Transdermal drug delivery patches and methods of their production are described. The patches can be made such that the accommodate highly plasticizing drugs such as selegiline and/or the use of protonated forms of various drugs.
Adhesive Mixture For Transdermal Delivery Of Highly Plasticizing Drugs
Sharad K. Govil - Essex VT, US Ludwig J. Weimann - Burlington VT, US
Assignee:
Mylan Technologies, Inc. - St. Albans VT
International Classification:
A61F 13/00
US Classification:
424449, 424487
Abstract:
Transdermal drug delivery patches and methods of their production are described. The patches can be made such that the accommodate highly plasticizing drugs such as selegiline and/or the use of protonated forms of various drugs.
Fentanyl Suspension-Based Silicone Adhesive Formulations And Devices For Transdermal Delivery Of Fentanyl
Sharad K. Govil - Essex VT, US Kuljit Singh Bhatia - Scottsdale AZ, US
Assignee:
Mylan Pharmaceuticals, Inc. - Morgantown WV
International Classification:
A61F 13/02 A61L 15/16 A61F 13/00
US Classification:
424448, 424449
Abstract:
Silicone adhesive formulations are provided, in which fentanyl particles are suspended in one or more solvated silicone adhesives. The formulations can be used for manufacturing improved, matrix-type transdermal devices for administering fentanyl.
Adhesive Mixture For Transdermal Delivery Of Highly Plasticizing Drugs
Sharad K. Govil - Essex VT, US Ludwig J. Weimann - Burlington VT, US
Assignee:
Mylan Technologies, Inc. - St. Albans VT
International Classification:
A61K 9/14
US Classification:
424487, 156327
Abstract:
Transdermal drug delivery patches and methods of their production are described. The patches can be made such that the accommodate highly plasticizing drugs such as selegiline and/or the use of protonated forms of various drugs.
Fentanyl Suspension-Based Silicone Adhesive Formulations And Devices For Transdermal Delivery Of Fentanyl
Sharad K. Govil - Essex VT, US Kuljit Singh Bhatia - Scottsdale AZ, US
Assignee:
Mylan Pharmaceuticals, Inc. - Morgantown WV
International Classification:
A61F 13/02 A61F 13/00 A61L 15/16 A61K 9/70
US Classification:
424448, 424449
Abstract:
Silicone adhesive formulations are provided, in which fentanyl particles are suspended one or more a solvated silicone adhesives. The formulations can be used for manufacturing improved, matrix-type transdermal devices for administering fentanyl.
Fentanyl Suspension-Based Silicone Adhesive Formulations And Devices For Transdermal Delivery Of Fentanyl
Kenneth Miller - St. Albans VT, US Sharad Govil - Essex VT, US Kuljit Bhatia - Scottsdale AZ, US
International Classification:
A61K031/445 A61K009/70
US Classification:
424/449000, 514/317000
Abstract:
Silicone adhesive formulations are provided, in which fentanyl particles are suspended one or more a solvated silicone adhesives. The formulations can be used for manufacturing improved, matrix-type transdermal devices for administering fentanyl.
Fentanyl Suspension-Based Silicone Adhesive Formulations And Devices For Transdermal Delivery Of Fentanyl
Kenneth Miller - St. Albans VT, US Sharad Govil - Essex VT, US Kuljit Bhatia - Scottsdale AZ, US
Assignee:
Mylan Pharmaceuticals Inc. - Morgantown WV
International Classification:
A61K 31/445 A61K 9/70
US Classification:
424449000, 514317000
Abstract:
Silicone adhesive formulations are provided, in which fentanyl particles are suspended one or more a solvated silicone adhesives. The formulations can be used for manufacturing improved, matrix-type transdermal devices for administering fentanyl.
Fentanyl Suspension-Based Silicone Adhesive Formulations And Devices For Transdermal Delivery Of Fentanyl
Kenneth Miller - St. Albans VT, US Sharad Govil - Essex VT, US Kuljit Bhatia - Scottsdale AZ, US
Assignee:
Mylan Pharmaceuticals, Inc. - Morgantown WV
International Classification:
A61K 31/445 A61K 9/70
US Classification:
424449000, 514317000
Abstract:
Silicone adhesive formulations are provided, in which fentanyl particles are suspended one or more a solvated silicone adhesives. The formulations can be used for manufacturing improved, matrix-type transdermal devices for administering fentanyl.
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