Nova Patents
IL99732A

Vascularization promoting implant material

Abstract

A device for implantation in a host having a material at an interface between the host and the device, said material having a conformation which results in growth of vascular structures by the host close to the interface.

IL99732A, drawing sheet 1
Sheet 1 of 8

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

27 claims: 7 independent, 20 dependent

  1. 1
    CLAIMS:1. A porous structure forming a chamber to hold living cells, the structure including a porous wall located outside the chamber that, when implanted in host tissue, forms a porous interface with host tissue that permits transport of solutes between host tissue and cells in the chamber, the porous wall comprising an array of three dimensional strands having one dimension larger than the other two and, for the majority of the strands, neither of the smaller dimensions exceeds about 5 μνη, the strands interconnecting to form apertures which interconnect to form three dimensional cavities within the array outside the chamber.
  2. 2
    A porous structure according to Claim 1, wherein, when implanted in host tissue, inflammatory cells from host tissue enter the cavities through the apertures with at least some of the inflammatory cells retaining a rounded morphology.
  3. 3
    A porous structure according to Claim 1, wherein the porous wall has a nominal pore size of about 20 μπ\ or less.
  4. 4
    A porous structure according to Claim 1 and further including a second porous wall adjacent the chamber and underlying the first mentioned porous wall, the second porous wall being essentially impermeable to host tissue immune cells.
  5. 5
    A porous structure according to Claim 1 and further including a second porous wall adjacent the chamber and underlying the first mentioned porous wall, the second porous wall being essentially impermeable to host tissue immune factors.
  6. 6
    A porous structure forming a chamber to hold living cells, the structure including a porous wall located outside the chamber that, when implanted in host tissue, forms a porous interface with host tissue that permits transport of solutes between host tissue and cells in the chamber, the porous wall comprising an array of three dimensional strands having one 99732/2 dimension larger than the other two, for the majority of the strands, neither of the smaller dimensions exceeds about 5 pm, the strands interconnecting to form apertures which interconnect to form three dimensional cavities, for at least some of the cavities, the smallest two dimensions being about 20 pm or less.
  7. 7
    A porous structure according to Claim 6, wherein, when implanted, inflammatory cells from host tissue enter the cavities through the apertures with at least some of the inflammatory cells retaining a rounded morphology.
  8. 8
    A porous structure according to Claim 6, wherein the porous wall exhibits a nominal pore size of about 20 pm or less.
  9. 9
    A porous structure according to Claim 6 and further including a second porous wall adjacent the chamber and underlying the first mentioned porous wall, the second porous wall being essentially impermeable to host tissue immune cells.
  10. 10
    A porous structure according to Claim 6 and further including a second porous wall adjacent the chamber and underlying the first mentioned porous wall, the second porous wall being essentially impermeable to host tissue immune factors.
  11. 11
    A porous structure forming a chamber to hold living cells, the structure including a porous wall located outside the chamber that, when implanted in host tissue, forms a porous interface with host tissue that permits transport of solutes between host tissue and cells in the chamber, the porous wall comprising an array of three dimensional strands having one dimension larger than the other two, for the majority of the strands, neither of the smaller dimensions exceeds about 5 pm, the strands interconnecting to form apertures which interconnect to form interconnecting three dimensional cavities, for at least some of the cavities, the smallest two dimensions being about 20 pm or less.
  12. 12
    A porous structure according to Claim 11, wherein, when implanted in host tissue, inflammatory cells from host tissue enter the cavities through the apertures with at least some of the inflammatory cells retaining a rounded morphology.
  13. 13
    A porous structure according to Claim 11, wherein the porous wall exhibits a nominal pore size of about 20 /rm or less.
  14. 14
    A porous structure according to Claim 11 and further including a second porous wall adjacent the chamber and underlying the first mentioned porous wall, the second porous wall being essentially impermeable to host tissue immune cells.
  15. 15
    A porous structure according to Claim 11 and further including a second porous wall adjacent the chamber and underlying the first mentioned porous wall, the second porous wall being essentially impermeable to host tissue immune factors.
  16. 16
    A porous structure forming a chamber to hold living cells, the structure including a porous wall located outside the chamber than, when implanted in host tissue, forms a porous interface with host tissue that permits transport of solutes between host tissue and cells in the chamber, the porous wall comprising an array of three dimensional strands interconnecting to form apertures which interconnect to form three dimensional cavities within the array, the apertures being sized to allow entry of inflammatory cells from host tissue into the cavities with at least some of the inflammatory cells retaining a rounded morphology to promote the growth of vascular structures in host tissue near the porous interface.
  17. 17
    A porous structure forming a chamber to hold living cells, the structure including a porous wall located outside the chamber that, when implanted in host tissue, forms a porous interface with host tissue that permits transport of solutes between host tissue and cells in the chamber, the porous wall comprising an array of three dimensional strands interconnecting 99732/2 to form apertures which interconnect to form three dimensional cavities within the array, the apertures being sized to allow entry of inflammatory cells from host tissue into the cavities with at least some of the inflammatory cells retaining a rounded morphology to promote the growth of vascular structures in host tissue near the porous interface without substantial ingrowth of host connective tissue into the cavities.
  18. 18
    A porous structure according to Claim 16 or 17, wherein, for at least some of the three dimensional cavities, the smallest two dimensions are about 20 μιη or less.
  19. 19
    A porous structure according to Claim 16 or 17, wherein the strands have one dimension larger than the other two, and for the majority of the strands, neither of the smaller dimensions exceeds about 5 μπι.
  20. 20
    A porous structure according to Claim 16 or 17, wherein the porous wall exhibits a nominal pore size of about 20 μπι or less.
  21. 21
    A porous structure according to Claim 16 or 17 and further including a second porous wall adjacent the chamber and underlying the first mentioned porous wall, the second porous wall being essentially impermeable to host tissue immune cells.
  22. 22
    A porous structure according to Claim 16 or 17 and further including a second porous wall adjacent the chamber and underlying the first mentioned porous wall, the second porous wall being essentially impermeable to host tissue immune factors.
  23. 23
    A porous structure according to Claim 1 or 6 or 11 or 16 or 17 and further including living cells in the chamber.
  24. 24
    A porous structure according to Claim 1 or 6 or 11 or 16 or 17, wherein the porous wall comprises a material that is selected from the group consisting of polyethylene, polypropylene, polytetrafluoroethylene (PTFE), cellulose acetate, cellulose nitrate, polycarbonate, polyester, nylon, polysulfone, mixed esters of cellulose polyvinylidene difluoride, silicone, and polyacrylonitrile.
  25. 25
    An assembly comprising a porous structure according to Claim 1 or 2 or 3 or 4 or 5 or 6 or 7 or 8 or 9 or 10 or 11 or 12 or 13 or 14 or 15 or 16 or 17, and instructions teaching the enclosure of living cells within the chamber of the porous structure and the implanting of the structure with enclosed living cells in host tissue.
  26. 26
    An assembly comprising a porous structure forming a chamber, the structure including a first porous wall located outside the chamber that, when the structure is implanted in host tissue, forms a porous interface with host tissue that permits transport of solutes between host tissue and cells in the chamber, the porous wall comprising an array of three dimensional strands interconnecting to form apertures which interconnect to form three dimensional cavities within the array outside the chamber, the strands having one dimension larger than the other two and, for the majority of the strands, neither of the smaller dimensions exceeds about 5 //m, the first porous wall comprises a material that is selected from the group consisting of polyethylene, polypropylene, polytetrafluoroethylene (PTFE), cellulose acetate, cellulose nitrate, polycarbonate, polyester, nylon, polysulfone, mixed esters of cellulose polyvinylidene difluoride, silicone, and polyacrylonitrile, and a second porous wall adjacent the chamber and underlying the porous wall, the second porous wall being essentially impermeable to host tissue immune cells, and instructions teaching the enclosure of living cells within the chamber of the porous structure and the implanting of the structure with enclosed living cells in host tissue.
  27. 27
    An assembly comprising 99732/2 a porous structure forming a chamber, the structure including a first porous wall located outside the chamber than, when the structure is implanted in host tissue, forms a porous interface with host tissue that permits transport of solutes between host tissue and cells in the chamber, the porous wall comprising an array of three dimensional strands interconnecting to form apertures which interconnect to form three dimensional cavities within the array outside the chamber, the strands having one dimension larger than the other two and, for the majority of the strands, neither of the smaller dimensions exceeds about 5 μτη, the first porous wall comprises a material that is selected from the group consisting of polyethylene, polypropylene, polytetrafluoroethylene (PTFE), cellulose acetate, cellulose nitrate, polycarbonate, polyester, nylon, polysulfone, mixed esters of cellulose polyvinylidene difluoride, silicone, and polyacrylonitrile, and a second porous wall adjacent the chamber and underlying the porous wall, the second porous wall being essentially impermeable to host tissue immune factors, and instructions teaching the enclosure of living cells within the chamber of the porous structure and the implanting of the structure with enclosed living cells in host tissue.
Independent claims27