0000000000458488

AUTHOR

Mark A. Le Gros

showing 5 related works from this author

Soft X-ray tomography of phenotypic switching and the cellular response to antifungal peptoids in Candida albicans.

2009

The opportunistic pathogen Candida albicans can undergo phenotypic switching between a benign, unicellular phenotype and an invasive, multicellular form that causes candidiasis. Increasingly, strains of Candida are becoming resistant to antifungal drugs, making the treatment of candidiasis difficult, especially in immunocompromised or critically ill patients. Consequently, there is a pressing need to develop new drugs that circumvent fungal drug-resistance mechanisms. In this work we used soft X-ray tomography to image the subcellular changes that occur as a consequence of both phenotypic switching and of treating C. albicans with antifungal peptoids, a class of candidate therapeutics unaf…

MultidisciplinaryAntifungal AgentsPhenotypic switchingHyphaeVirulencePeptoidDrug resistanceBiologyBiological Sciencesbiology.organism_classificationPhenotypeCorpus albicansMicrobiologychemistry.chemical_compoundPeptoidsPhenotypechemistryDrug Resistance FungalOrganelleCandida albicansCandida albicansProceedings of the National Academy of Sciences of the United States of America
researchProduct

Quantifying Changes in Nuclear Organization in Normal vs. Cancer Cells using X-ray Tomography

2014

Physicsmedicine.medical_specialtybusiness.industryNuclear organizationCancer cellX-raymedicineMedical physicsTomographyNuclear medicinebusinessInstrumentationMicroscopy and Microanalysis
researchProduct

Soft X-ray Tomography Reveals HSV-1-Induced Remodeling of Human B Cells.

2022

Upon infection, viruses hijack the cell machinery and remodel host cell structures to utilize them for viral proliferation. Since viruses are about a thousand times smaller than their host cells, imaging virus-host interactions at high spatial resolution is like looking for a needle in a haystack. Scouting gross cellular changes with fluorescent microscopy is only possible for well-established viruses, where fluorescent tagging is developed. Soft X-ray tomography (SXT) offers 3D imaging of entire cells without the need for chemical fixation or labeling. Here, we use full-rotation SXT to visualize entire human B cells infected by the herpes simplex virus 1 (HSV-1). We have mapped the temporo…

viruksetisäntäsolutBioengineeringmikroskopiainfektiotMicrobiologyX-ray tomography; soft X-rays; infection imaging; HSV-1; cell mapping; cryo imagingherpes simplex -virusCapsidsoft X-raystomografiaVirologyHumans2.2 Factors relating to the physical environment2.1 Biological and endogenous factorsAetiologyherpesviruksetTomographycryo imagingHerpesvirus 1herpesinfection imagingHSV-1solutInfectious Diseasesröntgenkuvauscell mappingX-RaySexually Transmitted InfectionsInfectionX-ray tomographysolubiologiaHuman
researchProduct

Soft X-Ray Tomography Reveals Gradual Chromatin Compaction and Reorganization during Neurogenesis In Vivo

2016

Summary - The realization that nuclear distribution of DNA, RNA, and proteins differs between cell types and developmental stages suggests that nuclear organization serves regulatory functions. Understanding the logic of nuclear architecture and how it contributes to differentiation and cell fate commitment remains challenging. Here, we use soft X-ray tomography (SXT) to image chromatin organization, distribution, and biophysical properties during neurogenesis in vivo. Our analyses reveal that chromatin with similar biophysical properties forms an elaborate connected network throughout the entire nucleus. Although this interconnectivity is present in every developmental stage, differentiati…

0301 basic medicineNucleolusChromosomal Proteins Non-Histonenuclear organizationCellular differentiationBioinformaticsImagingMicechemistry.chemical_compound0302 clinical medicineHeterochromatinTomographyMice KnockoutNeuronsTomography X-RayNeurogenesisCell DifferentiationdifferentiationOlfactory BulbChromatin3. Good healthChromatinCell biologyChromosomal Proteinsneurogenesismedicine.anatomical_structureCell NucleolusHeterochromatinKnockoutNeurogenesisBiologyGeneral Biochemistry Genetics and Molecular BiologyArticleCell fate commitment03 medical and health sciencesImaging Three-Dimensionalolfactory sensory neuronsmedicineAnimalsta114nucleusEpithelial CellsNon-Histonesoft X-ray tomography030104 developmental biologychemistryChromobox Protein Homolog 5Three-DimensionalX-RaychromatinBiochemistry and Cell BiologyNucleus030217 neurology & neurosurgeryDNACell Reports
researchProduct

Putting molecules in their place.

2014

Each class of microscope is limited to imaging specific aspects of cell structure and/or molecular organization. However, imaging the specimen by complementary microscopes and correlating the data can overcome this limitation. Whilst not a new approach, the field of correlative imaging is currently benefitting from the emergence of new microscope techniques. Here we describe the correlation of cryogenic fluorescence tomography (CFT) with soft X‐ray tomography (SXT). This amalgamation of techniques integrates 3D molecular localization data (CFT) with a high‐resolution, 3D cell reconstruction of the cell (SXT). Cells are imaged in both modalities in a near‐native, cryopreserved state. Here we…

Biochemistry & Molecular BiologyImage ProcessingStatistics as TopicMedical PhysiologymikroskopiaArticleFluorescenceCORRELATED IMAGINGImagingImaging Three-DimensionalComputer-AssistedCORRELATEDtomografiaYeastsTOMOGRAPHYImage Processing Computer-AssistedHumansMicroscopyTomography X-RayfluorecenceMicroscopy FluorescenceThree-DimensionalX-RaySOFT X-RAYBiomedical ImagingGeneric health relevanceBiochemistry and Cell BiologyBiotechnology
researchProduct