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谷 胱 甘 肽 响 应 型 肿 瘤 治 疗 光 敏 剂 的 研 究 进 展
Xu Kang, Zhang Tian,
Shao Jinjun
,
Dong Xiaochen
柔性电子(未来科技)学院|先进材料研究院
Nanjing Tech University
Jiangsu Normal University
科研成果
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探究 '谷 胱 甘 肽 响 应 型 肿 瘤 治 疗 光 敏 剂 的 研 究 进 展' 的科研主题。它们共同构成独一无二的指纹。
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Medicine and Dentistry
Photosensitizer
100%
Cancer Therapy
100%
Glutathione
100%
Neoplasm
55%
Photochemotherapy
51%
Reactive Oxygen Species
37%
Metal Ion
18%
Cancer Treatment
14%
Disulfide
14%
Therapy Effect
11%
Tumor Microenvironment
7%
Singlet Oxygen
7%
Targeted Therapy
7%
Side Effect
7%
Fluorescence Resonance Energy Transfer
7%
Copper Ion
3%
Upregulation
3%
Iron
3%
Phototherapy
3%
Cancer Staging
3%
Biological Target
3%
Specific Tumor
3%
Phototoxicity
3%
Toxicity
3%
Sulfonyl
3%
Glutathione Synthase
3%
Drug Resistance
3%
Hypoxia
3%
Proteinase
3%
Extracellular Fluid
3%
Tumor Cell
3%
Cancer Cell
3%
Cytotoxicity
3%
Pharmacology, Toxicology and Pharmaceutical Science
Glutathione
100%
Photosensitizer
100%
Neoplasm
100%
Photodynamic Therapy
51%
Reactive Oxygen Metabolite
37%
Disulfide Bond
11%
Side Effect
7%
Tumor Microenvironment
7%
Singlet Oxygen
7%
Sulfonyl
3%
Biological Target
3%
Disulfide
3%
Phototoxicity
3%
Drug Resistance
3%
Proteinase
3%
Iron
3%
Toxicity
3%
Cancer Staging
3%
Multiple Cancer
3%
Malignant Neoplasm
3%
Copper Ion
3%
Hypoxia
3%
Cytotoxicity
3%
Glutathione Synthase
3%
Engineering
Overexpression
30%
Resonance Energy
20%
Photoelectron
20%
Chromophore
10%
Excited State
10%
Scavenge
10%
Electron Donor
10%
Oxidative Damage
10%
Common Method
10%
Electron Acceptor
10%
Scavenging
10%
Penetration Depth
10%
Stimulator
10%
Lower Oxidation State
10%
Iron
10%
Generation Capacity
10%
Chemical Engineering
Molecular Oxygen
100%
Chromophore
100%
Material Science
Glutathione
100%
Resonance Fluorescence
7%
Oxidative Damage
3%
Copper Ion
3%
Design Principle
3%
Iron Ion
3%
Redox Process
3%