CA2677992C

A collagen/hydroxyapatite composite scaffold, and process for the production thereof

Abstract

A process for producing a collagen/hydroxyapatite (HA) composite scaffold comprises the steps of forming a homogenous suspension of collagen and HA in an acidic solution, lyophilising the suspension at a constant cooling rate until a desired final freezing temperature is reached to produce the composite scaffold, wherein the ratio of HA to collagen is at least 1 : 10 (w/w). Also provided is a collagen/hydroxyapatite (HA) composite scaffold comprising a homogenous distribution of hydroxyapatite within a porous, collagen matrix, wherein the ratio of HA to collagen is at least 1 : 10 (w/w). Suitably, the composite scaffold has a porosity of at least 99% (v/v), and a compressive stiffness of at least 0.3KPa. Composite scaffolds of the invention may be used to provide osteoconductive bone implants, tissue engineering implants, maxillofacial bone graft substitute, dental bone graft substitute, cartilage defect repair implant and osteochondral defect repair implant.

CA2677992C, drawing sheet 1
Sheet 1 of 25

Term

No projected expiry on record.

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

46 claims: 31 independent, 15 dependent

  1. 1
    CA 02677992 2015-09-21 What is claimed is:1. A process for producing a collagen/hydroxyapatite (HA) composite scaffold, comprising the steps of mechanically mixing collagen and HA in an acidic solution to form a homogenous suspension of collagen and HA in an acidic solution, freezing the suspension at a constant cooling rate until a final freezing temperature of between -10°C and -70°C is reached, and heating the frozen suspension to a sublimation temperature where an ice phase in the frozen suspension is sublimated under vacuum for a suitable period of time to produce the composite scaffold, wherein the ratio of HA to collagen in the suspension ranges from 1:10 (w/w) to 50:10 (w/w), and the amount of collagen in the suspension is from 3g/L to 8g/L (w/w), wherein the homogenous suspension of collagen/HA is formed by the steps of forming an acidic homogeneous suspension of collagen, and subsequently adding the HA to the collagen suspension under conditions of mixing to ensure homogenous distribution of the HA within the collagen suspension, in which the HA is added in the form of an acidic HA suspension.
  2. 4
    A process as claimed in any one of Claims 1-3 in which the ratio of HA to collagen in the suspension is from 5:10 to 30:10 (w/w).
  3. 6
    A process as claimed in any one of Claims 1-5 in which the homogenous suspension of Collagen/HA is formed in conditions suitable for minimising gélatinisation of the collagen.
  4. 8
    A process as claimed in any one of Claims 1-7 in which the freezing is carried out at a constant cooling rate of between 0.1°C/min to 10°C/min.
  5. 9
    A process as claimed in any one of Claims 1-8 in which freezing is carried out at a constant cooling rate of between 0.5°C/min to 1.5°C/min.
  6. 10
    A process as claimed in any one of Claims 1-9 in which freezing is carried out at a constant cooling rate of between 0.8°C/min to l.l°C/min.
  7. 11
    A process as claimed in one of Claims 1-10 in which the desired final freezing temperature is between -30°C and -50°C.
  8. 12
    A process as claimed in one of Claims 1-11 in which the desired final freezing temperature is between -35°C and -45°C.
  9. 13
    A process as claimed in any one of Claims 1-12 further comprising an annealing step that comprises increasing the temperature after the final freezing temperature has been reached to an annealing temperature that is intermediate between the final freezing temperature and the sublimation temperature, and holding the temperature at the annealing temperature for a period of time before increasing the temperature to the sublimation temperature.
  10. 14
    A process as claimed in any one of Claims 1-13 in which the HA is in powder form.
  11. 17
    A process as claimed in any one of Claims 1-16 in which the collagen comprises collagen fibres. CA 02677992 2016-06-01
  12. 19
    A process as claimed in of Claims 1-18 in which the HA is added in aliquots.
  13. 22
    A process as claimed in any of Claims 1-21 in which the composite scaffold is cross-linked.
  14. 25
    A collagen/hydroxyapatite (HA) composite scaffold obtained by the process of any one of Claims 1-24.
  15. 26
    A collagen/hydroxyapatite (HA) composite scaffold comprising a homogenous distribution of hydroxyapatite within a porous, collagen matrix, wherein the ratio of HA to collagen ranges from 1:10 (w/w) to 50:10 (w/w), and wherein composite scaffold has a porosity of at least 95% (v/v) and a compressive stiffness of at least 1.5KPa.
  16. 29
    A collagen/hydroxyapatite (HA) composite scaffold as claimed in any one of Claims 26 to 28 having a porosity of at least or 96% (v/v).
  17. 30
    A collagen/hydroxyapatite (HA) composite scaffold as claimed in any one of Claims 26 to 28 having a porosity of at least or 98% (v/v).
  18. 31
    A collagen/hydroxyapatite (HA) composite scaffold as claimed in any one of Claims 26 to 28 having a porosity of at least or 99% (v/v).
  19. 32
    A collagen/hydroxyapatite (HA) composite scaffold as claimed in any one of Claims 26 to 31, being dehydrothermally and ED AC crosslinked.
  20. 35
    A collagen/hydroxyapatite (HA) composite scaffold as claimed in any one of Claims 26 and 29-34 in which the ratio of HA to collagen in the composite scaffold is from 5:10 (w/w) to 30:10 (w/w).
  21. 36
    A collagen/hydroxyapatite (HA) composite scaffold as claimed in any one of Claims 26 to 35 in which the composite scaffold is characterised by a level of proliferation of MC3T3 osteoblasts in the scaffold at 28 days incubation minus the level at 7 days of at least 0.5 x 106 cells.
  22. 37
    A collagen/hydroxyapatite (HA) composite scaffold as claimed in any one of Claims 26 to 36 in which the composite scaffold is characterised by having a flow conductivity under pressure through the scaffold of at least 1 x IO10 m4/Ns.
  23. 38
    A collagen/hydroxyapatite (HA) composite scaffold as claimed in any one of Claims 26 to 37 in which the scaffold is produced in the form of a sheet. CA 02677992 2016-06-01
  24. 39
    A collagen/hydroxyapatite (HA) composite scaffold as claimed in any one of Claims 26 to 38 that is seeded with at least 1 x 106 cells per 500mm3 volume of scaffold.
  25. 40
    A collagen/hydroxyapatite (HA) composite scaffold as claimed in any one of Claims 26 to 31 or 35-39 that is crosslinked.
  26. 41
    An osteoconductive bone implant comprising a collagen/hydroxyapatite composite scaffold of any one of Claims 26 to 40.
  27. 42
    A tissue engineering implant comprising a collagen/hydroxyapatite composite scaffold of any one of Claims 26 to 40.
  28. 43
    A maxillofacial bone graft substitute comprising a collagen/hydroxyapatite composite scaffold of any one of Claims 26 to 40.
  29. 44
    A dental bone graft substitute comprising a collagen/hydroxyapatite composite scaffold of any one of Claims 26 to 40.
  30. 45
    A cartilage defect repair implant comprising a collagen/hydroxyapatite composite scaffold of any one of Claims 26 to 40.
  31. 46
    A osteochondral defect repair implant comprising a collagen/hydroxyapatite composite scaffold of any one of Claims 26 to 40. TOR_LAW\ 8785470U
Independent claims31