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Han Gao
https://orcid.org/0000-0002-2457-8152
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Research output
(11)
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(6)
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Dive into the research topics where Han Gao is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Keyphrases
Accumulative Effect
19%
Antitumor Effect
19%
Article number
14%
Cardiac Repair
19%
Characterization System
9%
Clinical Translational
9%
CY-09
6%
Deoxygenation
19%
Economically Feasible
9%
Enhanced Tumor Accumulation
19%
Esophageal Precancerous Lesions
19%
Fluorescent Nanodiamonds
7%
Free Radical Generation
19%
Free Radicals
15%
Green Synthesis
9%
Heart muscle
19%
High-throughput Microfluidics
9%
Hypoxia
19%
Ionic Polysaccharides
9%
Ionotropic Gelation
9%
Ligand-free
9%
Metal-organic Framework Nanoparticles
19%
Metal-organic Frameworks (MOFs)
19%
Microfluidic Platform
19%
Microfluidics
9%
Mitochondria
19%
Muscle Cells
19%
Myocardial Ischemia-reperfusion Injury
19%
NACHT Domain
6%
Nanomicelles
6%
Nanoparticle Production
9%
Nanoparticles
38%
NLRP3 Inflammasome Inhibitor
6%
Out-of-bag
9%
PH-responsive
19%
Postconditioning
9%
Potent Gene Silencing
19%
PYD Domain
6%
Quantum Sensing
19%
Revascularization
9%
Robust Synthesis
9%
Sensing Technique
7%
Single Heart
19%
Smart Biomaterials
6%
Synthesis Methods
9%
Tailored Polysaccharides
19%
Targeting Capability
19%
Targeting Ligands
9%
Thermal Resistance
19%
Translational Potential
9%
Pharmacology, Toxicology and Pharmaceutical Science
Anti-Inflammatory Drug
6%
Antiinflammatory Agent
12%
Apilimod
19%
Atherosclerosis
19%
Biomaterial
19%
Cardiovascular Disease
6%
Combination Therapy
6%
Cryopyrin
6%
Dectin 1
16%
Disease
6%
Drug Carrier
12%
Formulation Design
9%
Gene Delivery
11%
Glucan
23%
Heart Failure
6%
Heart Infarction
6%
Heart Injury
12%
Heart Muscle Fibrosis
6%
Heart Muscle Injury
6%
Immunotherapy
6%
Inflammasome
10%
Inflammation
12%
Injury
19%
Ischemic Heart Disease
6%
Liver Injury
6%
Lung Fibrosis
6%
Macrogol
5%
Maleic Anhydride
5%
Metal Organic Framework
38%
Methacrylate
20%
Micelle
6%
Mouse
8%
Mycophenolic Acid
19%
Myocardial Ischemia Reperfusion Injury
38%
Nanoparticle
100%
Neoplasm
38%
Phospholipid
6%
Polysaccharide
57%
Reactive Oxygen Metabolite
5%
Reperfusion Injury
6%
Small Interfering RNA
19%
Therapeutic Effect
9%
Tumor Growth
7%
Tumor Microenvironment
10%
Medicine and Dentistry
Cardiovascular Disease
10%
Conditioning
6%
Cryopyrin
6%
Dectin 1
6%
Free Radical
19%
Glucan
12%
Green Synthesis
12%
Heart Failure
6%
Heart Injury
6%
Heart Muscle Injury
6%
Hypoxia
19%
Macrophage
6%
Mediator
6%
Micelle
6%
Mitochondrion
19%
Monocyte
6%
Myocardial Ischemia Reperfusion Injury
38%
Myocyte
19%
Nanodiamond
7%
Nanoparticle
38%
NLRP3 Inflammasome
6%
Reperfusion Injury
6%
Revascularization
6%