Patents by Inventor Brendan Patrick Purcell
Brendan Patrick Purcell 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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Patent number: 11913166Abstract: Engineered, reinforced leather materials (engineered leathers) including a composite of a fibrous matrix that has been tanned to allow crosslinking of the fibrous matrix to the collagen formed by cultured cells (e.g., fibroblasts). These engineered leathers may be referred to as fiber-reinforced biological tissue composites. Also described herein are methods of making such fiber-reinforced biological tissue composites.Type: GrantFiled: September 21, 2016Date of Patent: February 27, 2024Assignee: MODERN MEADOW, INC.Inventors: Brendan Patrick Purcell, Gabor Forgacs
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Patent number: 11542374Abstract: The invention is directed to a composite material comprising a biofabricated material and a secondary component. The secondary component may be a porous material, such as a sheet of paper, cellulose, or fabric that has been coated or otherwise contacted with the biofabricated material. The biofabricated material comprises a uniform network of crosslinked collagen fibrils and provides strength, elasticity and an aesthetic appearance to the composite material.Type: GrantFiled: February 15, 2017Date of Patent: January 3, 2023Assignee: MODERN MEADOW, INC.Inventors: Brendan Patrick Purcell, David Thomas Williamson, Suzanne Lee, Amy Congdon
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Patent number: 11530304Abstract: A biofabricated material comprising a network of crosslinked collagen fibrils produced from recombinant collagen that contains substantially no 3-hydroxyproline residues is disclosed. This material is composed of collagen which is also a major component of natural leather and is produced by a process of fibrillation of collagen molecules into fibrils, crosslinking the fibrils and lubricating the crosslinked fibrils. Unlike natural leathers, this biofabricated material exhibits non-anisotropic (not directionally dependent) physical properties, for example, a sheet of biofabricated material can have substantially the same elasticity or tensile strength when stretched or stressed in different directions. Unlike natural leather, it has a uniform texture that facilitates uniform uptake of dyes and coatings. Aesthetically, it produces a uniform and consistent grain for ease of manufacturability.Type: GrantFiled: February 15, 2017Date of Patent: December 20, 2022Assignee: MODERN MEADOW, INC.Inventors: Brendan Patrick Purcell, David Thomas Williamson, Lixin Dai, Darryl Miles Cassingham, Stephen M. Spinella, Katherine Amy Congdon
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Patent number: 11525042Abstract: The invention is directed to a composite material comprising a biofabricated material and a secondary component. The secondary component may be a porous material, such as a sheet of paper, cellulose, or fabric that has been coated or otherwise contacted with the biofabricated material. The biofabricated material comprises a uniform network of crosslinked collagen fibrilsand provides strength, elasticity and an aesthetic appearance to the composite material.Type: GrantFiled: February 15, 2017Date of Patent: December 13, 2022Assignee: MODERN MEADOW, INC.Inventors: Brendan Patrick Purcell, David Thomas Williamson, Suzanne Lee, Amy Congdon
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Patent number: 11286354Abstract: Described herein is a method for producing a biofabricated material from collagen or collagen-like proteins. The collagen or collagen-like proteins are isolated from animal sources or produced by recombinant DNA techniques or by chemical synthesis. The collagen or collagen-like proteins are fibrillated, crosslinked, dehydrated and lubricated thus forming the biofabricated material having a substantially uniform network of collagen fibrils.Type: GrantFiled: February 15, 2017Date of Patent: March 29, 2022Assignee: MODERN MEADOW, INC.Inventors: Brendan Patrick Purcell, David Thomas Williamson, Francoise Suzanne Marga, Susan J. Schofer, Darryl Miles Cassingham
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Patent number: 11214844Abstract: The invention herein provides biofabricated materials having zonal properties and methods of making biofabricated materials having zonal properties.Type: GrantFiled: November 13, 2018Date of Patent: January 4, 2022Assignee: Modern Meadow, Inc.Inventors: Brendan Patrick Purcell, Suzanne Lee, Lixin Dai, Katherine Amy Congdon, Stephen M. Spinella, Chi Man Ng
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Patent number: 11001679Abstract: A biofabricated material containing a network of crosslinked collagen fibrils is disclosed. This material is composed of collagen which is also a major component of natural leather and is produced by a process of fibrillation of collagen molecules into fibrils, crosslinking the fibrils and lubricating the crosslinked fibrils. Unlike natural leathers, this biofabricated material exhibits non-anisotropic (not directionally dependent) physical properties, for example, a sheet of biofabricated material can have substantially the same elasticity or tensile strength when stretched or stressed in different directions. Unlike natural leather, it has a uniform texture that facilitates uniform uptake of dyes and coatings. Aesthetically, it produces a uniform and consistent grain for ease of manufacturability. It can have substantially identical grain, texture and other aesthetic properties on both sides distinct from natural leather where the grain increases from one side (e.g.Type: GrantFiled: March 19, 2019Date of Patent: May 11, 2021Assignee: Modern Meadow, Inc.Inventors: Brendan Patrick Purcell, David Thomas Williamson, Lixin Dai, Darryl Miles Cassingham, Stephen M. Spinella
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Patent number: 10519285Abstract: The invention is directed to a method for producing a composite material comprising a biofabricated material and a secondary component. The secondary component may be a porous material, such as a sheet of paper, cellulose, or fabric that has been coated or otherwise contacted with the biofabricated material. The biofabricated material comprises a uniform network of crosslinked collagen fibrils and provides strength, elasticity and an aesthetic appearance to the composite material.Type: GrantFiled: February 15, 2017Date of Patent: December 31, 2019Assignee: Modern Meadow, Inc.Inventors: Brendan Patrick Purcell, David Thomas Williamson, Suzanne Lee, Amy Congdon
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Patent number: 10370504Abstract: Described herein is a method for producing a biofabricated material from collagen or collagen-like proteins which are recombinantly produced and which contain substantially no 3-hydroxyproline. The collagen or collagen-like proteins are isolated from animal sources, or produced by recombinant DNA techniques or by chemical synthesis. The collagen or collagen-like proteins are fibrillated, crosslinked, dehydrated and lubricated thus forming the biofabricated material having a substantially uniform network of collagen fibrils.Type: GrantFiled: February 15, 2017Date of Patent: August 6, 2019Assignee: MODERN MEADOW, INC.Inventors: Brendan Patrick Purcell, David Thomas Williamson, Francoise Suzanne Marga, Susan J. Schofer, Darryl Miles Cassingham, Stephen M. Spinella, Amy Congdon
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Patent number: 10370505Abstract: The invention is directed to a composite material comprising a biofabricated material and a secondary component. The secondary component may be a porous material, such as a sheet of paper, cellulose, or fabric that has been coated or otherwise contacted with the biofabricated material. The biofabricated material comprises a uniform network of crosslinked collagen fibrils and provides strength, elasticity and an aesthetic appearance to the composite material.Type: GrantFiled: February 15, 2017Date of Patent: August 6, 2019Assignee: MODERN MEADOW, INC.Inventors: Brendan Patrick Purcell, David Thomas Williamson, Suzanne Lee, Amy Congdon
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Patent number: 10301440Abstract: A biofabricated material containing a network of crosslinked collagen fibrils is disclosed. This material is composed of collagen which is also a major component of natural leather and is produced by a process of fibrillation of collagen molecules into fibrils, crosslinking the fibrils and lubricating the crosslinked fibrils. Unlike natural leathers, this biofabricated material exhibits non-anisotropic (not directionally dependent) physical properties, for example, a sheet of biofabricated material can have substantially the same elasticity or tensile strength when stretched or stressed in different directions. Unlike natural leather, it has a uniform texture that facilitates uniform uptake of dyes and coatings. Aesthetically, it produces a uniform and consistent grain for ease of manufacturability. It can have substantially identical grain, texture and other aesthetic properties on both sides distinct from natural leather where the grain increases from one side (e.g.Type: GrantFiled: February 15, 2017Date of Patent: May 28, 2019Assignee: MODERN MEADOW, INC.Inventors: Brendan Patrick Purcell, David Thomas Williamson, Lixin Dai, Darryl Miles Cassingham, Stephen M. Spinella
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Publication number: 20180311364Abstract: The invention concerns compositions comprising: (i) biocompatible hydrogel, comprising a plurality of cross-linkers connecting backbone components of the hydrogel; wherein the hydrogel is cross-linked utilizing a cross-linker comprising a peptide sequence that is capable of being degraded by a matrix metalloproteinase; said inhibitor being effective as a treatment of a condition related to the presence of the matrix metalloproteinase; wherein the hydrogel encapsulates and retains the inhibitor within the intact hydrogel through non-covalent interactions; wherein the hydrogel comprises one or more of hyaluronic acid, sulfated hyaluronic acid, sulfonated hyaluronic acid, dextran, dextran sulfate, sulfonated dextran, chondroitin sulfate, heparin and heparan sulfate; (ii) pentosan polysulfate (PPS) and (iii) optionally, a therapeutic agent comprising an inhibitor of matrix metalloproteinase.Type: ApplicationFiled: July 11, 2018Publication date: November 1, 2018Inventors: Brendan Patrick Purcell, Jason Alan Burdick
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Patent number: 10046053Abstract: The invention relates to compositions comprising (i) biocompatible hydrogel and (ii) one or more therapeutic agents contained within said hydrogel; wherein the hydrogel is cross-linked utilizing a cross-linker comprising a peptide sequence that is capable of being degraded by an enzyme; the therapeutic agent being effective as a treatment of a condition related to the presence of the enzyme.Type: GrantFiled: June 21, 2017Date of Patent: August 14, 2018Assignee: The Trustees of the University of PennsylvaniaInventors: Brendan Patrick Purcell, Jason Alan Burdick
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Patent number: 9919054Abstract: The invention relates to compositions comprising (i) biocompatible hydrogel and (ii) one or more therapeutic agents contained within said hydrogel; wherein the hydrogel is cross-linked utilizing a cross-linker comprising a peptide sequence that is capable of being degraded by an enzyme; the therapeutic agent being effective as a treatment of a condition related to the presence of the enzyme.Type: GrantFiled: May 22, 2017Date of Patent: March 20, 2018Assignee: The Trustees of the University of PennsylvaniaInventors: Jason Alan Burdick, Robert C. Gorman, Joseph H. Gorman, III, Brendan Patrick Purcell
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Publication number: 20180028672Abstract: The invention relates to compositions comprising (i) biocompatible hydrogel and (ii) one or more therapeutic agents contained within said hydrogel; wherein the hydrogel is cross-linked utilizing a cross-linker comprising a peptide sequence that is capable of being degraded by an enzyme; the therapeutic agent being effective as a treatment of a condition related to the presence of the enzyme.Type: ApplicationFiled: June 21, 2017Publication date: February 1, 2018Inventors: Brendan Patrick Purcell, Jason Alan Burdick
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Publication number: 20170258921Abstract: The invention relates to compositions comprising (i) biocompatible hydrogel and (ii) one or more therapeutic agents contained within said hydrogel; wherein the hydrogel is cross-linked utilizing a cross-linker comprising a peptide sequence that is capable of being degraded by an enzyme; the therapeutic agent being effective as a treatment of a condition related to the presence of the enzyme.Type: ApplicationFiled: May 22, 2017Publication date: September 14, 2017Inventors: Jason Alan Burdick, Robert C. Gorman, Joseph H. Gorman, III, Brendan Patrick Purcell
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Patent number: 9752122Abstract: Edible microcarriers, including microcarrier beads, microspheres and microsponges, appropriate for use in a bioreactor to culture cells that may be used to form a comestible engineered meat product. For example, the edible microcarriers described herein may include porous microcarriers that may be used to grow cells (e.g., smooth muscle cells) and may be included with the cells in the final engineered meat product, without requiring modification or removal of the cells from the microcarriers. In a particular example, the edible microcarriers may be formed of cross-linked pectin, such as pectin-thiopropionylamide (PTP), and RGD-containing polypeptide, such as thiolated cardosin A. Methods of forming edible microcarriers, methods of using the edible microcarriers to make engineered meat, and engineered meat including the edible microcarriers are also described herein.Type: GrantFiled: September 15, 2014Date of Patent: September 5, 2017Assignee: Modern Meadow, Inc.Inventors: Francoise Suzanne Marga, Brendan Patrick Purcell, Gabor Forgacs, Andras Forgacs
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Patent number: 9694081Abstract: The invention relates to compositions comprising (i) biocompatible hydrogel and (ii) one or more therapeutic agents contained within said hydrogel; wherein the hydrogel is cross-linked utilizing a cross-linker comprising a peptide sequence that is capable of being degraded by an enzyme; the therapeutic agent being effective as a treatment of a condition related to the presence of the enzyme.Type: GrantFiled: June 17, 2011Date of Patent: July 4, 2017Assignee: The Trustees Of The University Of PennsylvaniaInventors: Jason Alan Burdick, Robert C. Gorman, Joseph H. Gorman, III, Brendan Patrick Purcell
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Publication number: 20140148395Abstract: The invention relates to compositions comprising (i) biocompatible hydrogel and (ii) one or more therapeutic agents contained within said hydrogel; wherein the hydrogel is cross-linked utilizing a cross-linker comprising a peptide sequence that is capable of being degraded by an enzyme; the therapeutic agent being effective as a treatment of a condition related to the presence of the enzyme.Type: ApplicationFiled: June 17, 2011Publication date: May 29, 2014Inventors: Jason Alan Burdick, Robert C. Gorman, Joseph H. Gorman, III, Brendan Patrick Purcell