Search results for "Steroid biosynthesis"

showing 5 items of 5 documents

Calcium inhibits ovarian steroidogenesis in the blowfly Phormia regina.

2002

1479-6805 0022-0795; Calcium is frequently involved in the stimulation of steroidogenesis in gonads and endocrine glands, generally in association with cAMP. However, our present observations show that it has the opposite effect in the ovary of the blowfly Phormia regina. Our in vitro experiments first showed that extracellular calcium does not play a role during the stimulation of steroidogenesis in fly ovaries; indeed steroidogenesis was activated in vitro as efficiently in a medium with or without calcium, either by pharmacological compounds mimicking cAMP signaling or by active brain extracts. When calcium was experimentally introduced into biosynthetic cells by ionophores or liberated …

medicine.medical_specialtyThapsigarginEndocrinology Diabetes and Metabolismchemistry.chemical_elementStimulationOvaryCalciumSteroid biosynthesischemistry.chemical_compoundEndocrinologyOrgan Culture TechniquesInternal medicinemedicineCyclic AMPAnimalsEnzyme InhibitorsCalcimycinbiologyIonophoresDipteraColforsinOvaryVitellogenesisPhosphodiesteraseEcdysteroidsPhormia reginabiology.organism_classificationEndocrinologymedicine.anatomical_structurechemistryDepression ChemicalThapsigarginCalciumFemaleEndocrine glandThe Journal of endocrinology
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Gut microbiota steroid sexual dimorphism and its impact on gonadal steroids: influences of obesity and menopausal status

2020

[Background]: Gonadal steroid hormones have been suggested as the underlying mechanism responsible for the sexual dimorphism observed in metabolic diseases. Animal studies have also evidenced a causal role of the gut microbiome and metabolic health. However, the role of sexual dimorphism in the gut microbiota and the potential role of the microbiome in influencing sex steroid hormones and shaping sexually dimorphic susceptibility to disease have been largely overlooked. Although there is some evidence of sex-specific differences in the gut microbiota diversity, composition, and functionality, the results are inconsistent. Importantly, most of these studies have not taken into account the go…

Male:Health Care::Environment and Public Health::Public Health::Epidemiologic Methods::Epidemiologic Study Characteristics as Topic::Epidemiologic Studies::Cross-Sectional Studies [Medical Subject Headings]PhysiologyGut flora:Organisms::Eukaryota::Animals::Chordata::Vertebrates::Mammals::Primates::Haplorhini::Catarrhini::Hominidae::Humans [Medical Subject Headings]Mice:Chemicals and Drugs::Hormones Hormone Substitutes and Hormone Antagonists::Hormones::Gonadal Hormones [Medical Subject Headings]0302 clinical medicineOverweight persons:Organisms::Eukaryota::Animals [Medical Subject Headings]TestosteroneProgesteronaGonadal Steroid HormonesTestosteronaTestosteroneProgesterone:Persons::Persons::Age Groups::Adult::Aged [Medical Subject Headings]Sex Characteristics0303 health sciencesMicrobiotaIntestins -- MalaltiesMiddle AgedSex ; Gender ; Gonadal steroids ; Testosterone ; Progesterone ; Microbiome ; Sexual dimorphism.Persones obeses3. Good healthMenopause:Phenomena and Processes::Microbiological Phenomena::Microbiota [Medical Subject Headings]Intestins -- MicrobiologiaCaracteres sexualeslcsh:QR100-130Female:Phenomena and Processes::Reproductive and Urinary Physiological Phenomena::Reproductive Physiological Phenomena::Climacteric::Menopause [Medical Subject Headings]SexAnimal studiesIntestines -- DiseasesMenopauseMenopausaAdultMicrobiology (medical):Phenomena and Processes::Reproductive and Urinary Physiological Phenomena::Reproductive Physiological Phenomena::Sex Characteristics [Medical Subject Headings]:Check Tags::Male [Medical Subject Headings]SexoSteroid biosynthesisBiologyIntestines -- Microbiologydigestive systemMicrobiologylcsh:Microbial ecology:Health Care::Environment and Public Health::Public Health::Epidemiologic Methods::Epidemiologic Study Characteristics as Topic::Epidemiologic Studies::Case-Control Studies [Medical Subject Headings]03 medical and health sciencesSexual dimorphismmedicineAnimalsHumansObesityMicrobiome:Persons::Persons::Age Groups::Adult [Medical Subject Headings]Aged030304 developmental biology:Organisms::Eukaryota::Animals::Chordata::Vertebrates::Mammals::Rodentia::Muridae::Murinae::Mice [Medical Subject Headings]ResearchGender:Persons::Persons::Age Groups::Adult::Middle Aged [Medical Subject Headings]medicine.diseasebiology.organism_classificationObesityGastrointestinal Microbiome:Diseases::Nutritional and Metabolic Diseases::Nutrition Disorders::Overnutrition::Obesity [Medical Subject Headings]Gonadal steroidsSexual dimorphismCross-Sectional Studies:Check Tags::Female [Medical Subject Headings]Case-Control StudiesIdentidad de géneroMicrobiome030217 neurology & neurosurgeryMicrobiome
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Editorial: Relevance of Steroid Biosynthesis, Metabolism and Transport in Pathophysiology and Drug Discovery

2019

Pharmacologysteroid hormonesOrganic anion transporter 1biologybusiness.industryDrug discoverySulfataselcsh:RM1-950intracrine actionCancerTransportertransportersMetabolismPharmacologySteroid biosynthesissulfatasemedicine.diseasePathophysiologylcsh:Therapeutics. PharmacologyEditorialbiology.proteincancerMedicinePharmacology (medical)businessFrontiers in Pharmacology
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Inhibition of ovarian steroidogenesis by cyclic-GMP in a fly

2003

1479-6805 0022-0795; Previous investigations in the female blowfly Phormia regina have shown that 3-isobutyl-1-methylxanthine (IBMX), a broad spectrum inhibitor of phosphodiesterases (PDEs), fails to mimic the steroidogenic effects of cAMP on ovaries, although it efficiently increases the concentrations of this second messenger. In this study, experiments carried out to clear up this contradiction demonstrated that IBMX, besides its effect on cAMP, also increased cGMP concentrations in blowfly ovary and that these two cyclic nucleotides controlled ovarian steroidogenesis antagonistically. In particular, a selective inhibitor of cGMP-specific PDEs, unlike IBMX, had a very strong negative eff…

medicine.medical_specialtyIBMXIndolesPhosphodiesterase InhibitorsEndocrinology Diabetes and MetabolismCarbazolesOvarySteroid biosynthesisBiologychemistry.chemical_compoundEndocrinologyAlkaloidsOrgan Culture TechniquesInternal medicine1-Methyl-3-isobutylxanthinemedicineCyclic AMPCyclic GMP-Dependent Protein KinasesAnimalsAutocrine signallingCyclic GMPAdenineDipteraColforsinOvaryPhosphodiesteraseBrainEcdysteroidsStimulation ChemicalEndocrinologymedicine.anatomical_structurechemistrySecond messenger systemQuinazolinesFemalePDE10ACalcium ChannelscGMP-dependent protein kinaseSignal Transduction
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DHEA, DHEAS and PCOS.

2014

Approximately 20-30% of PCOS women demonstrate excess adrenal precursor androgen (APA) production, primarily using DHEAS as a marker of APA in general and more specifically DHEA, synthesis. The role of APA excess in determining or causing PCOS is unclear, although observations in patients with inherited APA excess (e.g., patients with 21-hydroxylase deficient congenital classic or non-classic adrenal hyperplasia) demonstrate that APA excess can result in a PCOS-like phenotype. Inherited defects of the enzymes responsible for steroid biosynthesis, or defects in cortisol metabolism, account for only a very small fraction of women suffering from hyperandrogenism or APA excess. Rather, women wi…

medicine.medical_specialtyendocrine system diseasesmedicine.drug_classEndocrinology Diabetes and Metabolismmedicine.medical_treatmenteducationClinical BiochemistryPopulationSingle-nucleotide polymorphismSteroid biosynthesisBiochemistryBody Mass IndexEndocrinologyRisk FactorsInternal medicinemental disordersmedicinePrevalenceAnimalsHumanseducationMolecular Biologyeducation.field_of_studybusiness.industryDehydroepiandrosterone SulfateInsulinHyperandrogenismCell BiologyDehydroepiandrosteroneHyperplasiaAndrogenmedicine.diseaseObesityEndocrinologyPhenotypeCardiovascular DiseasesAndrogensMolecular MedicineFemaleSteroidsbusinessHyperandrogenismpsychological phenomena and processesPolycystic Ovary SyndromeThe Journal of steroid biochemistry and molecular biology
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