Cell preparations for extemporaneous use, useful for healing and rejuvenation in vivo
The present invention relates to new plasma or new platelet-rich plasma preparations, new cell dissociation methods, new cell associations or compositions, a method of preparation thereof, a use thereof, devices for the preparation thereof and preparations containing such a platelet-rich plasma preparation and cell associations or compositions. Specifically, the invention provides plasma or platelet-rich plasma alone or in cell combinasons preparations for use in tissue regeneration and bone regeneration and pain reduction.
1. A method for preparation of a platelet rich plasma composition, comprising:
a) centrifuging whole blood in a separator system to form a platelet rich plasma, wherein said separator system comprises a tube containing a polymer-based thixotropic gel, wherein said centrifuging is performed one time in said method such that said thixotropic gel separates said platelet rich plasma; and
b) separating said platelet rich plasma from a full plasma in said tube by removing approximately half of a supernatant containing a platelet poor plasma to form an enriched platelet rich plasma containing 2 or more times a normal level of platelets and growth factors as compared to said whole blood.
2. A method for preparation of a platelet rich plasma composition, comprising:
a) centrifuging whole blood in a separator system to form a platelet rich plasma containing no more than 10% hematocrit, wherein said separator system comprises a tube containing only two additives, said two additives being an anticoagulant and a thixotropic gel wherein said centrifuging is performed one time in said method such that said thixotropic gel separates said platelet rich plasma; and
b) separating said platelet rich plasma from a full plasma in said tube by removing approximately half of a supernatant containing a platelet poor plasma;
wherein said centrifugation step a) is performed for a sufficient length of time such that said thixotropic gel forms a barrier between plasma and erythrocytes.
3. The method of claim 2 , wherein said erythrocytes are pelleted and said pellet contains greater than 99% hematocrit, and/or wherein said platelet rich plasma contains less than 1% hematocrit.
4. The method of claim 2 , wherein said thixotropic gel is a polymer-based thixotropic gel.
5. The method of claim 2 , said method further comprises re-suspending said platelet rich plasma.
6. The method of claim 5 , wherein said platelet rich plasma contains a platelet yield of 90% to 99%.
7. The method of claim 2 , wherein said centrifugation step a) is performed at a force of 1500×g up to 2000×g and/or is performed for 8 to 10 minutes.
8. The method of claim 1 , wherein said enriched platelet rich plasma contains 2 to 4 times a normal level of platelets and growth factors as compared to said whole blood, maintains normal levels of fibrin and fibrinogen, and contains less than 1% hematocrit.
9. A method for preparation of an enriched platelet rich plasma composition, comprising:
a) centrifuging whole blood in a separator system to form an enriched platelet rich plasma containing 2 to 4 times a normal level of platelets and growth factors as compared to said whole blood and containing less than 1% hematocrit, wherein said separator system comprises a tube containing only two additives, said two additives being an anticoagulant and a thixotropic gel, wherein said centrifuging is performed one time in said method to obtain said enriched platelet rich plasma; and
b) re-suspending said enriched platelet rich plasma.
10. The method of claim 9 , wherein said centrifugation step
a) is performed at a force of 1000×g up to 2000×g for a sufficient length of time to form a barrier between plasma containing the platelets, lymphocytes and monocytes, and a pellet containing erythrocytes, and wherein said whole blood is autologous.
11. The method of claim 9 , further comprising:
providing a cell extract comprising at least one of: dermal cells, keratinocytes, fibroblasts, melanocytes, Langerhans cells, fat cells, bone marrow cells, muscle cells, osteoblasts, chondrocytes, periosteal membrane cells, corneal cells, umbilical cord cells, Schwann cells, tendon cells, pancreas islet cells, adipocytes, adipose stem cells, corneal limbal stem cells, corneal keratinocytes, satellite stem cells, myoblast progenitor stem cells, stem cells, cartilage cells, ligament cells, connective tissue cells, and gingival cells, and
admixing said enriched platelet rich plasma with said cell extract.
12. The method of claim 9 , further comprising admixing said enriched platelet rich plasma obtained in step b) with a coagulation activator selected from: a thrombin activator, a fibrinogen activator, calcium, a calcium salt, CaCl 2 , CaCO 3 , CaSO 4 , sodium, batroxobin, thrombin, a thrombin enriched preparation, an autologous thrombin, and/or an autologous thrombin serum.
13. The method of claim 12 , wherein said enriched platelet rich plasma and said coagulation activator are combined at a volume ratio of 10:1 to 10:3.
14. The method of claim 9 , wherein said thixotropic gel is a polymer-based thixotropic gel.
15. The method of claim 1 , further comprising:
c) providing a cell extract wherein said cell extract is selected from at least one of: dermal cells, keratinocytes, fibroblasts, melanocytes, Langerhans cells, fat cells, bone marrow cells, muscle cells, osteoblasts, chondrocytes, periosteal membrane cells, corneal cells, umbilical cord cells, Schwann cells, tendon cells, and pancreas islet cells; and
d) admixing said enriched platelet rich plasma with said cell extract.
16. The method of claim 2 , wherein said thixotropic gel is a polymer-based thixotropic gel.