Systems and methods for delivery of a therapeutic agent
View Patent ↗Methods and apparatus are provided for applying an fragment of a neurotoxin such as the active light chain (LC) of the botulinum toxin (BoNT), such as one of the serotype A, B, C, D, E, F or G botulinum toxins, via permeabilization of targeted cell membranes to enable translocation of the botulinum neurotoxin light chain (BoNT-LC) molecule across the targeted cell membrane to the cell cytosol where a therapeutic response is produced in a mammalian system. The methods and apparatus include use of catheter based delivery systems, non-invasive delivery systems, and transdermal delivery systems.
1. A method of controlling targeted muscles along a bronchial airway of a patient, comprising:
positioning a nerve modification device at a treatment site in a bronchial airway of the patient, wherein the nerve modification device comprises a catheter device having a main catheter body and one or more electrode elements facing laterally relative to the main catheter body;
apposing the nerve modification device against a wall of the bronchial airway by moving the one or more electrode elements laterally within the bronchial airway such that the one or more electrode elements contact a first portion of a circumference of the airway wall; and
altering nerve function in the bronchial airway by delivering energy from the one or more electrode elements to produce an electric field concentrated in a target region in the wall of the bronchial airway in a first lateral direction from the catheter body, wherein the energy is selectively focused in said target region to alter nerve cells therein.
2. The method of claim 1 , wherein the altering nerve function includes blocking neurotransmission in select nerve cells in the target region.
3. The method of claim 2 , wherein the efficacy of altering the nerve function depends on cell temperature.
4. The method of claim 2 , wherein the efficacy of altering the nerve function depends on at least one of cell size, cell shape, cell orientation with respect to the applied electric field, distance between cells (cell-cell separation), cell type, tissue heterogeneity, and properties of the cellular membrane of the select nerve cells.
5. The method of claim 1 , wherein the delivering energy includes delivering a pulse of radio frequency energy.
6. The method of claim 1 , wherein the delivering energy includes delivering one of x-ray energy, radiofrequency energy, DC current, AC current, microwave energy, and ultrasound energy.
7. The method of claim 1 , wherein positioning the nerve modification device at the treatment site includes advancing the nerve modification device through a lumen in an endoscope.
8. The method of claim 1 , wherein apposing the one or more electrodes further comprises expanding an expandable member coupled to the main catheter body such that the expandable member engages a second portion of the circumference of the airway wall.
9. The method of claim 8 , wherein the expandable member is expanded laterally in a second lateral direction from the catheter body opposite the first lateral direction.