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Keyphrases
Bark Extract
100%
Tree Bark
100%
European Trees
72%
Oxidative Stress
72%
Antioxidant Activity
61%
Human Keratinocytes (HaCaT)
52%
Scratch Test
47%
Wound Healing
44%
Wound Healing Potential
41%
Antimicrobial
33%
Dermal Application
33%
Bioactive Potential
33%
Bio-PCM
33%
Gegen
33%
Small-scale Model
33%
Physical Test
33%
Physical-mechanical
33%
Rosaceae Species
33%
Solid Wood
33%
Thermal Characteristics
33%
Multi-level Output
33%
Rosaceae
33%
Medicinal Plants
33%
Bacterial Growth
33%
Lamiaceae Species
33%
Crude Extract
33%
Antioxidant Power
33%
Antioxidant Potential
33%
Staphylococcus
33%
Pathogenic Bacterial
33%
Biological Test
33%
Bio-based Phase Change Materials
33%
Mechanical Testing
33%
Wood Plastic Composites
27%
Pinus Sylvestris
25%
Fagus Sylvatica
25%
ROS Inhibition
25%
Betula Pendula
25%
Alnus Glutinosa
25%
Prunus Padus
25%
Quercus
25%
Satureja Montana L.
22%
Lamiaceae Extracts
22%
Total Phenolic Content
19%
Antimicrobial Activity
19%
Wound Closure
19%
HaCaT Cells
19%
Bioactive Compounds
19%
Therapeutic Potential
19%
Undp
16%
Ansatz
16%
Padus
16%
DPPH Test
16%
Soxhlet
16%
Gram-positive
16%
Medizin
16%
MIC Test
16%
Soxhlet Extraction
16%
Austria
16%
Italy
16%
DCFH-DA
16%
Ground Stress
16%
Antioxidant Assay
16%
Oak-pine
16%
Resveratrol
16%
Stress Level
16%
Dermatological Therapy
16%
Wound Healing Property
13%
European Tree Species
13%
Bird Cherry
13%
Alder
13%
Skin Diseases
13%
Antioxidant/antimicrobial Activity
13%
Wood Particles
11%
Staphylococcus Epidermidis (S. epidermidis)
11%
Alpine Region
11%
Ultrasound-assisted Extraction
11%
Palmitate Ester
11%
Plant Species
11%
Cell-based
11%
Extraction Methods
11%
Antibiotics
11%
Ethyl Palmitate
11%
Thymus
11%
Healing Wounds
11%
Phytochemical Analysis
11%
Reactive Oxygen Species Generation
11%
Cell Migration
11%
Asteraceae
11%
Terpenes
11%
Rubus Idaeus
11%
Origanum Vulgare
11%
Switzerland
11%
High Performance Liquid Chromatography-tandem Mass Spectrometry (HPLC-MS/MS)
11%
Asteraceae Family
11%
Minimum Inhibitory Concentration Assay
11%
Interreg
11%
Pathogen Stress
11%
Cell Differentiation
11%
Dried Plants
11%
Agricultural and Biological Sciences
Bark Extract
66%
Wound Healing
66%
Oxidative Stress
61%
ROS
50%
HaCaT
47%
Staphylococcus Aureus
33%
Palmitic Acid
33%
Isoptera
33%
Biocomposite
33%
Lamiaceae
33%
Medicinal Plant
33%
Rosaceae
33%
Minimum Inhibitory Concentration
30%
Quercus
25%
Betula pendula
25%
Alnus glutinosa
25%
Pinus sylvestris
25%
Prunus padus
25%
Fagus Sylvatica
25%
Composite Material
16%
Decay Fungi
16%
Decanoic Acid
16%
Biological Resistance
16%
Alnus
16%
Antioxidant
13%
Keratinocyte
13%
Bioactive Compound
13%
Phenol Derivative
11%
Asteraceae
11%
Winter savory
11%
Plant-Based
8%
Natural Resources
8%
Forestry
8%
Phytotherapy
8%
Traditional Medicine
8%
Steroid
5%
Phytochemical
5%
Staphylococcus Epidermidis
5%
Melissa officinalis
5%
Metabolite
5%
Raspberry
5%
Tissue Regeneration
5%
Liquid Chromatography-Mass Spectrometry
5%
Antioxidant Activity
5%
Rubus idaeus
5%
Oregano
5%
Cell Migration
5%
Alchemilla
5%
Cell Differentiation
5%
Cell Proliferation
5%
Pseudomonas aeruginosa
5%
Pharmacology, Toxicology and Pharmaceutical Science
Wound Healing
66%
Antioxidant
54%
Antiinfective Agent
50%
Staphylococcus Aureus
33%
2,5-Dimethoxy-4-iodoamphetamine
33%
Lamiaceae
33%
Medicinal Plant
33%
Rosacea
33%
1,1 Diphenyl 2 Picrylhydrazyl
25%
Scots pine
25%
Betula pendula
25%
Fagus sylvatica
25%
Alnus glutinosa
25%
Wound
17%
Chlorpheniramine Maleate
16%
Alder
16%
Infectious Agent
13%
Antimicrobial Agent
13%
Asteraceae
9%
Satureja montana
9%
High Performance Liquid Chromatography
9%
Skin Disease
8%
Infection
8%
Cherry
8%
Phytotherapy
8%