Patents by Inventor Cory Berkland

Cory Berkland 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: 20150359804
    Abstract: An extended-release drug delivery composition and method of administering the same is provided. The composition comprises microspheres loaded with a biologically-active agent and suspended in a soluble polymer capable of forming a film upon injection onto a biological surface.
    Type: Application
    Filed: June 12, 2015
    Publication date: December 17, 2015
    Inventors: Nathan Dormer, Cory Berkland
  • Patent number: 9139762
    Abstract: The invention is directed to long lasting crosslinked water-soluble swellable polymers, methods for making same, and their uses. More particularly, the invention relates to a composition comprising expandable polymeric particles having cationic sites as well as labile crosslinkers and stable crosslinkers, said particle mixed with a fluid. A particularly important use is as an injection fluid in petroleum production, where the expandable polymeric particles are injected into a target zones in the reservoirs and when the heat and/or a suitable pH in the reservoir cause degradation of the labile crosslinker and when the particle expands, the cationic sites in the polymer adsorb to negative sites of the rock in the formation, thus diverting water to lower permeability regions and improving oil recovery. However, many other uses are possible.
    Type: Grant
    Filed: February 18, 2014
    Date of Patent: September 22, 2015
    Assignees: ConocoPhillips Company, The University of Kansas
    Inventors: Ahmad Moradi-Araghi, James H. Hedges, David R. Zornes, Riley B. Needham, Huili Guan, Jenn-Tai Liang, Cory Berkland, James P. Johnson, Min Cheng, Faye Lynn Scully
  • Publication number: 20150216896
    Abstract: A polymer composition for sequestering lipid-bile acid micelles in the gastrointestinal (GI) tract is provided. The polymer composition comprises a copolymer of a pH-sensitive monomer and one or more of positively-charged monomers. The polymer composition is able to bind micelles under various physiological conditions in the GI tract and possesses the ability to flocculate the bound micelle upon exposure to a particular pH. The flocculation of the polymer:micelle complex prevents absorption of the micelle thereby causing the polymer:micelle complex to be eliminated with the fecal matter. Thus, the polymer composition described herein may be effective in reducing cholesterol, bile acid, and/or triglyceride levels and promote weight loss.
    Type: Application
    Filed: January 29, 2015
    Publication date: August 6, 2015
    Inventors: Cory Berkland, Jian Qian, Bradley Paul Sullivan
  • Publication number: 20150118178
    Abstract: Conjugates comprising a N-oxime bond are disclosed. In one embodiment, a suitable conjugate is represented by the following Formula (I): wherein R? is derived from a compound comprising at least one reactive amide group, R? is derived from a compound comprising at least one reactive aminooxy group, and X is H, CnH(n+2) or other atoms. Additional methods are also provided.
    Type: Application
    Filed: December 31, 2014
    Publication date: April 30, 2015
    Inventors: Cory Berkland, Joshua Sestak
  • Publication number: 20150080333
    Abstract: Hyaluronic acid particles and their use in biomedical applications are provided. In one embodiment, an HA particle comprising a plurality of free polymer chains extending from a surface of the particle such that the polymer chains are capable of association with polymers or with polymer chains on a surface of other particles is provided.
    Type: Application
    Filed: July 18, 2014
    Publication date: March 19, 2015
    Inventors: Cory Berkland, Amir Fakhari
  • Patent number: 8956604
    Abstract: Conjugates comprising a N-oxime bond are disclosed. In one embodiment, a suitable conjugate is represented by the following Formula (I): wherein R? is derived from a compound comprising at least one reactive amide group, R? is derived from a compound comprising at least one reactive aminooxy group, and X is H, CnH(n+2) or other atoms. Additional methods are also provided.
    Type: Grant
    Filed: December 21, 2012
    Date of Patent: February 17, 2015
    Assignee: The University of Kansas
    Inventors: Cory Berkland, Joshua Sestak
  • Publication number: 20140294980
    Abstract: Particles for delivery of active ingredients formed from an active ingredient and a hydrophobic matrix, as well as methods for making such particles.
    Type: Application
    Filed: June 12, 2014
    Publication date: October 2, 2014
    Inventors: Cory Berkland, Milind Singh
  • Publication number: 20140238702
    Abstract: The invention is directed to polymers that self-crosslink at acidic pH or can be crosslinked by phenolic agents in brine. Such polymers have lower viscosity and can be pumped deep into reservoirs, where they will cross link in situ, thus increasing their viscosity and/or form a gel and blocking thief zones. Methods of making and using such polymers are also provided.
    Type: Application
    Filed: February 6, 2014
    Publication date: August 28, 2014
    Applicants: University of Kansas, ConocoPhillips Comapny
    Inventors: Huili GUAN, Cory BERKLAND, Ahmad MORADI-ARAGHI, Jenn-Tai LIANG, Terry M. CHRISTIAN, Riley B. NEEDHAM, James H. Hedges, Min CHENG, Faye L. SCULLY
  • Publication number: 20140219997
    Abstract: A population of small reaggregated islets or clusters engineered from individual islet cells and having improved characteristics as compared to native isolated islets.
    Type: Application
    Filed: April 9, 2014
    Publication date: August 7, 2014
    Applicant: The University of Kansas
    Inventors: Cory Berkland, Lisa A. Stehno-Bittel, Teruna Siahaan, Karthik Ramachandran
  • Publication number: 20140209305
    Abstract: The disclosure is directed to polyelectrolyte complex nanoparticles that can be used to deliver agents deep into hydrocarbon reservoirs. Methods of making and using said polyelectrolyte complex nanoparticles are also provided.
    Type: Application
    Filed: October 23, 2013
    Publication date: July 31, 2014
    Applicants: University of Kansas, ConocoPhillips Company
    Inventors: Ying-Ying LIN, Cory BERKLAND, Jenn-Tai LIANG, Ahmad MORADI-ARAGHI, Terry M. CHRISTIAN, Riley B. NEEDHAM, James H. HEDGES, Min CHENG, Faye L. SCULLY, David R. ZORNES
  • Publication number: 20140202693
    Abstract: The instant application relates to nanogels or compositions that hold multivalent metal ions until some level of nanogel degradation has occurred, then slowly release the multivalent metal ions for gelation with carboxylate containing polymers. Compositions comprising such nanogels, together with polymers that can be crosslinked with multivalent metal ions, allow the deployment of such mixtures in various applications, and greatly increased gelation times.
    Type: Application
    Filed: December 30, 2013
    Publication date: July 24, 2014
    Applicants: The University of Kansas, CONOCOPHILLIPS COMPANY
    Inventors: Huili GUAN, Cory BERKLAND, Ahmad MORADI-ARAGHI, Jenn-Tai LIANG, Terry M. CHRISTIAN, Riley B. Needham, Min CHENG, Faye Lynn SCULLY, James H. HEDGES
  • Publication number: 20140200678
    Abstract: Methods can prepare tissue engineering scaffolds that include a plurality of biocompatible core/shell microspheres linked together to form a three-dimensional matrix. The matrix can include a plurality of pores for growing cells. The biocompatible microspheres can include first and second sets of microspheres. The first set of microspheres can have a first characteristic, and a first predetermined spatial distribution with respect to the three-dimensional matrix. The second set of microspheres can have a second characteristic that is different from the first characteristic, and a second predetermined spatial distribution that is different from the first predetermined spatial distribution with respect to the three-dimensional matrix.
    Type: Application
    Filed: March 10, 2014
    Publication date: July 17, 2014
    Applicant: THE UNIVERSITY OF KANSAS
    Inventors: Michael Detamore, Vineet Gupta, Neethu Mohan, Cory Berkland
  • Publication number: 20140196894
    Abstract: The invention is directed to stable crosslinked swellable fluorescently tagged polymeric microparticles, methods for making same, and their various uses. A particularly important use is as an injection fluid in petroleum production, where the expandable polymeric particles are injected into target zone and when the heat and/or suitable pH of the target zone cause degradation of the labile crosslinker and the microparticles expand. The swelled polymer diverts water to lower permeability regions and improves oil recovery. The tags allow monitoring of the presence and concentration of the tagged microparticles and ultimately allow evaluation of the performance of such treatments. Detection of polymeric microparticles in producing wells can be instructive for teaching about the character and extent of thief zones in the subsurface. Better knowledge of the reservoir flow will enable improved application of the gel treatments, improved oil recovery, and allow improved forecasting using simulation modeling.
    Type: Application
    Filed: October 22, 2013
    Publication date: July 17, 2014
    Applicants: University of Kansas, ConocoPhillips Company
    Inventors: Cory BERKLAND, Huili GUAN, Ahmad MORADI-ARAGHI, Jenn-Tai LIANG, Terry M. CHRISTIAN, Riley B. NEEDHAM, James H. HEDGES, Min CHENG, Faye L. SCULLY
  • Publication number: 20140162912
    Abstract: The invention is directed to long lasting crosslinked water-soluble swellable polymers, methods for making same, and their uses. More particularly, the invention relates to a composition comprising expandable polymeric particles having cationic sites as well as labile crosslinkers and stable crosslinkers, said particle mixed with a fluid. A particularly important use is as an injection fluid in petroleum production, where the expandable polymeric particles are injected into a target zones in the reservoirs and when the heat and/or a suitable pH in the reservoir cause degradation of the labile crosslinker and when the particle expands, the cationic sites in the polymer adsorb to negative sites of the rock in the formation, thus diverting water to lower permeability regions and improving oil recovery. However, many other uses are possible.
    Type: Application
    Filed: February 18, 2014
    Publication date: June 12, 2014
    Applicants: University of Kansas, ConocoPhillips Company
    Inventors: Ahmad MORADI-ARAGHI, James H. HEDGES, David R. ZORNES, Riley B. NEEDHAM, Huili GUAN, Jenn-Tai LIANG, Cory BERKLAND, James P. JOHNSON, Min CHENG, Faye Lynn SCULLY
  • Publication number: 20140144628
    Abstract: The invention is directed to stable and labile crosslinked water swellable polymeric microparticles that can be further gelled, methods for making same, and their various uses in the hygiene and medical arts, gel electrophoresis, packaging, agriculture, the cable industry, information technology, in the food industry, papermaking, use as flocculation aids, and the like. More particularly, the invention relates to a composition comprising expandable polymeric microparticles having labile crosslinkers and stable crosslinkers, said microparticle mixed with a fluid and an unreacted tertiary crosslinker comprising PEI or other polyamine based tertiary crosslinker that is capable of further crosslinking the microparticle on degradation of the labile crosslinker and swelling of the particle, so as to form a stable gel.
    Type: Application
    Filed: November 22, 2013
    Publication date: May 29, 2014
    Applicants: UNIVERSITY OF KANSAS, CONOCOPHILLIPS COMPANY
    Inventors: Ahmad MORADI-ARAGHI, Min CHENG, Riley B. NEEDHAM, James H. HEDGES, Ramesh S. SARATHI, Faye L. SCULLY, Terry M. CHRISTIAN, Huili GUAN, Cory BERKLAND, Jenn-Tai LIANG
  • Patent number: 8735154
    Abstract: A scaffold having islet cells or small islet cell clusters attached thereto in a multilayer, and a micro-mold having divots for culturing islets, wherein islet formation is influenced by the shape and dimensions of the divots are disclosed.
    Type: Grant
    Filed: April 6, 2010
    Date of Patent: May 27, 2014
    Assignee: The University of Kansas
    Inventors: Cory Berkland, Lisa A. Stehno-Bittel, Teruna Siahaan, Karthik Ramachandran
  • Publication number: 20140131043
    Abstract: The invention is directed to stable crosslinked water-soluble swellable polymers and methods for making same. More particularly, the invention relates to a composition comprising expandable polymeric particles having anionic sites and labile crosslinkers and stable crosslinkers, said particle mixed with a fluid and a cationic crosslinker that is capable of further crosslinking the particle on degradation of the labile crosslinker and exposure of the anionic sites so as to form a gel. A particularly important use is as an injection fluid in petroleum production, where the expandable polymeric particles are injected into target zone and when the heat and/or suitable pH of the target zone cause degradation of the labile crosslinker and the particle expands, the cationic crosslinker crosslinks the polymer to form a gel, thus diverting water to lower permeability regions and improving oil recovery.
    Type: Application
    Filed: January 17, 2014
    Publication date: May 15, 2014
    Applicants: University of Kansas, ConocoPhillips Company
    Inventors: Ahmad MORADI-ARAGHI, James H. HEDGES, David R. ZORNES, Riley B. NEEDHAM, Huili GUAN, Jenn-Tai LIANG, Cory BERKLAND, James P. JOHNSON, Min CHENG, Faye Lynn SCULLY
  • Patent number: 8691736
    Abstract: The invention is directed to long lasting crosslinked water-soluble swellable polymers, methods for making same, and their uses. More particularly, the invention relates to a composition comprising expandable polymeric particles having cationic sites as well as labile crosslinkers and stable crosslinkers, said particle mixed with a fluid. A particularly important use is as an injection fluid in petroleum production, where the expandable polymeric particles are injected into a target zones in the reservoirs and when the heat and/or a suitable pH in the reservoir cause degradation of the labile crosslinker and when the particle expands, the cationic sites in the polymer adsorb to negative sites of the rock in the formation, thus diverting water to lower permeability regions and improving oil recovery. However, many other uses are possible.
    Type: Grant
    Filed: June 14, 2010
    Date of Patent: April 8, 2014
    Assignees: ConocoPhillips Company, University of Kansas
    Inventors: Ahmad Moradi-Araghi, James H. Hedges, David R. Zornes, Riley B. Needham, Huili Guan, Jenn-Tai Liang, Cory Berkland, James P. Johnson, Min Cheng, Faye L. Scully
  • Patent number: 8669107
    Abstract: Methods can prepare tissue engineering scaffolds that include a plurality of biocompatible microspheres linked together to form a three-dimensional matrix. The matrix can include a plurality of pores for growing cells. The biocompatible microspheres can include first and second sets of microspheres. The first set of microspheres can have a first characteristic, and a first predetermined spatial distribution with respect to the three-dimensional matrix. The second set of microspheres can have a second characteristic that is different from the first characteristic, and a second predetermined spatial distribution that is different from the first predetermined spatial distribution with respect to the three-dimensional matrix.
    Type: Grant
    Filed: August 21, 2012
    Date of Patent: March 11, 2014
    Assignee: The University of Kansas
    Inventors: Michael Detamore, Milind Singh, Aaron M. Scurto, Cory Berkland
  • Patent number: 8669214
    Abstract: The invention is directed to stable crosslinked water-soluble swellable polymers and methods for making same. More particularly, the invention relates to a composition comprising expandable polymeric particles having anionic sites and labile crosslinkers and stable crosslinkers, said particle mixed with a fluid and a cationic crosslinker that is capable of further crosslinking the particle on degradation of the labile crosslinker and exposure of the anionic sites so as to form a gel. A particularly important use is as an injection fluid in petroleum production, where the expandable polymeric particles are injected into target zone and when the heat and/or suitable pH of the target zone cause degradation of the labile crosslinker and the particle expands, the cationic crosslinker crosslinks the polymer to form a gel, thus diverting water to lower permeability regions and improving oil recovery.
    Type: Grant
    Filed: June 9, 2010
    Date of Patent: March 11, 2014
    Assignees: ConocoPhillips Company, University of Kansas
    Inventors: Ahmad Moradi-Araghi, James H. Hedges, David R. Zornes, Riley B. Needham, Huili Guan, Jenn-Tai Liang, Cory Berkland, James P. Johnson, Min Cheng, Faye L. Scully