Search results for "astaxanthin"

showing 7 items of 17 documents

Modulation of aflatoxin B1 carcinogenicity, genotoxicity and metabolism in rat liver by dietary carotenoids: evidence for a protective effect of CYP1…

1997

The effects of several carotenoids of vitamin A and of 3-methylcholanthrene have been tested on the initiation of hepatocarcinogenesis by aflatoxin B1, using the sequential protocol of Solt and Farber. AFB1-induced DNA single-strand breaks and AFB1-metabolism were also assessed. The P4501A inducer carotenoids (canthaxanthin, astaxanthin, beta-apo-8'-carotenal) and 3-methylcholanthrene reduce the carcinogenicity of AFB1, divert AFB1-metabolism into the less genotoxic aflatoxin M1 and reduce AFB1-induced DNA single-strand breaks: we conclude that these carotenoids exert their protective effect through the deviation of AFB1 metabolism towards detoxification pathways. beta-Carotene decreased AF…

MaleVitaminCancer ResearchAflatoxinAflatoxin B1[SDV]Life Sciences [q-bio]MutagenBiologymedicine.disease_causeAntioxidants03 medical and health scienceschemistry.chemical_compound0404 agricultural biotechnologyAstaxanthinmedicineAnimalsAnticarcinogenic AgentsCanthaxanthinRats WistarVitamin ACarotenoidCarcinogenComputingMilieux_MISCELLANEOUS030304 developmental biologychemistry.chemical_classification0303 health sciencesINDUCTIONfood and beverages04 agricultural and veterinary sciencesCarotenoids040401 food scienceDietRats3. Good health[SDV] Life Sciences [q-bio]LiverOncologychemistryBiochemistryCarcinogensRATCARCINOGENESEGenotoxicityDNA DamageMethylcholanthrene
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Dietary carotenoids inhibit aflatoxin B1-induced liver preneoplastic foci and DNA damage in the rat: Role of the modulation of aflatoxin B1 metabolism

1998

To study the effects of carotenoids on the initiation of liver carcinogenesis by aflatoxin B1 (AFB1), male weanling rats were fed beta-carotene, beta-apo-8'-carotenal, canthaxanthin, astaxanthin or lycopene (300 mg/kg diet), or an excess of vitamin A (21000 RE/kg diet), or were injected i.p. with 3-methylcholanthrene (3-MC) (6 x 20 mg/kg body wt) before and during i.p. treatment with AFB1 (2 x 1 mg/kg body wt). The rats were later submitted to 2-acetylaminofluorene treatment and partial hepatectomy, and placental glutathione S-transferase-positive liver foci were detected and quantified. The in vivo effects of carotenoids or of 3-MC on AFB1-induced liver DNA damage were evaluated using diff…

MaleVitaminCancer Researchmedicine.medical_specialtyAflatoxinAflatoxin B1DNA damage[SDV]Life Sciences [q-bio]Biology03 medical and health scienceschemistry.chemical_compoundLiver Neoplasms Experimental0302 clinical medicineAstaxanthinInternal medicinemedicineAnimalsAnticarcinogenic AgentsCanthaxanthinRats WistarVitamin ACYTOCHROME P 450CarotenoidSerum Albumin030304 developmental biologychemistry.chemical_classification0303 health sciencesRetinolGeneral MedicineCarotenoidsDietRats3. Good health[SDV] Life Sciences [q-bio]Endocrinologychemistry030220 oncology & carcinogenesisCarcinogensMicrosomes LiverRAT2-AcetylaminofluoreneCARCINOGENESEPrecancerous ConditionsDNA DamageMethylcholanthrene
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Dietary lycopene decreases the initiation of liver preneoplastic foci by diethylnitrosamine in the rat

1997

To test whether carotenoids can modulate the initiation of liver preneoplasia by diethylnitrosamine (DEN) or by 2-nitropropane (2-NP) in a sequential protocol of hepatocarcinogenesis, male weanling rats were fed for three or four weeks (respectively) diets containing beta-carotene, canthaxanthin, astaxanthin, or lycopene (300 mg/kg diet) or an excess of vitamin A (15,000 retinol equivalents/kg diet) or were treated intraperitoneally with 3-methylcholanthrene. During this period, all rats were injected intraperitoneally with the initiator carcinogen, either 2-NP (6 times at 100 mg/kg body wt) or DEN (once at 100 mg/kg body wt). Three weeks after the termination of carotenoid or vitamin A fee…

MaleVitaminCancer Researchmedicine.medical_specialtySTRUCTURE[SDV]Life Sciences [q-bio]Medicine (miscellaneous)WeanlingBiologyNitroparaffinsPropane03 medical and health scienceschemistry.chemical_compoundLycopene0302 clinical medicinebeta-CaroteneAstaxanthinInternal medicinemedicineAnimalsAnticarcinogenic AgentsDiethylnitrosamineCanthaxanthinRats Wistar030304 developmental biology0303 health sciencesNutrition and DieteticsLiver NeoplasmsRetinolRetinol EquivalentCarotenoidsLycopeneRats3. Good health[SDV] Life Sciences [q-bio]EndocrinologyOncologychemistry030220 oncology & carcinogenesisCarcinogensRATPrecancerous Conditions
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Interspecific differences in carotenoid content and sensitivity to UVB radiation in three acanthocephalan parasites exploiting a common intermediate …

2011

9 pages; International audience; Few endoparasite species are pigmented. Acanthocephalans are an exception however, with several species being characterised by yellow to orange colouration both at the immature (cystacanth) and adult stages. However, the functional and adaptive significance of carotenoid-based colourations in acanthocephalans remains unclear. One possibility is that the carotenoid content of acanthocephalan cystacanths acts as a protective device against ultra-violet radiation (UVR) passing through the translucent cuticle of their crustacean hosts. Indeed, acanthocephalans often bring about behavioural changes in their aquatic intermediate hosts that can increase their expos…

Pigments[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyUltraviolet RaysPomphorhynchusAcanthocephalachemistry.chemical_compoundAstaxanthinBotany[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisAnimalsAmphipodaCarotenoidchemistry.chemical_classification[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyAdaptive colourbiologyPhotoprotectionIntermediate hostfood and beveragesbiology.organism_classificationCarotenoidsSurvival AnalysisPolymorphusPolymorphusGammarus pulexInfectious DiseaseschemistryPhotoprotectionParasite manipulationParasitologyPomphorhynchus laevisAcanthocephala
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Protective Effect of Astaxanthin on Primary Retinal Cells of the Gerbil Psammomys Obesus Cultured in Diabetic Milieu

2017

Astaxanthin is a major marine carotenoid with powerful antioxidant and neuroprotective properties. The in vitro protective effect of astaxanthin in adult retinal cells of the type-2 diabetic model Psammomys obesus in hyperglycemic conditions was investigated. Primary retinal cells were cultured in normal (5 mM) or high concentrations of glucose (25 and 40 mM) for 5 days and treated with 1-20 μM astaxanthin for the last 48 h of culturing. Mitochondrial dehydrogenase activity and cell viability were assessed using MTT test and trypan blue exclusion dye. Retinal cells were characterized by immunohistochemistry. The results showed that mitochondrial function increased significantly (P<0.05) …

Settore AGR/20 - ZoocoltureASTAXANTHIN PRIMARY RETINAL CELLS GERBIL PSAMMOMYS OBESUS DIABETSettore BIO/06 - Anatomia Comparata E Citologia
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High Yields of Shrimp Oil Rich in Omega-3 and Natural Astaxanthin from Shrimp Waste

2020

A valued marine oil rich in omega-3 lipids and natural astaxanthin is obtained with remarkably high yield (up to S wt %) extending to pink shrimp waste (head and carapace) using the approach to extract fish oil from fish processing byproducts using D-limonene. Biobased limonene is an excellent solvent for both unsaturated lipids and astaxanthin-based carotenoids preventing oxidative degradation during the extraction cycle including solvent separation at 85 degrees C. Explaining the deep red color of the shrimp oil obtained, computational simulation suggests that D-limonene is also a good solvent for natural astaxanthin abundant in shrimp.

Settore CHIM/10 - Chimica Degli Alimenti[SDV]Life Sciences [q-bio]General Chemical Engineering01 natural sciencesArticlechemistry.chemical_compoundShrimp Oil Omega 3 Astaxanthin0404 agricultural biotechnologyAstaxanthin[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular Biology14. Life underwaterFood science[SDV.BBM.BC]Life Sciences [q-bio]/Biochemistry Molecular Biology/Biochemistry [q-bio.BM]QD1-999Fish processingCarotenoidchemistry.chemical_classificationLimonene010405 organic chemistryChemistryAstaxanthinExtraction (chemistry)04 agricultural and veterinary sciencesGeneral ChemistryShrimp OilFish oil040401 food science0104 chemical sciencesShrimpSolventChemistryOmega 3ACS Omega
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Production and extraction of astaxanthin from Phaffia rhodozyma and its biological effect on alcohol-induced renal hypoxia in Carassius auratus

2015

The effect of astaxanthin (3,3′-dihydroxy-s-carotene-4,4′-dione) on alcohol-induced morphological changes in Carassius auratus, as an experimental model, was determined. The yeast Phaffia rhodozyma was used as a source of astaxanthin. The animals were divided into three groups for 30 days: one group was treated with ethanol at a dose of 1.5% mixed in water, the second one with EtOH 1.5% and food enriched with astaxanthin from P. rhodozyma, and the third was a control group. After a sufficient experimental period, the samples were processed using light microscopy and evaluated by histomorphological and histochemical staining, and the data were supported by immunohistochemical analysis, u…

kidneyVimentinPlant ScienceXanthophyllsCalbindinBiochemistryAnalytical Chemistrychemistry.chemical_compoundAstaxanthinGoldfishmedicineAnimalsHypoxiaPhaffia rhodozymaKidneyEthanolbiologyEthanolAnimalBasidiomycotaXanthophyllOrganic ChemistryCarassius auratuBatch Cell Culture TechniqueYeastastaxanthinmedicine.anatomical_structurechemistryBiochemistryBatch Cell Culture Techniquesastaxanthin; kidney; Phaffia rhodozyma; Carassius auratusFermentationbiology.proteinImmunohistochemistryFermentationastaxanthin kidney Phaffia rhodozyma Carassius auratus
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