Patents Assigned to Syntaxin Ltd.
  • Patent number: 8790897
    Abstract: The present invention relates to treatment of mucus hypersecretion, to compositions therefore and manufacture of those compositions. The present invention relates particularly, though not exclusively, to the treatment of chronic bronchitis in chronic obstructive pulmonary disease (COPD), asthma and other clinical conditions involving COPD.
    Type: Grant
    Filed: May 31, 2007
    Date of Patent: July 29, 2014
    Assignee: Syntaxin Ltd.
    Inventors: Conrad Padraig Quinn, Keith Alan Foster, John Chaddock
  • Publication number: 20130189238
    Abstract: A single chain, polypeptide fusion protein, comprising: a non-cytotoxic protease, or a fragment thereof, which protease or protease fragment is capable of cleaving a protein of the exocytic fusion apparatus of a nociceptive sensory afferent; a dynorphin Targeting Moiety that is capable of binding to a Binding Site on the nociceptive sensory afferent, which Binding Site is capable of undergoing endocytosis to be incorporated into an endosome within the nociceptive sensory afferent; a protease cleavage site at which site the fusion protein is cleavable by a protease, wherein the protease cleavage site is located between the non-cytotoxic protease or fragment thereof and the dynorphin Targeting Moiety; and a translocation domain that is capable of translocating the protease or protease fragment from within an endosome, across the endosomal membrane and into the cytosol of the nociceptive sensory afferent.
    Type: Application
    Filed: February 22, 2013
    Publication date: July 25, 2013
    Applicants: ALLERGAN INC., SYNTAXIN LTD.
    Inventors: Syntaxin Ltd., Allergan Inc.
  • Publication number: 20120207735
    Abstract: The present invention is directed to non-cytotoxic protein conjugates for inhibition or reduction of exocytic fusion in a nociceptive sensory afferent cell. The protein conjugates comprise: (i) a Targeting Moiety (TM), wherein the TM is an agonist of a receptor present on a nociceptive sensory afferent cell, and wherein the receptor undergoes endocytosis to be incorporated into an endosome within the nociceptive sensory afferent cell; (ii) a non-cytotoxic protease or a fragment thereof, wherein the protease or protease fragment is capable of cleaving a protein of the exocytic fusion to apparatus of the nociceptive sensory afferent cell; and (iii) a Translocation Domain, wherein the Translocation Domain translocates the protease or protease fragment from within the endosome, across the endosomal membrane, and into the cytosol of the nociceptive sensory afferent cell wherein the Targeting Moiety is selected from the group consisting of BAM, ?-endorphin, bradykinin, substance P, dynorphin and/or nociceptin.
    Type: Application
    Filed: March 13, 2012
    Publication date: August 16, 2012
    Applicants: ALLERGAN INC., SYNTAXIN LTD.
    Inventors: Keith FOSTER, John CHADDOCK, Charles PENN, Kei Roger AOKI, Joseph FRANCIS, Lance STEWARD
  • Publication number: 20120156186
    Abstract: The present invention is directed to non-cytotoxic protein conjugates for inhibition or reduction of exocytic fusion in a nociceptive sensory afferent cell. The protein conjugates comprise: (i) a galanin Targeting Moiety (TM), wherein the TM is an agonist of a receptor present on a nociceptive sensory afferent cell, and wherein the receptor undergoes endocytosis to be incorporated into an endosome within the nociceptive sensory afferent cell; (ii) a non-cytotoxic protease or a fragment thereof, wherein the protease or protease fragment is capable of cleaving a protein of the exocytic fusion apparatus of the nociceptive sensory afferent cell; and (iii) a Translocation Domain, wherein the Translocation Domain translocates the protease or protease fragment from within the endosome, across the endosomal membrane, and into the cytosol of the nociceptive sensory afferent cell. Nucleic acid sequences encoding the protein conjugates, methods of preparing same and uses thereof are is also described.
    Type: Application
    Filed: January 5, 2012
    Publication date: June 21, 2012
    Applicants: ALLERGAN INC., SYNTAXIN LTD.
    Inventors: Keith FOSTER, John CHADDOCK, Charles PENN, Kei Roger AOKI, Joseph FRANCIS, Lance STEWARD
  • Publication number: 20120064059
    Abstract: A single chain, polypeptide fusion protein, comprising: a non-cytotoxic protease, or a fragment thereof, which protease or protease fragment is capable of cleaving a protein of the exocytic fusion apparatus of a nociceptive sensory afferent; a Targeting Moiety that is capable of binding to a Binding Site on the nociceptive sensory afferent, which Binding Site is capable of undergoing endocytosis to be incorporated into an endosome within the nociceptive sensory afferent; a protease cleavage site at which site the fusion protein is cleavable by a protease, wherein the protease cleavage site is located between the non-cytotoxic protease or fragment thereof and the Targeting Moiety; a translocation domain that is capable of translocating the protease or protease fragment from within an endosome, across the endosomal membrane and into the cytosol of the nociceptive sensory afferent. Nucleic acids encoding the fusion proteins, methods of preparing same and uses thereof are also described.
    Type: Application
    Filed: September 22, 2011
    Publication date: March 15, 2012
    Applicants: ALLERGAN, INC., SYNTAXIN LTD.
    Inventors: Keith FOSTER, John CHADDOCK, Philip MARKS, Patrick STANCOMBE, Kei Roger AOKI, Joseph FRANCIS, Lance STEWARD
  • Publication number: 20120058098
    Abstract: The present invention is directed to non-cytotoxic protein conjugates for inhibition or reduction of exocytic fusion in a nociceptive sensory afferent cell. The protein conjugates comprise: (i) a dynorphin Targeting Moiety (TM), wherein the TM is an agonist of a receptor present on a nociceptive sensory afferent cell, and wherein the receptor undergoes endocytosis to be incorporated into an endosome within the nociceptive sensory afferent cell; (ii) a non-cytotoxic protease or a fragment thereof, wherein the protease or protease fragment is capable of cleaving a protein of the exocytic fusion apparatus of the nociceptive sensory afferent cell; and (iii) a Translocation Domain, wherein the Translocation Domain translocates the protease or protease fragment from within the endosome, across the endosomal membrane, and into the cytosol of the nociceptive sensory afferent cell. Nucleic acid sequences encoding the protein conjugates, methods of preparing same and uses thereof are also described.
    Type: Application
    Filed: August 18, 2011
    Publication date: March 8, 2012
    Applicants: ALLERGAN INC., SYNTAXIN LTD.
    Inventors: Keith FOSTER, John CHADDOCK, Charles PENN, Kei Roger AOKI, Joseph FRANCIS, Lance STEWARD
  • Patent number: 8067200
    Abstract: A single chain, polypeptide fusion protein, comprising: a non-cytotoxic protease, or a fragment thereof, which protease or protease fragment is capable of cleaving a protein of the exocytic fusion apparatus of a nociceptive sensory afferent; a Targeting Moiety that is capable of binding to a Binding Site on the nociceptive sensory afferent, which Binding Site is capable of undergoing endocytosis to be incorporated into an endosome within the nociceptive sensory afferent; a protease cleavage site at which site the fusion protein is cleavable by a protease, wherein the protease cleavage site is located between the non-cytotoxic protease or fragment thereof and the Targeting Moiety; and a translocation domain that is capable of translocating the protease or protease fragment from within an endosome, across the endosomal membrane and into the cytosol of the nociceptive sensory afferent. Nucleic acid sequences encoding the polypeptide fusion proteins, methods of preparing same and uses thereof are also described.
    Type: Grant
    Filed: December 1, 2005
    Date of Patent: November 29, 2011
    Assignees: Syntaxin Ltd., Allergan Inc.
    Inventors: Keith Foster, John Chaddock, Philip Marks, Patrick Stancombe, Kei Roger Aoki, Joseph Francis, Lance Steward
  • Publication number: 20110027256
    Abstract: A single chain, polypeptide fusion protein, comprising: a non-cytotoxic protease, or a fragment thereof, which protease or protease fragment is capable of cleaving a protein of the exocytic fusion apparatus of a nociceptive sensory afferent; a dynorphin Targeting Moiety that is capable of binding to a Binding Site on the nociceptive sensory afferent, which Binding Site is capable of undergoing endocytosis to be incorporated into an endosome within the nociceptive sensory afferent; a protease cleavage site at which site the fusion protein is cleavable by a protease, wherein the protease cleavage site is located between the non-cytotoxic protease or fragment thereof and the dynorphin Targeting Moiety; and a translocation domain that is capable of translocating the protease or protease fragment from within an endosome, across the endosomal membrane and into the cytosol of the nociceptive sensory afferent.
    Type: Application
    Filed: August 25, 2010
    Publication date: February 3, 2011
    Applicants: SYNTAXIN LTD., ALLERGAN, INC.
    Inventors: Keith FOSTER, John CHADDOCK, Philip MARKS, Patrick STANCOMBE, Kei Roger AOKI, Joseph FRANCIS, Lance STEWARD
  • Patent number: 7727538
    Abstract: A method of treating mucus hypersecretion, the causative factor in chronic obstructive pulmonary disease (COPD), asthma and other clinical conditions involving COPD, comprises administering a compound that inhibits exocytosis in mucus secreting cells or neurones that control or direct mucus secretion. Also described is a compound, for use in the treatment of hypersecretion of mucus, which inhibits mucus secretion by inhibiting mucus secretion by mucus secreting cells, and/or inhibiting neurotransmitter release from neuronal cells controlling or directing mucus secretion.
    Type: Grant
    Filed: September 11, 2006
    Date of Patent: June 1, 2010
    Assignee: Syntaxin Ltd.
    Inventors: Conrad Padraig Quinn, Keith Alan Foster, John Chaddock
  • Patent number: 7452543
    Abstract: A class of novel agents that are able to modify nociceptive afferent function is provided. The agents may inhibit the release of neurotransmitters from discrete populations of neurones and thereby reduce or preferably prevent the transmission of afferent pain signals from peripheral to central pain fibers. They comprise a galactose-binding lectin linked to a derivative of a clostridial neurotoxin. The derivative of the clostridial neurotoxin comprises the L-chain, or a fragment thereof, which includes the active proteolytic enzyme domain of the light (L) chain, linked to a molecule or domain with membrane translocating activity. The agents may be used in or as pharmaceuticals for the treatment of pain, particular chronic pain.
    Type: Grant
    Filed: October 25, 2005
    Date of Patent: November 18, 2008
    Assignee: Syntaxin Ltd.
    Inventors: John Andrew Chaddock, Philip Marks, Michael John Duggan
  • Publication number: 20080064092
    Abstract: The invention provides a single chain, polypeptide fusion protein, comprising: a non-cytotoxic protease, or a fragment thereof, which protease or protease fragment is capable of cleaving a protein of the exocytic fusion apparatus of a target cell; a Targeting Moiety that is capable of binding to a Binding Site on the target cell, which Binding Site is capable of undergoing endocytosis to be incorporated into an endosome within the target cell; a protease cleavage site at which site the fusion protein is cleavable by a protease, wherein the protease cleavage site is located between the non-cytotoxic protease or fragment thereof and the Targeting Moiety; and a translocation domain that is capable of translocating the protease or protease fragment from within an endosome, across the endosomal membrane and into the cytosol of the target cell.
    Type: Application
    Filed: September 11, 2007
    Publication date: March 13, 2008
    Applicant: SYNTAXIN LTD.
    Inventors: Keith FOSTER, John CHADDOCK, Philip MARKS, Patrick STANCOMBE, Lyndsey DUROSE