TRANSGENIC ANIMAL EXPRESSING B CELL ANTIGEN RECEPTOR
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United States of America Patent
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N/A
Issued Date -
Jan 13, 2011
app pub date -
Jul 9, 2010
filing date -
Jul 10, 2009
priority date (Note) -
Abandoned
status (Latency Note)
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Abstract
The invention relates to a non-human transgenic mammal containing in its genome a DNA construct expressing a B cell antigen receptor specific for factor VIII of the coagulation pathway.
First Claim
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- 15 United States
- 10 France
- 8 Japan
- 7 China
- 5 Korea
- 2 Other
Patent Owner(s)
Patent Owner | Address | |
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LIFE SCIENCES RESEARCH PARTNERS VZW | 3000 LEUVEN |
International Classification(s)

- 2010 Application Filing Year
- C12N Class
- 4982 Applications Filed
- 2541 Patents Issued To-Date
- 51.01 % Issued To-Date
Inventor(s)
Inventor Name | Address | # of filed Patents | Total Citations |
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Saint-Remy, Jean-Marie | Grez-Doiceau, BE | 64 | 564 |
# of filed Patents : 64 Total Citations : 564 |
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- 0 Citation Count
- C12N Class
- 0 % this patent is cited more than
- 14 Age
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Maintenance Fees
Fee | Large entity fee | small entity fee | micro entity fee | due date |
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Fee | Large entity fee | small entity fee | micro entity fee |
---|---|---|---|
Surcharge after expiration - Late payment is unavoidable | $700.00 | $350.00 | $175.00 |
Surcharge after expiration - Late payment is unintentional | $1,640.00 | $820.00 | $410.00 |
Full Text
US Patent Application No: 2017/0137,935
METHOD FOR GROWING VERTICALLY ORIENTED SINGLE-WALLED CARBON NANOTUBES WITH THE SAME ELECTRONIC PROPERTIES AND FOR REPRODUCING SINGLE-WALLED CARBON NANOTUBES WITH THE SAME ELECTRONIC PROPERTIES
Abstract
The present invention relates to a method of reproducing at least one single-walled carbon nanotube (3) having predefined electronic properties or a plurality of single-walled carbon nanotube (3) having the same electronic properties. A dispersion (2) is produced for this purpose and carbon nanotubes (3) contained in the dispersion are processed into fragments (6) by energy input. These fragments (6) are applied to and oriented on a carrier (7). The fragments (6) are subsequently extended by chemical vapor deposition and the originally present carbon nanotubes (3) are thus reproduced.
Description
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