Patent classifications
A61N1/30
Wearable customized ear canal apparatus
The present invention is directed to a wearable system wherein elements of the system, including various sensors adapted to detect biometric and other data and/or to deliver drugs, are positioned proximal to, on the ear or in the ear canal of a person. In embodiments of the invention, elements of the system are positioned on the ear or in the ear canal for extended periods of time. For example, an element of the system may be positioned on the tympanic membrane of a user and left there overnight, for multiple days, months, or years. Because of the position and longevity of the system elements in the ear canal, the present invention has many advantages over prior wearable biometric and drug delivery devices.
METHODS FOR CANCER TREATMENT
Residual, refractory or relapsed cancer is treated by immunostimulation in the presence of allogeneic immune effector cells, optimally in combination with radiation therapy. The methods of the disclosure induce a systemic allogeneic anti-tumor immune response that results in tumor regression in untreated sites of disease, i.e. non-injected, non-irradiated, etc.
METHODS FOR CANCER TREATMENT
Residual, refractory or relapsed cancer is treated by immunostimulation in the presence of allogeneic immune effector cells, optimally in combination with radiation therapy. The methods of the disclosure induce a systemic allogeneic anti-tumor immune response that results in tumor regression in untreated sites of disease, i.e. non-injected, non-irradiated, etc.
Frigostable composition for iontophoretic transdermal delivery of a triptan compound
The present invention relates to frigostable compositions suitable for iontophoretic transdermal delivery of a triptan compound that includes: a salt of a triptan compound, preferably sumatriptan succinate, a polyamine, one or more dicarboxylic acids, 0.5 to 10.0 wt.-% (based on the total weight of the composition) of one or more monocarboxylic acids, and water or an aqueous solvent mixture. The invention further relates to the use of the composition as an integral component of an iontophoretic patch, preferably as an anodic reservoir of the patch.
Programmable therapeutic agent delivery from eye mounted device
The present disclosure relates to relates to systems and methods for on-demand delivery of a therapeutic agent from an eye mounted device. Particularly, aspects of the present invention are directed to a method of delivering a therapeutic agent, the method including receiving, at a controller of a therapeutic agent release and delivery device, a first command signal for delivery of a therapeutic agent based on a dosing time window. Upon receipt of the first command signal, the controller determines whether one or more compliance conditions are satisfied. When the one or more conditions are satisfied, the controller initiate a release and delivery protocol that commands a signal generator to generate and send a second command signal causing a capacitor or one or more circuits to deliver an actuation signal causing one or more therapeutic agent delivery mechanisms to open and release the therapeutic agent from one or more reservoirs.
A SYSTEM AND METHOD FOR RELEASING A SPECIES
System (100) comprising a device (101) comprising a body (102), an ion conductive member (120), a first electrode (131), and a second electrode (132). The system (100) further comprises a source solution (141), a target solution (142), a first species (151), and a second species (152). A first end (121) of the ion conductive member (120) is arranged in contact with 5 the source solution (141). A second end (122) of the ion conductive member (120) is arranged in contact with the target solution (142). The first electrode (131) is arranged in contact with the source solution (141), the second electrode (132) is arranged in contact with the target solution (142), the first species (151) is in the source solution (141), and the second species (152) is in the target solution (142). Under the influence of an electrical field, the first species (151) is 10 transported through the ion conductive member (120) from the source solution (141) to the target solution (142) and interacts with the second species (152), such that at least one part (153) of the second species (152) is released.
A SYSTEM AND METHOD FOR RELEASING A SPECIES
System (100) comprising a device (101) comprising a body (102), an ion conductive member (120), a first electrode (131), and a second electrode (132). The system (100) further comprises a source solution (141), a target solution (142), a first species (151), and a second species (152). A first end (121) of the ion conductive member (120) is arranged in contact with 5 the source solution (141). A second end (122) of the ion conductive member (120) is arranged in contact with the target solution (142). The first electrode (131) is arranged in contact with the source solution (141), the second electrode (132) is arranged in contact with the target solution (142), the first species (151) is in the source solution (141), and the second species (152) is in the target solution (142). Under the influence of an electrical field, the first species (151) is 10 transported through the ion conductive member (120) from the source solution (141) to the target solution (142) and interacts with the second species (152), such that at least one part (153) of the second species (152) is released.
Sheet mask comprising a battery part
The sheet mask includes multiple battery parts arranged such that electric currents flow along mimic muscles or flows of lymph. This allows an active ingredient to penetrate into in-body tissues more effectively and also allows the mimic muscles and the lymphatic vessels to be electrically stimulated. Forming the battery parts by using materials with low environmental load allows easy disposal of the sheet mask in everyday life.
TISSUE-PENETRATING ELECTROCHEMICAL SENSOR FEATURING A CO-ELECTRODEPOSITED THIN FILM COMPRISED OF POLYMER AND BIO-RECOGNITION ELEMENT
A method and device to impart the ability to selectively quantify chemical/biochemical analytes occupying physiological fluids via an automated process that allow the precise and spatially-defined simultaneous deposition of a thin-film of polymer containing an immobilized biorecognition element dispersed therein. A tissue penetrating electrochemical sensor comprises at least one working electrode and at least one of a reference electrode and a counter electrode.
TISSUE-PENETRATING ELECTROCHEMICAL SENSOR FEATURING A CO-ELECTRODEPOSITED THIN FILM COMPRISED OF POLYMER AND BIO-RECOGNITION ELEMENT
A method and device to impart the ability to selectively quantify chemical/biochemical analytes occupying physiological fluids via an automated process that allow the precise and spatially-defined simultaneous deposition of a thin-film of polymer containing an immobilized biorecognition element dispersed therein. A tissue penetrating electrochemical sensor comprises at least one working electrode and at least one of a reference electrode and a counter electrode.