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Title of technology:
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Platform for the expression and production of multiple
recombinant proteins in the milk of transgenic non-human mammals |
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Date posted:
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11 July, 2007
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Category:
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Agricultural/Animal health, Drug discovery
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Application:
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Technology regarding new methods to efficiently and cost-effectively
produce recombinant proteins from the milk of genetically-modified farm
animals, applying methodologies of genetic engineering and transgenesis
to pharmaceutical manufacturing.
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Abstract:
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A platform has been developed to efficiently and cost-effectively
produce recombinant proteins from the milk of genetically-modified farm
animals, applying the methods of genetic engineering and transgenesis
to pharmaceutical manufacturing.
ATIT-IX, a 55 kDa protein, is expressed in the milk of transgenic sows
at 250 µg/mL. After lactation, ATIT-IX is purified from sow milk
to homogeneity via anion and affinity chromatographic procedures, and
the physical and chemical properties of ATIT-IX have been evaluated.
The platform uses manufacturing processes that are well-managed and carefully
scrutinized in terms of quality control, quality assurance and production
efficiency.
Currently, biological activity of ATIT-IX at higher levels than other
commercial products has been demonstrated.
Bio-safety issues are always an important consideration in the production
of biopharmaceutical proteins. Adventitious agents must be considered
when dealing with biological products from transgenic animals. For this
platform, bio-safety tests (endotoxin and virus) have been used to establish
quality control for all the manufacturing processes; including those involved
in milk production, milk collection, protein isolation and purification.
Model viruses detection (porcine parvovirus and pseudorabies virus) and
pyrogen tests were established to assess the safety of therapeutic proteins
derived from swine in this platform.
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Patent information:
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US and Taiwan patents of ATIT-IX production issued
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Development status:
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Preclinical
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Type of business
relationship sought:
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Patent licensing; technology transfer; partnering
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Contact:
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Dr. Chang Yuo-Sheng, Ph.D.
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Email:
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Company or institute:
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Taiwan Life Sciences Weekly
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