Inventor · Waterloo, ON, CA

Tzann-Wei Wang

23Patents
6h-index
13Co-inventors
62Inventor score

Filing activity: Jun 19, 2000 → Dec 9, 2010

Most-cited inventions

PatentTitleAreaCited byStatus
US6774284B1 DNA encoding a plant lipase, transgenic plants and a method for controlling senescence in plants Chemistry; Metallurgy 18 Expired
US6855529B2 DNA encoding a plant deoxyhypusine synthase, a plant eukaryotic initiation factor 5A, transgenic plants and a method for controlling senescence programmed and cell death in plants Emerging Cross-Sectional Technologies 17 Expired
US6867237B1 DNA encoding apoptosis-induced eucaryotic initiation factor-5A and deoxyhypusine synthase and a method for controlling apoptosis in animals and humans Human Necessities 17 Expired
US6849782B2 Arabidopsis antisense deoxyhypusine synthase molecule and method of inhibiting deoxyhypusine synthase expression in plants Emerging Cross-Sectional Technologies 17 Expired
US6878860B1 DNA encoding a plant deoxyhypusine synthase, a plant eukaryotic initiation factor 5A, transgenic plants and a method for controlling senescence programmed and cell death in plants Emerging Cross-Sectional Technologies 17 Expired
US6538182B1 DNA encoding a plant deoxyhypusine synthase, a plant eukaryotic initiation factor 5A, transgenic plants and a method for controlling senescence programmed and cell death in plants Emerging Cross-Sectional Technologies 17 Expired
US6900368B2 Tomato antisense deoxyhypusine synthase molecule and method of inhibiting deoxyhypusine synthase expression in plants Emerging Cross-Sectional Technologies 2 Expired
US6897359B2 Carnation antisense deoxyhypusine synthase molecule and method of inhibiting deoxyhypusine synthase expression in plants Emerging Cross-Sectional Technologies 2 Expired
US7166467B2 Nucleic acids, polypeptides, compositions, and methods for modulating apoptosis Chemistry; Metallurgy 1 Expired
US7087419B2 DNA encoding a plant lipase, transgenic plants and a method for controlling senescence in plants Chemistry; Metallurgy 1 Expired
US7663028B2 Method of increasing seed yield and growth eIF-5A Emerging Cross-Sectional Technologies 0 Active
US7968523B2 Method for inducing apoptosis using apoptosis-specific EIF5-A Chemistry; Metallurgy 0 Active
US6989258B2 DNA encoding a plant deoxyhpusine synthase, a plant eukaryotic initiation factor 5A, transgenic plants and a method for controlling senescence programmed and cell death in plants Emerging Cross-Sectional Technologies 0 Expired
US8232455B2 Polynucleotides encoding canola DHS and antisense polynucleotides thereof Emerging Cross-Sectional Technologies 0 Active
US7033833B2 Polynucleotides encoding carnation senescense-induced EIF-5A Emerging Cross-Sectional Technologies 0 Expired
US7217866B2 DNA encoding a plant deoxyhypusine synthase, a plant eukaryotic initiation factor 5A, transgenic plants and a method for controlling senescence programmed and cell death in plants Emerging Cross-Sectional Technologies 0 Expired
US7265280B2 Polynucleotides encoding carnation senescence-induced DHS Emerging Cross-Sectional Technologies 0 Expired
US7588888B2 DNA encoding a plant deoxyhypusine synthase, a plant eukaryotic initiation factor 5A, transgenic plants and a method for controlling senescence programmed and cell death in plants Emerging Cross-Sectional Technologies 0 Expired
US8563285B2 Isoforms of eIF-5A: senescence-induced eIF5A; wounding-induced eIF-5A; growth eIF-5A; and DHS Emerging Cross-Sectional Technologies 0 Active
US7070997B2 Isolated nucleotides encoding tomato senescence-induced eIF-5A Emerging Cross-Sectional Technologies 0 Expired
US7872112B2 Expression vector encoding apoptosis-specific eIF-5A Chemistry; Metallurgy 0 Active
US7358418B2 Isoforms of eIF-5A: senescence-induced eLF5A; wounding-induced eIF-4A; growth eIF-5A; and DHS Chemistry; Metallurgy 0 Expired
US7226784B2 Isolated nucleotides encoding arabidopsis senescence-induced elF-5A Emerging Cross-Sectional Technologies 0 Expired

Source: USPTO / EPO open patent data. Inventor disambiguation is heuristic; counts are objective bibliographic measures.