1. Metallic Engineered Nanomaterials and Ocular Toxicity: A Current Perspective
    Krista M. Cosert et al, 2022, Pharmaceutics CrossRef
  2. Magnetic field-guided cell delivery with nanoparticle-loaded human corneal endothelial cells
    Stavros N. Moysidis et al, 2015, Nanomedicine: Nanotechnology, Biology and Medicine CrossRef
  3. Role of Nanotechnology in Combatting Disease and Disorders of Ophthalmology
    Madhuri Sharon, 2022, Nanoparticles for Therapeutic Applications CrossRef
  4. Targeted Transplantation of Human Umbilical Cord Blood Endothelial Progenitor Cells with Immunomagnetic Nanoparticles to Repair Corneal Endothelium Defect
    Chunyi Shao et al, 2015, Stem Cells and Development CrossRef
  5. Neuartige Konzepte zur Behandlung des Hornhautendothels mittels Nanopartikel
    Thomas A. Fuchsluger, 2018, Der Ophthalmologe CrossRef
  6. Selective In Vitro Anticancer Effect of Superparamagnetic Iron Oxide Nanoparticles Loaded in Hyaluronan Polymeric Micelles
    Daniela Šmejkalová et al, 2014, Biomacromolecules CrossRef
  7. Advanced glycation end products induce glomerular endothelial cell hyperpermeability by upregulating matrix metalloproteinase activity
    PENGLI LUO et al, 2015, Molecular Medicine Reports CrossRef
  8. Dysfunctional Corneal Endothelium: Delivery of Cell Therapy
    Stephen Wahlig et al, 2019, Corneal Regeneration CrossRef
  9. Coupling the magnetic and heat dissipative properties of Fe3O4 particles to enable applications in catalysis, drug delivery, tissue destruction and remote biological interfacing
    R. Hudson, 2016, RSC Advances CrossRef
  10. Nano-sized iron particles may induce multiple pathways of cell death following generation of mistranscripted RNA in human corneal epithelial cells
    Eun-Jung Park et al, 2017, Toxicology in Vitro CrossRef
  11. Nanotechnology in regenerative ophthalmology
    Fitsum Feleke Sahle et al, 2019, Advanced Drug Delivery Reviews CrossRef