Harvard Catalyst Profiles

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Jiyoon Lee, Ph.D.

Concepts (72)

Concepts are derived automatically from a person's publications.
Concepts are listed by decreasing relevance which is based on many factors, including how many publications the person wrote about that topic, how long ago those publications were written, and how many publications other people have written on that same topic.
Name Number of Publications Most Recent Publication Publications by All Authors Concept Score Why?
Organoids620227012.140 Why?
Pluripotent Stem Cells320227951.040 Why?
Transglutaminases220161940.990 Why?
Hair Follicle320222090.870 Why?
GTP-Binding Proteins220169690.790 Why?
Hair220224800.740 Why?
Skin3202243720.660 Why?
Cell Culture Techniques2202116770.540 Why?
Antimetabolites, Antineoplastic120166400.430 Why?
Deoxycytidine120168260.420 Why?
Embryo, Mammalian1201817020.400 Why?
Stromal Cells1201513560.350 Why?
Fibroblasts2201641620.330 Why?
Pancreatic Neoplasms2201652640.310 Why?
Cell Communication1201516210.310 Why?
Hair Cells, Auditory, Inner220191910.280 Why?
Induced Pluripotent Stem Cells1201817330.280 Why?
Ear, Inner220194200.240 Why?
Drug Resistance, Neoplasm1201651700.200 Why?
Ectoderm120201370.180 Why?
Hair Color120201360.180 Why?
Enzyme Activation2201637010.180 Why?
Serine Proteases12019520.170 Why?
Organogenesis120172220.130 Why?
Laminin120164190.130 Why?
Skin Transplantation1202010740.120 Why?
Head120208780.120 Why?
Cell Differentiation22022114780.120 Why?
Mice, Nude1202036800.110 Why?
Acyltransferases120152940.110 Why?
Gene Expression2201677930.110 Why?
Single-Cell Analysis2202021770.110 Why?
Coculture Techniques1201613420.110 Why?
Regeneration1202114860.100 Why?
Mice52020811540.100 Why?
Cell Line, Tumor32016166740.100 Why?
Gene Knockdown Techniques1201516560.090 Why?
Epithelial-Mesenchymal Transition120147130.090 Why?
Models, Biological2201695820.090 Why?
Tumor Burden1201519170.080 Why?
Xenograft Model Antitumor Assays1201635470.080 Why?
Disease Models, Animal22016180270.070 Why?
Tissue Engineering1201718800.070 Why?
Transforming Growth Factor beta1201420060.070 Why?
Collagen1201526810.070 Why?
Animals520201686600.070 Why?
Membrane Proteins1201978800.050 Why?
DNA Methylation1201442860.050 Why?
Humans820227438110.040 Why?
Large-Conductance Calcium-Activated Potassium Channels12019320.040 Why?
Cell Proliferation12015104770.040 Why?
Disease Progression12015132730.040 Why?
Codon, Nonsense120192810.040 Why?
Ovarian Neoplasms1201448390.040 Why?
Gene Knockout Techniques120198070.030 Why?
Transcription Factors12015122090.030 Why?
Mechanotransduction, Cellular120195410.030 Why?
Azacitidine120143470.030 Why?
Collagen Type I120145920.020 Why?
Sequence Analysis, RNA1201920090.020 Why?
CpG Islands1201411700.020 Why?
Cadherins120149070.020 Why?
Cell Membrane1201937490.020 Why?
Homeostasis1201933370.020 Why?
Antigens, CD1201440260.010 Why?
Female220203800200.010 Why?
Enzyme Inhibitors1201437940.010 Why?
Promoter Regions, Genetic1201458670.010 Why?
Apoptosis1201997180.010 Why?
Epigenesis, Genetic1201436450.010 Why?
Cells, Cultured12017192320.010 Why?
Gene Expression Regulation, Neoplastic1201484300.010 Why?
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Concepts (72)
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Funded by the NIH National Center for Advancing Translational Sciences through its Clinical and Translational Science Awards Program, grant number UL1TR002541.