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Rational design of organelle compartments in cells
Claudio Angione
, Giovanni Carapezza
, Jole Costanza
, Pietro Lió
, Giuseppe Nicosia
Centre for Digital Innovation
Research output
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peer-review
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Keyphrases
Multi-objective Optimization
100%
Mitochondria
100%
Rational Design
100%
Inflammation
50%
Aging
50%
Sensitivity Analysis
50%
Comorbidity
50%
Robustness Analysis
50%
Adaptation
50%
Metabolism
50%
Cell Behavior
50%
Incomplete Knowledge
50%
Sequence Data
50%
Eukaryotes
50%
Biosynthetic Pathway
50%
Energy Balance
50%
Hydrogenosome
50%
Chloroplast
50%
Gene Pathway
50%
Mitochondrial Sequences
50%
Systems Biology Approach
50%
Krebs Cycle
50%
Functional Organization
50%
Organelle Division
50%
Mitochondrion-related Organelles
50%
Chloroplast DNA
50%
Intermediate Compounds
50%
Amino Acid Synthesis
50%
Common Framework
50%
Molecular Network
50%
Macromolecules
50%
Apicoplast
50%
Mitophagosome
50%
Single-objective
50%
Pharmacology, Toxicology and Pharmaceutical Science
Inflammation
100%
Eukaryote
100%
Adenosine Triphosphate
100%
Amino Acid
100%
Comorbidity
100%
Diseases
100%
Medicine and Dentistry
Mitochondrion
100%
Chloroplast
40%
Energy Balance
20%
Hydrogenosome
20%
Division
20%
Citric Acid Cycle
20%
Apicoplast
20%
Adenosine Triphosphate
20%
Amino Acid Synthesis
20%
Cell Function
20%
Mitosome
20%
Comorbidity
20%
Diseases
20%
Inflammation
20%
Immunology and Microbiology
Mitochondrion
100%
Chloroplast
40%
Eukaryote
20%
Mitosome
20%
Cell Function
20%
Hydrogenosome
20%
Citric Acid Cycle
20%
Energy Balance
20%
Apicoplast
20%
Amino Acid Synthesis
20%
Macromolecule
20%
Comorbidity
20%
Inflammation
20%
Neuroscience
Chloroplast
40%
Anabolism
20%
Citric Acid Cycle
20%
Apicoplast
20%
Amino Acid
20%
Biochemistry, Genetics and Molecular Biology
Energy Balance
20%
Citric Acid Cycle
20%
Amino Acid Synthesis
20%
Krebs Cycle
20%