Patents Assigned to Regenerative Research Foundation
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Patent number: 12213996Abstract: Optic nerve lamina region neural progenitor cells (ONLR-NPCs) are provided. Such cells secrete growth factors and survival factors that can be used in the treatment of optic nerve diseases, such as glaucoma. Also provided are methods of treating or preventing optic nerve diseases, such as glaucoma, using one or more factors secreted by ONLR-NPCs, combinations of factors secreted by ONLR-NPCs, or culture media conditioned by ONLR-NPCs.Type: GrantFiled: February 1, 2019Date of Patent: February 4, 2025Assignees: UNIVERSITY OF MARYLAND, BALTIMORE, REGENERATIVE RESEARCH FOUNDATIONInventors: Steven Lance Bernstein, Candace L. Kerr, Sally Temple Stern
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Patent number: 11827683Abstract: Disclosed herein are multifunctional polypeptides comprising a first domain comprising an anti-tau antigen binding domain and a second domain comprising a proteasome-targeting PEST motif, and methods for using these polypeptides in treatment of tauopathies.Type: GrantFiled: July 26, 2021Date of Patent: November 28, 2023Assignee: Regenerative Research FoundationInventors: Sally Temple, Anne Messer, David Butler
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Publication number: 20220175844Abstract: Optic nerve lamina region neural progenitor cells (ONLR-NPCs) are provided. Such cells secrete growth factors and survival factors that can be used in the treatment of optic nerve diseases, such as glaucoma. Also provided are methods of treating or preventing optic nerve diseases, such as glaucoma, using one or more factors secreted by ONLR-NPCs, combinations of factors secreted by ONLR-NPCs, or culture media conditioned by ONLR-NPCs.Type: ApplicationFiled: February 1, 2019Publication date: June 9, 2022Applicants: University of Maryland, Baltimore, REGENERATIVE RESEARCH FOUNDATIONInventors: Steven Lance BERNSTEIN, Candace L. KERR, Sally TEMPLE STERN
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Patent number: 11072639Abstract: Disclosed herein are multifunctional polypeptides comprising a first domain comprising an anti-tau antigen binding domain and a second domain comprising a proteasome-targeting PEST motif, and methods for using these polypeptides in treatment of tauopathies.Type: GrantFiled: September 8, 2017Date of Patent: July 27, 2021Assignee: Regenerative Research FoundationInventors: Sally Temple, Anne Messer, David Butler
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Patent number: 10369192Abstract: The present invention relates to treatment methods and methods for sustained delivery of one or more exogenous factors to desired nervous system sites. In certain embodiments, the invention relates to the use of biodegradable microspheres to deliver exogenous factors, such as the morphogenic factor, sonic hedgehog (Shh), to the site of spinal cord injury. In certain embodiments, the Shh-releasing microspheres are administered together with stem cells, which may be spinal cord neural stem cells. In certain embodiments, the invention relates to regrowth of neural cells in both the central and peripheral nervous systems.Type: GrantFiled: November 12, 2013Date of Patent: August 6, 2019Assignee: Regenerative Research FoundationInventors: Sally Temple Stern, Natalia Lowry, Jeffrey Stern, Susan K. Goderie
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Patent number: 10034916Abstract: The present invention relates to a retinal pigment epithelial stem cell isolated from a posterior region of the retinal pigment epithelium of an adult mammal. The invention also relates to a method of inducing differentiation of retinal epithelial stem and progenitor cells in vitro, wherein the cells of the invention are highly plastic, multipotential stem cells. The invention also includes methods for the treatment of retinal diseases and vision loss involving the transplantation of retinal pigment epithelial stem cells or cells differentiated from retinal pigment epithelial stem cells to the retina of a patient in need of treatment.Type: GrantFiled: June 12, 2013Date of Patent: July 31, 2018Assignee: Regenerative Research FoundationInventors: Sally Temple, Jeffrey Stern, Enrique L. Salero-Coca
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Patent number: 9994826Abstract: Methods for culturing undifferentiated mammalian cells, such as stem and progenitor cells, are provided. The methods involve incubating the cell in the presence of a sustained release composition containing at least one growth factor, wherein the sustained release composition continuously releases the growth factor(s), and wherein the presence of the sustained level of growth factor maintains the cell in an undifferentiated state.Type: GrantFiled: September 12, 2014Date of Patent: June 12, 2018Assignee: Regenerative Research FoundationInventors: Sally Temple Stern, Jeffrey Stern
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Patent number: 8841123Abstract: Methods for culturing undifferentiated mammalian cells, such as stem and progenitor cells, are provided. The methods involve incubating the cell in the presence of a sustained release composition containing at least one growth factor, wherein the sustained release composition continuously releases the growth factor(s), and wherein the presence of the sustained level of growth factor maintains the cell in an undifferentiated state.Type: GrantFiled: June 12, 2013Date of Patent: September 23, 2014Assignee: Regenerative Research FoundationInventors: Jeffrey Stern, Sally Temple Stern
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Publication number: 20140227232Abstract: The present invention relates to treatment methods and methods for sustained delivery of one or more exogenous factors to desired nervous system sites. In certain embodiments, the invention relates to the use of biodegradable microspheres to deliver exogenous factors, such as the morphogenic factor, sonic hedgehog (Shh), to the site of spinal cord injury. In certain embodiments, the Shh-releasing microspheres are administered together with stem cells, which may be spinal cord neural stem cells. In certain embodiments, the invention relates to regrowth of neural cells in both the central and peripheral nervous systems.Type: ApplicationFiled: November 12, 2013Publication date: August 14, 2014Applicants: ALBANY MEDICAL COLLEGE, REGENERATIVE RESEARCH FOUNDATIONInventors: Sally Temple Stern, Natalia Lowry, Jeffrey Stern, Susan K. Goderie
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Publication number: 20130337562Abstract: Methods for culturing undifferentiated mammalian cells, such as stem and progenitor cells, are provided. The methods involve incubating the cell in the presence of a sustained release composition containing at least one growth factor, wherein the sustained release composition continuously releases the growth factor(s), and wherein the presence of the sustained level of growth factor maintains the cell in an undifferentiated state.Type: ApplicationFiled: June 12, 2013Publication date: December 19, 2013Applicant: Regenerative Research FoundationInventors: Jeffrey Stern, Sally Temple Stern
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Publication number: 20130330302Abstract: The present invention relates to a retinal pigment epithelial stem cell isolated from a posterior region of the retinal pigment epithelium of an adult mammal. The invention also relates to a method of inducing differentiation of retinal epithelial stem and progenitor cells in vitro, wherein the cells of the invention are highly plastic, multipotential stem cells. The invention also includes methods for the treatment of retinal diseases and vision loss involving the transplantation of retinal pigment epithelial stem cells or cells differentiated from retinal pigment epithelial stem cells to the retina of a patient in need of treatment.Type: ApplicationFiled: June 12, 2013Publication date: December 12, 2013Applicant: REGENERATIVE RESEARCH FOUNDATIONInventors: Sally Temple, Jeffrey Stern, Enrique L. Salero-Coca
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Patent number: 8481313Abstract: The present invention relates to a retinal pigment epithelial stem cell isolated from a posterior region of the retinal pigment epithelium of an adult mammal. The invention also relates to a method of inducing differentiation of retinal epithelial stem and progenitor cells in vitro, wherein the cells of the invention are highly plastic, multipotential stem cells. The invention also includes methods for the treatment of retinal diseases and vision loss involving the transplantation of retinal pigment epithelial stem cells or cells differentiated from retinal pigment epithelial stem cells to the retina of a patient in need of treatment.Type: GrantFiled: April 22, 2009Date of Patent: July 9, 2013Assignee: Regenerative Research FoundationInventors: Sally Temple, Jeffrey Stern, Enrique L. Salero-Coca
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Patent number: 8481308Abstract: Methods for culturing undifferentiated mammalian cells, such as stem and progenitor cells, are provided. The methods involve incubating the cell in the presence of a sustained release composition containing at least one growth factor, wherein the sustained release composition continuously releases the growth factor(s), and wherein the presence of the sustained level of growth factor maintains the cell in an undifferentiated state.Type: GrantFiled: July 1, 2011Date of Patent: July 9, 2013Assignee: Regenerative Research FoundationInventors: Jeffrey Stern, Sally Temple Stern
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Publication number: 20120101024Abstract: Methods and compositions for differentiating mammalian stem and progenitor cells are provided. More particularly, methods and compositions for obtaining neural cells from human embryonic stem cells are provided.Type: ApplicationFiled: October 26, 2011Publication date: April 26, 2012Applicant: REGENERATIVE RESEARCH FOUNDATIONInventors: Sally Temple Stern, Christopher A. Fasano
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Publication number: 20120003736Abstract: Methods for culturing undifferentiated mammalian cells, such as stem and progenitor cells, are provided. The methods involve incubating the cell in the presence of a sustained release composition containing at least one growth factor, wherein the sustained release composition continuously releases the growth factor(s), and wherein the presence of the sustained level of growth factor maintains the cell in an undifferentiated state.Type: ApplicationFiled: July 1, 2011Publication date: January 5, 2012Applicant: Regenerative Research FoundationInventors: Jeffrey Stern, Sally Temple Stern
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Publication number: 20110217264Abstract: The present invention relates to treatment methods and methods for sustained delivery of one or more exogenous factors to desired nervous system sites. In certain embodiments, the invention relates to the use of biodegradable microspheres to deliver exogenous factors, such as the morphogenic factor, sonic hedgehog (Shh), to the site of spinal cord injury. In certain embodiments, the Shh-releasing microspheres are administered together with stem cells, which may be spinal cord neural stem cells. In certain embodiments, the invention relates to regrowth of neural cells in both the central and peripheral nervous systems.Type: ApplicationFiled: May 16, 2011Publication date: September 8, 2011Applicants: REGENERATIVE RESEARCH FOUNDATION, ALBANY MEDICAL COLLEGEInventors: Sally Temple, Natalia Lowry, Jeffrey Stern, Susan K. Goderie
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Publication number: 20100021422Abstract: The present invention relates to treatment methods and methods for sustained delivery of one or more exogenous factors to desired nervous system sites. In certain embodiments, the invention relates to the use of biodegradable microspheres to deliver exogenous factors, such as the morphogenic factor, sonic hedgehog (Shh), to the site of spinal cord injury. In certain embodiments, the Shh-releasing microspheres are administered together with stem cells, which may be spinal cord neural stem cells. In certain embodiments, the invention relates to regrowth of neural cells in both the central and peripheral nervous systems.Type: ApplicationFiled: March 5, 2009Publication date: January 28, 2010Applicants: Regenerative Research Foundation, Albany Medical College, Rensselaer Polytechnic InstituteInventors: Sally Temple, Natalia Lowry, Jeffrey Stern, Susan K. Goderie, Ravindra Kane, Supriya Punyani, Akhilesh Banerjee
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Publication number: 20090274667Abstract: The present invention relates to a retinal pigment epithelial stem cell isolated from a posterior region of the retinal pigment epithelium of an adult mammal. The invention also relates to a method of inducing differentiation of retinal epithelial stem and progenitor cells in vitro, wherein the cells of the invention are highly plastic, multipotential stem cells. The invention also includes methods for the treatment of retinal diseases and vision loss involving the transplantation of retinal pigment epithelial stem cells or cells differentiated from retinal pigment epithelial stem cells to the retina of a patient in need of treatment.Type: ApplicationFiled: April 22, 2009Publication date: November 5, 2009Applicant: Regenerative Research FoundationInventors: Sally Temple, Jeffrey Stern, Enrique L. Salero-Coca