Bone marrow transplantation

5806529
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Inventors

Reisner, Yair
Martelli, Massimo

Application #

333393

Filed

Nov-2-1994

Published

Sep-15-1998

Current US Class

128/898

International Classes

A61B 019/00

Field of Search

128/897-98

Assignee

Yeda Research and Development Co. Ltd. (IL)

Examiners

Lacyk; John P.

Attorney, Agent or Firm

Pennie & Edmonds

Referenced by:

View Backward References

Other References

Caspar, et al., "Effective Stimulation of Donors for Granulocyte Transfusions With Recombinant Methionyl Granulocyte Colonystimulating Factor", Blood, 81:2866-71 (1993). Cordell et al., "Immunoenzyme Labeling of Monoclonal Antibodies Using Immune Complexes of Alkaline Phosphatase and Monoclonal Anti-Alkaline Phosphatase (APAAP complexes)", J. Histochem. Cytochem., 32:219 (1984). Gale and Reisner,"Graft Rejection and Graft-Versus-Host-Disease: Mirror Images", Lancet 1:1468 (1986). Gianni et al., "Durable and Complete Hematopoietic Reconstitution After Autografting of rhGM-CSF Exposed Peripheral Blood Progenitor Cells", Bone Marrow Transplant 6:143 (1990). Glucksberg et al., "Clinical Manifestations of Graft-Versus-Host Disease in Human Recipients of Marrow From HLA-Matched Sibling Donors", Transplantation, 18:295 (1974). Lapidot et al., "Enhancement by Dimethyl Myleran of Donor Type Chimerism in Murine Recipients of Bone Marrow Allografts", Blood 73:2025. Matsunaga et al., "Recombinant Human Granulocyte Colony-Stimulating Factor Can Mobilize Sufficient Amounts of Peripheral Blood Stem Cells in Healthy Volunteers for Allogeneic Transplantation", Bone Marrow Transplant, 11:103 (1993). Molineux et al., "Transplantation Potential of Peripheral Blood Stem Cells Induced by Granulocyte Colony-Stimulating Factor", Blood, 76:2153 (1990). O'Reilly et al., "Transplantation of Marrow Depleted of T-Cells by Soybean Lectin Agglutination and E-Rosette Depletion: Major Histocompatibility Complex-Related Graft Resistance in Leukemia Transplant Recipients", Transplant Proc., 17:455 (1985). O'Reilly et al., "Allogeneic Transplants Depleted of T-Cells by Soybean Lectin Agglutination and E-Rosette Depletion", Bone Marrow Transplant 3:(1):3 (1988). Reisner et al., "Hemopoietic Stem Cell Transplantation Using Mouse Bone-Marrow and Spleen Cells Fractionated by Lectins", Proc. Natl. Acad. Sci. USA, 75:2933 (1978). Reisner et al., "Transplantation for Acute Leukemia With HLA-A and B Nonidentical Parental Marrow Cells Fractionated With Soybean Agglutinin and Sheep Red Blood Cells", Lancet II, 327 (1981). Reisner et al., "Allogeneic Bone Marrow Transplantation in Mouse, Monkey and Man Using Lectin-Separated Grafts", Tolerance in Bone Marrow and Organ Transplantation, Elsevier, Slavin, S. (ed.) p. 293 (1984). Reisner et al., "A Shorter Procedure for Preparation of E-Rosette-Depleted Bone Marrow for Transplantation", Transplantation, 42:312 (1986). Russel et al., "Peripheral Blood Stem as an Alternative to Marrow for Allogeneic Transplantation", Lancet 341: 1482 (1993). Terenzi et al., "Enhancement of T-Cell Depleted Bone Marrow Allografts in Mice by Thiotepa", Transplantation 50:717 (1990). Vallera and Blazer, "T-Cell Depletion for Graft-Versus-Host Disease (GVHD) Prophylaxis: A Perspective on Engraftment in Mice and Humans" Transplantation 47:751 (1989). Velardi et al., "Acquisition of Immunoglobulin Isotype Diversity After Bone Marrow Transplantation in Adults. A Recapitulation of Normal B-cell Ontogeny", J. Immunol. 141:815 (1988a). Velardi et al., "Imbalance Within Peripheral Blood T-Helper (CD4+) and T-suppressor (CD8+) Cell Populations in the Reconstitution Phase After Human Bone Marrow Transplantation", Blood 71:1196 (1988b). Velardi et al., "Cytolytic Functions of Clonable T-Cells After Human Bone Marrow Transplantation", Blood 75:1364 (1990). Weaver et al., "Synergeneic Transplantation With Peripheral Blood Mononuclear Cells Collected After the Administration of Recombinant Human Granulocyte Colon-Stimulating Factor", Blood 82:1981. Yam et al., "Use of DNA Restriction Fragment Length Polymorphisms to Document Marrow Engraftment and Mixed Hematopoietic Chimerism Following Bone Marrow Transplantation", Transplantation 43:399 (1987). Zinzani et al., 1993, "Granulocyte colony stimulating factor G-CSF as adjunct therapy in relapsed-resistant high-grade non-Hodgkin's lymphoma ", Haematologica 78(1):40-43. Reisner and Gan, 1985, "Differential binding of soybean agglutinin to human neuroblastoma cell lines: Potential application to autologous bone marrow transplantation", Cancer Research 45(9):4026-4031. Reisner, "Engraftment of T-cell-depleted Bone Marrow in Murine Models for Allogeneic Bone Marrow Transplantation", In Bone Marrow Transplantation, Kluwer Academic Publishers, R. Champlin (ed.), p. 9 (1990).

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Abstract
The present invention provides a method for bone marrow transplantation from an HLA-nonmatched donor to a patient which comprises conditioning the patient under a suitable regimen followed by transplant of a very large dose of stem cells which is at least about 3-fold greater than the conventional doses used in T cell-depleted bone marrow transplantation. The patient is conditioned under lethal or supralethal conditions for the treatment of malignant or non-malignant diseases, or under sublethal conditions for the treatment of non-malignant diseases. The transplant may consist of T cell-depleted bone marrow stem cells and T cell-depleted stem cell-enriched peripheral blood cells from the HLA-nonmatched donor. preferably a relative of the patient, which donor was previously treated with a drug, e.g. a cytokine such as granulocyte colony-stimulating factor (G-CSF).
 
Claims
We claim:

1. A method for transplantation to a human patient in need therefor which comprises:

i) conditioning the human patient under sublethal, lethal or supralethal conditions; and

ii) transplanting to the conditioned human patient an amount of T-cell-depleted stem cells such that at least about 5.5.times.10.sup.6 CD34+ cells per kilogram body weight of the patient is transplanted.

2. The method according to claim 1, in which the T-cell-depleted stem cells comprise T-cell-depleted bone marrow cells and T-cell-depleted stem cell-enriched peripheral blood cells obtained from a HLA-nonmatched donor.

3. The method according to claim 2, in which the T-cell-depleted bone marrow cells are prepared from bone marrow and the T-cell-depleted stem cell-enriched peripheral blood cells are prepared from peripheral blood by treating the bone marrow and peripheral blood with soybean agglutinin and E-rosetting with sheep red blood cells.



Description
FIELD AND BACKGROUND OF THE INVENTION

The present invention relates to bone marrow transplantation in humans, particularly from HLA-nonmatched donors.

Bone marrow transplantation (BMT) is being increasingly used in humans. In genetically identical twins there are no immunological barriers to BMT, but in other circumstances genetic disparities result in immune-related complications, including graft rejection and graft-versus-host disease (GVHD) (Gale and Reisner, 1986).

GVHD can be prevented by using T-cell-depleted bone marrow. Since 1980, we and others have successfully used mismatched T-cell-depleted marrow for the treatment of children with severe combined immune deficiency (SCID) (for reviews, see O'Reilly et al., 1989; Reisner et al., 1984; Reisner, 1990). The newly formed donor-type T cells in these patients are tolerant of the host and do not induce GVHD. Based on these promising results, the use of T-cell-depleted bone marrow was extended to the treatment of leukemia patients for whom matched sibling donors were not available and to those individuals who had matched sibling donors but were nevertheless at high risk for GVHD.
 
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