Patents by Inventor Annelise Barron
Annelise Barron 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).
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Publication number: 20250189485Abstract: Provided herein is an electrophoresis separation medium comprising: (a) a non-crosslinked or sparsely cross-linked polymer or copolymer; (b) one or more denaturant compounds, in an amount sufficient to inhibit re-naturation of single stranded polynucleotides; (c) an aqueous solvent; (d) optionally, a wall-coating material suited to inhibition of electroosmotic flow; and (e) optionally, an organic water miscible solvent such as DMSO or acetonitrile, wherein the electrophoresis separation medium exhibits functional stability for at least seven days at 23° C. Also provided herein are sieving compositions, including polymer-based sieving compositions, for molecular sieving as well as related kits, devices and methods of use. Such compositions can be useful for separation of biomolecules such as nucleic acids, proteins, glycoproteins and glycans.Type: ApplicationFiled: October 22, 2024Publication date: June 12, 2025Applicants: LIFE TECHNOLOGIES CORPORATION, INTEGENX INC.Inventors: Jen-Kuei LIU, Bharti SOLANKI, Hans Michael WENZ, Frank MERCER, Cevat AKIN, Achim E. KARGER, Annelise BARRON, Scott MACK
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Publication number: 20250121121Abstract: A method is provided for treating a surface of a biomedical device. The method comprises depositing a polyanionic microgel onto the surface of the biomedical device, and loading the deposited polyanionic gel with a peptoid.Type: ApplicationFiled: June 27, 2022Publication date: April 17, 2025Inventors: Wenhan ZHAO, Annelise BARRON, Matthew LIBERA
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Patent number: 12153014Abstract: Provided herein is an electrophoresis separation medium comprising: (a) a non-crosslinked or sparsely cross-linked polymer or copolymer; (b) one or more denaturant compounds, in an amount sufficient to inhibit re-naturation of single stranded polynucleotides; (c) an aqueous solvent; (d) optionally, a wall-coating material suited to inhibition of electroosmotic flow; and (e) optionally, an organic water miscible solvent such as DMSO or acetonitrile, wherein the electrophoresis separation medium exhibits functional stability for at least seven days at 23° C. Also provided herein are sieving compositions, including polymer-based sieving compositions, for molecular sieving as well as related kits, devices and methods of use. Such compositions can be useful for separation of biomolecules such as nucleic acids, proteins, glycoproteins and glycans.Type: GrantFiled: February 10, 2023Date of Patent: November 26, 2024Assignees: Integenx, Inc., Life Technologies CorporationInventors: Jen-Kuei Liu, Bharti Solanki, Hans Michael Wenz, Frank Mercer, Cevat Akin, Achim Karger, Annelise Barron, Scott Mack
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Publication number: 20230314369Abstract: Provided herein is an electrophoresis separation medium comprising: (a) a non-crosslinked or sparsely cross-linked polymer or copolymer; (b) one or more denaturant compounds, in an amount sufficient to inhibit re-naturation of single stranded polynucleotides; (c) an aqueous solvent; (d) optionally, a wall-coating material suited to inhibition of electroosmotic flow; and (e) optionally, an organic water miscible solvent such as DMSO or acetonitrile, wherein the electrophoresis separation medium exhibits functional stability for at least seven days at 23° C. Also provided herein are sieving compositions, including polymer-based sieving compositions, for molecular sieving as well as related kits, devices and methods of use. Such compositions can be useful for separation of biomolecules such as nucleic acids, proteins, glycoproteins and glycans.Type: ApplicationFiled: February 10, 2023Publication date: October 5, 2023Inventors: Jen-Kuei LIU, Bharti SOLANKI, Hans Michael WENZ, Frank MERCER, Cevat AKIN, Achim KARGER, Annelise BARRON, Scott MACK
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Patent number: 11619608Abstract: Provided herein is an electrophoresis separation medium comprising: (a) a non-crosslinked or sparsely cross-linked polymer or copolymer; (b) one or more denaturant compounds, in an amount sufficient to inhibit re-naturation of single stranded polynucleotides; (c) an aqueous solvent; (d) optionally, a wall-coating material suited to inhibition of electroosmotic flow; and (e) optionally, an organic water miscible solvent such as DMSO or acetonitrile, wherein the electrophoresis separation medium exhibits functional stability for at least seven days at 23° C. Also provided herein are sieving compositions, including polymer-based sieving compositions, for molecular sieving as well as related kits, devices and methods of use. Such compositions can be useful for separation of biomolecules such as nucleic acids, proteins, glycoproteins and glycans.Type: GrantFiled: May 22, 2018Date of Patent: April 4, 2023Inventors: Jen-Kuei Liu, Bharti Solanki, Hans Michael Wenz, Frank Mercer, Cevat Akin, Achim Karger, Annelise Barron, Scott Mack
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Patent number: 10736915Abstract: Non-natural oligomers have recently shown promise as functional analogues of lung surfactant proteins B and C (SP-B and SP-C), two helical and amphiphilic proteins that are critical for normal respiration. The generation of non-natural mimics of SP-B and SP-C has previously been restricted to step-by-step, sequence-specific synthesis, which results in discrete oligomers that are intended to manifest specific structural attributes. Presented herein an alternative approach to SP-B mimicry that is based on sequence-random copolymers containing cationic and lipophilic subunits. These materials, members of the nylon-3 family, are prepared by ring-opening polymerization of ?-lactams. The best of the nylon-3 polymers display promising in vitro surfactant activities in a mixed lipid film. Pulsating bubble surfactometry data indicate that films containing the most surface-active polymers attain adsorptive and dynamic-cycling properties that surpass those of discrete peptides intended to mimic SP-B.Type: GrantFiled: February 5, 2018Date of Patent: August 11, 2020Assignees: WISCONSIN ALUMNI RESEARCH FOUNDATION, NORTHWESTERN UNIVERSITYInventors: Samuel H. Gellman, Shannon S. Stahl, Brendan P. Mowery, Annelise Barron, Michelle Dohm
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Publication number: 20200141901Abstract: Provided herein is an electrophoresis separation medium comprising: (a) a non-crosslinked or sparsely cross-linked polymer or copolymer; (b) one or more denaturant compounds, in an amount sufficient to inhibit re-naturation of single stranded polynucleotides; (c) an aqueous solvent; (d) optionally, a wall-coating material suited to inhibition of electroosmotic flow; and (e) optionally, an organic water miscible solvent such as DMSO or acetonitrile, wherein the electrophoresis separation medium exhibits functional stability for at least seven days at 23° C. Also provided herein are sieving compositions, including polymer-based sieving compositions, for molecular sieving as well as related kits, devices and methods of use. Such compositions can be useful for separation of biomolecules such as nucleic acids, proteins, glycoproteins and glycans.Type: ApplicationFiled: May 22, 2018Publication date: May 7, 2020Inventors: Jen-Kuei LIU, Bharti SOLANKI, Hans Michael WENZ, Frank MERCER, Cevat AKIN, Achim KARGER, Annelise BARRON, Scott MACK
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Publication number: 20180153928Abstract: Non-natural oligomers have recently shown promise as functional analogues of lung surfactant proteins B and C (SP-B and SP-C), two helical and amphiphilic proteins that are critical for normal respiration. The generation of non-natural mimics of SP-B and SP-C has previously been restricted to step-by-step, sequence-specific synthesis, which results in discrete oligomers that are intended to manifest specific structural attributes. Presented herein an alternative approach to SP-B mimicry that is based on sequence-random copolymers containing cationic and lipophilic subunits. These materials, members of the nylon-3 family, are prepared by ring-opening polymerization of ?-lactams. The best of the nylon-3 polymers display promising in vitro surfactant activities in a mixed lipid film. Pulsating bubble surfactometry data indicate that films containing the most surface-active polymers attain adsorptive and dynamic-cycling properties that surpass those of discrete peptides intended to mimic SP-B.Type: ApplicationFiled: February 5, 2018Publication date: June 7, 2018Applicants: WISCONSIN ALUMNI RESEARCH FOUNDATION, NORTHWESTERN UNIVERSITYInventors: Samuel H. Gellman, Shannon S. Stahl, Brendan P. Mowery, Annelise Barron, Michelle Dohm
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Patent number: 9925213Abstract: Non-natural oligomers have recently shown promise as functional analogs of lung surfactant proteins B and C (SP-B and SP-C), two helical and amphiphilic proteins that are critical for normal respiration. The generation of non-natural mimics of SP-B and SP-C has previously been restricted to step-by-step, sequence-specific synthesis, which results in discrete oligomers that are intended to manifest specific structural attributes. Presented herein an alternative approach to SP-B mimicry that is based on sequence-random copolymers containing cationic and lipophilic subunits. These materials, members of the nylon-3 family, are prepared by ring-opening polymerization of ?-lactams. The best of the nylon-3 polymers display promising in vitro surfactant activities in a mixed lipid film. Pulsating bubble surfactometry data indicate that films containing the most surface-active polymers attain adsorptive and dynamic-cycling properties that surpass those of discrete peptides intended to mimic SP-B.Type: GrantFiled: May 1, 2015Date of Patent: March 27, 2018Assignees: WISCONSIN ALUMNI RESEARCH FOUNDATION, NORTHWESTERN UNIVERSITYInventors: Samuel H. Gellman, Shannon S. Stahl, Brendan P. Mowery, Annelise Barron, Michelle Dohm
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Publication number: 20150231171Abstract: Non-natural oligomers have recently shown promise as functional analogues of lung surfactant proteins B and C (SP-B and SP-C), two helical and amphiphilic proteins that are critical for normal respiration. The generation of non-natural mimics of SP-B and SP-C has previously been restricted to step-by-step, sequence-specific synthesis, which results in discrete oligomers that are intended to manifest specific structural attributes. Presented herein an alternative approach to SP-B mimicry that is based on sequence-random copolymers containing cationic and lipophilic subunits. These materials, members of the nylon-3 family, are prepared by ring-opening polymerization of ?-lactams. The best of the nylon-3 polymers display promising in vitro surfactant activities in a mixed lipid film. Pulsating bubble surfactometry data indicate that films containing the most surface-active polymers attain adsorptive and dynamic-cycling properties that surpass those of discrete peptides intended to mimic SP-B.Type: ApplicationFiled: May 1, 2015Publication date: August 20, 2015Applicant: WISCONSIN ALUMNI RESEARCH FOUNDATIONInventors: Samuel H. Gellman, Shannon S. Stahl, Brendan P. Mowery, Annelise Barron, Michelle Dohm
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Patent number: 9044392Abstract: Non-natural oligomers have recently shown promise as functional analogues of lung surfactant proteins Band C (SP-B and SP-C), two helical and amphiphilic proteins that are clitical for normal respiration. The generation of non-natural mimics of SP-B and SP-C has previously been restlicted to step-by-step, sequence-specific synthesis, which results in discrete oligomers that are intended to manifest specific structural attributes. Presented herein an alternative approach to SP-R mimicry that is based on sequence-random copolymers containing cationic and lipophilic subunits. These materials, members of the nylon-3 family, arc prepared by ling-opening polymelization of 13-lactams. The best of the nylon-3 polymers display promising in vitro surfactant activities in a mixed lipid film. Pulsating bubble surfactometry data indicate that films containing the most surface-active polymers attain adsorptive and dynamic-cycling properties that surpass those of discrete peptides intended to mimic SP-B.Type: GrantFiled: March 17, 2011Date of Patent: June 2, 2015Assignees: Wisconsin Alumni Research Foundation, Northwestern UniversityInventors: Samuel H. Gellman, Shannon S. Stahl, Brendan P. Mowery, Annelise Barron, Michelle Dohm
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Publication number: 20130004453Abstract: Non-natural oligomers have recently shown promise as functional analogues of lung surfactant proteins Band C (SP-B and SP-C), two helical and amphiphilic proteins that are clitical for normal respiration. The generation of non-natural mimics of SP-B and SP-C has previously been restlicted to step-by-step, sequence-specific synthesis, which results in discrete oligomers that are intended to manifest specific structural attributes. Presented herein an alternative approach to SP-R mimicry that is based on sequence-random copolymers containing cationic and lipophilic subunits. These materials, members of the nylon-3 family, arc prepared by ling-opening polymelization of 13-lactams. The best of the nylon-3 polymers display promising in vitro surfactant activities in a mixed lipid film. Pulsating bubble surfactometry data indicate that films containing the most surface-active polymers attain adsorptive and dynamic-cycling properties that surpass those of discrete peptides intended to mimic SP-B.Type: ApplicationFiled: March 17, 2011Publication date: January 3, 2013Inventors: Samuel H. Gellman, Shannon S. Stahl, Brendan P. Mowery, Annelise Barron, Michelle Dohm
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Patent number: 7618937Abstract: Peptidomimetic polymers comprising one or more DOPA moieties and related coatings and composites.Type: GrantFiled: November 16, 2005Date of Patent: November 17, 2009Assignee: Northwestern UniversityInventors: Phillip B. Messersmith, Annelise Barron, Andrea Statz, Robert Meagher
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Patent number: 7531073Abstract: The present invention is generally directed to novel polymeric materials for use in the electrophoretic separation of nucleic acids. In particular, the novel polymer materials are sparsely crosslinked nanogels, dissolved in an aqueous buffer to form solutions with moderate to high viscosity. The present invention further provides methods for generating such novel polymers, and related methods of their use.Type: GrantFiled: June 11, 2008Date of Patent: May 12, 2009Assignee: Northwestern UniversityInventors: Annelise Barron, Erin Doherty
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Publication number: 20090011420Abstract: The present invention is generally directed to novel polymeric materials for use in the electrophoretic separation of nucleic acids. In particular, the novel polymer materials are sparsely crosslinked nanogels, dissolved in an aqueous buffer to form solutions with moderate to high viscosity. The present invention further provides methods for generating such novel polymers, and related methods of their use.Type: ApplicationFiled: June 11, 2008Publication date: January 8, 2009Applicant: Northwestern UniversityInventors: Annelise Barron, Erin Doherty
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Patent number: 7399396Abstract: The present invention is generally directed to novel polymeric mateirals for use in the electrophoretic separation of nucleic acids. In particular, the novel polymer materials are sparsely crosslinked nanogels, dissolved in an aqueous buffer to form solutions with moderate to high viscosity. The present invention further provides methods for generating such novel polymers, and related methods of their use.Type: GrantFiled: January 18, 2005Date of Patent: July 15, 2008Assignee: Northwestern UniversityInventors: Annelise Barron, Erin Doherty
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Publication number: 20070265395Abstract: Linear acrylamide copolymer compounds which can comprise monomeric components comprising at least one N-substituted moiety capable of physical cross-linking, and related compositions and methods of use.Type: ApplicationFiled: May 14, 2007Publication date: November 15, 2007Inventors: Thomas Chiesl, Annelise Barron
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Publication number: 20070108055Abstract: Matrix polymers and dynamic coating polymers, compositions thereof and related methods, systems and apparatus for microchannel separation.Type: ApplicationFiled: November 1, 2006Publication date: May 17, 2007Inventors: Annelise Barron, Cheuk Kan, Christopher Fredlake
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Publication number: 20060241281Abstract: Peptidomimetic polymers comprising one or more DOPA moieties and related coatings and composites.Type: ApplicationFiled: November 16, 2005Publication date: October 26, 2006Inventors: Phillip Messersmith, Annelise Barron, Andrea Statz, Robert Meagher
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Publication number: 20060177840Abstract: Recently two techniques using free solution electrophoresis to separate charged-uncharged polymer conjugates have proven successful: End Labeled Free Solution Electrophoresis (ELFSE) for DNA sequencing, and Free Solution Conjugate Electrophoresis (FSCE) for molar mass profiling of uncharged polymers. Previous attempts have been made to analyze experimental data generated by these new techniques for the electrophoresis of molecules with varying charge distributions. However, the importance of the ends of the polymers in determining the polymer's overall mobility was neglected in previous work. Through a careful investigation and a reanalysis of the experimental data, it is determined here that this “end effect” critically impacts the behavior of polymers and charged-uncharged polymer conjugates during electrophoresis.Type: ApplicationFiled: October 4, 2005Publication date: August 10, 2006Inventors: Gary Slater, Laurette McCormick, Annelise Barron, Robert Meagher