System and method for delivering a therapeutic agent for bone disease
Various systems, and methods are provided for transporting a therapeutic agent to the interior of a skeletal support structure. In one implementation, a first elongated member, a second elongated member and an expandable structure provide for non-axial access to the interior of a skeletal support structure. The second elongated member is configured to transport a radiation source through a lumen in the first elongated member to the interior of the skeletal support structure.
1 . An apparatus comprising:
a first elongated member having a lumen configured to provide non-axial access to an interior of a skeletal support structure; and
a second elongated member configured to transport a therapeutic agent through the lumen to the interior of the skeletal support structure.
2 . The apparatus of claim 1 , wherein the therapeutic agent is a radiation source.
3 . The apparatus of claim 1 , wherein the therapeutic agent is a chemotherapeutic agent.
4 . The apparatus of claim 1 , wherein the skeletal support structure is bone.
5 . The apparatus of claim 1 , wherein the skeletal support structure is selected from the list consisting of cartilage and ossified derivatives thereof, membrane bone and cartilage bone.
6 . The apparatus of claim 1 , wherein the skeletal support structure is a vertebral body.
7 . The apparatus of claim 1 , wherein the second elongated member has a distal end that includes an expandable structure configured to expand a void within the skeletal support structure.
8 . The apparatus of claim 7 , wherein the expandable structure includes a radiation source.
9 . The apparatus of claim 7 , further comprising an expandable structure coupled to the second elongated member and configured to deliver a radiation dose to the interior of the skeletal support structure.
10 . The apparatus of claim 9 , wherein the expandable structure comprises at least one lumen configured to receive a radiation source.
11 . The apparatus of claim 9 , wherein the expandable structure comprises a first layer and a second layer configured to receive a radiation source therebetween.
12 . The apparatus of claim 11 , wherein the first layer and second layer are configured to receive a radiopaque substance therebetween.
13 . The apparatus of claim 11 , wherein the first layer and/or the second layer are comprised of a radiopacifier.
14 . The apparatus of claim 1 , wherein the second elongated member includes a distal end configured to be remotely visualized while inside the interior of the skeletal support structure.
15 . The apparatus of claim 1 , wherein the first elongated member includes a means for penetrating a skeletal support structure.
16 . The apparatus of claim 1 , wherein one of the first elongated member and the second elongated member is further configured to position the radioactive source at a predetermined location.
17 . The apparatus of claim 14 , wherein at least one of the first elongated member and the second elongated member include markings configured to provide positional information.
18 . The apparatus of claim 1 , further comprising a radiation source configured to provide a dose of radiation substantially localized within the interior of the skeletal support structure.
19 . The apparatus of claim 18 , wherein the radiation source is comprised of a radionuclide.
20 . The apparatus of claim 19 , wherein the radionuclide is in a form selected from the group consisting of liquid, seed, needle, pellet, particle and microsphere.
21 . The apparatus of claim 19 , wherein the radionuclide is selected from the group consisting of Au-198, Co-60, Cs-137, I-125, I-135, Ir-192, P-32, Pd-103, Ra-226, Rh-106, Ru-106, Sr-90 and Y-90.
22 . The apparatus of claim 1 , further comprising a radiation shield configured to shield the radiation source.
23 . A method comprising:
inserting non-axially, into an interior of a skeletal support structure, a first elongated member having a lumen that defines an access path into the interior of the skeletal support structure;
inserting, into the lumen, a second elongated member configured to transport a radiation source to the interior of the skeletal support structure; and
transporting the radiation source through the lumen into the interior of the skeletal support structure.
24 . The method of claim 23 , further comprising expanding at least a portion of the second elongated member to expand a void in the interior of the skeletal support structure.
25 . The method of claim 24 , further comprising:
depositing a supportive material in the void.
26 . The method of claim 25 , wherein the supportive material is selected from the group consisting of bone cement, human bone autograft, human bone allograft, calcium sulfate, calcium phosphate and hydroxyapatite.
27 . The method of claim 25 , wherein the supportive material includes a chemotherapeutic agent.
28 . The method of claim 25 , wherein the supportive material includes a radioactive agent.
29 . The method of claim 23 , wherein transporting the radiation source comprises placing the radiation source at one or more dwell positions.
30 . The method of claim 29 , further comprising determining the one or more dwell positions that provide a dose of radiation substantially localized within the interior of the skeletal support structure.
31 . The method of claim 23 , wherein inserting the first elongated device comprises inserting the device into an interior volume of a vertebral body through a pedicle of the vertebral body.