Search results for "mitochondrial activity"

showing 3 items of 3 documents

Effect of sperm concentration and storage temperature on goat spermatozoa during liquid storage

2020

The use of cooled semen is relatively common in goats. There are a number of advantages of cooled semen doses, including easier handling of artificial insemination (AI) doses, transport, more AI doses per ejaculate, and higher fertility rates in comparison with frozen AI doses. However, cooled semen has a short shelf life. The objective of this study was to examine the effect of temperature and sperm concentration on the in vitro sperm quality during liquid storage for 48 h, including sperm motility and kinetics, response to oxidation, mitochondrial membrane potential (MMP) and DNA fragmentation in goats. Three experiments were performed. In the first, the effects of liquid preservation of …

L53 Animal physiology - Reproductionmedicine.medical_treatmentDNA fragmentationmitochondrial activitylaw.invention0302 clinical medicineL10 Animal genetics and breedinglawlcsh:QH301-705.5Semen qualitySperm motilityreproductive and urinary physiologyLiquid Storageliquid storage030219 obstetrics & reproductive medicineMurciano-GranadinaExtenderSperm washingMotilityMitochondrial Activity04 agricultural and veterinary sciencesBiología y Biomedicina / BiologíamotilityDNA fragmentationGeneral Agricultural and Biological SciencesGenetic improvementendocrine systemMotilityShelf lifeSemen ExtendersSemenDNA FragmentationBiologyGeneral Biochemistry Genetics and Molecular BiologyAi (artificial insemination)ArticleAndrology03 medical and health sciencesSemenmedicineU10 Mathematical and statistical methodsgoat spermGeneral Immunology and Microbiologyurogenital systemArtificial insemination0402 animal and dairy scienceGoat Sperm040201 dairy & animal scienceSpermFrozen storagelcsh:Biology (General)
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A method for measuring mitochondrial mass and activity

2007

Mitochondria, responsible for the energy-generating process essential for the cell metabolism, differ for the number, localization and activity in animal cells and tissues in relation to the energetic needs. Using fluorescent probes specific for mitochondria, Mitotracker Green (MTG) and Orange (MTO), and Confocal Laser-Scanning Microscope (CLSM), we elaborated a method to measure in vivo the mitochondrial mass and activity, in sea urchin Paracentrotus lividus eggs and embryos. The analysis of captured images, revealed a variation of mitochondrial distribution and an increase of activity after fertilization.

ConfocalClinical BiochemistryBiomedical Engineeringsea urchin.BioengineeringMitochondrionmitochondrial activityParacentrotus lividusMitoTracker GreenHuman fertilizationIn vivobiology.animalSettore BIO/06 - Anatomia Comparata E CitologiaSea urchinmitochondrial mabiologyBrief ReportEmbryoCell BiologyAnatomybiology.organism_classificationFluorescenceCell biologyMitoTracker OrangeCLSM; mitochondrial mass; mitochondrial activity; MitoTracker Green; MitoTracker Orange; sea urchin.CLSMBiotechnologyCytotechnology
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Lack of Functional Trehalase Activity in Candida parapsilosis Increases Susceptibility to Itraconazole

2022

Central metabolic pathways may play a major role in the virulence of pathogenic fungi. Here, we have investigated the susceptibility of a Candida parapsilosis mutant deficient in trehalase activity (atc1Δ/ntc1Δ strain) to the azolic compounds Fluconazole and Itraconazole. A time-course exposure to Itraconazole but not Fluconazole induced a significant degree of cell-killing in mutant cells compared to the parental strain. Flow cytometry determinations indicated that Itraconazole was able to induce a marked production of endogenous ROS together with a simultaneous increase in membrane potential, these effects being irrelevant after Fluconazole addition. Furthermore, only …

Microbiology (medical)Medicaments antifúngicsbiology_otherPlant ScienceFongs patògensfluconazole; itraconazole; ROS; mitochondrial activity; trehalase; trehalose; <i>Candida parapsilosis</i>Ecology Evolution Behavior and Systematics
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