A61K36/23

SYNERGISTIC NUTRITIONAL COMPOSITIONS FOR TREATING CEREBROVASCULAR DISEASES

The present invention disclosed herein relates to synergistic compositions for cerebrovascular diseases. In particular, the invention relates to synergistic, efficient, composition for treating cerebral ischemia or stroke comprising specific combination of standardized celery seed extract (CSE) enriched with Dl N-Butylphthalide (NBP) and SIRT1 activators, wherein Dl-3-N-Butylphthalide (NBP) and SIRT1 activator are present in a weight ratio of 1:0.1 to 1:5 along with pharmaceutically acceptable excipients.

SYNERGISTIC NUTRITIONAL COMPOSITIONS FOR TREATING CEREBROVASCULAR DISEASES

The present invention disclosed herein relates to synergistic compositions for cerebrovascular diseases. In particular, the invention relates to synergistic, efficient, composition for treating cerebral ischemia or stroke comprising specific combination of standardized celery seed extract (CSE) enriched with Dl N-Butylphthalide (NBP) and SIRT1 activators, wherein Dl-3-N-Butylphthalide (NBP) and SIRT1 activator are present in a weight ratio of 1:0.1 to 1:5 along with pharmaceutically acceptable excipients.

SYNERGISTIC NUTRITIONAL COMPOSITIONS FOR TREATING CEREBROVASCULAR DISEASES

The present invention disclosed herein relates to synergistic compositions for cerebrovascular diseases. In particular, the invention relates to synergistic, efficient, composition for treating cerebral ischemia or stroke comprising specific combination of standardized celery seed extract (CSE) enriched with Dl N-Butylphthalide (NBP) and SIRT1 activators, wherein Dl-3-N-Butylphthalide (NBP) and SIRT1 activator are present in a weight ratio of 1:0.1 to 1:5 along with pharmaceutically acceptable excipients.

Extracts of microalgae and plants for regulating sebum production

Suggested is a method for making and using an extract of halophytes or psammophilous plants comprising the steps of contacting the plant materials with a solvent, re moving the dissolved extract from the residue, recovering the extract and topically or orally administering the extract to a patient in need of dysfunctions of skin and hair.

Extracts of microalgae and plants for regulating sebum production

Suggested is a method for making and using an extract of halophytes or psammophilous plants comprising the steps of contacting the plant materials with a solvent, re moving the dissolved extract from the residue, recovering the extract and topically or orally administering the extract to a patient in need of dysfunctions of skin and hair.

FRUCTUS FORSYTHIAE AND RADIX ASTRAGALI COMPOUND PREPARATION, AND PREPARATION METHOD THEREFOR AND USE THEREOF

A Fructus Forsythiae and Radix Astragali compound preparation, and a preparation method therefor and a use thereof is provided. Traditional Chinese medicine formulation components consist of the following raw materials or raw material extracts in parts by mass: 9-11 parts of Flos Lonicerae, 9-11 parts of Fructus Forsythiae, 9-11 parts of Radix Scutellariae, 9-11 parts of Herba Artemisiae Annuae, 9-11 parts of Radix Astragali, 9-11 parts of stir-fried Rhizoma Atractylodis Macrocephalae, 9-11 parts of Herba Pogostemonis, 5-7 parts of Radix Saposhnikoviae, 9-11 parts of Radix Ophiopogonis, and 5-7 parts of Radix Glycyrrhizae. The components can be made into an oral liquid, a granule, a dissolved medicine, or a tablet. Further disclosed is a use of the Fructus Forsythiae and Radix Astragali compound preparation in preparation of medicines for preventing and/or treating a viral influenza disease.

FRUCTUS FORSYTHIAE AND RADIX ASTRAGALI COMPOUND PREPARATION, AND PREPARATION METHOD THEREFOR AND USE THEREOF

A Fructus Forsythiae and Radix Astragali compound preparation, and a preparation method therefor and a use thereof is provided. Traditional Chinese medicine formulation components consist of the following raw materials or raw material extracts in parts by mass: 9-11 parts of Flos Lonicerae, 9-11 parts of Fructus Forsythiae, 9-11 parts of Radix Scutellariae, 9-11 parts of Herba Artemisiae Annuae, 9-11 parts of Radix Astragali, 9-11 parts of stir-fried Rhizoma Atractylodis Macrocephalae, 9-11 parts of Herba Pogostemonis, 5-7 parts of Radix Saposhnikoviae, 9-11 parts of Radix Ophiopogonis, and 5-7 parts of Radix Glycyrrhizae. The components can be made into an oral liquid, a granule, a dissolved medicine, or a tablet. Further disclosed is a use of the Fructus Forsythiae and Radix Astragali compound preparation in preparation of medicines for preventing and/or treating a viral influenza disease.

Biochemical Scaffolds for Modulating Cell Function
20230042908 · 2023-02-09 ·

A biochemical scaffold for regulating mammalian cell function. The biochemical scaffold includes a base liquid medium, a bioenergetic platform and a vibrational platform. The bioenergetic platform includes at least one Krebs cycle modulator and the vibrational platform includes at least one energy signature component, e.g., an herb. The biochemical scaffold is subjected to sequential harmonic oscillation at defined frequency ranges for a defined, predetermined period of time, wherein the energy signature of the energy signature component is imparted to, captured, replicated, and retained by liquid medium, and, when the biochemical scaffold is delivered to and, thus, in communication with biological tissue, the biochemical scaffold induces specific biochemical activities via the resonant transfer of the retained energy signature to the biological tissue and, hence, endogenous cells thereof, the biochemical activities including increased bioavailability of ATP.

Biochemical Scaffolds for Modulating Cell Function
20230042908 · 2023-02-09 ·

A biochemical scaffold for regulating mammalian cell function. The biochemical scaffold includes a base liquid medium, a bioenergetic platform and a vibrational platform. The bioenergetic platform includes at least one Krebs cycle modulator and the vibrational platform includes at least one energy signature component, e.g., an herb. The biochemical scaffold is subjected to sequential harmonic oscillation at defined frequency ranges for a defined, predetermined period of time, wherein the energy signature of the energy signature component is imparted to, captured, replicated, and retained by liquid medium, and, when the biochemical scaffold is delivered to and, thus, in communication with biological tissue, the biochemical scaffold induces specific biochemical activities via the resonant transfer of the retained energy signature to the biological tissue and, hence, endogenous cells thereof, the biochemical activities including increased bioavailability of ATP.

COMPOSITIONS AND METHODS FOR ENHANCING OR TREATING FEMALE SEXUAL RESPONSE
20230041289 · 2023-02-09 ·

The present disclosure relates to compositions, articles of manufacture, methods of preparation thereof, methods of use thereof, etc., for enhancement of sexual pleasure, conditions, disorders, and diseases related to reproductive physiology and systems, especially of mammalian females.