Inventor · Wildwood, MO, US

Jeffrey M. Staub

16Patents
6h-index
29Co-inventors
66Inventor score

Filing activity: Jan 31, 1994 → Jul 3, 2023

Most-cited inventions

PatentTitleAreaCited byStatus
US5877402A DNA constructs and methods for stably transforming plastids of multicellular plants and expressing recombinant proteins therein Chemistry; Metallurgy 153 Expired
US6388168B1 DNA constructs and methods for stably transforming plastids of multicellular plants and expressing recombinant proteins therein Chemistry; Metallurgy 27 Expired
US8404927B2 Double-stranded RNA stabilized in planta Emerging Cross-Sectional Technologies 20 Active
US6781033B2 Method for the transformation of plant cell plastids Chemistry; Metallurgy 14 Expired
US6849778B1 Methods and vectors for site-specific recombination in plant cell plastids Chemistry; Metallurgy 11 Expired
US6271444A Enhancer elements for increased translation in plant plastids Chemistry; Metallurgy 7 Expired
US7259293B2 Expression of eukaryotic peptides in plant plastids Chemistry; Metallurgy 5 Expired
US6218145A Bacterial expression systems based on plastic or mitochondrial promoter combinations Chemistry; Metallurgy 2 Expired
US6812379B2 Expression of eukaryotic peptides in plant plastids Chemistry; Metallurgy 2 Expired
US6492578B1 Expression of herbicide tolerance genes in plant plastids Chemistry; Metallurgy 2 Expired
US6512162B2 Expression of eukaryotic peptides in plant plastids Chemistry; Metallurgy 1 Expired
US9267144B2 Plastid transformation of maize Chemistry; Metallurgy 1 Active
US12011000B2 Affinity molecules and methods for their use Emerging Cross-Sectional Technologies 0 Active
US10913939B2 Compositions and methods for expression of nitrogenase in plant cells Chemistry; Metallurgy 0 Active
US7732662B2 Method for the transformation of plant cell plastids Chemistry; Metallurgy 0 Active
US9701973B2 Plastid transformation of maize Chemistry; Metallurgy 0 Active

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