Patents by Inventor Matthew G. Stanton

Matthew G. Stanton 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).

  • Publication number: 20190330639
    Abstract: The present invention relates to compounds, compositions, and methods for the study, diagnosis, and treatment of traits, diseases and conditions that respond to the modulation of CTNNB1 gene expression and/or activity, and/or modulate a beta-catenin gene expression pathway. Specifically, the invention relates to double-stranded nucleic acid molecules including small nucleic acid molecules, such as short interfering nucleic acid (siNA), short interfering RNA (siRNA), double-stranded RNA (dsRNA), micro-RNA (miRNA), and short hairpin RNA (shRNA) molecules that are capable of mediating or that mediate RNA interference (RNAi) against CTNNB1 gene expression.
    Type: Application
    Filed: February 8, 2019
    Publication date: October 31, 2019
    Inventors: Duncan Brown, James J. Cunningham, Marian Gindy, Victoria Pickering, Matthew G. Stanton, Steven M. Stirdivant, Walter R. Strapps
  • Patent number: 10337014
    Abstract: The instant invention provides for novel cationic lipids that can be used in combination with other lipid components such as cholesterol and PEG-lipids to form lipid nanoparticles with oligonucleotides. It is an object of the instant invention to provide a cationic lipid scaffold that demonstrates enhanced efficacy along with lower liver toxicity as a result of lower lipid levels in the liver. The present invention employs low molecular weight cationic lipids comprising at least one short lipid chain to enhance the efficiency and tolerability of in vivo delivery of siRNA.
    Type: Grant
    Filed: September 15, 2017
    Date of Patent: July 2, 2019
    Assignee: Sirna Therapeutics, Inc.
    Inventors: Matthew G. Stanton, Gregory L. Beutner
  • Patent number: 10307378
    Abstract: The instant invention provides for novel cationic lipids of Formula A that can be used in combination with other lipid components such as cholesterol and PEG-lipids to form lipid nanoparticles with oligonucleotides. It is an object of the instant invention to provide a cationic lipid scaffold that demonstrates enhanced efficacy along with lower liver toxicity as a result of lower lipid levels in the liver. The present invention employs low molecular weight cationic lipids with one short lipid chain coupled with inclusion of hydrolysable functionality in the lipid chains to enhance the efficiency and tolerability of in vivo delivery of siRNA.
    Type: Grant
    Filed: November 30, 2017
    Date of Patent: June 4, 2019
    Assignee: SIRNA THERAPEUTICS, INC.
    Inventors: Steven L. Colletti, Matthew G. Stanton
  • Patent number: 10246714
    Abstract: The present invention relates to compounds, compositions, and methods for the study, diagnosis, and treatment of traits, diseases and conditions that respond to the modulation of CTNNB1 gene expression and/or activity, and/or modulate a beta-catenin gene expression pathway. Specifically, the invention relates to double-stranded nucleic acid molecules including small nucleic acid molecules, such as short interfering nucleic acid (siNA), short interfering RNA (siRNA), double-stranded RNA (dsRNA), micro-RNA (miRNA), and short hairpin RNA (shRNA) molecules that are capable of mediating or that mediate RNA interference (RNAi) against CTNNB1 gene expression.
    Type: Grant
    Filed: August 8, 2017
    Date of Patent: April 2, 2019
    Assignee: Sirna Therapeutics, Inc.
    Inventors: Duncan Brown, James J. Cunningham, Marian Gindy, Victoria Pickering, Matthew G. Stanton, Steven M. Stirdivant, Walter R. Strapps
  • Patent number: 10239957
    Abstract: Disclosed herein is a peptide containing conjugate comprising (P)c-(L)d-(G)e, wherein P is a peptide and each occurance of P is independently selected from Table 2; L is an optional linker and each occurance of L, if present, is independently selected from Table 3; G is a targeting ligand and each occurance of G is independently selected from Table 4; d is 0, 1, 2, 3, 4, 5 or 6; and each of c and e is independently 1, 2, 3, 4, 5 or 6. The conjugate can be administered to a subject either alone or in combination with a composition comprising R-(L)a-(G)b, wherein R is an oligonucleotide as defined herein, to inhibit expression of a gene of the subject.
    Type: Grant
    Filed: November 3, 2014
    Date of Patent: March 26, 2019
    Assignee: Merck Sharp & Dohme Corp.
    Inventors: Steven L. Colletti, Thomas J. Tucker, David M. Tellers, Boyoung Kim, Rob Burke, Kathleen B. Calati, Matthew G. Stanton, Rubina G. Parmar, Jeffery G. Aaronson, Weimin Wang
  • Publication number: 20190015442
    Abstract: Disclosed herein is a method for inhibiting expression of a gene of a subject comprising administering (1) a composition comprising R-(L)a-(G)b; wherein R is an oligonucleotide selected from the group consisting of DNA, RNA, siRNA, and microRNA; L is a linker and each occurance of L is independently selected from Table 3; G is a targeting ligand and each occurance of G is independently selected from Table 4; each of a and b is independently 0, 1, 2, 3 or 4; and (2) a composition comprising (P)c-(L)d-(G)e; wherein P is a peptide and each occurance of P is independently selected from Table 2; L is a linker and each occurance of L is independently selected from Table 3; G is a targeting ligand and each occurance of G is independently selected from Table 4; d is 0, 1, 2, 3, 4, 5 or 6; and each of c and e is independently 1, 2, 3, 4, 5 or 6. Compositions in (1) and (2) can be co-administered or sequentially administered.
    Type: Application
    Filed: May 8, 2018
    Publication date: January 17, 2019
    Applicant: Merck Sharp & Dohme Corp.
    Inventors: Steven L. Colletti, Thomas J. Tucker, David M. Tellers, Boyoung Kim, Rob Burke, Kathleen B. Calati, Matthew G. Stanton, Rubina G. Parmar, Jeffrey G. Aaronson, Weimin Wang
  • Publication number: 20180362977
    Abstract: The present invention relates to compounds, compositions, and methods for the study, diagnosis, and treatment of traits, diseases and conditions that respond to the modulation of gene expression and/or activity, and/or modulate a gene expression pathway. Specifically, the invention relates to double-stranded nucleic acid molecules including small nucleic acid molecules, such as short interfering nucleic acid (siNA) molecules that are capable of mediating or that mediate RNA interference (RNAi) against target gene expression.
    Type: Application
    Filed: April 6, 2018
    Publication date: December 20, 2018
    Inventors: Mark Cancilla, James John Cunningham, William Michael Flanagan, Henry J. Haringsma, Denise M. Kenski, Matthew G. Stanton, Steven M. Stirdivant, Aarron T. Willingham
  • Publication number: 20180265869
    Abstract: The present invention relates to RNAi molecules, and compositions thereof, comprising a 2? internucleoside linkage connecting the nucleotide at position 1 and the nucleotide at position 2 at the 5? end of the antisense strand. Specifically, the invention relates to single- and double-stranded short interfering nucleic acid (siNA) molecules that are capable of mediating RNA interference comprising 5? modified nucleotides that comprise, among other potential modifications, a 2? internucleoside linkage. The invention further relates to 5? modified nucleotides used as reagents to generate the RNAi molecules of the invention and methods of using the disclosed RNAi molecules.
    Type: Application
    Filed: January 5, 2018
    Publication date: September 20, 2018
    Inventors: Wonsuk Chang, Erin N. Guidry, Matthew G. Stanton, Daniel Zewge
  • Publication number: 20180208545
    Abstract: The instant invention provides for novel cationic lipids that can be used in combination with other lipid components such as cholesterol and PEG-lipids to form lipid nanoparticles with oligonucleotides. It is an object of the instant invention to provide a cationic lipid scaffold that demonstrates enhanced efficacy along with lower liver toxicity as a result of lower lipid levels in the liver. The present invention employs low molecular weight cationic lipids comprising at least one short lipid chain to enhance the efficiency and tolerability of in vivo delivery of siRNA.
    Type: Application
    Filed: March 20, 2018
    Publication date: July 26, 2018
    Applicant: SIRNA THERAPEUTICS, INC.
    Inventors: Steven L. COLLETTI, Matthew G. STANTON
  • Publication number: 20180193279
    Abstract: The instant invention provides for novel cationic lipids of Formula A that can be used in combination with other lipid components such as cholesterol and PEG-lipids to form lipid nanoparticles with oligonucleotides. It is an object of the instant invention to provide a cationic lipid scaffold that demonstrates enhances efficacy along with lower liver toxicity as a result of lower lipid levels in the liver. The present invention employs low molecular weight cationic lipids with one short lipid chain coupled with inclusion of hydrolysable functionality in the lipid chains to enhance the efficiency and tolerability of in vivo delivery of siRNA.
    Type: Application
    Filed: November 30, 2017
    Publication date: July 12, 2018
    Applicant: SIRNA THERAPEUTICS, INC.
    Inventors: Steven L. COLLETTI, Matthew G. STANTON
  • Patent number: 10010562
    Abstract: Disclosed herein is a method for inhibiting expression of a gene of a subject comprising administering (1) a composition comprising R-(L)a-(G)b; wherein R is an oligonucleotide selected from the group consisting of DNA, RNA, siRNA, and microRNA; L is a linker and each occurrence of L is independently selected from Table 3; G is a targeting ligand and each occurrence of G is independently selected from Table 4; each of a and b is independently 0, 1, 2, 3 or 4; and (2) a composition comprising (P)c-(L)d-(G)e; wherein P is a peptide and each occurrence of P is independently selected from Table 2; L is a linker and each occurrence of L is independently selected from Table 3; G is a targeting ligand and each occurrence of G is independently selected from Table 4; d is 0, 1, 2, 3, 4, 5 or 6; and each of c and e is independently 1, 2, 3, 4, 5 or 6. Compositions in (1) and (2) can be co-administered or sequentially administered.
    Type: Grant
    Filed: November 3, 2014
    Date of Patent: July 3, 2018
    Assignee: Merck Sharp & Dohme Corp.
    Inventors: Steven L. Colletti, Thomas J. Tucker, David M. Tellers, Boyoung Kim, Rob Burke, Kathleen B. Calati, Matthew G. Stanton, Rubina G. Parmar, Jeffrey G. Aaronson, Weimin Wang
  • Patent number: 9981907
    Abstract: The instant invention provides for novel cationic lipids that can be used in combination with other lipid components such as cholesterol and PEG-lipids to form lipid nanoparticles with oligonucleotides. It is an object of the instant invention to provide a cationic lipid scaffold that demonstrates enhanced efficacy along with lower liver toxicity as a result of lower lipid levels in the liver. The present invention employs low molecular weight cationic lipids comprising at least one short lipid chain to enhance the efficiency and tolerability of in vivo delivery of siRNA.
    Type: Grant
    Filed: September 30, 2016
    Date of Patent: May 29, 2018
    Assignee: SIRNA THERAPEUTICS, INC.
    Inventors: Steven L. Colletti, Matthew G. Stanton
  • Patent number: 9970005
    Abstract: The present invention relates to compounds, compositions, and methods for the study, diagnosis, and treatment of traits, diseases and conditions that respond to the modulation of gene expression and/or activity, and/or modulate a gene expression pathway. Specifically, the invention relates to double-stranded nucleic acid molecules including small nucleic acid molecules, such as short interfering nucleic acid (siNA) molecules that are capable of mediating or that mediate RNA interference (RNAi) against target gene expression.
    Type: Grant
    Filed: December 30, 2015
    Date of Patent: May 15, 2018
    Assignee: SIRNA THERAPEUTICS, INC.
    Inventors: Mark Cancilla, James John Cunningham, William Michael Flanagan, Henry J. Haringsma, Denise M. Kenski, Matthew G. Stanton, Steven M. Stirdivant, Aarron T. Willingham
  • Patent number: 9896688
    Abstract: The present invention relates to RNAi molecules, and compositions thereof, comprising a 2? internucleoside linkage connecting the nucleotide at position 1 and the nucleotide at position 2 at the 5? end of the antisense strand. Specifically, the invention relates to single- and double-stranded short interfering nucleic acid (siNA) molecules that are capable of mediating RNA interference comprising 5? modified nucleotides that comprise, among other potential modifications, a 2? internucleoside linkage. The invention further relates to 5? modified nucleotides used as reagents to generate the RNAi molecules of the invention and methods of using the disclosed RNAi molecules.
    Type: Grant
    Filed: February 20, 2014
    Date of Patent: February 20, 2018
    Assignee: SIRNA THERAPEUTICS, INC.
    Inventors: Wonsuk Chang, Erin N. Guidry, Matthew G. Stanton, Daniel Zewge
  • Publication number: 20180037893
    Abstract: The instant invention provides for novel cationic lipids that can be used in combination with other lipid components such as cholesterol and PEG-lipids to form lipid nanoparticles with oligonucleotides. It is an object of the instant invention to provide a cationic lipid scaffold that demonstrates enhanced efficacy along with lower liver toxicity as a result of lower lipid levels in the liver. The present invention employs low molecular weight cationic lipids comprising at least one short lipid chain to enhance the efficiency and tolerability of in vivo delivery of siRNA.
    Type: Application
    Filed: September 15, 2017
    Publication date: February 8, 2018
    Applicant: SIRNA THERAPEUTICS, INC.
    Inventors: Matthew G. STANTON, Gregory L. BEUTNER
  • Publication number: 20180030454
    Abstract: The present invention relates to compounds, compositions, and methods for the study, diagnosis, and treatment of traits, diseases and conditions that respond to the modulation of CTNNB1 gene expression and/or or activity, and/or modulate a beta-catenin gene expression pathway. Specifically, the invention relates to double-stranded nucleic acid molecules including small nucleic acid molecules, such as short interfering nucleic acid (siNA), short interfering RNA (siRNA), double-stranded RNA (dsRNA), micro-RNA (miRNA), and short hairpin RNA (shRNA) molecules that are capable of mediating or that mediate RNA interference (RNAi) against CTNNB1 gene expression.
    Type: Application
    Filed: August 8, 2017
    Publication date: February 1, 2018
    Inventors: Duncan Brown, James J. Cunningham, Marian Gindy, Victoria Pickering, Matthew G. Stanton, Steven M. Stirdivant, Walter R. Strapps
  • Patent number: 9861589
    Abstract: The instant invention provides for novel cationic lipids of Formula A that can be used in combination with other lipid components such as cholesterol and PEG-lipids to form lipid nanoparticles with oligonucleotides. It is an object of the instant invention to provide a cationic lipid scaffold that demonstrates enhanced efficacy along with lower liver toxicity as a result of lower lipid levels in the liver. The present invention employs low molecular weight cationic lipids with one short lipid chain coupled with inclusion of hydrolysable functionality in the lipid chains to enhance the efficiency and tolerability of in vivo delivery of siRNA.
    Type: Grant
    Filed: June 30, 2016
    Date of Patent: January 9, 2018
    Assignee: SIRNA THERAPEUTICS, INC.
    Inventors: Steven L. Colletti, Matthew G. Stanton
  • Publication number: 20180000939
    Abstract: The instant invention provides for novel catiome lipids that can be used in combination with other lipid components such as cholesterol and PEG-lipids to form lipid nanoparticles with oligonucleotides. It is an object of the instant invention to provide a cationic lipid scaffold that demonstrates enhanced efficacy along with lower liver toxicity as a result of lower lipid levels in the liver. The present invention employs low molecular weight cationic lipids with one short lipid chain to enhance the efficiency and tolerability of in vivo delivery of siRNA.
    Type: Application
    Filed: May 10, 2017
    Publication date: January 4, 2018
    Applicant: SIRNA THERAPEUTICS, INC.
    Inventors: Matthew G. Stanton, Brian W. Budzik, Gregory L. Beutner, Hongbiao Liao
  • Patent number: 9850491
    Abstract: The present invention relates to compounds, compositions, and methods for the study, diagnosis, and treatment of traits, diseases and conditions that respond to the modulation of CTNNB1 gene expression and/or activity, and/or modulate a beta-catenin gene expression pathway. Specifically, the invention relates to double-stranded nucleic acid molecules including small nucleic acid molecules, such as short interfering nucleic acid (siNA), short interfering RNA (siRNA), double-stranded RNA (dsRNA), micro-RNA (miRNA), and short hairpin RNA (shRNA) molecules that are capable of mediating or that medium RNA interference (RNAi) against CTNNB1 gene expression.
    Type: Grant
    Filed: August 1, 2016
    Date of Patent: December 26, 2017
    Assignee: Sirna Therapeutics, Inc.
    Inventors: Duncan Brown, James J. Cunningham, Marian Gindy, Victoria Pickering, Matthew G. Stanton, Steven M. Stirdivant, Walter R. Strapps
  • Patent number: 9796977
    Abstract: The instant invention provides for novel cationic lipids that can be used in combination with other lipid components such as cholesterol and PEG-lipids to form lipid nanoparticles with oligonucleotides. It is an object of the instant invention to provide a cationic lipid scaffold that demonstrates enhanced efficacy along with lower liver toxicity as a result of lower lipid levels in the liver. The present invention employs low molecular weight cationic lipids comprising at least one short lipid chain to enhance the efficiency and tolerability of in vivo delivery of siRNA.
    Type: Grant
    Filed: May 22, 2015
    Date of Patent: October 24, 2017
    Assignee: SIRNA THERAPEUTICS, INC.
    Inventors: Matthew G. Stanton, Gregory L. Beutner