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Systemic effects
Michael Richard Hamblin
, Caetano Padial Sabino
Massachusetts General Hospital
Harvard University
Harvard-MIT Division of Health Sciences and Technology
Universidade de São Paulo
Instituto de Pesquisas Energéticas e Nucleares
University of Toronto
Research output
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Chapter in Book/Report/Conference proceeding
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Chapter
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peer-review
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Medicine and Dentistry
Photodynamic Therapy
100%
Neoplasm
66%
Tumor Cell
55%
Photosensitizer
44%
Pharmacokinetics
33%
Cytokine
22%
Infection
22%
Immune System
22%
Vascular Tissue Neoplasm
22%
Cell Death
22%
Serum Total Protein
22%
Neutrophil
11%
Cancer Treatment
11%
Leukocyte
11%
Programmed Cell Death
11%
Biodistribution
11%
Extracellular Matrix
11%
Adaptive Immunity
11%
Oxidative Stress
11%
Serositis
11%
Necrosis
11%
Cancer Recurrence
11%
Inflammatory Cytokine
11%
Endothelial Cell
11%
Topical Drug Administration
11%
Reactive Oxygen Species
11%
Adaptive Response
11%
Tumor Vascularization
11%
Adventitia
11%
Thrombosis
11%
Bleeding
11%
Cytotoxicity
11%
Lymphatic System
11%
Systemic Administration
11%
Immunology and Microbiology
Photodynamics
100%
Tumor Cell
55%
Blood Vessels
33%
Pharmacokinetics
33%
Cell Death
22%
Immune System
22%
Cytokine
22%
Adaptive Immune System
11%
Infectious Disease
11%
Neutrophil Granulocyte
11%
Cytotoxicity
11%
Oxidative Stress
11%
Illumination
11%
Leukocyte
11%
Extracellular Matrix
11%
Absorption
11%
Proinflammatory Cytokine
11%
Acute Inflammation
11%
Lymphatic System
11%
Continuous Process
11%
Adventitia
11%
Tumor Vascularization
11%
Pharmacology, Toxicology and Pharmaceutical Science
Neoplasm
100%
Photodynamic Therapy
81%
Photosensitizer
36%
Pharmacokinetics
27%
Cytokine
27%
Infection
18%
Plasma Protein
18%
Vascular Tumor
18%
Cytotoxicity
9%
Reactive Oxygen Metabolite
9%
Malignant Neoplasm
9%
Biodistribution
9%
Inflammation
9%
Necrosis
9%
Cancer Recurrence
9%
Heat Shock Protein
9%
Tumor Vascularization
9%
Thrombosis
9%
Bleeding
9%
Keyphrases
Damage-associated Molecular Patterns
22%
Adventitia
11%
Illumination Parameter
11%
Continuous Process
11%
Antivascular Therapy
11%
Pro-inflammatory Activity
11%
Bloodstream
11%
Deprivation
11%
Absorption Bands
11%
Direct Cytotoxicity
11%
Tumor Vasculature
11%
Cytokine Response
11%
Thrombosis
11%
Memory Immunity
11%
Stress Proteins
11%
Systemic Administration
11%
Adaptive Response
11%
Innate Response
11%
Gradual Transition
11%
Lymphatic System
11%
Molecular Stress
11%
Local Infection
11%