Patent classifications
A61K31/664
COMPOSITIONS AND METHODS FOR INHIBITING TUMOR-INDUCED IMMUNE SUPPRESSION
It has been discovered that the cyclic peptide EnnA inactivates the Hsp90 chaperone pathway, but without activating an extensive heat shock response and overexpression of anti-apoptotic proteins. Mechanistically distinct, EnnA inhibits Hsp90 and destabilize PDL-1 and IDO, two major immune checkpoints mediating tumor-induced immune suppression. The provided herein show that EnnA profoundly modulates the cytokine signature of cancer cells and promotes a cytokine profile that favors an immune attack on tumor cells. This translates into highly efficacious anti-tumor activity in vivo, which, when combined with a single dose of chemotherapy, completely reduced the tumor burden in experimental animals and instilled highly efficient immune memory against the primary tumor.
METHODS OF TREATMENT USING G-CSF PROTEIN COMPLEX
This disclosure provides a method of preventing, alleviating or treating a condition (i.e., neutropenia) in a subject in need thereof, the condition characterized by compromised white blood cell production in the subject. The method includes administering to the subject a therapeutically effective amount of a protein complex on the same day as a chemotherapy regimen, wherein the protein complex is a modified human granulocyte-colony stimulating factor (hG-CSF) covalently linked to an immunoglobulin Fc region via a non-peptidyl polymer. The non-peptidyl polymer is site-specifically linked to an N-terminus of the immunoglobulin Fc region, and the modified hG-CSF comprises substitutions in at least one of Cys17 and Pro65.
METHODS OF TREATMENT USING G-CSF PROTEIN COMPLEX
This disclosure provides a method of preventing, alleviating or treating a condition (i.e., neutropenia) in a subject in need thereof, the condition characterized by compromised white blood cell production in the subject. The method includes administering to the subject a therapeutically effective amount of a protein complex on the same day as a chemotherapy regimen, wherein the protein complex is a modified human granulocyte-colony stimulating factor (hG-CSF) covalently linked to an immunoglobulin Fc region via a non-peptidyl polymer. The non-peptidyl polymer is site-specifically linked to an N-terminus of the immunoglobulin Fc region, and the modified hG-CSF comprises substitutions in at least one of Cys17 and Pro65.
ANTICANCER COMPOUND AND MEDICAL USE THEREOF
A compound of formula (I), or pharmaceutically acceptable salts, solvates, isotopic variants, or isomers thereof, and anticancer medical use are provided.
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ANTICANCER COMPOUND AND MEDICAL USE THEREOF
A compound of formula (I), or pharmaceutically acceptable salts, solvates, isotopic variants, or isomers thereof, and anticancer medical use are provided.
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Compositions for the treatment of fibrosis
The present disclosure is directed to methods of treating fibrotic conditions by administration of TRβ agonists. The disclosure provides methods wherein the abnormal deposition of extracellular matrix components, such as collagen, keratin, or elastin, is reduced, either through interaction of TRβ agonists with TGF-β-dependent inflammatory pathways, or by other mechanisms, thereby ameliorating fibrotic symptoms.
METHODS OF TREATING A CORONAVIRUS INFECTION
The present disclosure relates to a pharmaceutical composition, such as a dry powder inhalation formulation or an injectable formulation, comprising a mixture of an antiviral agent and a mast cell stabilizer. The present disclosure relates to a codrug comprising a residue of an antiviral agent covalently bonded via a labile bond to a residue of a compound of Formula (I) or Formula (II). The present disclosure further relates to a method of administering an antiviral agent and a Formula I/II compound, a pharmaceutical composition, or a codrug to treat coronavirus infection and/or associated inflammation.
METHODS OF TREATING A CORONAVIRUS INFECTION
The present disclosure relates to a pharmaceutical composition, such as a dry powder inhalation formulation or an injectable formulation, comprising a mixture of an antiviral agent and a mast cell stabilizer. The present disclosure relates to a codrug comprising a residue of an antiviral agent covalently bonded via a labile bond to a residue of a compound of Formula (I) or Formula (II). The present disclosure further relates to a method of administering an antiviral agent and a Formula I/II compound, a pharmaceutical composition, or a codrug to treat coronavirus infection and/or associated inflammation.
NOVEL COMPOUNDS AND FORMULATIONS
This disclosure presents compositions comprising phosphocreatine and nanoparticles containing triiodothyronine (T3), and to their use in treatment of cardiac conditions, particularly cardiac arrest and acute heart failure, as well as conditions generally relating to hypoxia, such as ischemia and stroke.
NOVEL COMPOUNDS AND FORMULATIONS
This disclosure presents compositions comprising phosphocreatine and nanoparticles containing triiodothyronine (T3), and to their use in treatment of cardiac conditions, particularly cardiac arrest and acute heart failure, as well as conditions generally relating to hypoxia, such as ischemia and stroke.