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  1. Mustaffa F, Indurkar J, Shah M, Ismail S, Mansor SM
    Nat Prod Res, 2013;27(10):888-95.
    PMID: 22574706 DOI: 10.1080/14786419.2012.678347
    This review describes the morphological, phytochemical and pharmacological properties of Cinnamomum iners Reinw. ex Blume (Lauraceae). The plant grows wild in the lowland of Malaysia, India, Myanmar, Indonesia, Thailand, Singapore, Brunei and Philippines. This plant is commonly used for its carminative, analgesic and antipyretic properties, for postpartum treatment, rheumatism and digestive ailments. This article enumerates an overview of phytochemical and pharmacological aspects that is useful to researchers for further exploration necessary for the development of this potential herb.
    Matched MeSH terms: Digestive System/drug effects
  2. Ong HT, Ch'ng SL, Masduki A, Chandrasekharan N
    Med J Malaysia, 1989 Dec;44(4):296-301.
    PMID: 2520037
    A prospective study to correlate clinical digoxin toxicity with serum digoxin levels was carried out in 67 patients of whom 24 were clinically toxic and 43 were asymptomatic. The patients were clinically diagnosed to be toxic based on typical cardiac arrhythmias (n = 11) or non-cardiac symptoms (n = 13). Blood samples were collected at least six hours after the last digoxin dose and the sera assayed for digoxin using a radioimmunoassay method. The mean serum digoxin level in the toxic group (x1 = 2.09 +/- 1.28 ng/ml) was significantly higher than in the non-toxic group (x2 = 1.20 +/- 0.75 ng/ml), p less than 0.01. All the non-toxic patients had serum digoxin levels below 3 ng/ml. However, there was a considerable overlap of serum digoxin levels between the two groups of patients. Serum level cannot be the sole criterion in diagnosing digoxin toxicity. Nevertheless, raised serum digoxin levels especially above 3 ng/ml, in the presence of suggestive clinical features is strongly suggestive of toxicity.
    Matched MeSH terms: Digestive System/drug effects
  3. Chan MK, Othman R, Zubir D, Salmijah S
    PMID: 11879780
    The relationship between a putative metallothionein gene (MT) and exposure to cadmium (Cd) in blood cockles (Anadara granosa) is reported. In a 96-h dose-response experiment, mortality of cockles was found to proportionately increase in the range of 0.2-5.0 mg/l Cd with a calculated LC(50) of 2.94 mg/l. Exposure to 0.25 mg/l Cd for 16 days caused significant increases (P<0.05) in Cd concentrations in whole tissues, gills and hepatopancreas, and the accumulation of Cd in these tissues increased with the duration of exposure. Two cDNA libraries constructed using the hepatopancreas from control and Cd-treated cockles gave titres of 5.62 x 10(5) and 1.94 x 10(5) pfu/microg vector, respectively. A putative MT gene, AnaMT, of 510 nucleotides in length, was isolated from the treated cDNA library using a heterologous probe MT20 from the blue mussel, Mytilus edulis. Northern analyses using AnaMT as a probe indicated low expression of the MT mRNA in control animals. In cockles treated with 0.25 mg/l Cd for 4 days, MT mRNA level increased to approximately 168%, but declined to 108% at day 8. After 12 and 16 days of Cd treatment, expression of the MT gene was 138% and 187%, respectively, compared to the controls. These observations suggest that induction of the MT gene by a sublethal dose of Cd is rapid, occurring within 4 days of treatment.
    Matched MeSH terms: Digestive System/drug effects
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