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    The NIH cannot commercialize its discoveries even with its considerable size and resources — it relies instead upon partners. Typically, a royalty-bearing exclusive license agreement with the right to sublicense is given to a company from NIH to use patents, materials, or other assets to bring a therapeutic or vaccine product concept to market.

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    Each year, hundreds of new inventions are made at NIH and CDC laboratories. Nine NIH Institutes or Centers (ICs) transfer NIH and CDC inventions through licenses to the private sector for further research and development and eventual commercialization.

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    The NIH, CDC and FDA Intramural Research Programs are exceptionally innovative as exemplified by the many products currently on the market that benefit the public every day. Reports are generated from the commonly tracked metrics related to these products.

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    If a company would like to acquire rights to use or commercialize either an unpatented material, or a patented or patent-pending invention, a license is required. There are numerous policies and regulations surrounding the transfer or a technology from the NIH to a company or organization.

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    The NIH Office of Technology Transfer (OTT) plays a strategic role by supporting the patenting and licensing efforts of our NIH ICs. OTT protects, monitors, markets and manages the wide range of NIH discoveries, inventions, and other intellectual property as mandated by the Federal Technology Transfer Act and related legislation.

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PEGYLATION OF LINKERS IMPROVES ANTITUMOR ACTIVITY AND REDUCES TOXICITY OF IMMUNOCONJUGATES

  • Read more about PEGYLATION OF LINKERS IMPROVES ANTITUMOR ACTIVITY AND REDUCES TOXICITY OF IMMUNOCONJUGATES
Canada
2411967
Filed on 2001-06-08

PEGYLATION OF LINKERS IMPROVES ANTITUMOR ACTIVITY AND REDUCES TOXICITY OF IMMUNOCONJUGATES

  • Read more about PEGYLATION OF LINKERS IMPROVES ANTITUMOR ACTIVITY AND REDUCES TOXICITY OF IMMUNOCONJUGATES
Japan
2002-510119
Filed on 2001-06-08

PEGYLATION OF LINKERS IMPROVES ANTITUMOR ACTIVITY AND REDUCES TOXICITY OF IMMUNOCONJUGATES

  • Read more about PEGYLATION OF LINKERS IMPROVES ANTITUMOR ACTIVITY AND REDUCES TOXICITY OF IMMUNOCONJUGATES
European Patent
01948294.2
Filed on 2001-06-08

PEGYLATION OF LINKERS IMPROVES ANTITUMOR ACTIVITY AND REDUCES TOXICITY OF IMMUNOCONJUGATES

  • Read more about PEGYLATION OF LINKERS IMPROVES ANTITUMOR ACTIVITY AND REDUCES TOXICITY OF IMMUNOCONJUGATES
US Application 10/297,337
Filed on 2002-12-04

Broadly Cross-Reactive Neutralizing Antibodies Against Human Immunodeficiency Virus selected By ENV-CD4-CO-Receptor Complexes

  • Read more about Broadly Cross-Reactive Neutralizing Antibodies Against Human Immunodeficiency Virus selected By ENV-CD4-CO-Receptor Complexes
Patent Cooperation Treaty
PCT/US02/33165
Filed on 2002-10-16

INHIBITION OF SMAD3 TO PREVENT FIBROSIS AND TO IMPROVE WOUND HEALING

  • Read more about INHIBITION OF SMAD3 TO PREVENT FIBROSIS AND TO IMPROVE WOUND HEALING
US Application 10/299,886
Filed on 2002-11-18

INHIBITION OF SMAD3 TO PREVENT FIBROSIS AND TO IMPROVE WOUND HEALING

  • Read more about INHIBITION OF SMAD3 TO PREVENT FIBROSIS AND TO IMPROVE WOUND HEALING
Japan
2001-585799
Filed on 2000-05-19

INHIBITION OF SMAD3 TO PREVENT FIBROSIS AND TO IMPROVE WOUND HEALING

  • Read more about INHIBITION OF SMAD3 TO PREVENT FIBROSIS AND TO IMPROVE WOUND HEALING
European Patent
00932586.1
Filed on 2000-05-19

INHIBITION OF SMAD3 TO PREVENT FIBROSIS AND TO IMPROVE WOUND HEALING

  • Read more about INHIBITION OF SMAD3 TO PREVENT FIBROSIS AND TO IMPROVE WOUND HEALING
Canada
2410987
Filed on 2000-05-19

INHIBITION OF SMAD3 TO PREVENT FIBROSIS AND TO IMPROVE WOUND HEALING

  • Read more about INHIBITION OF SMAD3 TO PREVENT FIBROSIS AND TO IMPROVE WOUND HEALING
Australia
2000250285
Filed on 2000-05-19

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Office of Technology Transfer, Office of Intramural Research, National Institutes of Health