NEUROMODULATION FOR METABOLIC CONDITIONS OR SYNDROMES
According to some embodiments, a method of treating a subject having diabetes or symptoms associated with diabetes is provided. The method includes delivering a neuromodulation catheter within a vessel (e.g., hepatic artery) having surrounding nerves that innervate the liver (e.g., sympathetic nerves of the hepatic plexus). The method may also include modulating (e.g., disrupting, ablating, stimulating) the nerves by mechanical compression, energy delivery, or fluid delivery.
1 - 2 . (canceled)
3 . A method of treating a subject having hypertension, the method comprising:
inserting a catheter into vasculature of a subject, wherein the catheter comprises a distal portion comprising at least one therapeutic element;
intravascularly positioning the therapeutic element of the catheter within a portion of a hepatic artery of the vasculature; and
delivering energy or a chemical agent via the at least one therapeutic element to a wall of the hepatic artery sufficient to denervate one or more nerves innervating a liver to treat one or more symptoms associated with hypertension,
wherein the distal portion is configured to contact the wall of the hepatic artery while the energy or chemical agent is being delivered.
4 . The method of claim 3 , wherein the one or more nerves comprise sympathetic nerves of a hepatic plexus.
5 . The method of claim 3 , wherein a contact pressure of 0.1 g/mm 2 to 100 g/mm 2 is exerted on the wall by the distal portion of the catheter.
6 . The method of claim 3 , wherein delivering energy or the chemical agent to the wall of the hepatic artery comprises delivering energy to the wall of the hepatic artery, and wherein the energy comprises at least one of radiofrequency energy, high-intensity focused ultrasound energy, low-intensity focused ultrasound energy, electroporation energy, ionizing energy, cryogenic energy, or microwave energy.
7 . The method of claim 3 , wherein delivering energy or the chemical agent to the wall of the hepatic artery comprises delivering the chemical agent to the wall of the hepatic artery, and wherein the chemical agent comprises at least one of a muscarinic receptor agonist, an anticholinesterase agent, a nicotinic receptor agonist, a nicotine receptor antagonist, a neurotoxin, an alcohol, guanethidine, or zinc sulfate.
8 . The method of claim 3 , further comprising at least partially occluding flow within the hepatic artery.
9 . The method of claim 3 , wherein delivering energy or the chemical agent to the wall of the hepatic artery comprises delivering energy or the chemical agent preferentially to sympathetic nerves surrounding the hepatic artery.
10 . The method of claim 9 , wherein delivering energy or the chemical agent preferentially to sympathetic nerves surrounding the hepatic artery comprises delivering energy or the chemical agent in a proximal portion of the hepatic artery.
11 . The method of claim 10 , wherein the proximal portion of the hepatic artery comprises a common hepatic artery.
12 . The method of claim 3 , wherein the hepatic artery comprises at least one of a common hepatic artery, a proper hepatic artery, a right hepatic artery, or a left hepatic artery.
13 . The method of claim 3 , wherein the hepatic artery comprises a common hepatic artery.
14 . A method of treating a subject having hypertension, the method comprising:
intravascularly delivering a distal portion of a catheter to a vicinity of a liver of a subject;
disrupting neural communication along a sympathetic nerve fiber by causing at least one of energy or a chemical agent to be delivered from at least one therapeutic element positioned on the distal portion of the catheter to treat hypertension; and
removing the catheter from the subject.
15 . The method of claim 14 , wherein the catheter is delivered intravascularly through a femoral or radial artery to a location within a common hepatic artery.
16 . The method of claim 14 , wherein intravascularly delivering a distal portion of the catheter to the vicinity of the liver of the subject comprises positioning the at least one therapeutic element of the catheter within a portion of a common hepatic artery.
17 . The method of claim 14 , wherein disrupting neural communication along the sympathetic nerve fiber comprises permanent termination of nerve conduction along the sympathetic nerve fiber.
18 . The method of claim 14 , wherein disrupting neural communication along the sympathetic nerve fiber comprises temporarily slowing or terminating nerve conduction along the sympathetic nerve fiber.
19 . The method of claim 14 , wherein disrupting neural communication along the sympathetic nerve fiber comprises disrupting neural communication along a plurality of sympathetic nerve fibers of the hepatic plexus simultaneously.
20 . The method of claim 14 , wherein disrupting neural communication along the sympathetic nerve fiber by causing at least one of energy or the chemical agent to be delivered from the at least one therapeutic element comprises disrupting neural communication along the sympathetic nerve fiber by causing energy to be delivered from the at least one therapeutic element, and wherein the energy comprises at least one of radiofrequency energy, high-intensity focused ultrasound energy, low-intensity focused ultrasound energy, electroporation energy, ionizing energy, cryogenic energy, or microwave energy.
21 . The method of claim 14 , wherein disrupting neural communication along the sympathetic nerve fiber by causing at least one of energy or the chemical agent to be delivered from the at least one therapeutic element comprises disrupting neural communication along the sympathetic nerve fiber by causing the chemical agent to be delivered from the at least one therapeutic element to the wall of the hepatic artery, and wherein the chemical agent comprises at least one of a muscarinic receptor agonist, an anticholinesterase agent, a nicotinic receptor agonist, a nicotine receptor antagonist, a neurotoxin, an alcohol, guanethidine, or zinc sulfate.