Abstract: Cosmetic and pharmaceutical formulations comprising specific amino acid combinations are described herein. Such formulations strengthen and enhance skin epithelial cell barrier function, thereby reducing moisture loss from the skin and restoring skin's structural integrity, epithelial differentiation, intercellular adhesion, and intracellular signaling and/or promoting maintenance of these features. Formulations described here comprise a therapeutically effective amount of free amino acids or a peptide combination of amino acids and either a therapeutically effective amount of a plant extract for skin barrier repair or a therapeutically effective amount of a retinoid for improving skin moisture. Also provided are injectable formulations described here for treating a subject suffering from osteoarthritis or symptoms thereof.
Abstract: Cosmetic and pharmaceutical formulations comprising specific amino acid combinations are described herein. Such formulations strengthen and enhance skin epithelial cell barrier function, thereby reducing moisture loss from the skin and restoring skin's structural integrity, epithelial differentiation, intercellular adhesion, and intracellular signaling and/or promoting maintenance of these features. Additional formulations described here comprise a therapeutically effective amount of free amino acids and a therapeutically effective amount of a plant extract for skin barrier repair. Methods for administering these formulations for cosmetic and/or therapeutic purposes and uses thereof for same are also described herein, including the use thereof in the preparation of medicaments.
Abstract: Provided herein are amino acid compositions useful for increasing the translocation of the cystic fibrosis transmembrane conductance (CFTR) protein from the cytoplasm to the plasma membrane, particularly in epithelial cells. Methods for increasing the concentration of CFTR in the plasma membrane, increasing chloride ion transport, and increasing water transport are also provided. These compositions and methods are useful in treating cystic fibrosis in subjects bearing one or more mutations in the CFTR protein. Use of these compositions for the treatment of cystic fibrosis and in the preparation of a medicament for the treatment of cystic fibrosis are also encompassed herein.
Type:
Grant
Filed:
October 30, 2019
Date of Patent:
February 11, 2025
Assignees:
AmiLyfe, LLC, University of Florida Research Foundation, Incorporated
Abstract: The subject invention provides therapeutic compositions, and uses thereof for the treatment or amelioration of symptoms of a disease selected from the group consisting of: Ebola virus infection, HIV infection, ataxia, environmental enteropathy, cancer, hangover, inflammatory disease, and porcine epidemic diarrhea. In preferred embodiments, the composition includes a combination of one or more amino acids selected from the group comprising lysine, aspartic acid, glycine, isoleucine, threonine, tyrosine, valine, tryptophan, asparagine and/or serine.
Type:
Grant
Filed:
June 10, 2022
Date of Patent:
December 10, 2024
Assignees:
AmiLyfe, LLC, University of Florida Research Foundation, Incorporated
Inventors:
Sadasivan Vidyasagar, Stephen J. Gatto, Daniel B. Dennison
Abstract: The subject invention provides compositions and methods for inhibiting the growth and/or proliferation of cancer cells. The subject invention also provides methods for treating cancer in a subject in need of such treatment by administering a composition described herein. The subject invention can be used to inhibit cancer cell growth by exposing the cells to a composition. The subject invention further provides cancer treatments that may be used in combination with surgery, chemotherapy, and/or radiation therapy.
Type:
Grant
Filed:
October 2, 2018
Date of Patent:
October 8, 2024
Assignees:
AmiLyfe, LLC, University of Florida Research Foundation, Incorporated
Inventors:
Sadasivan Vidyasagar, Reshu Gupta, Stephen Gatto