A61K38/27

Anti-retroviral treatment using growth hormone

The subject invention pertains to methods of treating HIV-1 infected subject comprising the administration of growth hormone to a subject infected by HIV-1. The subject may be undergoing co-administration of anti-retroviral therapies (ARTs), may be untreated with anti-retroviral drugs (ARDs) or may be in a period of time where no ART is being administered. Growth hormone may be administered at a fixed dosage for a set period of time or may be administered at a first dosage for a first period of time that may then be increased or decreased to a second dosage for a second period of time.

Anti-retroviral treatment using growth hormone

The subject invention pertains to methods of treating HIV-1 infected subject comprising the administration of growth hormone to a subject infected by HIV-1. The subject may be undergoing co-administration of anti-retroviral therapies (ARTs), may be untreated with anti-retroviral drugs (ARDs) or may be in a period of time where no ART is being administered. Growth hormone may be administered at a fixed dosage for a set period of time or may be administered at a first dosage for a first period of time that may then be increased or decreased to a second dosage for a second period of time.

MIC-1 COMPOUNDS AND USE THEREOF

The invention relates to MIC-1 compounds. More specifically it relates to compounds comprising a MIC-1 polypeptide and an N-terminal amino acid extension, wherein said extension consists of 3 to 36 amino acid residues and where the compound has a calculated pI lower than 6.5. The compounds of the invention have MIC-1 activity. The invention also relates to pharmaceutical compositions comprising such compounds and pharmaceutically acceptable excipients, as well as the medical use of the compounds.

MIC-1 COMPOUNDS AND USE THEREOF

The invention relates to MIC-1 compounds. More specifically it relates to compounds comprising a MIC-1 polypeptide and an N-terminal amino acid extension, wherein said extension consists of 3 to 36 amino acid residues and where the compound has a calculated pI lower than 6.5. The compounds of the invention have MIC-1 activity. The invention also relates to pharmaceutical compositions comprising such compounds and pharmaceutically acceptable excipients, as well as the medical use of the compounds.

Magnetic separation device and method of use
11541391 · 2023-01-03 · ·

The current invention relates to the method and apparatus to magnetically separate biological entities with magnetic labels from a fluid sample. The claimed magnetic separation device removes biological entities with magnetic labels from its fluidic solution by using a soft-magnetic center pole with two soft-magnetic side poles. The claimed device further includes processes to dissociate entities conglomerate after magnetic separation.

Magnetic separation device and method of use
11541391 · 2023-01-03 · ·

The current invention relates to the method and apparatus to magnetically separate biological entities with magnetic labels from a fluid sample. The claimed magnetic separation device removes biological entities with magnetic labels from its fluidic solution by using a soft-magnetic center pole with two soft-magnetic side poles. The claimed device further includes processes to dissociate entities conglomerate after magnetic separation.

Coacervate composition containing protein drug and wound healing agent comprising same

The present disclosure provides a coacervate composition containing a protein drug, gelatin A, sodium alginate and an acid and a wound-healing agent including the same. The coacervate composition according to the present disclosure can be useful as a wound-healing material delivery system for effectively delivering a protein drug, particularly epidermal growth factor, to a wound site in the wound-healing field.

Pharmaceutically active agent complexes, polymer complexes, and compositions and methods involving the same

The present disclosure generally provides complexes including a pharmaceutically active agent and a functionalized polymer, wherein the functionalized polymer includes repeat units, the repeat units including ionizable repeat units having at least one ionizable side group and/or ionizable end group, a plurality of the at least one ionizable groups forming non-covalent bonds with the pharmaceutically active agent. Polymers which may be used to form such complexes as well as methods of making and using the complexes and related compositions are also provided.

Pharmaceutically active agent complexes, polymer complexes, and compositions and methods involving the same

The present disclosure generally provides complexes including a pharmaceutically active agent and a functionalized polymer, wherein the functionalized polymer includes repeat units, the repeat units including ionizable repeat units having at least one ionizable side group and/or ionizable end group, a plurality of the at least one ionizable groups forming non-covalent bonds with the pharmaceutically active agent. Polymers which may be used to form such complexes as well as methods of making and using the complexes and related compositions are also provided.

System and method for characterizing protein dimerization

Systems and methods to characterize dimerization interfaces at the subdomain level of a protein are provided. An exemplary method includes digesting a protein dimer sample into subdomains, labeling the digested protein sample, isolating labeled dimeric and monomeric subdomain fragments, and peptide mapping the labeled sample to determine where the dimer fragments are labeled and where the dimer fragments are not labeled. Regions that show decreased labeling extents in the dimer fraction than that in the monomer fraction are likely involved or in close proximity to the dimerization interface.