Y.-T. Chen's Group

Nanoscale Materials and Bioanalytical Chemistry Laboratory
奈米材料與生化分析實驗室

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Zn2+-Depletion Enhances Lysosome Fission in Cultured Rat Embryonic Cortical Neurons Revealed by a Modified Epifluorescence Microscopic Technique

Citation:
Tsao, H. - C., Y. - F. Liao, F. W. Pratiwi, C. - Y. Mou, Y. - J. Lin, C. - Y. Pan, and Y. - T. Chen. "Zn2+-Depletion Enhances Lysosome Fission in Cultured Rat Embryonic Cortical Neurons Revealed by a Modified Epifluorescence Microscopic Technique." Microscopy and Microanalysis 27 (2021): 420-424.
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Recent Publications

  • Hybrid InSe Nanosheets and MoS2 Quantum Dots for High-Performance Broadband Photodetectors and Photovoltaic Cells
  • Phase-engineered Weyl semi-metallic MoxW1-xTe2 nanosheets as a highly efficient electrocatalyst for dye-sensitized solar cells
  • Nanoscale Core−Shell Hyperbolic Structures for Ultralow Threshold Laser Action: An Efficient Platform for the Enhancement of Optical Manipulation
  • High unsaturated room-temperature magnetoresistance in phase-engineered MoxW1-xTe2+d ultrathin films
  • Intracellular Delivery of Luciferase with Fluorescent Nanodiamonds for Dual-Modality Imaging of Human Stem Cells
  • Sn-Doping Enhanced Ultrahigh Mobility In1−xSnxSe Phototransistor
  • Lipid-Modified Graphene-Transistor Biosensor for Monitoring Amyloid‑β Aggregation
  • Hepatocellular Carcinoma Diagnosis by Detecting α-Fucosidase with a Silicon Nanowire Field-Effect Transistor Biosensor
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