Patent classifications
A61K38/2228
METHOD OF TREATING TYPE I DIABETES USING AN AAV VECTOR ENCODING URACORTIN 2
In alternative embodiments, the invention provides methods for treating, ameliorating or protecting (preventing) an individual or a patient against a disease, an infection or a condition responsive to an increased paracrine polypeptide level in vivo comprising: providing a paracrine polypeptide-encoding nucleic acid or gene operatively linked to a transcriptional regulatory sequence; or an expression vehicle, a vector, a recombinant virus, or equivalent, having contained therein a paracrine-encoding nucleic acid or gene, and the expression vehicle, vector, recombinant virus, or equivalent can express the paracrine-encoding nucleic acid or gene in a cell or in vivo; and administering or delivering the paracrine polypeptide-encoding nucleic acid or gene operatively linked to a transcriptional regulatory sequence, or the expression vehicle, vector, recombinant virus, or equivalent, to an individual or a patient in need thereof, thereby treating, ameliorating or protecting (preventing) the individual or patient against the disease, infection or condition responsive to an increased paracrine polypeptide level.
SYNTHETIC BACTERIA AND METHODS OF USE
Disclosed are synthetic bacteria having de novo metabolic pathways for biosynthesis of select compounds. Further disclosed are methods of use to prevent and treat skin disorders and diseases.
Methods for storing and warming purified corticotropin compositions
A method of storing and warming a sterile corticotropin composition by storing the sterile corticotropin composition in a multiple-dose vial comprising 80 USP units/mL of the sterile corticotropin composition, wherein the vial comprises a rubber stopper coated with cross-linked silicones, at a temperature of 2? to 8? C.; and warming the vial to a temperature of 18? to 26? C., wherein the corticotropin comprises amino acids 1-39 of SEQ ID NO: 1, or wherein the sterile corticotropin composition has not more than 0.05 USP Vasopressin Units/USP Corticotropin Units.
METHODS FOR DETERMINING WHETHER A PATIENT IS LIKELY TO BENEFIT FROM TREATMENT WITH A THERAPEUTIC FORMULATION
The present invention relates to a method for determining whether a patient is likely to benefit from treatment with a therapeutic formulation, the method comprising the steps of: (a) determining the concentration of corticotropin releasing hormone (CRH) in a sample from a patient prior to administration of the therapeutic formulation; (b) determining the concentration of CRH in a sample from a patient subsequent to administration of the therapeutic formulation; and (c) comparing the concentration of CRH pre-administration with the concentration of CRH subsequent to administration; wherein an increase in patient CRH concentration subsequent to administration indicates that the patient is likely to benefit from treatment with the therapeutic formulation and wherein no increase or a decrease in patient CRH concentration subsequent to administration indicates that the patient is unlikely to benefit from treatment with the therapeutic formulation. The patient may have multiple sclerosis or systemic sclerosis. The therapeutic formulation may be derived from an ungulate such as a goat and may contain CRH, CRH-binding protein, pro-opiomelanocortin (POMC) and alpha-2 macroglobulin. Also provided are methods of treating a patient with a disorder such as multiple sclerosis or systemic sclerosis.
MEDICAMENT FOR PREVENTING OR TREATING HEART FAILURE
A medicament for preventing or treating heart failure containing an antagonist of the corticotropin releasing hormone receptor 2 as an active ingredient.
INTRANASAL ADMINISTRATION
Intranasal administration of proteins, such as insulin and insulin analogues, in particular immunogenic proteins to the upper posterior region of a nasal cavity of a subject, and in particular the olfactory bulb region.
METHODS AND COMPOSITIONS FOR THE MODULATION OF BETA-ENDORPHIN LEVELS
Methods and compositions for treatment of pain, mood, or for the treatment of opiate withdrawal symptoms with the modulation of systemic beta-endorphin levels by the topical administration of cAMP elevating agents and/or dermal exposure to ultraviolet (UV) irradiation.
Method of treating type I diabetes using an AAV vector encoding uracortin 2
In alternative embodiments, the invention provides methods for treating, ameliorating or protecting (preventing) an individual or a patient against a disease, an infection or a condition responsive to an increased paracrine polypeptide level in vivo comprising: providing a paracrine polypeptide-encoding nucleic acid or gene operatively linked to a transcriptional regulatory sequence; or an expression vehicle, a vector, a recombinant virus, or equivalent, having contained therein a paracrine-encoding nucleic acid or gene, and the expression vehicle, vector, recombinant virus, or equivalent can express the paracrine-encoding nucleic acid or gene in a cell or in vivo; and administering or delivering the paracrine polypeptide -encoding nucleic acid or gene operatively linked to a transcriptional regulatory sequence, or the expression vehicle, vector, recombinant virus, or equivalent, to an individual or a patient in need thereof, thereby treating, ameliorating or protecting (preventing) the individual or patient against the disease, infection or condition responsive to an increased paracrine polypeptide level.
Intranasal administration
Intranasal administration of proteins, such as insulin and insulin analogues, in particular immunogenic proteins to the upper posterior region of a nasal cavity of a subject, and in particular the olfactory bulb region.
UROCORTIN 2 ANALOGS AND USES THEREOF
Disclosed are polypeptides that are analogs of urocortin 2 that have pharmacological activity similar to urocortin 2 but have improved water solubility compared to urocortin 2, and pharmaceutical compositions of the polypeptides of the present invention. Also disclosed are polynucleotides encoding the polypeptides, and methods of treating pathophysiological states employing pharmaceutical compositions of the polypeptides and polynucleotides of the present invention. In addition, disclosed are vectors and host cells that include a nucleic acid encoding a polypeptide of the present invention, and kits that include pharmaceutical compositions of the present invention.