Search results for "Insect"

showing 10 items of 2033 documents

Control of ovarian steroidogenesis in insects: A locust neurohormone is active in vitro on blowfly ovaries

2009

0016-6480 doi: DOI: 10.1016/j.ygcen.2009.04.034; Ovarian steroidogenesis controlling insect reproduction is mainly regulated by brain gonadotropins liberated from corpora cardiaca (CC). Till now, different neurohormones have been identified in two insect groups only, locusts and mosquitoes, and it is unknown whether they could be active in other insects. In order to complete previous observations on the control of ovarian steroidogenesis in the blowfly, Phormia regina, we examined whether neuropeptides isolated from locust CC have an effect in vitro on ovarian steroidogenesis in our dipteran model. Our experiments showed that crude extracts from locust CC efficiently stimulated steroidogene…

medicine.medical_specialtyEcdysoneNeuroparsinmedia_common.quotation_subjectNeuropeptideInsectGrasshopperschemistry.chemical_compoundEndocrinologyInternal medicineInsect reproductionmedicineAnimalsChromatography High Pressure Liquidmedia_commonNeurotransmitter AgentsbiologyDipteraOvaryVitellogenesisPhormia reginabiology.organism_classificationInsulin-like peptidesIn vitroEndocrinologychemistryInsect HormonesAnimal Science and ZoologyFemaleVitellogenesisEcdysoneLocustHormoneBombyxin
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Cyclic AMP-dependent and independent stimulations of ovarian steroidogenesis by brain factors in the blowfly, Phormia regina.

2000

0303-7207 doi: DOI: 10.1016/S0303-7207(00)00312-9; The involvement of cyclic-AMP (cAMP) as a potential second messenger in the neurohormonal control of ovarian steroidogenesis was investigated in the adult female blowfly Phormia regina. Individual measurements of ovarian cAMP concentrations and of ovarian biosynthesis of ecdysteroids, stimulated after a protein meal, demonstrated that steroidogenesis is preceded by a peak of cAMP in the ovaries. In vitro, ovarian steroidogenesis was stimulated by cell-permeable analogues of cAMP and by forskolin. Crude brain extracts were also able to elicit a rise of cAMP in the ovaries in vitro and the secretion of ecdysteroids into the medium: such extra…

medicine.medical_specialtyEcdysonePhosphodiesterase InhibitorsOˆgenesisStimulationBiochemistryOogenesis03 medical and health scienceschemistry.chemical_compound0302 clinical medicineEndocrinologyInternal medicine1-Methyl-3-isobutylxanthinemedicineCyclic AMPAnimalsEnzyme InhibitorsMolecular Biology030304 developmental biologyBrain Chemistry0303 health sciencesEcdysteroidForskolinbiologyDipteraColforsinOvaryAge FactorsEcdysteroidsPhormia reginaThionucleotidesbiology.organism_classificationEndocrinologychemistryInsect HormonesSecond messenger systemCell signaling (fly ovary)FemaleSteroidsDietary Proteins030217 neurology & neurosurgeryEcdysteroid secretionEcdysoneAdenylyl CyclasesSignal TransductionMolecular and cellular endocrinology
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Diflubenzuron-Induced alterations during in vitro development ofTenebrio molitor pupal integument

1987

The effects of diflubenzuron (DFB) in Tenebrio molitor pupae were first investigated on cuticle secretion induced by 20-hydroxyecdysone in vitro. The sternal integuments were treated by DFB either 3 days before culture or during culture. DFB, when applied before culture, did not prevent the molting hormone from inducing a new cuticle deposition by integument explants in vitro. However, this cuticle showed several architectural alterations and a thickness reduction. When applied during the culture in the presence of 20-hydroxyecdysone, DFB at high dose (≥ 20 μg/ml) was able to inhibit cuticle secretion, but lower doses (⩽ 10 μg/ml) resulted in epicuticle deposition. These observations confir…

medicine.medical_specialtyEcdysteroidanimal structuresintegumentary systemPhysiologyCuticlefungiRadioimmunoassayArthropod cuticleGeneral MedicineBiologyBiochemistryIn vitrochemistry.chemical_compoundEndocrinologychemistryIn vivoInsect ScienceInternal medicinemedicineIntegumentExplant cultureArchives of Insect Biochemistry and Physiology
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Alternative sites for ecdysteroid production in insects

1990

Summary Several evidences have been obtained in various insect species demonstrating that, besides prothoracic glands and ovaries, other tissues could be alternative sites of moulting hormone production. After a detailed review on the various methods of investigation and criteria required to validate such observations, the nature of these sites, namely oenocytes, epidermis and testes, is discussed. Their possible involvement in moulting and/or reproduction is analyzed, giving the opportunity to put forward several new hypotheses. In particular, autocrine and paracrine secretions of ecdysteroids could play a role in localized developmental events, more difficult to control from endocrine gla…

medicine.medical_specialtyEcdysteroidmedia_common.quotation_subjectInsectBiologyProthoracic glandCell biologyParacrine signallingchemistry.chemical_compoundEndocrinologychemistryInternal medicinemedicineEndocrine systemAnimal Science and ZoologyMoultingDevelopmental BiologyHormoneEndocrine glandmedia_commonInvertebrate Reproduction & Development
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Molecular Surveillance of HIV-1 in Madrid, Spain: a Phylogeographic Analysis ▿

2011

ABSTRACT The molecular epidemiology of HIV-1 is constantly changing, mainly as a result of human migratory flows and the high adaptive ability of the virus. In recent years, Spain has become one of Europe's main destinations for immigrants and one of the western European countries with the highest rates of HIV-positive patients. Using a phylogeographic approach, we have analyzed the relationship between HIV-1 variants detected in immigrant and native populations of the urban area of Madrid. Our project was based on two coincidental facts. First, resistance tests were extended to naïve and newly diagnosed patients, and second, the Spanish government legislated the provision of legal status t…

medicine.medical_specialtyGenotypemedia_common.quotation_subjectImmunologyImmigrationMolecular Sequence DataHuman immunodeficiency virus (HIV)HIV InfectionsBiologyDestinationsmedicine.disease_causeMicrobiologylaw.invention03 medical and health sciences0302 clinical medicinePopulation GroupslawVirologyEpidemiologymedicinePrevalenceCluster AnalysisHumans030212 general & internal medicine030304 developmental biologymedia_commonTransients and Migrants0303 health sciencesMolecular EpidemiologyMolecular epidemiologySequence Analysis DNA3. Good healthPhylogeographyPhylogeographyTransmission (mechanics)Genetic Diversity and EvolutionSpainpol Gene Products Human Immunodeficiency VirusInsect ScienceCohortHIV-1Demography
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Brains burning fat: Different forms of energy metabolism in the CNS of insects

1983

medicine.medical_specialtyInsectaDipteraBurning fatBrainGeneral MedicineMetabolismBeesBiologyBombyxLipid MetabolismMiceOxygen ConsumptionEndocrinologySpecies SpecificityBiochemistryInternal medicinemedicineAnimalsEnergy MetabolismEcology Evolution Behavior and SystematicsNaturwissenschaften
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Effects of diazinon exposure on cholinesterase activity in different tissues of European eel (Anguilla anguilla).

1996

Cholinesterase (ChE) activity was measured in brain, plasma, and whole eye of Anguilla anguilla experimentally exposed to a sublethal concentration of 0.042 mg/liter (0.50 of the 96-hr LC50) of the organophosphorous pesticide diazinon. Whole eye was the tissue which revealed higher values of ChE activity (8.17 micromol/min/g) in nonexposed animals. Brain, plasma, and whole eye ChE activity of A. anguilla was inhibited at 6, 24, 48, 72, and 96 hr of diazinon exposure. Pesticide induced significant inhibitory effects on the ChE activity of this species ranging from >70% inhibition in brain tissue to >90% in plasma samples. Brain and plasma presented technical difficulties in their collection.…

medicine.medical_specialtyInsecticidesDiazinonHealth Toxicology and MutagenesisMedian lethal doseRetinaToxicologyLethal Dose 50chemistry.chemical_compoundAnguillidaeInternal medicinemedicineAnimalsCholinesterasesTissue DistributionCholinesteraseintegumentary systembiologyPlasma samplesPublic Health Environmental and Occupational HealthBrainGeneral MedicinePesticidebiology.organism_classificationAnguillaPollutionEndocrinologychemistryDiazinonToxicitybiology.proteinSpectrophotometry UltravioletCholinesterase InhibitorsOrganophosphorous pesticideEcotoxicology and environmental safety
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Risk assessment of Bundeswehr (German Federal Armed Forces) permethrin-impregnated battle dress uniforms (BDU).

2007

In an age when vector-borne diseases are emerging worldwide, personal protective measures are essential for shielding soldiers and other exposed persons from arthropod attack. The development of permethrin-impregnated clothing has been one recent advance in protecting persons at-risk. However, to date risk assessment has not been performed related to wearing permethrin-impregnated clothing over longer time periods. Therefore, this paper describes relevant toxicological aspects of permethrin and estimates the extent of dermal permethrin uptake by soldiers wearing impregnated uniforms by determining urine metabolites of permethrin. The exposure monitoring conducted in wearers of untreated uni…

medicine.medical_specialtyInsecticidesSkin AbsorptionPopulationUrineRisk AssessmentToxicologyExcretionProtective ClothingGermanyOccupational Exposureparasitic diseasesBiomonitoringmedicineHumansEnvironmental medicineeducationPermethrineducation.field_of_studybusiness.industryPublic Health Environmental and Occupational HealthSurgeryMilitary PersonnelInternal doseRisk assessmentbusinessPermethrinmedicine.drugInternational journal of hygiene and environmental health
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In vivo inhibition of AChE activity in the European eel Anguilla anguilla exposed to technical grade fenitrothion.

1998

European eel (Anguilla anguilla) were exposed to sublethal fenitrothion concentrations in a continuous flow-through system for 4 days. Plasma acetylcholinesterase (AChE) activity was evaluated after 2, 8, 12, 24, 32, 48, 56, 72 and 96 h pesticide exposure. AChE activity in the plasma of the eel decreased as concentration of fenitrothion increased. Pesticide induced significant inhibitory effects on the AChE activity of A. anguilla ranging from 51% inhibition at sublethal concentration of 0.02 ppm to 57% inhibition at sublethal concentration of 0.04 ppm. Eel were exposed to both fenitrothion concentrations for 96 h and then allowed a period of recovery in pesticide-free water. Following 1 we…

medicine.medical_specialtyInsecticidesTime FactorsAchéImmunologyFenitrothionToxicologychemistry.chemical_compoundIn vivoInternal medicinemedicineAnimalsPharmacologychemistry.chemical_classificationDose-Response Relationship DrugFenitrothionPesticideAnguillaAcetylcholinesteraselanguage.human_languageEnzymeEndocrinologychemistryToxicitylanguageTechnical gradeAcetylcholinesteraseCholinesterase InhibitorsComparative biochemistry and physiology. Part C, Pharmacology, toxicologyendocrinology
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Liver energy metabolism of Anguilla anguilla after exposure to fenitrothion.

1998

This paper deals with the effect of fenitrothion (0.04 mg/liter) on the energy metabolism of the European eel, Anguilla anguilla, and its recovery from intoxication. Various parameters such as glycogen, lactate, proteins, total lipids, and glucose in eel liver and blood were analyzed after 2, 8, 12, 24, 32, 48, 56, 72, and 96 h of fenitrothion exposure. Subsequently, the fish were allowed recovery periods of 8, 12, 24, 48, 72, 96, 144, and 192 h in clean water, and the same parameters were evaluated. Liver glycogen and lipid contents decreased significantly during the exposure, while blood glucose levels increased markedly. Liver and blood lactate values increased during pesticide exposure,…

medicine.medical_specialtyInsecticidesTime FactorsHealth Toxicology and MutagenesisFenitrothionchemistry.chemical_compoundAnguillidaeInternal medicinemedicineAnimalsPollutantGlycogenbiologyPublic Health Environmental and Occupational HealthLiterGeneral MedicineMetabolismFenitrothionPesticidebiology.organism_classificationAnguillaLipid MetabolismPollutionEndocrinologychemistryLiverToxicityEnergy MetabolismWater Pollutants ChemicalEcotoxicology and environmental safety
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