Radha Krishnakumar
synthetic biology, whole genome engineering, DNA assembly, cancer therapy
synthetic biology, whole genome engineering, DNA assembly, cancer therapy
computational biology, computational tools, modeling, protein engineering
biotechnology, microbiology, molecular biology, bio-based chemicals, biopolymers
synthetic biology, genetic devices, genetic circuits, CRISPR, genetic engineering
intellectual property, ownership sharing & innovation, law
ancestral sequence reconstruction, experimental evolution, phylogenetics, evolutionary biochemistry, science communication, astrobiology
DIYbio, citizen science, science literacy, synthetic biology, molecular biology
material engineering, nanotechnology, advanced materials, self-healing materials
epigenetics, transcription factors, chromatin engineering
systems engineering, tissue engineering, drug development, biomaterials, scaffolds
synthetic biology, NSF, policy, government, research strategy
art-science collaboration, interdisciplinary collaborations, design
biological sciences, biochemistry, biophysics, models, antimalarial drugs, systems biology, computational biology
science policy, scientific publishing, stem cell policy, genomic technologies, research integrity
synthetic biology, science & technology studies, engineering studies, standard-setting, design and values
genome evolution, experimental evolution, yeast, comparative genomics
metabolic engineering, pharmaceuticals
CRISPR, translational control, RNAi
synthetic biology, quorum sensing, biofilm formation, cell-cell communication, directed evolution
metabolic engineering, synthetic biology, sustainable chemical production, applied microbiology, systems biology, RNA splicing, microbiology