MAGNETIC ASSISTED DRUG DELIVERY
20200375900 ยท 2020-12-03
Inventors
Cpc classification
A61K9/0019
HUMAN NECESSITIES
A61K45/06
HUMAN NECESSITIES
A61K31/00
HUMAN NECESSITIES
A61K9/14
HUMAN NECESSITIES
A61K41/00
HUMAN NECESSITIES
A61K9/5094
HUMAN NECESSITIES
A61K47/6923
HUMAN NECESSITIES
A61M2025/0057
HUMAN NECESSITIES
International classification
A61K9/14
HUMAN NECESSITIES
A61K45/06
HUMAN NECESSITIES
A61K9/00
HUMAN NECESSITIES
Abstract
A method of delivering magnetic particles to a target site, including inserting a magnet catheter into a blood vessel; advancing the magnet catheter to a position downstream from the target site; and releasing magnetic particles into the blood vessel upstream of the target site; in which a first portion of the magnetic particles embolize in the blood vessel is disclosed. A system is also disclosed.
Claims
1. A method of delivering magnetic particles to a target site, comprising: inserting a magnet catheter into a blood vessel; advancing the magnet catheter to a position downstream from the target site; and releasing magnetic particles into the blood vessel upstream of the target site; wherein a first portion of the magnetic particles embolize in the blood vessel.
2. The method of claim 1, wherein a second portion of the magnetic particles attach to a magnet of the magnet catheter.
3. The method of claim 1, wherein the magnet catheter includes a permanent magnet.
4. The method of claim 1, wherein the magnet catheter includes an electromagnet.
5. The method of claim 1, wherein the target site is chosen from a tumor, a varicose vein, a polyp, and a fibroid.
6. The method of claim 1, wherein the magnetic particles are associated with a therapeutic substance.
7. The method of claim 6, wherein the therapeutic substance is an anti-tumor drug.
8. The method of claim 1, wherein the magnetic particle includes a magnetic material, a biodegradable polymer, and a therapeutic substance.
9. The method of claim 8, wherein the therapeutic substance is encapsulated by the biodegradable polymer.
10. The method of claim 6, wherein the therapeutic substance is absorbed to a surface of the magnetic particle.
11. The method of claim 1, wherein the step of inserting the magnet catheter includes inserting a plurality of magnet catheters into a plurality of blood vessels.
12. The method of claim 11, wherein the plurality of magnet catheters are positioned a distance apart from one another.
13. The method of claim 1, wherein releasing magnetic particles includes inserting a delivery catheter into a blood vessel upstream of the target site and releasing magnetic particles associated with the delivery catheter.
14. The method of claim 13, wherein the delivery catheter can be a plurality of delivery catheters.
15. The method of claim 1, wherein the step of releasing magnetic particles includes inserting a plurality of delivery catheters into a plurality of blood vessels.
16. The method of claim 2, wherein the magnet catheter and the attached magnetic particles are removed.
17. The method of claim 1, wherein an average particle size of the first portion of magnetic particles is larger than a diameter of the blood vessel.
18. The method of claim 4, further comprising a step of varying an electric current supplied to the magnet catheter to adjust a magnetic field strength.
19. A system for providing a therapeutic substance to a target site comprising: a magnet, a magnet catheter for delivering the magnet; a plurality of magnetic particles associated with a therapeutic substance; and a delivery catheter for delivering the plurality of magnetic particles.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] The present disclosure in its several aspects and embodiments can be more fully understood from the detailed description and the accompanying drawings, wherein:
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[0021] Throughout this specification and figures like reference numbers identify like elements.
DETAILED DESCRIPTION OF THE INVENTION
[0022] It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only, and are intended to provide an explanation of various embodiments of the present teachings. The layers/components shown in each Figure may be described with regard to a particular Figure, but it is understood that the description of a particular layer/component would be applicable to the equivalent layer/component in the other Figures.
[0023] The present application is directed to a method of delivering magnetic particles to a target site, comprising: inserting a magnet catheter into a blood vessel; advancing the magnet catheter to the blood vessel downstream from the target site; releasing magnetic particles into the blood vessel upstream of the target site; and removing the magnet catheter and the magnetic particles after the magnetic particles attach to the magnet catheter.
[0024] Referring to
[0025] In another aspect, a second portion of magnetic particles 102, which do not embolize within a blood vessel within the target site, can attach to a magnet 104 of the magnet catheter 103. The second portion of magnetic particles 102 may not embolize within the blood vessel within the target site for a few reasons, such as the blood vessel diameter is larger than the average particle size of the magnetic particles 102. Moreover, the magnetic particles 102 may not enter the blood vessel within the target site 100 due to a bifurcated blood vessel upstream of the target site. To be clear, a second portion of magnetic particles 102 can flow through the target site 100 or do not enter the target site 100 and can attach to the magnet 104. The second portion can be 100% of the total amount of the magnetic particles 102 released into the blood vessel 108, for example, can be less than 100% of the total amount, and as a further example, can be less than 90% of the total amount, based upon the total amount of the magnetic particles 102 released.
[0026] The magnet catheter 103 can be any delivery device including one or more magnets. The magnet 104 can be any type that can generate a magnetic field suitable for attracting the magnetic particles. Non-limiting examples of magnets 104 suitable for use in the magnet catheter include neodymium iron boron (NdFeB), samarium cobalt (SmCo), alnico (aluminum, nickel, cobalt alloy), ceramic magnets, and ferrite magnets. In an aspect, the magnet 104 for use in the magnet catheter 103 can be a permanent magnet. In another aspect, the magnet 104 for use in the magnet catheter 103 can be an electromagnet. In an aspect, the method can include varying an electric current supplied to the magnet catheter 103 to adjust a magnetic field. The electrical current can be supplied via conductive wires in the magnet catheter connected to an external power source. A flexible magnet 104 made with a composite of resin and magnetic powder can also be used.
[0027] In an aspect, the magnet 104 can be selected to generate a magnetic field with a small magnetic field intensity. For example, the magnet 104 should not generate a magnetic field that can cause the magnetic particles 102 to form aggregates within a blood vessel before entering the target site.
[0028] As used herein, the term blood vessel includes an artery, an arteriole, a capillary, a vein, and a venule. As used herein, the term upstream refers to a location of a blood vessel in which blood flows towards the target site. As used herein, the term downstream refers to a location of a blood vessel in which blood flows away from the target site. A target site can be any site in a body in need of treatment. In an aspect, the target site can be an area of tissue, such as a tumor, a polyp, fibroids, etc. In another aspect, the target site can be a blood vessel, such as varicose veins.
[0029] A delivery catheter 105 can include magnetic particles 102. The delivery catheter 105 can be any type of delivery device so long as it can enter a blood vessel 108 and can deliver magnetic particles 102. The magnetic particles 102 can be in any shape, such as spherical, oblong, elliptical, needle-like, etc. The magnetic particles 102 can be any material that can be magnetized by a magnetic field, such as a magnetic field generated by a magnet 104 of the magnet catheter 103. The magnetic particles 102 can be paramagnetic, superparamagnetic, or ferromagnetic.
[0030] In an aspect, the magnetic particles 102 can be associated with a therapeutic substance. For example, the magnetic particles 102 can include a magnetic material, a biodegradable polymer, and a therapeutic substance. In an aspect, the therapeutic substance and/or the magnetic material can be encapsulated by the polymer material so that the therapeutic substance is released over time at the target site 100.
[0031] In another aspect, the therapeutic substance can be absorbed to a surface of the magnetic particle 102 via the biodegradable polymer.
[0032] In another aspect, a radiopaque material can be included in the magnetic particle so that the magnetic particle can exhibit enhanced visibility under x-ray fluoroscopy such as during the administration of the magnetic particle.
[0033] Non-limiting examples of radiopaque material include metal, such as tungsten, tantalum, platinum, palladium, lead, gold, titanium, silver, mixtures and alloys thereof; a metal oxide, such as titanium oxide, zirconium oxide, and aluminum oxide; bismuth subcarbonate; barium sulfate; and combinations thereof.
[0034] Non-limiting examples of suitable magnetic material include materials that can be magnetized by a magnetic field, such as iron oxides (magnetite (Fe.sub.3O.sub.4), maghemite (Fe.sub.2O.sub.3)), iron, iron containing alloy (such as martensitic stainless steel), neodymium iron boron, nickel, nickel containing compound (such as AlNiCo), cobalt, cobalt containing compound (such as SmCo.sub.5), mixtures or alloys thereof.
[0035] Non-limiting examples of a biodegradable polymer include poly (-caprolactone), poly (butylene succinate), poly [(butylene succinate)-co-adipate], poly(butylene adipate-co-terephthalate), aliphatic polyester, aliphatic-aromatic co-polyesters, poly (lactic acid), polylactide, polyglycolic acid, polysaccharides, collagen, chitosan, starch, poly(hydroxybutyrate), pH sensitive biodegradable polymer, and combinations thereof.
[0036] Non-limiting examples of a therapeutic substance include an anti-tumor drug, such as doxorubicin, Adriamycin, BiCNU, Carboplatinum, Daunorubicin, DTIC, Fludarabine, Gemcitabine, Idarubicin, Irinotecan, Mithramycin, Mitomycin, Mitoxantrone, Navelbine, Nitrogen Mustard, Taxol, Taxotere, Topotecan, Velban, Vincristine, VP-16; radionuclides with a covalently bound chelator e.g. DPTA or DOTA; photodynamic therapy drugs, such as Phthalocyanines, Gene Vectors which may be bound to a covalently bound chelator (e.g. Streptavadin); Tumor Necrosis Factors; Clot busting drugs, such as Alteplase or TPA (brand name: ACTIVASE), Streptokinase (Streptase or Kabikinase), Urokinase (Abbokinase), Anistreplase (Eminase), Reteplase (Retavase); Steroids; Antibiotics; Tumor necrosis agents; antiangiogenesis agents; and combinations thereof. Other non-limiting examples of therapeutic substance that can be used include adrenocortical steroid; adrenocortical suppressant; aldosterone antagonist; amino acids; anabolics; anthelmintic; anti-acne agent; anti-adrenergic; anti-allergic:anti-amebic; anti-androgen; anti-anemic; anti-anginal; antiarthritic; anti-asthmatic; anti-atherosclerotic; antibacterial; anticholelithic; anticholelithogenic; anticholinergic; anticoagulant; anticoccidal; antidiabetic; antidiarrheal; antidiuretic; antidote; anti-estrogen; antifibrinolytic; antifungal; antiglaucoma agent; antihemophilic; antihemorrhagic; antihistamine; antihyperlipidemia; antihyperlipoproteinemic; antihypertensive; antihypotensive; anti-infective; anti-infective, topical; anti-inflammatory; antikeratinizing agent; antimalarial; antimicrobial; antimitotic; antimycotic, antineoplastic, antineutropenic, antiparasitic; antiperistaltic, antipneumocystic; antiproliferative; antiprostatic hypertrophy; antiprotozoal; antipruritic; antipsoriatic; antirheumatic; antischistosomal; antiseborrheic; antisecretory; antispasmodic; antithrombotic; antitussive; anti-ulcerative; antiurolithic; antiviral; appetite suppressant; benign prostatic hyperplasia therapy agent, bone resorption inhibitor; bronchodilator, carbonic anhydrase inhibitor, cardiac depressant; cardioprotectant; cardiotonic; cardiovascular agent; choleretic; cholinergic; cholinergic agonist; cholinesterase deactivator, coccidiostat; diagnostic aid; diuretic; ectoparasiticide; enzyme inhibitor, estrogen; fibrinolytic; free oxygen radical scavenger; glucocorticoid; gonad-stimulating principle; hair growth stimulant; hemostatic; hormone; hypocholesterolemic; hypoglycemic; hypolipidemic; hypotensive; immunizing agent; immunomodulator; immunoregulator, immunostimulant; immunosuppressant; impotence therapy adjunct; inhibitor, keratolytic: LHRH agonist; liver disorder treatment, luteolysin; mucolytic, mydriatic; nasal decongestant; neuromuscular blocking agent; non-hormonal sterolderivative; oxytocic; plasminogen activator, platelet activating factor antagonist, platelet aggregation inhibitor, potentiator, progestin, prostaglandin; prostate growth inhibitor; prothyrotropin; pulmonary surface; radioactive agent; regulator, relaxant; repartitioning agent; scabicide: sclerosingagent; selective adenosine A1 antagonist; Steroid; symptomatic multiple sclerosis; synergist; thyroid hormone; thyroid inhibitor; thyromimetic; amyotrophic lateral sclerosis agents; paget's disease agents; unstable angina agents; uricosuric; vasoconstrictor; vasodilator, vulnerary; wound healing agent; xanthine oxidase inhibitor, and mixtures thereof.
[0037] Referring to
[0038] Referring to
[0039] In
[0040] In
[0041] In
[0042] There is also disclosed a system for providing a therapeutic substance to a target site comprising: a magnet, a magnet catheter for delivering the magnet; a plurality of magnetic particles associated with a therapeutic substance; and a delivery catheter for delivering the plurality of magnetic particles. The components of the system are as described above. From the foregoing description, those skilled in the art can appreciate that the present teachings can be implemented in a variety of forms. Therefore, while these teachings have been described in connection with particular embodiments and examples thereof, the true scope of the present teachings should not be so limited. Various changes and modifications can be made without departing from the scope of the teachings herein.
[0043] This scope disclosure is to be broadly construed. It is intended that this disclosure discloses equivalents, means, systems and methods to achieve the devices, activities and mechanical actions disclosed herein. For each device, article, method, mean, mechanical element or mechanism disclosed, it is intended that this disclosure also encompasses in its disclosure and teaches equivalents, means, systems and methods for practicing the many aspects, mechanisms and devices disclosed herein. Additionally, this disclosure regards a method and its many aspects, features and elements. Such a method can be dynamic in its use and operation, this disclosure is intended to encompass the equivalents, means, systems and methods of the use of a device and/or catheter and its many aspects consistent with the description and spirit of the operations and functions disclosed herein. The claims of this application are likewise to be broadly construed. The description of the inventions herein in their many embodiments is merely exemplary in nature and, thus, variations that do not depart from the gist of the invention are intended to be within the scope of the invention. Such variations are not to be regarded as a departure from the spirit and scope of the invention.