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  Patent History
  • Application
    US 11/848736 2004-05-19
  • Publication
    US 20040235775 2004-11-25
  • Granted
    US 7067249 2006-06-27
Supplementary

granted patent: Inhibition Of Hepatitis B Virus (Hbv) Replication By Rna Interference

TitleInhibition Of Hepatitis B Virus (Hbv) Replication By Rna Interference
Granted PatentUS 7067249
Granted Date2006-06-27
Priority Date2004-05-19 US 11/848736
2003-05-19 US 10/471903P
Inventors
Issue Date2006
Citation
US Patent 7067249. Washington, DC: US Patent and Trademark Office (USPTO), 2006 How to Cite?
AbstractThe Present Invention Relates To The Inhibition Of Hepatitis B Virus (Hbv) Replication By Rna Molecules Of The Present Invention. Specifically, The Rna Molecules Of The Present Invention Are Double-Stranded Ribonucleic Acid Molecules (Dsrna). Specifically, The Invention Relates To Small Interfering Rnas (Sirna) Which Are Double-Stranded Rnas That Direct The Sequence-Specific Degradation Of Messenger Rna In Mammalian Cells. The Invention Relates To Development Of A New Anti-Hbv Therapy By Inhibition Of Hepatitis B Virus (Hbv) Replication Using Stably-Expressed Short Hairpin Rnas (Shrna), Which Degrade Hbv Pregenomic Rna And Message Rnas.; Included Are Methods Of Treatment Of Cancer By The Administration Of Rna Molecules Of The Present Invention In Combination With Surgery, Alone Or In Further Combination With Standard And Experimental Chemotherapies, Hormonal Therapies, Biological Therapies/Immunotherapies And/Or Radiation Therapies.
Persistent Identifierhttp://hdl.handle.net/10722/142186
References

 

DC FieldValueLanguage
dc.date.accessioned2011-10-19T06:34:18Z-
dc.date.available2011-10-19T06:34:18Z-
dc.date.issued2006-
dc.identifier.citationUS Patent 7067249. Washington, DC: US Patent and Trademark Office (USPTO), 2006en_HK
dc.identifier.urihttp://hdl.handle.net/10722/142186-
dc.description.abstractThe Present Invention Relates To The Inhibition Of Hepatitis B Virus (Hbv) Replication By Rna Molecules Of The Present Invention. Specifically, The Rna Molecules Of The Present Invention Are Double-Stranded Ribonucleic Acid Molecules (Dsrna). Specifically, The Invention Relates To Small Interfering Rnas (Sirna) Which Are Double-Stranded Rnas That Direct The Sequence-Specific Degradation Of Messenger Rna In Mammalian Cells. The Invention Relates To Development Of A New Anti-Hbv Therapy By Inhibition Of Hepatitis B Virus (Hbv) Replication Using Stably-Expressed Short Hairpin Rnas (Shrna), Which Degrade Hbv Pregenomic Rna And Message Rnas.; Included Are Methods Of Treatment Of Cancer By The Administration Of Rna Molecules Of The Present Invention In Combination With Surgery, Alone Or In Further Combination With Standard And Experimental Chemotherapies, Hormonal Therapies, Biological Therapies/Immunotherapies And/Or Radiation Therapies.en_HK
dc.relation.isreferencedbyUS 2009312531 (A1) 2009-12-17en_HK
dc.relation.isreferencedbyUS 7893224 (B2) 2011-02-22en_HK
dc.relation.isreferencedbyUS 2009318676 (A1) 2009-12-24en_HK
dc.relation.isreferencedbyUS 8013136 (B2) 2011-09-06en_HK
dc.relation.isreferencedbyUS 2009281298 (A1) 2009-11-12en_HK
dc.relation.isreferencedbyUS 7772387 (B2) 2010-08-10en_HK
dc.relation.isreferencedbyUS 2009187027 (A1) 2009-07-23en_HK
dc.relation.isreferencedbyUS 8058448 (B2) 2011-11-15en_HK
dc.relation.isreferencedbyGB 2439543 (A) 2008-01-02en_HK
dc.relation.isreferencedbyWO 2006023491 (A2) 2006-03-02en_HK
dc.relation.isreferencedbyWO 2006023491 (A3) 2006-07-27en_HK
dc.relation.isreferencedbyUS 2005288244 (A1) 2005-12-29en_HK
dc.relation.isreferencedbyUS 7674778 (B2) 2010-03-09en_HK
dc.relation.isreferencedbyUS 2006008822 (A1) 2006-01-12en_HK
dc.relation.isreferencedbyUS 7626014 (B2) 2009-12-01en_HK
dc.titleInhibition Of Hepatitis B Virus (Hbv) Replication By Rna Interferenceen_HK
dc.typePatenten_US
dc.identifier.emailHe, Ming Liang:mlhe@hkucc.hku.hken_US
dc.identifier.emailKung, Hsiang Fu:en_US
dc.description.naturepublished_or_final_version-
dc.identifier.hkuros92236en_US
dc.contributor.inventorKung, Hsiang Fuen_US
dc.contributor.inventorHe, Ming Liangen_US
patents.identifier.applicationUS 11/848736en_HK
patents.identifier.grantedUS 7067249en_HK
patents.description.assigneeUniv Hong Kong [Cn]en_HK
patents.description.countryUnited States of Americaen_HK
patents.date.publication2004-11-25en_HK
patents.date.granted2006-06-27en_HK
dc.relation.referencesUS 2003206887 (A1) 2003-11-06en_HK
patents.identifier.hkutechidIMB-2003-00129-1en_US
patents.date.application2004-05-19en_HK
patents.date.priority2004-05-19 US 11/848736en_HK
patents.date.priority2003-05-19 US 10/471903Pen_HK
patents.description.ccUSen_HK
patents.identifier.publicationUS 20040235775en_HK
patents.relation.familyUS 2004235775 (A1) 2004-11-25en_HK
patents.relation.familyUS 7067249 (B2) 2006-06-27en_HK
patents.relation.familyUS 2005261094 (A1) 2005-11-24en_HK
patents.relation.familyUS 7354363 (B2) 2008-04-08en_HK
patents.relation.familyUS 2007027099 (A1) 2007-02-01en_HK
patents.description.kindB2en_HK
patents.typePatent_granteden_HK

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