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Sökning: WFRF:(Benchoula Khaled)

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1.
  • Benchoula, Khaled, et al. (författare)
  • Optimization of Hyperglycemic Induction in Zebrafish and Evaluation of Its Blood Glucose Level and Metabolite Fingerprint Treated with Psychotria malayana Jack Leaf Extract
  • 2019
  • Ingår i: Molecules. - : MDPI. - 1431-5157 .- 1420-3049. ; 24:8
  • Tidskriftsartikel (refereegranskat)abstract
    • A standard protocol to develop type 1 diabetes in zebrafish is still uncertain due to unpredictable factors. In this study, an optimized protocol was developed and used to evaluate the anti-diabetic activity of Psychotria malayana leaf. The aims of this study were to develop a type 1 diabetic adult zebrafish model and to evaluate the anti-diabetic activity of the plant extract on the developed model. The ability of streptozotocin and alloxan at a different dose to elevate the blood glucose levels in zebrafish was evaluated. While the anti-diabetic activity of P. malayana aqueous extract was evaluated through analysis of blood glucose and LC-MS analysis fingerprinting. The results indicated that a single intraperitoneal injection of 300 mg/kg alloxan was the optimal dose to elevate the fasting blood glucose in zebrafish. Furthermore, the plant extract at 1, 2, and 3 g/kg significantly reduced blood glucose levels in the diabetic zebrafish. In addition, LC-MS-based fingerprinting indicated that 3 g/kg plant extract more effective than other doses. Phytosterols, sugar alcohols, sugar acid, free fatty acids, cyclitols, phenolics, and alkaloid were detected in the extract using GC-MS. In conclusion, P. malayana leaf aqueous extract showed anti-diabetic activity on the developed type 1 diabetic zebrafish model.
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2.
  • Benchoula, Khaled, et al. (författare)
  • The promise of zebrafish as a model of metabolic syndrome
  • 2019
  • Ingår i: Experimental animals. - : INT PRESS EDITING CENTRE INC. - 1341-1357 .- 1881-7122. ; 68:4, s. 407-416
  • Forskningsöversikt (refereegranskat)abstract
    • Metabolic syndrome is a cluster including hyperglycaemia, obesity, hypertension, and hypertriglyceridaemia as a result of biochemical and physiological alterations and can increase the risk of cardiovascular disease and diabetes. Fundamental research on this disease requires validated animal models. One potential animal model that is rapidly gaining in popularity is zebrafish (Danio rerio). The use of zebrafish as an animal model conveys several advantages, including high human genetic homology, transparent embryos and larvae that allow easier visualization. This review discusses how zebrafish models contribute to the development of metabolic syndrome studies. Different diseases in the cluster of metabolic syndrome, such as hyperglycaemia, obesity, diabetes, and hypertriglyceridaemia, have been successfully studied using zebrafish; and the model is promising for hypertension and cardiovascular metabolic-related diseases due to its genetic similarity to mammals. Genetic mutation, chemical induction, and dietary alteration are among the tools used to improve zebrafish models. This field is expanding, and thus, more effective and efficient techniques are currently developed to fulfil the increasing demand for thorough investigations.
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3.
  • El-Seedi, Hesham R., et al. (författare)
  • CYTOTOXIC EFFECTS OF THE RED SEA SOFT CORAL SARCOPHYTON TROCHELIOPHORUM
  • 2016
  • Ingår i: Acta Poloniae Pharmaceutica. - : POLSKIE TOWARZYSTWO FARMACEUTYCZNE. - 0001-6837. ; 73:6, s. 1587-1592
  • Tidskriftsartikel (refereegranskat)abstract
    • The present study describes the in vitro cytotoxic effects of soft coral (Sarcophyton trocheliophorum). Soft corals of genus Sarcophyton were reported to contain compounds that arc active against brine shrimp and promote paclitaxel cytotoxicity in the human colon cancer Caco-2 cell line. The a-hexane extract of the soft coral Sarcophyton trocheliophorum induced significant dose-dependent toxicity (LC50 96.7 ppm) compared with ethyl acetate (LC50 120 ppm). We reported the most active cytotoxic level to be correspondence to LC50 values of 20.2, 59.2 ppm and 18.9 and 26 ppm. Accordingly, bio-assay guided fractionation was conducted to identify the bioactive compounds. Arachidonic acid. eicosapentaenoic acid and docosahexaenoic acid were characterized based on GC-MS analyses. Our results demonstrate the value of marine products as a natural source of medicinally interesting cytotoxic compounds.
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4.
  • Murugesu, Suganya, et al. (författare)
  • Toxicity study on Clinacanthus nutans leaf hexane fraction using Danio rerio embryos
  • 2019
  • Ingår i: Toxicology reports. - : ELSEVIER. - 2214-7500. ; 6, s. 1148-1154
  • Tidskriftsartikel (refereegranskat)abstract
    • Clinacanthus nutans, an herbal shrub belonging to the Acanthaceae family, is traditionally used as a functional food to treat various ailments in Malaysia and Indonesia. Although the polar fraction of this plant shows nontoxic effect, the toxicity of the non-polar extract is not reported so far. The present study aimed to assess the toxic effect and determine the lethal concentration of this non-polar fraction using zebrafish embryos. The n-hexane fraction was partitioned from the crude extract of C. nutans obtained using 80% methanolic solution. After spawning of the adult male and female zebrafish, the eggs were collected, transferred into a 96-well plate and incubated with the n-hexane fraction at concentrations of 15.63 mu g/ml, 31.25 mu g/ml, 62.5 mu g/ml, 125 mu g/ml, 250 mu g/ml and 500 mu g/ml in 2% DMSO. The survival and sublethal endpoint were assessed, the mortality and hatchability rates were calculated based on microscopic observation, while the heartbeat rate was measured using DanioScope software. The median lethal concentration (LC50) of the C. nutans n-hexane fraction, which was determined using probit analysis, was calculated to be 75.49 mu g/mL, which is harmful. Moreover, gas chromatography-mass spectrometry (GC-MS) analysis revealed the presence of palmitic acid, phytol, hexadecanoic acid, 1-monopalmitin, stigmast-5-ene, pentadecanoic acid, heptadecanoic acid, 1-linolenoylglycerol and stigmasterol in the n-hexane fraction.
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