Keyphrases
Tumor
100%
PH-sensitive
100%
Near-infrared Fluorescence Imaging
100%
Self-assembled Nanoparticles
100%
Chemo-photodynamic Combination Therapy
100%
Chlorin e6
100%
Doxorubicin
36%
Acid-sensitive
18%
Prodrug Nanoparticles
18%
Delivery System
9%
High Performance
9%
Hydrolysis
9%
Highly Effective
9%
Apoptosis
9%
Necrosis
9%
Photosensitizer
9%
Mouse Model
9%
Tumor Cells
9%
Anhydride
9%
Antitumor
9%
Acidic Conditions
9%
Self-assembling
9%
Amide Linker
9%
Lung Cancer
9%
In Vitro Experiment
9%
A549 Lung Cancer
9%
Fluorescence Imaging
9%
In Vivo Experiment
9%
A549
9%
Freeform
9%
Theranostics
9%
Tumor Targeting
9%
Enhanced Permeability
9%
Theranostic Nanoparticles
9%
Permeability Effect
9%
Enhanced Retention
9%
Retention Effect
9%
Enhanced Therapeutic Effects
9%
NIR-II Fluorescence Imaging
9%
Tumor Theranostics
9%
Near-infrared Laser Irradiation
9%
A549 Lung Cancer Cells
9%
Accelerated Release
9%
D-α-tocopheryl Polyethylene Glycol 1000 Succinate
9%
Photodynamic Treatment
9%
Chemo-photodynamic
9%
Tumor Inhibition
9%
Doxorubicin Treatments
9%
Therapy System
9%
Medicine and Dentistry
Combination Therapy
100%
Neoplasm
100%
Doxorubicin
100%
Nanoparticle
100%
In Vitro
60%
Lung Cancer
60%
Prodrug
40%
Cancer Cell
20%
Programmed Cell Death
20%
Therapy Effect
20%
Tumor Progression
20%
Tumor Cell
20%
Macrogol
20%
Necrosis
20%
Growth Inhibition
20%
Photosensitizer
20%
Succinic Acid
20%
Acid Anhydride
20%
Enhanced Permeability and Retention Effect
20%
Carboxamide
20%
Photochemotherapy
20%
Enzymatic Hydrolysis
20%
Pharmacology, Toxicology and Pharmaceutical Science
Nanoparticle
100%
Combination Therapy
100%
Neoplasm
100%
Doxorubicin
83%
Lung Cancer
50%
Prodrug
33%
Mouse Model
16%
Enhanced Permeability and Retention Effect
16%
Therapeutic Effect
16%
Tumor Growth
16%
Photosensitizer
16%
Macrogol
16%
Necrosis
16%
Succinic Acid
16%
Acid Anhydride
16%
Carboxamide
16%
Chemistry
Chlorin
100%
Nanoparticle
100%
Doxorubicin
45%
Prodrug
18%
Poly(ethylene Glycol)
9%
Acidic Condition
9%
Anhydride
9%
Succinate
9%
Enhanced Permeability and Retention Effect
9%
Carboxamide
9%
Enzymatic Hydrolysis
9%
Material Science
Tumor
100%
Nanoparticle
100%
Polyethylene Glycol
14%
Photosensitizer
14%
Enzymatic Hydrolysis
14%