System for shape memory alloy enabled drug release
Disclosed is a drug delivery system that specifically carries and releases an active substance to a target organ or tissue. The coating of the shape memory component constituting the drug delivery system enhances the biocompatibility and controlled delivery of the active substance previously loaded into the coating material to the target organ or tissue.
1 . A drug delivery system carrying an active substance for treating various diseases in a body, wherein said drug delivery system comprises:
a shape memory alloy wire forming a main structure of the drug delivery system, wherein the shape memory alloy wire provides a specific movement to a target tissue or a target organ, wherein a drug is configured to be released to the target tissue or the target organ, and the shape memory alloy wire provides release of an active substance in a controlled manner and orients at a certain angle after reaching a vicinity of the target tissue or the target organ;
a hydrogel coating to encapsulate said shape memory alloy wire, wherein the hydrogel acts as a coating to said shape memory alloy wire to prevent release of toxic ions to the body and a drug loaded hydrogel carries the drug within the body;
and the active substance to be delivered to the target organ or the target tissue;
wherein the drug delivery system is configured to be directed to the target organ or the target tissue and bends at an angle between 5° and 175° once the drug delivery system reaches the target organ or the target tissue to release the active substance by an actuation of the shape memory alloy wire via bending the hydrogel coating;
wherein said hydrogel coating is obtained from a mixture of gelatin and PVA materials;
and wherein the drug delivery system further comprises a catheter, the shape memory alloy wire being attached to a distal end portion of the catheter such that the hydrogel-coated wire is deliverable to and removable from the body by means of the catheter.
2 . The drug delivery system according to claim 1 , wherein said shape memory alloy wire is a Ni—Ti alloy.
3 . The drug delivery system according to claim 1 , wherein the hydrogel coating that encapsulates the shape memory alloy wire is formed by immersion coating, by immersing the wire into a solution comprising gelatin and PVA materials.
4 . The drug delivery system according to claim 1 , wherein the drug delivery system is configured to be used in types of cancer, for diseased tissues, in relief of various pains, in conditions where antiviral, antibacterial and antiparasitic drugs are required, and tissue regeneration is required, wherein the active substance is configured to be delivered with a hydrogel coated material.
5 . The drug delivery system according to claim 1 , wherein the active substance is comprised of analgesic or anti-inflammatory drugs suitable for hydrogels with controlled drug release, protein or vitamins, nucleic acids, anticancer or tissue regeneration agents, antiviral, antibacterial and antiparasitic drugs.
6 . A process of fabricating the drug delivery system according to claim 1 , comprising the following process steps;
preparing a Ni—Ti wire by providing memory properties to the Ni—Ti wire,
preparing a hydrogel coating solution required for drug loading and coating the Ni—Ti wire with the hydrogel, and
loading the active substance for healing a diseased tissue or a diseased organ to a hydrogel coated Ni—Ti wire.
7 . The process of fabricating the drug delivery system according to claim 6 , wherein said hydrogel coating solution is obtained from a mixture of gelatin and PVA materials, and said hydrogel coating solution is applied on said Ni—Ti wire.