Keyphrases
Anticodon Loop
11%
Asparagine
22%
Biopharmaceutical Proteins
11%
Breast Cancer Cells
11%
Breast Cancer Patients
11%
Cell-based
11%
Complementarity-determining Region 3 (CDR3)
22%
Concentration Results
11%
Crustal Evolution
33%
Deamidation
100%
Deep Drilling
66%
Digestion
11%
Drill Hole
100%
Drilling Program
33%
Driving Reaction
25%
Drug Oxidation
50%
Early Triassic
33%
Fault Rocks
33%
Fission Track Age
33%
Hornblende
33%
K-Ar
33%
K-Ar Ages
33%
Late Paleozoic
33%
Liquid Chromatography-tandem Mass Spectrometry (LC-MS/MS)
11%
Major Fault
33%
Mass Spectrometry Methods
11%
Metamorphic Rocks
33%
Modification Patterns
11%
Pertuzumab
100%
Petrology
33%
Pharmacological Activities
11%
Plasma Proteins
11%
Plasma Volume
11%
Post-transcriptional Modification
11%
Post-Variscan
100%
Protein Content
11%
Quantitative Determination
11%
Receptor Binding
11%
Receptor Binding Assay
11%
Reverse Fault
66%
Sedimentary Record
33%
Seismic Reflector
33%
Sericite
33%
Surface Boundary
33%
Surrogate Peptide
11%
Tectonic Evolution
100%
Titanite
33%
Total Concentration
11%
Trastuzumab
100%
Tryptic Digestion
11%
Variscan Basement
33%
Viability Assay
11%
White Mica
33%
Immunology and Microbiology
Anticodon
50%
Blood Plasma
33%
Cancer Cell
11%
Codon
100%
Codon Usage
50%
Complementarity Determining Region
22%
Deamidation
100%
Dynamics
100%
Housekeeping Gene
50%
Lactococcus Lactis
100%
Liquid Chromatography Tandem Mass Spectrometry
11%
Mass Spectrometry
50%
Next Generation Sequencing
50%
Pertuzumab
100%
Protein Content
11%
Receptor Binding
22%
Trastuzumab
100%
Biochemistry, Genetics and Molecular Biology
Anticodon
11%
Asparagine
22%
Cancer Cell
11%
Codon
22%
Codon Usage
11%
Complementarity Determining Region
22%
Deamidation
100%
Dynamics
100%
Housekeeping Gene
11%
Lactococcus Lactis
100%
Ligand Binding Assay
11%
Liquid Chromatography-Mass Spectrometry
11%
Mass Spectrometry
11%
Microarrays
11%
Next Generation Sequencing
11%
Pertuzumab
100%
Plasma Protein
11%
Post-Transcriptional Modification
11%
Protein Content
11%
Quantitative Technique
11%
Receptor Binding
11%
Transfer RNA
100%
Translation (Protein Synthesis)
11%
Trastuzumab
100%