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Surface modification with zwitterionic cysteine betaine for nanoshell-assisted near-infrared plasmonic hyperthermia
Chun Jen Huang
, Sz Hau Chu, Chien Hung Li, T. Randall Lee
化學工程與材料工程學系
研究成果
:
雜誌貢獻
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期刊論文
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同行評審
13
引文 斯高帕斯(Scopus)
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研究計畫
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深入研究「Surface modification with zwitterionic cysteine betaine for nanoshell-assisted near-infrared plasmonic hyperthermia」主題。共同形成了獨特的指紋。
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Keyphrases
Surface Modification
100%
Zwitterion
100%
Cysteine
100%
Nanoshell
100%
Betaine
100%
Hyperthermia
100%
Near-infrared Plasmonics
100%
Thiols
20%
Colloidal Stability
20%
Bio-derived
20%
Nanoparticles
10%
Bioactive Coating
10%
3T3 Fibroblasts
10%
Surface Coating
10%
Peak Temperature
10%
Biomedical Applications
10%
Surface Ligands
10%
Bovine Serum Albumin
10%
Targeted Delivery
10%
Antifouling Property
10%
Fouling Resistance
10%
Staphylococcus Epidermidis (S. epidermidis)
10%
NaCl Solution
10%
Antibody Conjugates
10%
Breast Cancer Cells
10%
Hyperthermia Applications
10%
MDA-MB-453
10%
Gram-positive
10%
Gold-silver Nanoshells
10%
Gram-negative
10%
Pharmacokinetics
10%
Planar Substrate
10%
Pseudomonas Aeruginosa (P. aeruginosa)
10%
Biodistribution
10%
Nanomedicine
10%
Environmental Tolerance
10%
NIR Irradiation
10%
Hollow Gold
10%
HER2-positive
10%
Hyperthermia Treatment
10%
Anti-HER2 Antibody
10%
Zwitterionic Surface
10%
Stable Surface
10%
Biocompatible Surfaces
10%
Photothermal Properties
10%
Selective Delivery
10%
Triethylene Glycol
10%
Nanoparticle Properties
10%
Photothermal Cell Ablation
10%
Material Science
Nanoparticle
100%
Surface Treatment
100%
Silver
50%
Surface Coating
50%
Surface (Surface Science)
50%
Fibroblast
50%
Chemical Engineering
Nanoshell
100%
Betaine
100%
Nanoparticle
18%
Fouling
9%
Nanomedicine
9%
Ethylene
9%