SCIENTIST OF FORTUNE SA has a total of 94 patent applications. It increased the IP activity by 400.0%. Its first patent ever was published in 2004. It filed its patents most often in United States, EPO (European Patent Office) and WIPO (World Intellectual Property Organization). Its main competitors in its focus markets biotechnology, foods and drinks and environmental technology are RIVER STONE BIOTECH APS, C LECTA GMBH and ENOBRAQ.
# | Country | Total Patents | |
---|---|---|---|
#1 | United States | 17 | |
#2 | EPO (European Patent Office) | 16 | |
#3 | WIPO (World Intellectual Property Organization) | 11 | |
#4 | Australia | 8 | |
#5 | China | 6 | |
#6 | Brazil | 5 | |
#7 | Canada | 4 | |
#8 | Israel | 4 | |
#9 | Mexico | 3 | |
#10 | Malaysia | 3 | |
#11 | Peru | 3 | |
#12 | Singapore | 3 | |
#13 | Hong Kong | 2 | |
#14 | India | 2 | |
#15 | Colombia | 1 | |
#16 | Guatemala | 1 | |
#17 | Hungary | 1 | |
#18 | Republic of Korea | 1 | |
#19 | Philippines | 1 | |
#20 | Serbia | 1 | |
#21 | Russian Federation | 1 |
# | Industry | |
---|---|---|
#1 | Biotechnology | |
#2 | Foods and drinks | |
#3 | Environmental technology | |
#4 | Organic fine chemistry | |
#5 | Machines |
# | Technology | |
---|---|---|
#1 | Microorganisms | |
#2 | Fermentation | |
#3 | Enzymes | |
#4 | Climate change mitigation in goods production | |
#5 | Microorganisms | |
#6 | Unspecified technologies | |
#7 | Acyclic or carbocyclic compounds | |
#8 | Sugars | |
#9 | Heterocyclic compounds | |
#10 | Peptides |
# | Name | Total Patents |
---|---|---|
#1 | Marliere Philippe | 61 |
#2 | Marlière Philippe | 16 |
#3 | Anissimova Maria | 11 |
#4 | Allard Mathieu | 10 |
#5 | Panke Sven | 5 |
#6 | Künzl Tilmann | 4 |
#7 | Philippe Marlière | 4 |
#8 | Philippe Marliere | 3 |
#9 | Marliére Philippe | 2 |
#10 | Delcourt Marc | 1 |
Publication | Filing date | Title |
---|---|---|
AU2018344883A1 | Cellular transport system for transferring a sulfonic acid construct carrying a cargo into the cytoplasm of a cell | |
CN108026549A | Acylphosphate is enzymatically produced from 2- hydroxy aldehydes | |
EP3149180A1 | Method for the enzymatic production of d-erythrose and acetyl phosphate by using a phosphoketolase | |
US2017107546A1 | Enzymatic production of acetyl phosphate from formaldehyde | |
US2016369306A1 | Method for the enzymatic production of 3-buten-2-one | |
US2015291981A1 | Production of alkenes from 3-hydroxy-1-carboxylic acids via 3-sulfonyloxy-1-carboxylic acids | |
US2014065686A1 | Production of volatile dienes by enzymatic dehydration of light alkenols | |
EP2867365A1 | Process for producing a c2-c10 monoalkene employing a terpene synthase or a prenyl transferase | |
AU2012357857A1 | Production of 1,3-dienes by enzymatic conversion of 3-hydroxyalk-4-enoates and/or 3-phosphonoxyalk-4-enoates | |
AU2012324935A1 | Process for the enzymatic production of butadiene from crotyl alcohol | |
RU2658770C2 | Recombinant microorganism for producing useful metabolites | |
AU2009265373A1 | Production of alkenes by enzymatic decarboxylation of 3-hydroxyalkanoic acids | |
EP1636246A1 | Production of 2 -deoxynucleosides and 2 -deoxynucleoside precursors from 2-dehydro-3-deoxy-d-gluconate |