Patents by Inventor Chung-Yi Wu

Chung-Yi Wu 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: 20200165649
    Abstract: The present disclosure relates to glycoproteins, particularly monoclonal antibodies, comprising a glycoengineered Fc region, wherein said Fc region comprises an optimized N-glycan having the structure of Sia2(?2-6)Gal2GlcNAc2Man3GlcNAc2. The glycoengineered Fc region binds Fc?RIIA or Fc?RIIIA with a greater affinity, relative to comparable monoclonal antibodies comprising the wild-type Fc region. The monoclonal antibodies of the invention are particularly useful in preventing, treating, or ameliorating one or more symptoms associated with a disease, disorder, or infection where an enhanced efficacy of effector cell function (e.g., ADCC) mediated by Fc?R is desired, e.g., cancer, autoimmune, infectious disease, and in enhancing the therapeutic efficacy of therapeutic antibodies the effect of which is mediated by ADCC.
    Type: Application
    Filed: October 2, 2019
    Publication date: May 28, 2020
    Applicant: Academia Sinica
    Inventors: Chi-Huey WONG, Chung-Yi WU, Che MA
  • Patent number: 10618973
    Abstract: The present disclosure relates to a novel class of anti-HER2 monoclonal antibodies comprising a homogeneous population of anti-HER2 IgG molecules having the same N-glycan on each of Fc. The antibodies of the invention can be produced from anti-HER2 monoclonal antibodies by Fc glycoengineering. Importantly, the antibodies of the invention have improved therapeutic values with increased ADCC activity and increased Fc receptor binding affinity compared to the corresponding monoclonal antibodies that have not been glycoengineered.
    Type: Grant
    Filed: June 21, 2018
    Date of Patent: April 14, 2020
    Assignee: ACADEMIA SINICA
    Inventors: Chi-Huey Wong, Chung-Yi Wu
  • Publication number: 20200078452
    Abstract: The present disclosure is directed to vaccines, antibodies, and/or immunogenic conjugate compositions targeting the SSEA3/SSEA4/GloboH associated epitopes (natural and modified) which elicit antibodies and/or binding fragment production useful for modulating the globo-series glycosphingolipid synthesis. The present disclosure relates to methods and compositions which can modulate the globo-series glycosphingolipid synthesis. Particularly, the present disclosure is directed to glycoenzyme inhibitor compound and compositions and methods of use thereof that can modulate the synthesis of globo-series glycosphingolipid SSEA3/SSEA4/GloboH in the biosynthetic pathway; particularly, the glycoenzyme inhibitors target the alpha-4GalT; beta-4GalNAcT-I; or beta-3GalT-V enzymes in the globo-series synthetic pathway. Moreover, the present disclosure is also directed to the method of using the compositions described herein for the treatment or detection of hyperproliferative diseases and/or conditions.
    Type: Application
    Filed: July 3, 2019
    Publication date: March 12, 2020
    Inventors: Chi-Huey WONG, Chung-Yi WU
  • Publication number: 20200038497
    Abstract: The disclosure provides various immunogens comprising a repeat unit of saccharide of Klebsiella pneumoniae CPS, which has a formula selected from the group consisting of Formulae (I) to (VI) as described herein. Also provided are vaccines including one or more immunogens selected from Formula (I) to (VI) and methods of eliciting an immune response against a Klebsiella pneumoniae and preventing infection of Klebsiella pneumoniae by using an immunogen of the invention.
    Type: Application
    Filed: October 3, 2017
    Publication date: February 6, 2020
    Applicants: NATIONAL TAIWAN UNIVERSITY, Academia Sinica
    Inventors: Jin-Town Wang, Shih-Hsiung Wu, Chung-Yi Wu
  • Publication number: 20190391149
    Abstract: Glycan arrays that can detect and distinguish between various sub-types and strains of influenza virus are provided. Methods for using the glycan arrays with assays using nanoparticle amplification technique are disclosed. Sandwich assays using gold nanoparticles conjugated to phage particles comprising influenza virus-specific antibodies for detecting multiple serotypes using a single reaction are provided. Plurality of glycans directed to specific target HA of influenza virus comprises the array. Detector molecules comprising noble metals conjugated to (a) phage display particles expressing antibodies against hemagglutinin and (b) neuraminidase binding agents are disclosed.
    Type: Application
    Filed: July 1, 2019
    Publication date: December 26, 2019
    Inventors: Chi-Huey WONG, Chung-Yi WU, Chi-Hui LIANG, An-Suei YANG
  • Patent number: 10495645
    Abstract: The present disclosure relates to methods and compositions which can modulate the globoseries glycosphingolipid synthesis. Particularly, the present disclosure is directed to glycoenzyme inhibitor compound and compositions and methods of use thereof that can modulate the synthesis of globoseries glycosphingolipid SSEA-3/SSEA-4/GloboH in the biosynthetic pathway; particularly, the glycoenzyme inhibitors target the alpha-4GalT; beta-4GalNAcT-I; or beta-3GalT-V enzymes in the globoseries synthetic pathway. Additionally, the present disclosure is also directed to vaccines, antibodies, and/or immunogenic conjugate compositions targeting the SSEA-3/SSEA-4/GLOBO H associated epitopes (natural and modified) which elicit antibodies and/or binding fragment production useful for modulating the globoseries glycosphingolipid synthesis. Moreover, the present disclosure is also directed to the method of using the compositions described herein for the treatment or detection of hyperproliferative diseases and/or conditions.
    Type: Grant
    Filed: January 25, 2016
    Date of Patent: December 3, 2019
    Assignee: ACADEMIA SINICA
    Inventors: Chi-Huey Wong, Chung-Yi Wu, Sarah K. C. Cheung, Po-Kai Chuang, Tsui-Ling Hsu
  • Patent number: 10474947
    Abstract: An electronic device is provided. The electronic device comprises: a storage for storing interaction setting information and behavior setting information; an interaction interface; and a processor electrically connected to the storage and the interaction interface. When the processor receives a behavior-driving command from the interaction interface, the processor is configured to select the behavior setting information and the interaction setting information according to the behavior-driving command. The processor is configured to perform a behavior according to the behavior setting information. The processor is further configured to perform an interaction operation based on the behavior according to the behavior setting information and the interaction setting information when the behavior is had. A control method and a non-transitory computer readable storage medium are also provided.
    Type: Grant
    Filed: May 22, 2017
    Date of Patent: November 12, 2019
    Assignee: ASUSTeK COMPUTER INC.
    Inventors: Wei-Long Lee, Mei-Chieh Ku, Tzu-Yu Kung, Chung-Yi Wu, Tai-Yin Lin, Jia-Wei Chou, Chao-Yang Huang
  • Publication number: 20190328863
    Abstract: Immunogenic compositions comprising hemagglutinin (HA) variants and/or neuraminidase (NA) variants, which may be contained in an influenza A virus, and uses thereof for eliciting immune responses against influenza A virus.
    Type: Application
    Filed: November 8, 2017
    Publication date: October 31, 2019
    Inventors: Chi-Huey WONG, Chung-Yi WU
  • Publication number: 20190277843
    Abstract: Aluminum coated glass slides provide a novel glycan array platform. Specifically, aluminum coated glass slides increase sensitivity of fluorescent based assay methods. Additionally, aluminum coated glass slides allows for mass spectroscopic analysis of carbohydrates and provide a platform for examining activity of cellulases. The unique properties of ACG slides include: the metal oxide layer on the surface can be activated for grafting organic compounds such as modified oligosaccharides; the surface remains electrically conductive, and the grafted oligosaccharides can be simultaneously characterized by mass spectrometry and carbohydrate-binding assay; and the slides are more sensitive than transparent glass slides in binding analysis.
    Type: Application
    Filed: March 26, 2019
    Publication date: September 12, 2019
    Inventors: Chi-Huey WONG, Chung-YI WU, Susan Y. TSENG
  • Patent number: 10407673
    Abstract: A mutant of EndoS2 includes one or more mutations in the sequence of a wild-type EndoS2 (SEQ ID NO:1), wherein the one or more mutations are in a peptide region located within residues 133-143, residues 177-182, residues 184-189, residues 221-231, and/or residues 227-237, wherein the mutant of EndoS2 has a low hydrolyzing activity and a high tranglycosylation activity, as compared to those of the wild-type EndoS2. A method for preparing an engineered glycoprotein using the mutant of EndoS2 includes coupling an activated oligosaccharide to a glycoprotein acceptor. The activated oligosaccharide is a glycan oxazoline.
    Type: Grant
    Filed: June 18, 2018
    Date of Patent: September 10, 2019
    Assignees: CHO Pharma Inc., Academia Sinica
    Inventors: Nan-Horng Lin, Lin-Ya Huang, Sachin S Shivatare, Li-Tzu Chen, Chi-Huey Wong, Chung-Yi Wu, Ting Cheng
  • Patent number: 10342858
    Abstract: The present disclosure is directed to vaccines, antibodies, and/or immunogenic conjugate compositions targeting the SSEA3/SSEA4/GloboH associated epitopes (natural and modified) which elicit antibodies and/or binding fragment production useful for modulating the globo-series glycosphingolipid synthesis. The present disclosure relates to methods and compositions which can modulate the globo-series glycosphingolipid synthesis. Particularly, the present disclosure is directed to glycoenzyme inhibitor compound and compositions and methods of use thereof that can modulate the synthesis of globo-series glycosphingolipid SSEA3/SSEA4/GloboH in the biosynthetic pathway; particularly, the glycoenzyme inhibitors target the alpha-4GalT; beta-4GalNAcT-I; or beta-3GalT-V enzymes in the globo-series synthetic pathway. Moreover, the present disclosure is also directed to the method of using the compositions described herein for the treatment or detection of hyperproliferative diseases and/or conditions.
    Type: Grant
    Filed: August 21, 2015
    Date of Patent: July 9, 2019
    Assignee: ACADEMIA SINICA
    Inventors: Chi-Huey Wong, Chung-Yi Wu
  • Patent number: 10338069
    Abstract: Glycan arrays that can detect and distinguish between various sub-types and strains of influenza virus are provided. Methods for using the glycan arrays with assays using nanoparticle amplification technique are disclosed. Sandwich assays using gold nanoparticles conjugated to phage particles comprising influenza virus-specific antibodies for detecting multiple serotypes using a single reaction are provided. Plurality of glycans directed to specific target HA of influenza virus comprises the array. Detector molecules comprising noble metals conjugated to (a) phage display particles expressing antibodies against hemagglutinin and (b) neuraminidase binding agents are disclosed.
    Type: Grant
    Filed: April 12, 2011
    Date of Patent: July 2, 2019
    Assignee: ACADEMIA SINICA
    Inventors: Chi-Huey Wong, Chung-Yi Wu, Chi-Hui Liang, An-Suei Yang
  • Patent number: 10336784
    Abstract: The present disclosure relates to novel modular methods for generating a diversity of N-glycans of high mannose, hybrid and complex types. The present disclosure also relates to exemplary arrays of the synthesized N-glycans spotted onto aluminium oxide coated slides. These arrays can be used to detect and analyze binding interactions between the synthesized N-glycans and glycan binding molecules, such as HIV-1 neutralizing antibodies. The present disclosure also relates to methods for identifying agents that bind to various types of molecules on the arrays and to defining the structural elements of the molecules on the arrays that bind to those agents. The arrays and methods provided herein may be used for general epitope identification, drug discovery and as analytical tools. The present disclosure also provides useful glycans and epitope determinants that are useful in detecting, diagnosing, recurrence monitoring and preventing pathological diseases such as HIV.
    Type: Grant
    Filed: March 8, 2017
    Date of Patent: July 2, 2019
    Assignee: ACADEMIA SINICA
    Inventors: Chi-Huey Wong, Chung-Yi Wu, Sachin S. Shivatare
  • Publication number: 20190194303
    Abstract: Methods for making modified Fc regions of antibodies and antibody fragments, both human and humanized, and having enhanced stability and efficacy, are provided. Antibodies comprising Fc regions with core fucose residues removed, and attached to oligosaccharides comprising terminal sialyl residues, are provided. Antibodies comprising homogeneous glycosylation of Fc regions with specific oligosaccharides are provided. Fc regions conjugated with homogeneous glycoforms of monosaccharides and trisaccharides, are provided. Methods of preparing human antibodies with modified Fc using glycan engineering, are provided.
    Type: Application
    Filed: October 2, 2018
    Publication date: June 27, 2019
    Inventors: Chi-Huey WONG, Chung-Yi WU
  • Publication number: 20190177435
    Abstract: Pharmaceutical composition comprising antibodies or antigen binding fragments thereof that bind to globo H, SSEA3, and SSEA-4 are disclosed herein, as well as methods of use thereof. Methods of use include, without limitation, cancer therapies and diagnostics. The antibodies of the disclosure can bind to certain cancer cell surfaces. Exemplary targets of the antibodies disclosed herein can include carcinomas, such as those in brain, skin, bone, lungs, breast, esophagus, stomach, liver, bile duct, pancreas, colon, kidney, cervical, ovarian, and/or prostate cancer.
    Type: Application
    Filed: November 8, 2018
    Publication date: June 13, 2019
    Inventors: Chi-Huey Wong, Tsui-Ling Hsu, Yi-Wei Lou, Chih-Wei Lin, Shih-Chi Yeh, Chung-Yi Wu, Han-Chung Wu
  • Patent number: 10307470
    Abstract: Immunogenic compositions, cancer vaccines and methods for treating cancer comprising FMS, the fucose-enriched polysaccharide fraction from Reishi F3, are provided. Compositions comprise fucose-enriched Reishi polysaccharide fraction (FMS) MW=˜35 kDa, wherein the FMS is isolated by size-exclusion chromatography from Reishi F3, and the FMS comprises polysaccharides having primarily a backbone selected from 1,4-mannan and 1,6-?-galactan, wherein the backbone is linked to a terminal fucose-containing side-chain Immunogenic compositions comprising glycolipid adjuvants are provided. Antibodies generated by immunogenic compositions disclosed herein bind cancer cells comprising antigens Globo H, Globo H, Gb3, Gb4, Gb5 (SSEA-3) and SSEA-4 on the cell surface.
    Type: Grant
    Filed: July 26, 2014
    Date of Patent: June 4, 2019
    Assignee: ACADEMIA SINICA
    Inventors: Chi-Huey Wong, Chung-Yi Wu, Hsien-Yeh Hsu, Shih-Fen Liao, Chi-Hui Liang
  • Patent number: 10274488
    Abstract: Aluminum coated glass slides provide a novel glycan array platform. Specifically, aluminum coated glass slides increase sensitivity of fluorescent based assay methods. Additionally, aluminum coated glass slides allows for mass spectroscopic analysis of carbohydrates and provide a platform for examining activity of cellulases. The unique properties of ACG slides include: 1) the metal oxide layer on the surface can be activated for grafting organic compounds such as modified oligosaccharides; 2) the surface remains electrically conductive, and the grafted oligosaccharides can be simultaneously characterized by mass spectrometry and carbohydrate-binding assay; and 3) the slides are more sensitive than transparent glass slides in binding analysis.
    Type: Grant
    Filed: February 18, 2014
    Date of Patent: April 30, 2019
    Assignee: ACADEMIA SINICA
    Inventors: Chi-Huey Wong, Chung-Yi Wu, Susan Y. Tseng
  • Publication number: 20190119713
    Abstract: The present disclosure relates to glycoproteins, particularly monoclonal antibodies, comprising a glycoengineered Fc region, wherein said Fc region comprises an optimized N-glycan having the structure of Sia2(?2-6)Gal2GlcNAc2Man3GlcNAc2. The glycoengineered Fc region binds Fc?RIIA or Fc?RIIIA with a greater affinity, relative to comparable monoclonal antibodies comprising the wild-type Fc region. The monoclonal antibodies of the invention are particularly useful in preventing, treating, or ameliorating one or more symptoms associated with a disease, disorder, or infection where an enhanced efficacy of effector cell function (e.g., ADCC) mediated by Fc?R is desired, e.g., cancer, autoimmune, infectious disease, and in enhancing the therapeutic efficacy of therapeutic antibodies the effect of which is mediated by ADCC.
    Type: Application
    Filed: June 26, 2018
    Publication date: April 25, 2019
    Applicant: Academia Sinica
    Inventors: Chi-Huey WONG, Chung-Yi WU, Che MA
  • Publication number: 20190100573
    Abstract: Modified Fc regions of antibodies and antibody fragments, both human and humanized, and having enhanced stability and efficacy, are provided. Fc regions with core fucose residues removed, and attached to oligosaccharides comprising terminal sialyl residues, are provided. Antibodies comprising homogeneous glycosylation of Fc regions with specific oligosaccharides are provided. Fc regions conjugated with homogeneous glycoforms of monosaccharides and trisaccharides, are provided. Methods of preparing human antibodies with modified Fc using glycan engineering, are provided.
    Type: Application
    Filed: October 2, 2018
    Publication date: April 4, 2019
    Inventors: Chi-Huey WONG, Chung-Yi WU
  • Publication number: 20190085062
    Abstract: Pharmaceutical composition comprising antibodies or antigen binding fragments thereof that bind to SSEA-4 are disclosed herein, as well as methods of use thereof. Methods of use include, without limitation, cancer therapies and diagnostics. The antibodies of the disclosure can bind to certain cancer cell surfaces. Exemplary targets of the antibodies disclosed herein can include carcinomas, such as those in brain, lung, breast, mouse, esophagus, stomach, liver, bile duct, pancreas, colon, kidney, cervix, ovary, and/or prostate cancer.
    Type: Application
    Filed: May 25, 2018
    Publication date: March 21, 2019
    Inventors: Chi-Huey Wong, Tsui-Ling Hsu, Yi-Wei Lou, Chih-Wei Lin, Shih-Chi Yeh, Chung-Yi Wu, Han-Chung Wu