Patents by Inventor YINGZHU LIU
YINGZHU LIU 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: 20240053291Abstract: The subject invention provides methods for fabricating electrochemical aptamer-based (E-AB) sensors with enhanced sensitivity, signal-to-noise ratios, LOD, and improved stability and reproducibility. The subject invention also provides methods for aptamer immobilization on the surface of the electrode, which favors sufficient spacing between aptamers at the microscale to achieve optimal target recognition, folding, and signal transduction. The E-AB sensors of the subject invention provide superior sensing regardless of the sequence or structure of the bound aptamers or the physiochemical properties of the target.Type: ApplicationFiled: October 23, 2023Publication date: February 15, 2024Applicant: The Florida International University Board of TrusteesInventors: Yi XIAO, Yingzhu LIU, Juan CANOURA
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Patent number: 11796499Abstract: The subject invention provides methods for fabricating electrochemical aptamer-based (E-AB) sensors with enhanced sensitivity, signal-to-noise ratios, LOD, and improved stability and reproducibility. The subject invention also provides methods for aptamer immobilization on the surface of the electrode, which favors sufficient spacing between aptamers at the microscale to achieve optimal target recognition, folding, and signal transduction. The E-AB sensors of the subject invention provide superior sensing regardless of the sequence or structure of the bound aptamers or the physiochemical properties of the target.Type: GrantFiled: December 13, 2022Date of Patent: October 24, 2023Assignee: THE FLORIDA INTERNATIONAL UNIVERSITY BOARD OF TRUSTEESInventors: Yi Xiao, Yingzhu Liu, Juan Canoura
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Publication number: 20230213471Abstract: The subject invention provides methods for fabricating electrochemical aptamer-based (E-AB) sensors with enhanced sensitivity, signal-to-noise ratios, LOD, and improved stability and reproducibility. The subject invention also provides methods for aptamer immobilization on the surface of the electrode, which favors sufficient spacing between aptamers at the microscale to achieve optimal target recognition, folding, and signal transduction. The E-AB sensors of the subject invention provide superior sensing regardless of the sequence or structure of the bound aptamers or the physiochemical properties of the target.Type: ApplicationFiled: December 13, 2022Publication date: July 6, 2023Applicant: The Florida International University Board of TrusteesInventors: Yi XIAO, Yingzhu LIU, Juan CANOURA
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Patent number: 11162960Abstract: The subject invention provides methods, assays, and products for detecting small-molecule targets in a complex sample in both clinical and field settings. The subject invention provides aptamer-based sensors and methods of use thereof. The subject invention provides exonuclease-based methods for generating structure-switching aptamers from fully folded or pre-folded aptamers and developing aptamer-based sensors for small-molecule detection. The method for detecting one or more small-molecule targets in a sample comprises contacting the sample with one or more aptamer-based sensor selective for each of the small-molecule targets, and detecting the small-molecule target in the sample.Type: GrantFiled: June 11, 2019Date of Patent: November 2, 2021Assignee: THE FLORIDA INTERNATIONAL UNIVERSITY BOARD OF TRUSTEESInventors: Yi Xiao, Haixiang Yu, Juan Canoura, Yingzhu Liu
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Patent number: 11060095Abstract: The subject invention provides a SELEX strategy for isolating cross-reactive aptamers that recognize a core structure of a small-molecule family and bind to several structurally-similar molecules in the family. The subject invention also provides methods, assays, and products for detecting small-molecule targets of the family in a sample in both clinical and field settings. Such method is based on an aptamer sensor that reports the presence of small-molecule targets via a sensitive colorimetric signal for naked-eye detection. The subject invention further provides exonuclease-based methods for generating structure-switching aptamers from fully folded aptamers and developing electrochemical aptamer-based (E-AB) sensors for rapid and sensitive detection of synthetic cathinones.Type: GrantFiled: December 10, 2020Date of Patent: July 13, 2021Assignee: THE FLORIDA INTERNATIONAL UNIVERSITY BOARD OF TRUSTEESInventors: Weijuan Yang, Haixiang Yu, Yingzhu Liu, Yi Xiao
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Publication number: 20210102210Abstract: The subject invention provides a SELEX strategy for isolating cross-reactive aptamers that recognize a core structure of a small-molecule family and bind to several structurally-similar molecules in the family. The subject invention also provides methods, assays, and products for detecting small-molecule targets of the family in a sample in both clinical and field settings. Such method is based on an aptamer sensor that reports the presence of small-molecule targets via a sensitive colorimetric signal for naked-eye detection. The subject invention further provides exonuclease-based methods for generating structure-switching aptamers from fully folded aptamers and developing electrochemical aptamer-based (E-AB) sensors for rapid and sensitive detection of synthetic cathinones.Type: ApplicationFiled: December 10, 2020Publication date: April 8, 2021Applicant: The Florida International University Board of TrusteesInventors: Weijuan YANG, Haixiang YU, Yingzhu LIU, Yi XIAO
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Patent number: 10907162Abstract: The subject invention provides a SELEX strategy for isolating cross-reactive aptamers that recognize a core structure of a small-molecule family and bind to each several structurally-similar molecules in the family. The subject invention also provides methods, assays, and products for detecting small-molecule targets of the family in a sample in both clinical and field settings. Such method is based on an aptamer sensor that reports the presence of small-molecule targets via a sensitive colorimetric signal for naked-eye detection. The subject invention further provides exonuclease-based methods for generating structure-switching aptamers from fully folded aptamers and developing electrochemical aptamer-based (E-AB) sensors for rapid and sensitive detection of synthetic cathinones.Type: GrantFiled: February 14, 2020Date of Patent: February 2, 2021Assignee: THE FLORIDA INTERNATIONAL UNIVERSITY BOARD OF TRUSTEESInventors: Weijuan Yang, Haixiang Yu, Yingzhu Liu, Yi Xiao
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Publication number: 20200172907Abstract: The subject invention provides a novel SELEX strategy for isolating cross-reactive aptamers that recognize a core structure of a small-molecule family and bind to each structurally-similar molecule in said family. The subject invention also provides methods, assays, and products for detecting small-molecule targets of the family in a sample in both clinical and field settings. Such method is based on an aptamer sensor that reports the presence of small-molecule targets via a sensitive colorimetric signal for naked-eye detection. The subject invention further provides exonuclease-based methods for generating structure-switching aptamers from fully folded aptamers and developing electrochemical aptamer-based (E-AB) sensors for rapid and sensitive detection of synthetic cathinones.Type: ApplicationFiled: February 14, 2020Publication date: June 4, 2020Applicant: The Florida International University Board of TrusteesInventors: Weijuan YANG, Haixiang YU, Yingzhu LIU, Yi XIAO
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Patent number: 10655132Abstract: The subject invention provides a novel SELEX strategy for isolating cross-reactive aptamers that recognize a core structure of a small-molecule family and bind to each structurally-similar molecule in said family. The subject invention also provides methods, assays, and products for detecting small-molecule targets of the family in a sample in both clinical and field settings. Such method is based on an aptamer sensor that reports the presence of small-molecule targets via a sensitive colorimetric signal for naked-eye detection. The subject invention further provides exonuclease-based methods for generating structure-switching aptamers from fully folded aptamers and developing electrochemical aptamer-based (E-AB) sensors for rapid and sensitive detection of synthetic cathinones.Type: GrantFiled: October 30, 2018Date of Patent: May 19, 2020Assignee: THE FLORIDA INTERNATIONAL UNIVERSITY BOARD OF TRUSTEESInventors: Weijuan Yang, Haixiang Yu, Yingzhu Liu, Yi Xiao
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Publication number: 20200131514Abstract: The subject invention provides a novel SELEX strategy for isolating cross-reactive aptamers that recognize a core structure of a small-molecule family and bind to each structurally-similar molecule in said family. The subject invention also provides methods, assays, and products for detecting small-molecule targets of the family in a sample in both clinical and field settings. Such method is based on an aptamer sensor that reports the presence of small-molecule targets via a sensitive colorimetric signal for naked-eye detection. The subject invention further provides exonuclease-based methods for generating structure-switching aptamers from fully folded aptamers and developing electrochemical aptamer-based (E-AB) sensors for rapid and sensitive detection of synthetic cathinones.Type: ApplicationFiled: October 30, 2018Publication date: April 30, 2020Applicant: The Florida International University Board of TrusteesInventors: Weijuan Yang, Haixiang Yu, Yingzhu Liu, Yi Xiao
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Publication number: 20190376987Abstract: The subject invention provides methods, assays, and products for detecting small-molecule targets in a complex sample in both clinical and field settings. The subject invention provides aptamer-based sensors and methods of use thereof. The subject invention provides exonuclease-based methods for generating structure-switching aptamers from fully folded or pre-folded aptamers and developing aptamer-based sensors for small-molecule detection. The method for detecting one or more small-molecule targets in a sample comprises contacting the sample with one or more aptamer-based sensor selective for each of the small-molecule targets, and detecting the small-molecule target in the sample.Type: ApplicationFiled: June 11, 2019Publication date: December 12, 2019Applicant: THE FLORIDA INTERNATIONAL UNIVERSITY BOARD OF TRUSTEESInventors: YI XIAO, HAIXIANG YU, JUAN CANOURA, YINGZHU LIU