Patents by Inventor Anne B. Eldrup

Anne B. Eldrup has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 7105499
    Abstract: The present invention provides nucleoside derivatives which are inhibitors of RNA-dependent RNA viral polymerase. These compounds are inhibitors of RNA-dependent RNA viral replication and are useful for the treatment of RNA-dependent RNA viral infection. They are particularly useful as inhibitors of hepatitis C virus (HCV) NS5B polymerase, as inhibitors of HCV replication, and/or for the treatment of hepatitis C infection. The invention also describes pharmaceutical compositions containing such nucleoside derivatives alone or in combination with other agents active against RNA-dependent RNA viral infection, in particular HCV infection. Also disclosed are methods of inhibiting RNA-dependent RNA polymerase, inhibiting RNA-dependent RNA viral replication, and/or treating RNA-dependent RNA viral infection with the nucleoside derivatives of the present invention.
    Type: Grant
    Filed: January 18, 2002
    Date of Patent: September 12, 2006
    Assignees: Merck & Co., Inc., Isis Pharmaceuticals, Inc.
    Inventors: Steven S. Carroll, David B. Olsen, Malcolm MacCoss, Balkrishen Bhat, Phillip Dan Cook, Anne B. Eldrup, Thazha P. Prakash
  • Publication number: 20040229840
    Abstract: The present invention provides nucleoside compounds and certain derivatives thereof which are inhibitors of RNA-dependent RNA viral polymerase. These compounds are inhibitors of RNA-dependent RNA viral replication and are useful for the treatment of RNA-dependent RNA viral infection. They are particularly useful as inhibitors of hepatitis C virus (HCV) NS5B polymerase, as inhibitors of HCV replication, and/or for the treatment of hepatitis C infection. The invention also describes pharmaceutical compositions containing such nucleoside compounds alone or in combination with other agents active against RNA-dependent RNA viral infection, in particular HCV infection. Also disclosed are methods of inhibiting RNA-dependent RNA polymerase, inhibiting RNA-dependent RNA viral replication, and/or treating RNA-dependent RNA viral infection with the nucleoside compounds of the present invention.
    Type: Application
    Filed: October 28, 2003
    Publication date: November 18, 2004
    Inventors: Balkrishen Bhat, Anne B. Eldrup, Steven S. Carroll, David B. Olsen, Daniel R. McMasters, Malcolm MacCoss, Jie Xia
  • Publication number: 20040203024
    Abstract: The present invention provides modified oligonucleotides for use in the RNA interference pathway of gene modulation. At least one nucleoside has a 2′-modification other than hydroxyl that gives an RNA like 3′-endo sugar conformation. The modified oligonucleotides are also provided having a 5′-phosphate group.
    Type: Application
    Filed: November 4, 2003
    Publication date: October 14, 2004
    Inventors: Brenda F. Baker, Anne B. Eldrup, Muthiah Manoharan, Balkrishen Bhat, Richard H. Griffey, Eric E. Swayze, Stanley T. Crooke
  • Publication number: 20040186071
    Abstract: Antisense compounds, compositions and methods are provided for modulating the expression of CD40. The compositions comprise antisense compounds, particularly antisense oligonucleotides, targeted to nucleic acids encoding CD40. Methods of using these compounds for modulation of CD40 expression and for treatment of diseases associated with CD40 are provided.
    Type: Application
    Filed: October 31, 2003
    Publication date: September 23, 2004
    Inventors: C. Frank Bennett, Lex M. Cowsert, Leila Malik, Andrew Siwkowski, Anne B. Eldrup
  • Publication number: 20040171570
    Abstract: Compositions comprising first and second oligomers are provided wherein at least a portion of the first oligomer is capable of hybridizing with at least a portion of the second oligomer, at least a portion of the first oligomer is complementary to and capable of hybridizing to a selected target nucleic acid, and at least one of the first or second oligomers includes a modification comprising a polycyclic sugar surrogate. Oligomer/protein compositions are also provided comprising an oligomer complementary to and capable of hybridizing to a selected target nucleic acid and at least one protein comprising at least a portion of an RNA-induced silencing complex (RISC), wherein at least one nucleoside of the oligomer has a polycyclic sugar surrogate modification.
    Type: Application
    Filed: November 4, 2003
    Publication date: September 2, 2004
    Inventors: Charles Allerson, Balkrishen Bhat, Anne B. Eldrup, Muthiah Manoharan, Richard Griffey, Brenda F. Baker, Eric E. Swayze
  • Publication number: 20040171032
    Abstract: Oligomer compositions comprising first and second oligomers are provided wherein at least a portion of the first oligomer is capable of hybridizing with at least a portion of the second oligomer, at least a portion of the first oligomer is complementary to and capble of hybridizing to a selected target nucleic acid, and at least one of the first or second oligomers includes at least two nucleoside having a modified non-phosphorous-containing internucleoside linkage. Oligomer/protein compositions are also provided comprising an oligomer complementary to and capable of hybridizing to a selected target nucleic acid and at least one protein comprising at least a portion of an RNA-induced silencing complex (RISC), wherein at least two nucleosides of the oligomer has a modified non-phosphorous-containing internucleoside linkage.
    Type: Application
    Filed: November 4, 2003
    Publication date: September 2, 2004
    Inventors: Brenda F. Baker, Anne B. Eldrup, Muthiah Manoharan, Balkrishen Bhat, Richard Griffey, Eric E. Swayze, Stanley T. Crooke, Thazha P. Prakash
  • Publication number: 20040171031
    Abstract: Compositions comprising first and second oligomers are provided wherein at least a portion of the first oligomer is capable of hybridizing with at least a portion of the second oligomer, at least a portion of the first oligomer is complementary to and capable of hybridizing to a selected target nucleic acid, and at least one of the first or second oligomers includes a modification comprising a sugar surrogate. Oligomer/protein compositions are also provided comprising an oligomer complementary to and capable of hybridizing to a selected target nucleic acid and at least one protein comprising at least a portion of an RNA-induced silencing complex (RISC), wherein at least one nucleoside of the oligomer has a sugar surrogate modification.
    Type: Application
    Filed: November 4, 2003
    Publication date: September 2, 2004
    Inventors: Brenda F. Baker, Anne B. Eldrup, Muthiah Manoharan, Balkrishen Bhat, Richard H. Griffey, Eric E. Swayze, Stanley T. Crooke
  • Publication number: 20040171029
    Abstract: Compositions comprising first and second oligomers are provided wherein at least a portion of the first oligomer is capable of hybridizing with at least a portion of the second oligomer, at least a portion of the first oligomer is complementary to and capable of hybridizing to a selected target nucleic acid, and at least one of the first or second oligomers includes a modified sugar and/or backbone modification. In some embodiments the modification is a 2′-F substituent group on a sugar moiety. Oligomer/protein compositions are also provided comprising an oligomer complementary to and capable of hybridizing to a selected target nucleic acid and at least one protein comprising at least a portion of an RNA-induced silencing complex (RISC), wherein at least one nucleoside of the oligomer has a modified sugar and/or backbone modification.
    Type: Application
    Filed: November 4, 2003
    Publication date: September 2, 2004
    Inventors: Thazha P. Prakash, Brenda F. Baker, Anne B. Eldrup, Muthiah Manoharan, Balkrishen Bhat, Richard Griffey, Eric E. Swayze, Stanley T. Crooke
  • Publication number: 20040171030
    Abstract: Oligomer compositions comprising first and second oligomers are provided wherein at least a portion of the first oligomer is capable of hybridizing with at least a portion of the second oligomer, at least a portion of the first oligomer is complementary to and capble of hybridizing to a selected target nucleic acid, and at least one of the first or second oligomers has a modified base for binding to a cytosine, uracil, or thymine base in the opposite strand.
    Type: Application
    Filed: November 4, 2003
    Publication date: September 2, 2004
    Inventors: Brenda F. Baker, Anne B. Eldrup, Muthiah Manoharan, Balkrishen Bhat, Richard Griffey, Eric E. Swayze, Stanley T. Crooke, Kallanthottathil G. Rajeev
  • Publication number: 20040171033
    Abstract: Compositions comprising first and second oligomers are provided wherein at least a portion of the first oligomer is capable of hybridizing with at least a portion of the second oligomer, at least a portion of the first oligomer is complementary to and capable of hybridizing to a selected target nucleic acid, and at least one of the first or second oligomers includes a modified sugar and/or backbone modification. In some embodiments the modification is a 2′ substituent group on a sugar moiety that is not H or OH. Oligomer/protein compositions are also provided comprising an oligomer complementary to and capable of hybridizing to a selected target nucleic acid and at least one protein comprising at least a portion of an RNA-induced silencing complex (RISC), wherein at least one nucleotide of the oligomer has a modified sugar and/or backbone modification.
    Type: Application
    Filed: November 4, 2003
    Publication date: September 2, 2004
    Inventors: Brenda F. Baker, Anne B. Eldrup, Muthiah Manoharan, Balkrishen Bhat, Richard Griffey, Eric E. Swayze, Stanley T. Crooke, Thazha P. Prakash
  • Publication number: 20040171028
    Abstract: Oligonucleotide compositions comprising first and second oligonucleotides are provided wherein at least a portion of the first oligonucleotide is capable of hybridizing with at least a portion of the second oligonucleotide, at least a portion of the first oligonucleotide is complementary to and capble of hybridizing to a selected target nucleic acid, and at least one of the first or second oligonucleotides includes at least one nucleotide having a modified phosphorous-containing internucleoside linkage. Oligonucleotide/protein compositions are also provided comprising an oligonucleotide complementary to and capable of hybridizing to a selected target nucleic acid and at least one protein comprising at least a portion of an RNA-induced silencing complex (RISC), wherein at least one nucleotide of the oligonucleotide has a modified phosphorous-containing internucleoside linkage.
    Type: Application
    Filed: November 4, 2003
    Publication date: September 2, 2004
    Inventors: Brenda F. Baker, Anne B. Eldrup, Muthiah Manoharan, Balkrishen Bhat, Richard Griffey, Eric E. Swayze, Stanley T. Crooke, Thazha P. Prakash
  • Publication number: 20040161844
    Abstract: Compositions comprising first and second oligomers are provided wherein at least a portion of the first oligomer is capable of hybridizing with at least a portion of the second oligomer, at least a portion of the first oligomer is complementary to and capable of hybridizing to a selected target nucleic acid, and at least one of the first or second oligomers includes a modified sugar and/or backbone modification. In some embodiments the modification is a peptide nucleic acid, a peptide nucleic acid mimic, a morpholino nucleic acid, hexose sugar with amide linkage, cyclohexenyl nucleic acid (CeNA), or an acyclic backbone moiety. Oligomer/protein compositions are also provided comprising an oligomer complementary to and capable of hybridizing to a selected target nucleic acid and at least one protein comprising at least a portion of an RNA-induced silencing complex (RISC), wherein at least one nucleotide of the oligomer has a modified sugar and/or backbone modification.
    Type: Application
    Filed: November 4, 2003
    Publication date: August 19, 2004
    Inventors: Brenda F. Baker, Anne B. Eldrup, Muthiah Manoharan, Balkrishen Bhat, Richard H. Griffey, Eric E. Swayze, Stanley T. Crooke
  • Publication number: 20040161777
    Abstract: The present invention provides modified oligonucleotides for use in the RNA interference pathway of gene modulation. The modified oligonucleotides are also provided having a 3′ terminal cap group.
    Type: Application
    Filed: November 4, 2003
    Publication date: August 19, 2004
    Inventors: Brenda F. Baker, Anne B. Eldrup, Muthiah Manoharan, Balkrishen Bhat, Richard H. Griffey, Eric E. Swayze, Stanley T. Crooke
  • Patent number: 6777395
    Abstract: The present invention provides nucleoside compounds and certain derivatives thereof which are inhibitors of RNA-dependent RNA viral polymerase. These compounds are inhibitors of RNA-dependent RNA viral replication and are useful for the treatment of RNA-dependent RNA viral infection. They are particularly useful as inhibitors of hepatitis C virus (HCV) NS5B polymerase, as inhibitors of HCV replication, and/or for the treatment of hepatitis C infection. The invention also describes pharmaceutical compositions containing such nucleoside compounds alone or in combination with other agents active against RNA-dependent RNA viral infection, in particular HCV infection. Also disclosed are methods of inhibiting RNA-dependent RNA polymerase, inhibiting RNA-dependent RNA viral replication, and/or treating RNA-dependent RNA viral infection with the nucleoside compounds of the present invention.
    Type: Grant
    Filed: January 18, 2002
    Date of Patent: August 17, 2004
    Assignees: Merck & Co., Inc., Isis Pharmaceuticals, Inc.
    Inventors: Balkrishen Bhat, Neelima Bhat, Anne B. Eldrup, Thazha P. Prakash, Marija Prhavc, Quanlai Song, Phillip Dan Cook, Steven S. Carroll, Malcolm Maccoss, David B. Olsen
  • Publication number: 20040147022
    Abstract: Compositions comprising first and second oligomers are provided wherein at least a portion of the first oligomer is capable of hybridizing with at least a portion of the second oligomer, at least a portion of the first oligomer is complementary to and capable of hybridizing to a selected target nucleic acid, and at least one of the first or second oligomers includes a modified sugar and/or backbone modification. In some embodiments the modification is a 2′-OCH3 substituent group on a sugar moiety. Oligomer/protein compositions are also provided comprising an oligomer complementary to and capable of hybridizing to a selected target nucleic acid and at least one protein comprising at least a portion of an RNA-induced silencing complex (RISC), wherein at least one nucleotide of the oligomer has a modified sugar and/or backbone modification.
    Type: Application
    Filed: November 4, 2003
    Publication date: July 29, 2004
    Inventors: Brenda F. Baker, Anne B. Eldrup, Muthiah Manoharan, Balkrishen Bhat, Richard H. Griffey, Eric E. Swayze, Stanley T. Crooke
  • Publication number: 20040147023
    Abstract: Oligomer compositions comprising first and second oligomers are provided wherein at least a portion of the first oligomer is capable of hybridizing with at least a portion of the second oligomer, at least a portion of the first oligomer is complementary to and capble of hybridizing to a selected target nucleic acid, and at least one of the first or second oligomers includes at least one nucleotide comprising a chimeric organic composition. Oligomer/protein compositions are also provided comprising an oligomer complementary to and capable of hybridizing to a selected target nucleic acid and at least one protein comprising at least a portion of an RNA-induced silencing complex (RISC), wherein at least one nucleotide comprising a chimeric organic composition.
    Type: Application
    Filed: November 4, 2003
    Publication date: July 29, 2004
    Inventors: Brenda F. Baker, Anne B. Eldrup, Muthiah Manoharan, Balkrishen Bhat, Richard H. Griffey, Eric E. Swayze, Stanley T. Crooke
  • Publication number: 20040110717
    Abstract: The present invention provides nucleoside derivatives which are inhibitors of RNA-dependent RNA viral polymerase. These compounds are inhibitors of RNA-dependent RNA viral replication and are useful for the treatment of RNA-dependent RNA viral infection. They are particularly useful as inhibitors of hepatitis C virus (HCV) NS5B polymerase, as inhibitors of HCV replication, and/or for the treatment of hepatitis C infection. The invention also describes pharmaceutical compositions containing such nucleoside derivatives alone or in combination with other agents active against RNA-dependent RNA viral infection, in particular HCV infection. Also disclosed are methods of inhibiting RNA-dependent RNA polymerase, inhibiting RNA-dependent RNA viral replication, and/or treating RNA-dependent RNA viral infection with the nucleoside derivatives of the present invention.
    Type: Application
    Filed: January 16, 2004
    Publication date: June 10, 2004
    Inventors: Steven S. Carroll, Robert L. LaFemina, Dawn L. Hall, Amy L. Himmelberger, Lawrence C. Kuo, David B. Olsen, Carrie A. Rutkowski, Joanne E. Tomassini, Malcolm MacCoss, Haoyun An, Balkrishen Bhat, Neelima Bhat, Phillip Dan Cook, Anne B. Eldrup, Thazha P. Prakash, Marija Prhavc, Charles J. Guinosso
  • Publication number: 20040072788
    Abstract: The present invention provides nucleoside compounds and certain derivatives thereof which are inhibitors of RNA-dependent RNA viral polymerase. These compounds are inhibitors of RNA-dependent RNA viral replication and are useful for the treatment of RNA-dependent RNA viral infection. They are particularly useful as inhibitors of hepatitis C virus (HCV) NS5B polymerase, as inhibitors of HCV replication, and/or for the treatment of hepatitis C infection. The invention also describes pharmaceutical compositions containing such nucleoside compounds alone or in combination with other agents active against RNA-dependent RNA viral infection, in particular HCV infection. Also disclosed are methods of inhibiting RNA-dependent RNA polymerase, inhibiting RNA-dependent RNA viral replication, and/or treating RNA-dependent RNA viral infection with the nucleoside compounds of the present invention.
    Type: Application
    Filed: May 7, 2003
    Publication date: April 15, 2004
    Inventors: Balkrishen Bhat, Anne B. Eldrup, Thazha P. Prakash, Phillip Dan Cook, Robert L. LaFemina, Amy L. Simcoe, Carrie A. Rutkowski, Mario A. Valenciano
  • Publication number: 20040067901
    Abstract: The present invention provides nucleoside compounds and certain derivatives thereof which are inhibitors of RNA-dependent RNA viral polymerase. These compounds are inhibitors of RNA-dependent RNA viral replication and are useful for the treatment of RNA-dependent RNA viral infection. They are particularly useful as inhibitors of hepatitis C virus (HCV) NS5B polymerase, as inhibitors of HCV replication, and/or for the treatment of hepatitis C infection. The invention also describes pharmaceutical compositions containing such nucleoside compounds alone or in combination with other agents active against RNA-dependent RNA viral infection, in particular HCV infection. Also disclosed are methods of inhibiting RNA-dependent RNA polymerase, inhibiting RNA-dependent RNA viral replication, and/or treating RNA-dependent RNA viral infection with the nucleoside compounds of the present invention.
    Type: Application
    Filed: October 17, 2003
    Publication date: April 8, 2004
    Inventors: Balkrishen Bhat, Neelima Bhat, Anne B. Eldrup, Thazha P. Prakash, Marija Prhavc, Quanlai Song, Phillip Dan Cook, Steven S. Carroll, Malcolm Maccoss, David B. Olsen
  • Publication number: 20040014108
    Abstract: Disclosed are oligonucleotide that include one or more modified nucleoside units. The oligonucleotides are particularly useful as antisense agents, ribozymes, aptamer, siRNA agents, probes and primers or, when hybridized to an RNA, as a substrate for RNA cleaving enzymes including RNase H and dsRNase.
    Type: Application
    Filed: May 23, 2003
    Publication date: January 22, 2004
    Inventors: Anne B. Eldrup, Phillip Dan Cook, B. Lynne Parshall