Patents by Inventor Charles Perou
Charles Perou 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: 12195805Abstract: Methods and compositions are provided for determining a subtype of Muscle Invasive Bladder Cancer (MIBC) in an individual by detecting the expression level of at least one classifier biomarker selected from a group of gene signatures for MIBC. Also provided herein are methods and compositions for determining the response of an individual with a MIBC subtype to a therapy such as immunotherapy.Type: GrantFiled: February 13, 2019Date of Patent: January 14, 2025Assignees: GeneCentric Therapeutics, Inc., University of North Carolina at Chapel HillInventors: Hawazin Faruki, Greg Mayhew, Myla Lai-Goldman, Charles Perou
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Patent number: 12139763Abstract: Methods and compositions are provided for determining a subtype of lung adenocarcinoma (AD) of an individual by detecting the expression level of at least one classifier biomarker selected from a group of gene signatures for lung adenocarcinoma. Also provided herein are methods and compositions for determining the response of an individual with an adenocarcinoma subtype to a therapy such as immunotherapy.Type: GrantFiled: January 22, 2021Date of Patent: November 12, 2024Assignees: GeneCentric Therapeutics, Inc., University of North Carolina at Chapel HillInventors: Hawazin Faruki, Myla Lai-Goldman, Greg Mayhew, Jonathan Serody, Charles Perou, David Neil Hayes
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Patent number: 12139765Abstract: Methods and compositions are provided for determining a subtype of lung squamous cell carcinoma (SQ) of an individual by detecting the expression level of at least one classifier biomarker selected from a group of gene signatures for lung squamous cell carcinoma. Also provided herein are methods and compositions for determining the response of an individual with a squamous cell carcinoma subtype to a therapy such as immunotherapy.Type: GrantFiled: May 18, 2021Date of Patent: November 12, 2024Assignees: GeneCentric Therapeutics, Inc., University of North Carolina at Chapel HillInventors: Hawazin Faruki, Myla Lai-Goldman, Greg Mayhew, Jonathan Serody, Charles Perou, David Neil Hayes
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Patent number: 12006554Abstract: Methods and compositions are provided for determining a subtype of head and neck squamous cell carcinoma (HNSCC) of an individual by detecting the expression level of at least one classifier biomarker selected from a group of gene signatures for HNSCC. Also provided herein are methods and compositions for determining the response of an individual with a HNSCC subtype to a therapy such as immunotherapy.Type: GrantFiled: August 7, 2018Date of Patent: June 11, 2024Assignees: GeneCentric Therapeutics, Inc., The University of North Carolina at Chapel HillInventors: Myla Lai-Goldman, Hawazin Faruki, Greg Mayhew, Charles Perou, David Neil Hayes
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Patent number: 11739386Abstract: Methods and compositions are provided for determining whether an adenocarcinoma or squamous cell carcinoma patient is likely to respond to PARP inhibitor treatment. Specifically, a method of assessing whether a patient's adenocarcinoma (AD) lung cancer subtype is terminal respiratory unit (TRU), proximal inflammatory (PI), or proximal proliferative (PP) or a patient's squamous cell carcinoma (SQ) is primitive, classical, secretory or basal is provided herein. The method entails detecting the levels of classifier biomarkers at the nucleic acid level, in an AD or SQ lung cancer sample obtained from the patient. Based in part on the levels of the classifier biomarkers, the AD lung cancer sample is classified as a TRU, PI, or PP AD sample or the SQ lung cancer sample is classified as primitive, classical, secretory or basal and a determination of whether the patient is likely to respond to PARP inhibitor treatment can be made.Type: GrantFiled: July 20, 2018Date of Patent: August 29, 2023Assignees: GeneCentric Therapeutics, Inc., The University of North Carolina at Chapel HillInventors: Myla Lai-Goldman, Hawazin Faruki, Greg Mayhew, Charles Perou, David Neil Hayes
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Publication number: 20230243813Abstract: Provided herein are FGFR3 activation signatures for use in methods and compositions for predicting the response of a subject suffering from cancer to FGFR3 inhibitor therapy.Type: ApplicationFiled: June 22, 2021Publication date: August 3, 2023Inventors: Michael MILBURN, Gregory MAYHEW, Joel EISNER, Charles PEROU
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Publication number: 20220415434Abstract: The present invention relates to methods for the classification and stratification of cells within tumours. In one aspect, the invention provides methods for classifying cancer cells into intrinsic cancer subtypes, as well as for diagnosing, prognosing and evaluating a response to therapy for patients afflicted with cancer.Type: ApplicationFiled: June 24, 2022Publication date: December 29, 2022Inventors: Charles Perou, Daniel Lee Roden, Sunny Ziyang Wu, Aatish Thennaven, Alex Swarbrick, Ghamdan Abdulqawi Al-Eryani
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Publication number: 20220243283Abstract: Methods and compositions are provided for the molecular subtyping of lung cancer samples. Specifically, a method of assessing whether a patient's adenocarcinoma lung cancer subtype is terminal respiratory unit (TRU), proximal inflammatory (PI), or proximal proliferative (PP) is provided herein. The method entails detecting the levels of the classifier biomarkers of Table 1-Table 6 or a subset thereof at the nucleic acid level, in a lung cancer sample obtained from the patient. Based in part on the levels of the classifier biomarkers, the lung cancer sample is classified as a TRU, PI, or PP sample.Type: ApplicationFiled: April 21, 2022Publication date: August 4, 2022Inventors: Hawazin FARUKI, Myla LAI-GOLDMAN, Greg MAYHEW, Charles PEROU, David Neil HAYES
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Publication number: 20220002820Abstract: Methods and compositions are provided for the molecular subtyping of lung cancer samples. Specifically, a method of assessing whether a patient's adenocarcinoma lung cancer subtype is terminal respiratory unit (TRU), proximal inflammatory (PI), or proximal proliferative (PP) is provided herein. The method entails detecting the levels of the classifier biomarkers of Table 1-Table 6 or a subset thereof at the nucleic acid level, in a lung cancer sample obtained from the patient. Based in part on the levels of the classifier biomarkers, the lung cancer sample is classified as a TRU, PI, or PP sample.Type: ApplicationFiled: September 10, 2021Publication date: January 6, 2022Inventors: Hawazin FARUKI, Myla LAI-GOLDMAN, Greg MAYHEW, Charles PEROU, David Neil HAYES
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Publication number: 20210398612Abstract: Methods and compositions are provided for determining TMB in a tumor sample using transcriptome profiling data. Also provided herein are methods and compositions for determining the response of an individual with a specific TMB to a therapy such as immunotherapy.Type: ApplicationFiled: October 9, 2019Publication date: December 23, 2021Inventors: Greg Mayhew, Yoichiro Shibata, Myla Lai-Goldman, Charles Perou, Joel Parker
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Publication number: 20210388449Abstract: Methods and compositions are provided for determining a pan-cancer clustering of cluster assignment (COCA) subtype of a cancer in an individual by detecting the expression level of at least one classifier biomarker selected from a group of classifier biomarkers for COCA subtypes. Also provided herein are methods and compositions for determining the response of an individual with a COCA subtype to a therapy such as immunotherapy.Type: ApplicationFiled: October 9, 2019Publication date: December 16, 2021Inventors: Greg Mayhew, Hawazin Faruki, Myla Lai-Goldman, Charles Perou, Joel Parker
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Publication number: 20210340631Abstract: Methods and compositions are provided for determining a subtype of lung squamous cell carcinoma (SQ) of an individual by detecting the expression level of at least one classifier biomarker selected from a group of gene signatures for lung squamous cell carcinoma. Also provided herein are methods and compositions for determining the response of an individual with a squamous cell carcinoma subtype to a therapy such as immunotherapy.Type: ApplicationFiled: May 18, 2021Publication date: November 4, 2021Inventors: Hawazin FARUKI, Myla LAI-GOLDMAN, Greg MAYHEW, Jonathan SERODY, Charles PEROU, David Neil HAYES
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Publication number: 20210222254Abstract: Methods and compositions are provided for determining a subtype of lung adenocarcinoma (AD) of an individual by detecting the expression level of at least one classifier biomarker selected from a group of gene signatures for lung adenocarcinoma. Also provided herein are methods and compositions for determining the response of an individual with an adenocarcinoma subtype to a therapy such as immunotherapy.Type: ApplicationFiled: January 22, 2021Publication date: July 22, 2021Inventors: Hawazin FARUKI, Myla LAI-GOLDMAN, Greg MAYHEW, Jonathan SERODY, Charles PEROU, David Neil HAYES
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Patent number: 11041214Abstract: Methods and compositions are provided for determining a subtype of lung squamous cell carcinoma (SQ) of an individual by detecting the expression level of at least one classifier biomarker selected from a group of gene signatures for lung squamous cell carcinoma. Also provided herein are methods and compositions for determining the response of an individual with a squamous cell carcinoma subtype to a therapy such as immunotherapy.Type: GrantFiled: May 17, 2017Date of Patent: June 22, 2021Assignees: GeneCentric Therapeutics, Inc., The University of North Carolina at Chapel HillInventors: Hawazin Faruki, Myla Lai-Goldman, Greg Mayhew, Jonathan Serody, Charles Perou, David Neil Hayes
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Publication number: 20210147948Abstract: Methods and compositions are provided for the molecular subtyping of lung cancer samples. Specifically, a method of assessing whether a patient's adenocarcinoma lung cancer subtype is terminal respiratory unit (TRU), proximal inflammatory (PI), or proximal proliferative (PP) is provided herein. The method entails detecting the levels of the classifier biomarkers of Table 1-Table 6 or a subset thereof at the nucleic acid level, in a lung cancer sample obtained from the patient. Based in part on the levels of the classifier biomarkers, the lung cancer sample is classified as a TRU, PI, or PP sample.Type: ApplicationFiled: January 8, 2021Publication date: May 20, 2021Inventors: Hawazin FARUKI, Myla LAI-GOLDMAN, Greg MAYHEW, Charles PEROU, David Neil HAYES
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Publication number: 20210074431Abstract: Methods are provided for determining a subtype of head and neck squamous cell carcinoma (HNSCC) of an individual by detecting the expression level of at least one subtype classifier selected from a group of genes that are relevant for determining HNSCC subtypes. Also provided herein are methods for determining a suitable treatment and predicting the overall survival and the likelihood of metastasis for the HNSCC patients according to their subtypes.Type: ApplicationFiled: August 30, 2018Publication date: March 11, 2021Inventors: Myla LAI-GOLDMAN, Hawazin FARUKI, Greg MAYHEW, Charles PEROU, David Neil HAYES, Jose Zevallos
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Patent number: 10934595Abstract: Methods and compositions are provided for determining a subtype of lung adenocarcinoma (AD) of an individual by detecting the expression level of at least one classifier biomarker selected from a group of gene signatures for lung adenocarcinoma. Also provided herein are methods and compositions for determining the response of an individual with an adenocarcinoma subtype to a therapy such as immunotherapy.Type: GrantFiled: May 17, 2017Date of Patent: March 2, 2021Assignees: GeneCentric Therapeutics, Inc., The University of North Carolina at Chapel HillInventors: Hawazin Faruki, Myla Lai-Goldman, Greg Mayhew, Jonathan Serody, Charles Perou, David Neil Hayes
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Publication number: 20210054464Abstract: Methods and compositions are provided for determining a subtype of Muscle Invasive Bladder Cancer (MIBC) in an individual by detecting the expression level of at least one classifier biomarker selected from a group of gene signatures for MIBC. Also provided herein are methods and compositions for determining the response of an individual with a MIBC subtype to a therapy such as immunotherapy.Type: ApplicationFiled: February 13, 2019Publication date: February 25, 2021Inventors: Hawazin Faruki, Greg Mayhew, Myla Lai-Goldman, Charles Perou
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Patent number: 10829819Abstract: Methods and compositions are provided for the molecular subtyping of lung cancer samples. Specifically, a method of assessing whether a patient's lung cancer subtype is adenocarcinoma, squamous cell carcinoma, or a neuroendocrine (encompassing both small cell carcinoma and carcinoid) is provided herein. A method for assessing whether a patient's lung cancer subtype is adenocarcinoma, squamous cell carcinoma, small cell carcinoma or carcinoid lung cancer is also provided. The methods provided herein entail probing the levels of the classifier biomarkers of Table 1-Table 6 or a subset thereof at the nucleic acid level, in a lung cancer sample obtained from the patient. Based in part on the levels of the classifier biomarkers, the lung cancer sample is classified as a particular lung cancer subtype.Type: GrantFiled: June 1, 2015Date of Patent: November 10, 2020Assignees: GeneCentric Therapeutics, Inc., The University of North Carolina at Chapel HillInventors: Hawazin Faruki, Myla Lai-Goldman, Gregory Mayhew, Charles Perou, David Neil Hayes, Cheng Fan, Mark Miglarese
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Publication number: 20200232042Abstract: Methods and compositions are provided for determining whether an adenocarcinoma or squamous cell carcinoma patient is likely to respond to PARP inhibitor treatment. Specifically, a method of assessing whether a patient's adenocarcinoma (AD) lung cancer subtype is terminal respiratory unit (TRU), proximal inflammatory (PI), or proximal proliferative (PP) or a patient's squamous cell carcinoma (SQ) is primitive, classical, secretory or basal is provided herein. The method entails detecting the levels of classifier biomarkers at the nucleic acid level, in an AD or SQ lung cancer sample obtained from the patient. Based in part on the levels of the classifier biomarkers, the AD lung cancer sample is classified as a TRU, PI, or PP AD sample or the SQ lung cancer sample is classified as primitive, classical, secretory or basal and a determination of whether the patient is likely to respond to PARP inhibitor treatment can be made.Type: ApplicationFiled: July 20, 2018Publication date: July 23, 2020Inventors: Myla LAI-GOLDMAN, Hawazin FARUKI, Greg MAYHEW, Charles PEROU, David Neil HAYES