2024
Transmembrane pH gradient imaging in rodent glioma models
Mishra S, Santana J, Mihailovic J, Hyder F, Coman D. Transmembrane pH gradient imaging in rodent glioma models. NMR In Biomedicine 2024, 37: e5102. PMID: 38263680, PMCID: PMC10987279, DOI: 10.1002/nbm.5102.Peer-Reviewed Original ResearchNormal tissuesRodent glioma modelsGL261 gliomasU87 gliomasTumor microenvironmentPotential therapeutic targetGlioma modelTumor survivalExtracellular acidosisTumorMetabolic reprogrammingRegulate drug deliveryIntracellular pHRat brainExtracellular pHTherapeutic targetGliomaMouse brainDrug deliveryIntracellular milieuTransmembrane pH gradientBrainSubmillimeter resolutionTissueCells
2023
Imaging the transmembrane pH gradient in gliomas
Mishra S, Mihailović J, Hyder F, Coman D. Imaging the transmembrane pH gradient in gliomas. Proceedings Of The International Society For Magnetic Resonance In Medicine ... Scientific Meeting And Exhibition. 2023 DOI: 10.58530/2023/3928.Peer-Reviewed Original ResearchAssess tumor aggressivenessMonitoring treatment efficacyTransmembrane pH gradientTumor responseTumor microenvironmentTumor aggressivenessRG2 tumorsLocal drug deliveryExtracellular acidosisTherapeutic outcomesTumorTreatment efficacyNormal tissuesBrain tumorsIntracellular pHExtracellular pHFunction biomarkersPositive therapeutic outcomesDrug deliveryIntracellular milieuBrainAcidosisGlioma
2016
In Situ Impregnation of Silver Nanoclusters in Microporous Chitosan-PEG Membranes as an Antibacterial and Drug Delivery Percutaneous Device
Mishra SK, Raveendran S, Ferreira JM, Kannan S. In Situ Impregnation of Silver Nanoclusters in Microporous Chitosan-PEG Membranes as an Antibacterial and Drug Delivery Percutaneous Device. Langmuir 2016, 32: 10305-10316. PMID: 27685160, DOI: 10.1021/acs.langmuir.6b02844.Peer-Reviewed Original ResearchMeSH KeywordsAdministration, CutaneousAnimalsAnti-Bacterial AgentsBiofilmsCattleCell Line, TumorChickensChitosanDrug CarriersDrug LiberationElastic ModulusEscherichia coliHumansHydrogen PeroxideMembranes, ArtificialMetal NanoparticlesMuramidaseNaproxenParticle SizePolyethylene GlycolsSilverStaphylococcus aureusSurface PropertiesConceptsMultifunctional devicesSilver nanoclustersSitu synthesis methodEfficient antibacterial activityDrug deliverySitu impregnationSynthesis methodCharacterization techniquesDrug releaseSustainable releaseLocal drug deliveryFormation of fluorescentMechanical stabilityBiofilm inhibitionAgNCsMicroporous membranesDevicesPresence of lysozymeAntibacterial activityNanoclustersMultiple arraysPercutaneous devicesBiocompatibilityAnti-inflammatory drug naproxenBiofilm formationMechanically tuned nanocomposite coating on titanium metal with integrated properties of biofilm inhibition, cell proliferation, and sustained drug delivery
Mishra SK, Teotia AK, Kumar A, Kannan S. Mechanically tuned nanocomposite coating on titanium metal with integrated properties of biofilm inhibition, cell proliferation, and sustained drug delivery. Nanomedicine Nanotechnology Biology And Medicine 2016, 13: 23-35. PMID: 27558354, DOI: 10.1016/j.nano.2016.08.010.Peer-Reviewed Original ResearchConceptsDrug releaseSustained drug releaseAnti-inflammatory drug naproxenLong-term antibacterial activitySustainable drug releaseIntrinsic antibacterial propertiesTitanium metalSuitable coating materialCS matrixPolymeric shellSynthesized nanohybridsSilver nanoparticlesDrug deliveryDrug naproxenChitosan matrixNanocomposite coatingsAntibacterial propertiesExcellent inhibitionInorganic fillersCoating materialsAntibacterial activityNanohybridsTi metalAgNPsCoatings