C12Y402/02001

Cholix toxin-derived fusion molecules for oral delivery of biologically active cargo

The present disclosure relates to pharmaceutical compositions comprising a non-naturally occurring fusion molecule and one or more pharmaceutically acceptable carriers, formulated for oral delivery to a subject, and designed to provide for improved, effective therapies for treatment of, e.g., inflammatory diseases, autoimmune diseases, cancer, metabolic disorders, and growth deficiency disorders.

Cholix toxin-derived fusion molecules for oral delivery of biologically active cargo

The present disclosure relates to pharmaceutical compositions comprising a non-naturally occurring fusion molecule and one or more pharmaceutically acceptable carriers, formulated for oral delivery to a subject, and designed to provide for improved, effective therapies for treatment of, e.g., inflammatory diseases, autoimmune diseases, cancer, metabolic disorders, and growth deficiency disorders.

Cholix toxin-derived fusion molecules for oral delivery of biologically active cargo

The present disclosure relates to pharmaceutical compositions comprising a non-naturally occurring fusion molecule and one or more pharmaceutically acceptable carriers, formulated for oral delivery to a subject, and designed to provide for improved, effective therapies for treatment of, e.g., inflammatory diseases, autoimmune diseases, cancer, metabolic disorders, and growth deficiency disorders.

Cholix toxin-derived fusion molecules for oral delivery of biologically active cargo

The present disclosure relates to pharmaceutical compositions comprising a non-naturally occurring fusion molecule and one or more pharmaceutically acceptable carriers, formulated for oral delivery to a subject, and designed to provide for improved, effective therapies for treatment of, e.g., inflammatory diseases, autoimmune diseases, cancer, metabolic disorders, and growth deficiency disorders.

Cholix toxin-derived fusion molecules for oral delivery of biologically active cargo

The present disclosure relates to pharmaceutical compositions comprising a non-naturally occurring fusion molecule and one or more pharmaceutically acceptable carriers, formulated for oral delivery to a subject, and designed to provide for improved, effective therapies for treatment of, e.g., inflammatory diseases, autoimmune diseases, cancer, metabolic disorders, and growth deficiency disorders.

CHOLIX TOXIN-DERIVED FUSION MOLECULES FOR ORAL DELIVERY OF BIOLOGICALLY ACTIVE CARGO

The present disclosure relates to pharmaceutical compositions comprising a non-naturally occurring fusion molecule and one or more pharmaceutically acceptable carriers, formulated for oral delivery to a subject, and designed to provide for improved, effective therapies for treatment of, e.g., inflammatory diseases, autoimmune diseases, cancer, metabolic disorders, and growth deficiency disorders. The present disclosure relates to a non-toxic mutant form of the Vibrio cholera Cholix gene (ntCholix), a variant of Cholix truncated at amino acid A.sup.386 (Cholix.sup.386) and the use of other various Cholix-derived polypeptide sequences to enhance intestinal delivery of biologically-active therapeutics. The systems and methods described herein provide for: the ability to deliver macromolecule doses without injections; the ability to deliver cargo such as siRNA or antisense molecules into intracellular compartments where their activity is required; and the delivery of nanoparticles and dendrimer-based carriers across biological membranes.

CHOLIX TOXIN-DERIVED FUSION MOLECULES FOR ORAL DELIVERY OF BIOLOGICALLY ACTIVE CARGO
20240131118 · 2024-04-25 ·

The present disclosure relates to pharmaceutical compositions comprising a non-naturally occurring fusion molecule and one or more pharmaceutically acceptable carriers, formulated for oral delivery to a subject, and designed to provide for improved, effective therapies for treatment of, e.g., inflammatory diseases, autoimmune diseases, cancer, metabolic disorders, and growth deficiency disorders.

LIPOPROTEIN EXPORT SIGNALS AND USES THEREOF

Described herein are polypeptides comprising a lipoprotein export signal, polypeptide precursors comprising a lipoprotein export signal, nucleic acids encoding said polypeptides or polypeptide precursors, recombinant expression vectors comprising nucleic acids encoding said lipoprotein export signal and/or polypeptides or polypeptide precursors, and 5 recombinant host cells comprising these vectors. The application further provides uses of these polypeptides, polypeptide precursors, nucleic acids, recombinant expression vectors and recombinant host cells.

CHOLIX TOXIN-DERIVED FUSION MOLECULES FOR ORAL DELIVERY OF BIOLOGICALLY ACTIVE CARGO
20240207372 · 2024-06-27 ·

The present disclosure relates to pharmaceutical compositions comprising a non-naturally occurring fusion molecule and one or more pharmaceutically acceptable carriers, formulated for oral delivery to a subject, and designed to provide for improved, effective therapies for treatment of, e.g., inflammatory diseases, autoimmune diseases, cancer, metabolic disorders, and growth deficiency disorders. The present disclosure relates to a non-toxic mutant form of the Vibrio cholera Cholix gene (ntCholix), a variant of Cholix truncated at amino acid A.sup.386 (Cholix.sup.386) and the use of other various Cholix-derived polypeptide sequences to enhance intestinal delivery of biologically-active therapeutics. The systems and methods described herein provide for: the ability to deliver macromolecule doses without injections; the ability to deliver cargo such as siRNA or antisense molecules into intracellular compartments where their activity is required; and the delivery of nanoparticles and dendrimer-based carriers across biological membranes.

Methods of treating and preventing social communication disorder in patients by intranasal administration of insulin

Methods for delivering an effective amount of insulin to the central nervous system to treat Social Communication Disorder while minimizing systemic exposure to the administered insulin. The present invention provides these advantages by administering at least an effective amount of insulin and/or pharmaceutical composition(s) thereof, to the upper third of the nasal cavity, thereby bypassing the blood-brain barrier and delivering an effective amount of insulin and/or pharmaceutical compound(s) thereof directly to the CNS. Further methods comprise administering an at least an effective amount of therapeutic agents to the amniotic fluid surrounding a fetus with a treatable neurologic agent or a preventable neurologic condition. For example, administering the at least effective amount of insulin to the amniotic fluid of a fetus with a mother diagnosed with gestational diabetes may prevent the fetus from developing Social Communication Disorder or autism.