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Browsing by Study direction "D05 - Biofizika / Biophysics"

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Dabar rodomi įrašai 1-8 iš 8

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    • Biologiškai skaidžių porėtų kompozicinių karkasų mechaninių savybių ir hemosuderinamumo tyrimas 

      Dzvilis, Vitalijus (2021)
      Baigiamajame magistro darbe eksperimentiškai vertintos biologiškai skaidžių, porėtų, kompozicinių polilaktido/hidroksiapatito (PLA/HA) karkasų mechaninės ir hemosuderinamumo savybės imituojant skirtingas organizmo būkles. ...
    • Blood plasma stabilized gold nanoclusters for personalized tumor theranostics 

      Jarockytė, Greta; Poderys, Vilius; Barzda, Virginijus; Karabanovas, Vitalijus; Rotomskis, Ričardas (Cancers, 2022)
      Personalized cancer theranostics has a potential to increase efficiency of early cancer diagnostics and treatment, and to reduce negative side-effects. Protein-stabilized gold nanoclusters may serve as theranostic agents. ...
    • Hitchhiking nanoparticles: Mesenchymal stem cell-mediated delivery of theranostic nanoparticles 

      Dapkutė, Dominyka; Plečkaitis, Marijus; Bulotienė, Danutė; Daunoravičius, Dainius; Rotomskis, Ričardas; Karabanovas, Vitalijus (ACS applied materials and interfaces, 2021)
      Nanotechnology has emerged as a promising solution to permanent elimination of cancer. However, nanoparticles themselves lack specificity to tumors. Due to enhanced migration to tumors, mesenchymal stem cells (MSCs) were ...
    • Imaging of the internal chorion structure of rainbow trout Oncorhynchus mykiss live embryos and the distribution of quantum dots therein: Towards a deeper understanding of potential nanotoxicity 

      Jurgelėnė, Živilė; Stankevičius, Mantas; Stankevičiūtė, Milda; Kazlauskienė, Nijolė; Katauskis, Pranas; Ivanauskas, Feliksas; Karabanovas, Vitalijus; Rotomskis, Ričardas (Science of the total environment, 2021)
      Quantum dots (QDs) are extensively explored in biomedicine but the understanding of the mechanism underlying the uptake of colloidal QDs by biological systems is still poor. The knowledge of their distribution in tissues ...
    • Influence of TiO2 and ZnO nanoparticles on α-Synuclein and β-Amyloid aggregation and formation of protein fibrils 

      Šlekienė, Nora; Snitka, Valentinas; Bružaitė, Ingrida; Ramanavičius, Arūnas (Materials, 2022)
      The most common neurological disorders, i.e., Parkinson’s disease (PD) and Alzheimer’s disease (AD), are characterized by degeneration of cognitive functions due to the loss of neurons in the central nervous system. The ...
    • Numerical modeling of DNA nucleotides binding process mechanics considering oscillations 

      Jasevičius, Raimondas (Mechanics of advanced materials and structures, 2022)
      The paper deals with the process of binding of two nucleotides, which is considered part of a more complex process, such as the transfer of telomerase to the telomere region of chromosomes during cell division. The binding ...
    • Numerical modeling of red blood cell interaction mechanics 

      Jasevičius, Raimondas (Mechanics of advanced materials and structures, 2023)
      In this work, a numerical analysis of the mechanics of the interaction of the red blood cell with the vessel wall was carried out. The deformation process is described using an adhesive dissipative elastic model. The ...
    • Uptake of upconverting nanoparticles by breast cancer cells: surface coating versus the protein corona 

      Voronovič, Evelina; Skripka, Artiom; Jarockytė, Greta; Ger, Marija; Kučiauskas, Dalius; Kaupinis, Algirdas; Valius, Mindaugas; Rotomskis, Ričardas; Vetrone, Fiorenzo; Karabanovas, Vitalijus (ACS applied materials and interfaces, 2021)
      Fluorophores with multifunctional properties known as rare-earth-doped nanoparticles (RENPs) are promising candidates for bioimaging, therapy, and drug delivery. When applied in vivo, these nanoparticles (NPs) have to ...

       

       

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