 +/- 13 h). The same effects were seen when right and left colonic transit were analyzed separately. Neither gastric emptying nor small intestinal transit were affected by either substance. All of the three study drugs increased stool weight significantly (p < 0.05). When stool frequency and consistency were compared, the effects were less clear.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Ion-pair partition chromatography analysis of anthraquinone glycosides of senna and pharmaceutical preparations of senna.

Ion-pair partition has been combined with HPLC for the rapid detection and separation of the major anthraquinone glycosides of senns, sennosides A and B. A Corasil C18 column (5 microns) with methyl alcohol (30 percent in water) containing 0.005 M tetrabutylammonium phosphate, pH 7.5, as mobile phase was used. In the application to the assay of drugs, sennosides A and/or B constituents of the crude senna drug, Senokot syrup, Senokot tablets, and Pursennid tablets have been estimated in the presence of other constituents of the crude drug and pharmaceutical preparations. The results obtained are compared with colorimetric assay results.

Anthraquinones↗

Coffee Senna (Senna occidentalis) poisoning in cattle in Brazil.

Four 4-5-y-old cows out of a group of 20 developed a toxic myopathy approximately 10 d after being started on a ration contaminated with 21.5% Senna occidentalis beans. Clinical signs included progressive muscle weakness, incoordination of hindlimbs, reluctance to move, dragging of the tip of the hooves of the hindlimbs, and sternal and lateral recumbency. Gross lesions included white to whitish-yellow discolored areas of several groups of skeletal muscle in various regions of the body, but more markedly in the hindlimbs. Significant histopathological changes were restricted to skeletal muscles with variable degrees of segmental degenerative myopathy associated with reparative events. The earliest change seen at electron microscopy of affected skeletal muscles was mitochondrial swelling. More advanced changes ranged from disruption of sarcoplasm and myofibrils to complete lysis of a myofiber segment and early regeneration. Myocardial fibers had swollen mitochondria, disruption of cristae and dense matrical globules. The epidemiology, clinical data and gross, histopathological, and ultrastructural features of S occidentalis poisoning in cattle are presented.

Animal Feed↗

The senna drug and its chemistry.

Senna consists of the dried leaflets or fruits of Cassia senna (C. acutifolia) known in commerce as Alexandrian senna and of Cassia angustifolia commonly known as Tinnevelly senna. The senna plants are small shrubs of Leguminosae cultivated either in Somalia, the Arabian peninsula and near the Nile river. Tinnevelly senna is obtained from cultivated plants mainly in South India and Pakistan. Owing to the careful way in which the plant is harvested, the leaflets of the drug are usually little broken. Damaged leaves and lower quality products are often used for making galenicals. The senna pods (fruits) are collected during the same period as the leaves, then dried and separated into various qualities. The active principle of Senna was first isolated and characterized by Stoll in 1941. The first two glycosides were identified and attributed to the anthraquinone family. These were found to be dimeric products of aloe emodin and/or rhein which were named sennoside A and sennoside B. They both hydrolyze to give the aglycones sennidin A and B and two molecules of glucose. Later work confirmed these findings and further demonstrated the presence of sennosides C and D. Small quantities of monomeric glycosides and free anthraquinones seem to be present as well. The active constituents of the pods are similar to those of the leaves but present in larger quantities. Two naphthalene glycosides isolated from senna leaves and pods are 6-hydroxymusicin glucoside and tinnevellin glucoside. Both compounds can be utilized to distinguish between the Alexandrian senna and the India senna, since tinnevellin glucoside is only found in the latter and the first only in the C. senna.(ABSTRACT TRUNCATED AT 250 WORDS)

Anthraquinones↗

Senna vs polyethylene glycol for mechanical preparation the evening before elective colonic or rectal resection: a multicenter controlled trial. French Association for Surgical Research.

HYPOTHESIS: Senna is more efficient than polyethylene glycol as mechanical preparation before elective colorectal surgery. DESIGN: Prospective, randomized, single-blind study. SETTING: Multicenter study (18 centers). PATIENTS: Five hundred twenty-three consecutive patients with colonic or rectal carcinoma or sigmoid diverticular disease, undergoing elective colonic or rectal resection followed by immediate anastomosis. INTERVENTION: Two hundred sixty-two patients were randomly allotted to receive senna (1 package diluted in a glass of water) and 261 to receive polyethylene glycol (2 packages diluted in 2-3 L of water), administered the evening before surgery. All patients received 5% povidone iodine antiseptic enemas (2 L) the evening and the morning before surgery. Ceftriaxone sodium and metronidazole were given intravenously at anesthetic induction. MAIN OUTCOME MEASURES: Degree of colonic and rectal cleanliness. RESULTS: Colonic cleanliness was better (P=.006), fecal matter in the colonic lumen was less fluid (P=.001), and the risk for moderate or large intraoperative fecal soiling was lower (P=.11) with senna. Overall, clinical tolerance did not differ significantly between groups, but 20 patients receiving polyethylene glycol (vs 16 with senna) had to interrupt their preparation, and 15 patients (vs 8 with senna) complained of abdominal distension. Senna, however, was better tolerated (P = .03) in the presence of stenosis. There was no statistically significant difference found in the number of patients with postoperative infective complications (14.7% vs 17.7%) or anastomotic leakage (5.3% vs 5.7%) with senna and polyethylene glycol, respectively. CONCLUSION: Mechanical preparation before colonic or rectal resection with senna is better and easier than with polyethylene glycol and should be proposed in patients undergoing colonic or rectal resection, especially patients with stenosis.

Adult↗

Chronic constipation in long stay elderly patients: a comparison of lactulose and a senna-fibre combination.

OBJECTIVES: To compare the efficacy and cost effectiveness of a senna-fibre combination and lactulose in treating constipation in long stay elderly patients. DESIGN: Randomised, double blind, cross over study. SETTING: Four hospitals in Northern Ireland, one hospital in England, and two nursing homes in England. SUBJECTS: 77 elderly patients with a history of chronic constipation in long term hospital or nursing home care. INTERVENTION: A senna-fibre combination (10 ml daily) or lactulose (15 ml twice daily) with matching placebo for two 14 day periods, with 3-5 days before and between treatments. MAIN OUTCOME MEASURES: Stool frequency, stool consistency, and ease of evacuation; deviation from recommended dose; daily dose and cost per stool; adverse effects. RESULTS: Mean daily bowel frequency was greater with the senna-fibre combination (0.8, 95% confidence interval 0.7 to 0.9) than lactulose (0.6, 0.5 to 0.7; t = 3.51 p < or = 0.001). Scores for stool consistency and ease of evacuation were significantly higher for the senna-fibre combination than for lactulose. The recommended dose was exceeded more frequently with lactulose than the senna-fibre combination (chi 2 = 8.38, p or = 0.01). As an index of the standard daily dose, the dose per stool was 1.52 for lactulose and 0.97 for the senna-fibre combination, at a cost per stool of 39.7p for lactulose and 10.3p for senna-fibre. Adverse effects were no different for the two treatments. CONCLUSIONS: Both treatments were effective and well tolerated for chronic constipation in long stay elderly patients. The senna-fibre combination was significantly more effective than lactulose at a lower cost.

Aged↗

Senna still causes laxation in rats maintained on a diet deficient in essential fatty acids.

The laxative effect of senna has been investigated in normal and essential fatty acid deficient (EFAD) rats. Oral administration of senna pod extract (7-5-90 mg kg-1) produced a dose-dependent increase in the number of soft faeces excreted by normal rats. Senna 30 mg kg-1 also reversed net absorption of water and increased the prostaglandin (PG) production in the colonic lumen of normal rats by about four times. Oral administration of senna pod extract to rats, maintained on a fat-free diet for 30-90 days, produced diarrhoea and reversed net absorption of water as in normal rats. However, a fat-free diet reduced the PG production drastically in the colonic lumen both in senna-free rats and in senna-treated rats. In EFAD rats carrageenan oedema, but not dextran oedema, was also drastically reduced. Since PG mediation is not present in EFAD rats we conclude that the PG are not essential for laxation induced by senna and that water secretion and PG production in the rat intestinal lumen are unrelated.

Animals↗

The role of constitutive and inducible nitric oxide synthase in senna- and cascara-induced diarrhoea in the rat.

The role of constitutive and inducible nitric oxide (NO) synthase in rats treated with senna and cascara was studied. Senna (60 mg/kg p.o.) and cascara (800 mg/kg p.o.) ex vivo significantly increased Ca(2+)-dependent constitutive NO synthase activity in the rat colon. Induction of NO synthase (12% of the total NO synthase) was associated with cascara, but not senna, administration. Dexamethasone (0.03-0.3 mg/kg i.p.), which inhibits the expression of inducible NO synthase, significantly and dose-dependently reduced cascara-(but not senna-) induced diarrhoea and colonic fluid secretion. These findings suggest that senna probably exerts its laxative effect through stimulation of the constitutive isoform of NO synthase, while the inducible isoform of NO synthase also seems to be involved in the laxative effect of cascara.

Administration, Oral↗

No clastogenic activity of a senna extract in the mouse micronucleus assay.

In previous studies, an analytically well-defined senna extract, commonly used as a laxative, gave positive responses in vitro in the Ames test and in the CHO assay. Therefore, the objective of this study was to investigate the genotoxic activity of the same senna extract in an in vivo genotoxicity assay by means of the generally acknowledged MNT. After administration of an oral dose of 2000 mg senna extract/kg to NMRI mice of both genders, which is equivalent to 119 mg potential rhein/kg, 5.74 mg potential aloeemodin/kg and 0. 28 mg potential emodin/kg, there were no elevated levels of micronuclei in bone marrow cells. Kinetic studies were performed in parallel to demonstrate target organ availability. Highest concentrations in the plasma were reached after 1 h with 3.4 microg rhein/ml and 0.065 microg aloeemodin/ml. In all cases, emodin was below the limit of quantification. From the results, the in vitro clastogenic activity of the senna extract could not be confirmed in the mouse micronucleus assay. Together with further negative in vivo genotoxicity studies with anthranoids, the conclusion can be drawn that there is no indication so far demonstrating a genotoxic risk for patients taking senna laxatives.

Animals↗

Occupational asthma and rhinoconjunctivitis caused by senna.

Occupational sensitization to senna is seldom reported. We describe a 21-year-old male atopic factory worker who developed IgE-mediated asthma and rhinoconjunctivitis 5 months after exposure to senna while he was working for a company manufacturing hair dyes. In the bronchial challenge test with senna, he exhibited a strong reaction. The skin prick test gave a 12-mm wheal reaction. The radioallergosorbent test (RAST) with senna was highly positive (33.6 PRU/ml, class 4), and could not be inhibited with pollens or foods. In protein staining with SDS-PAGE, two heavy bands were detected in senna at about 14 and 25 kDa, and two faint bands were visible at 19 and 21 kDa, In IgE immunoblotting with the patient's serum, one heavy band was detected at about 16 and four faint bands at 23, 25, 28, and 38 kDa. The patient became symptom free after he had changed his job within the same company.

Adult↗

Stimulation of PGE2 synthesis and water and electrolyte secretion by senna anthraquinones is inhibited by indomethacin.

The effect of dried senna pod extract, containing 10% sennoside B, on colonic electrolyte and fluid transport was examined in the anaesthetized rat in-situ. Oral administration of senna pod extract dose-dependently (17.5-30 mg kg-1, calculated as sennoside B) reversed net absorption of water, sodium and chloride to net secretion and increased potassium secretion. Senna pod extract stimulated the output of prostaglandin E2 into the colonic lumen. Inhibition of prostaglandin biosynthesis by pretreatment of the rats with indomethacin (10 mg kg-1) significantly inhibited the effects of senna pod extract (17.5-30 mg kg-1) both on net fluid transport and on prostaglandin E2 synthesis. The inhibitory effect of indomethacin on net fluid transport induced by senna pod extract (30 mg kg-1) was dose-dependent. It is concluded that anthraquinones exert their laxative action at least partially via stimulation of colonic fluid and electrolyte secretion, and that this secretion is mediated by stimulation of endogenous prostaglandin E2 formation.

Animals↗

Effect of senna is not mediated by platelet-activating factor.

The effect of in vivo treatment with senna was examined on the ex vivo formation of platelet-activating factor (PAF) by small and large intestine of rat, mouse and guinea pig. A single or a prolonged oral administration of senna (60-240 mg/kg) to animals did not increase intestinal PAF content. Nor did senna increase the intraluminal release of acid phosphatase. A similar result was obtained in the colonic tissue of rat perfused in vitro with rhein (1-500 micrograms/ml) or rhein anthrone (1-500 micrograms/ml). In contrast, a single oral administration of phenolphthalein (20 mg/kg), bile salts (20 mg/kg) or magnesium sulfate (30 mg/kg) to rats increased intestinal PAF content. Magnesium sulfate also increased the intraluminal release of acid phosphatase. Colonic tissue of rats perfused in vitro with calcium ionophore A23187 (10 micrograms/ml) formed large amounts of PAF and acid phosphatase. PAF stimulates intestinal motility and secretion and mediates gut damage while acid phosphatase is a marker of cellular damage. Therefore, our data suggest that senna is well tolerated in animals and PAF does not mediate senna-induced laxation.

Acid Phosphatase↗

Skin breakdown and blisters from senna-containing laxatives in young children.

BACKGROUND: At the direction of the Food and Drug Administration, phenolphthalein was removed from all over-the-counter laxatives in 1999. Phenolphthalein was then replaced in most laxative products with the natural product senna from Cassia acutifolia Delile, which contains various anthraquinones. No data are available on the safety of senna use in children <6 years of age. OBJECTIVE: To describe the clinical outcomes of exposure to unintentional ingestion of senna-containing laxatives in young children. METHODS: All ingestion exposures of senna-containing laxatives in children <5 years of age from 6 poison centers over a 9-month period were evaluated. Inclusion criteria required 24-hour follow-up and the presence of diarrhea to confirm ingestion. Parents were told routinely that severe diaper rash was possible and to protect the perianal area with frequent cleansing and a barrier ointment if the child was wearing diapers. RESULTS: During the study period, 111 cases were reported: 19 children experienced no diarrhea, 4 were lost to follow-up, and 88 exposures were evaluated. Fifty-two children (59%) were </=2 years old. Fifty children remained in diapers, 28 children were fully toilet trained, and 10 wore diapers (pull-up pants) overnight. Twenty-nine children (33%) experienced severe diaper rash. The mean +/- SD time to recognition of the diaper rash was 15.6 +/- 8.6 hours. Ten children (11%) had blisters and skin sloughing. There was a significant increase in severe diaper rash (p < 0.05) and onset of blisters and skin breakdown (p < 0.05) in children wearing diapers versus those who were fully toilet trained. The mean time to onset of blisters was 14.5 +/- 6.8 hours. Skin burns and loss were seen primarily on the buttocks and perineum, loosely following the diaper area. CONCLUSIONS: Unintentional ingestion of senna-containing laxatives in young children may potentially cause severe diaper rash, blisters, and skin sloughing.

Blister↗