Methods, compositions and devices for growing human hematopoieti

Chemistry: molecular biology and microbiology – Treatment of micro-organisms or enzymes with electrical or... – Modification of viruses

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4351721, 4352041, 435373, 435377, 435395, 435401, C12N 1500, C12N 500, C12M 300

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056058225

ABSTRACT:
Methods, compositions and devices are provided for the growth of hematopoietic cells in culture. Bioreactors are provided in which diverse cell types are simultaneously cultured in the presence of appropriate levels of nutrients and growth factors substantially continuously maintained in the bioreactor while removing undesirable metabolic products. This simultaneous culture of multiple cell types is required for the successful reconstruction of hematopoietic tissue ex vivo. At least one growth factor is provided through excretion by transfected stromal cells, particularly heterologous cells. Means are provided for maintaining the stromal cells and hematopoietic cells separately, to allow for early removal of the hematopoietic cells.

REFERENCES:
patent: 4135975 (1979-01-01), Lichtman et al.
patent: 4481946 (1984-11-01), Altshuler et al.
patent: 4486188 (1984-12-01), Altshuler et al.
patent: 4514499 (1985-04-01), Noll
patent: 4714680 (1987-12-01), Civin
patent: 4808611 (1989-02-01), Cosman
patent: 4810643 (1989-03-01), Souza
patent: 4847201 (1989-07-01), Kawasaki et al.
patent: 4861714 (1989-08-01), Dean et al.
patent: 4889812 (1989-12-01), Guinn et al.
patent: 4963489 (1990-10-01), Naughton
patent: 4965204 (1990-10-01), Civin
patent: 5004681 (1991-04-01), Boyse et al.
patent: 5032407 (1991-07-01), Wagner et al.
patent: 5032508 (1991-07-01), Naughton et al.
patent: 5061620 (1991-10-01), Tsukamoto et al.
patent: 5199942 (1993-04-01), Gillis
Ventura et al (Experimental Hematology 1990, 18, 878-82).
Krumwieh et al (International Journal of Cell Cloning 1990, 8, Supplement 1, 229-48).
Heyworth et al (Growth Factors 1990, 2, 197-211).
A. Mizrahi, Process Biochemistry, (Aug. 1986) pp. 108-112 "Production of Biologicals from Animal Cells -An Overview".
Adamson et al., Canadian Jour. Of Chem. Eng., vol. 64 (Aug. 1986) pp. 531-539 "Industrial Mammalian Cell Culture".
T. M. Dexter et al., Long-Term Bone Marrow Culture, (1984) pp. 57-96.
Caldwell et al J. Cell Phys. 147:344. 1991.
Jordan et al Immunogenetics 18:165. 1983.
Hock et al Nature 309:275. 1986.
Freshney Culture of Animal Cells, pp. 305-307. 1987.
Wang et al Science 228:810. 1985.
Glachen et al Trends in Biotech 1(4): 102. 1983.
Yang et al Cell 47:3. 1986.
"Expansion of Human Bone Marrow Progenitor Cells in High Cell Density Continuous Perfusion System"; Bernhard O. Palsson, et al; Bio/Technology, vol. 11, Mar. 1993; pp. 368-372.
"Characterization and Partial Purification of Human Marrow Cells Capable of Initiating Long-Term Hematopoiesis In Vitro"; Heather J. Sutherland, et al; Blood; vol. 74, No. 5, Oct., 1989; pp. 1563-1570.
"Expansion of Primitive Human Hematopoietic Progenitors in a Perfusion Bioreactor System with IL-3, IL-6, and Stem Cell Factor"; Manfred R. Koller, et al; Bio/Technology, vol. 11; Mar., 1993; pp. 358-363.
"Functional Characterization of Individual Human Hematopoietic Stem Cells Cultured at Limiting Dilution of Supportive Marrow Stromal Layers"; Heather J. Sutherland, et al; Proc. Natl. Acad. Sci. USA; vol. 87, May, 1990; pp. 3584-3588.
"The Human Hematopoietic Stem Cell in Vitro and In Vivo"; C. J. Eaves, et al; Blood Cells; 18; 1992; pp. 301-307.
"Alternative Mechanisms With and Without Steel Factor Support Primitive Human Hematopoiesis"; H. J. Sutherland, et al; Blood; vol. 81, No. 6, Mar. 15, 1993; pp. 1464-1470.
"Human Recombinant Granulocyte-Macrophage Colony-Stimulating Factor: A Multilineage Hematopoietin"; Colin A. Sieff, et al; Science, vol. 230; Dec., 1985; pp. 1171-1173.
"Use of Limiting-Dilution Type Long-Term Marrow Cultures in Frequency Analysis of Marrow-Repopulating and Spleen Colony-Forming Hematopoietic Stem Cells in the Mouse"; Rob E. Ploemacher, et al; Blood, vol. 78, No. 10; Nov. 15, 1991; pp. 2527-2533.
"Evaluation of Hematopoiesis in Long-Term Bone Marrow Culture: Comparison of Species Differences"; C. E. Eastment, et al; Long-Term Bone Marrow Culture; 1984; pp. 97-118.
"Bone Marrow Stromal Fibroblasts Secrete Interleukin-6 and Granulocyte-Macrophage Colony-Stimulating Factor in the Absence of Inflammatory Stimulation: Demonstration by Serum-Free Bioassay, Enzyme-Linked Immunosorbent Assay, and Reverse Transcriptase Polymerase Chain Reaction"; Susan C. Guba, et al; Blood, vol. 80, No. 5; Sep. 1, 1992; pp. 1190-1198.
"Formation of haematopoietic microenvironment and haematopoietic stem cells from single human bone marrow stem cells"; Shiang Huang, et al; Nature, vol. 360; Dec. 24-31, 1992; pp. 745-749.
"Primitive hemopoietic stem cells: direct assay of most productive populations by competitive repopulation with simple binomial, correlation and covariance calculations"; David E. Harrison, et al; Experimental Hematology, 21; 1993; pp. 206-219.
"Methodology of Long-Term Culture of Human Hematopoietic Cells"; Connie J. Eaves, et al; J. Tiss. Cult. Meth., 13; 1991; pp. 66-62.
"Expression of Human Adenosine Deaminase in Nonhuman Primates After Retrovirus-Mediated Gene Transfer"; Philip W. Kantoff, et al; J. Exp. Med., vol. 166; Jul., 1987; pp. 219-234.
"Mitogenic Effect of Bestatin on Lymphocytes"; Masaaki Ishizuka, et al; The Journal of Antibiotics, vol. XXXIII, No. 6; Jun., 1980; pp. 653-662.
"In Vitro Growth of Murine T Cells, II. Growth of in Vitro Sensitized Cells Cytotoxic for Alloantigens"; Steven A. Rosenberg, et al.; The Journal of immunology, vol. 121, No. 5; Nov., 1978; pp. 1951-1955.
"Prospects for Human Gene Therapy"; W. French Anderson; Science, vol. 226; Oct., 1984; pp. 401-409.
"Beneficial Effects of Reduced Oxygen Tension and Perfusion in Long-Term Hematopoietic Cultures"; Manfed R Koller, et al; Biochemical Engineering VII, vol. 665 of the Annals of the New York Academy of Sciences; Oct. 13, 1992; pp. 105-116.
"Recent Modifications of Technique in Human Long-Term Bone Marrow Cultures"; Joel S. Greenberger; Long-Term Bone Marrow Culture; 1984; pp. 119-131.
"The Message in the Medium"; T. M. Dexter; Nature, vol. 309, No. 28; Jun., 1984; pp. 746-747.
"Long-term culture of human bone marrow cells"; Suzanne Gartner, et al; Proc. Natl. Acad. Sci. USA, vol. 77, No. 8; Aug., 1980; pp. 4756-4759.
"Granuloerythropoietic Colonies in Human Bone Marrow, Peripheral Blood, and Cord Blood"; A. A. Fauser, et al; Blood, vol. 52, No. 6; Dec., 1978; pp. 1243-1248.
"Induction of Colonies of Hemoglobin-Synthesizing Cells by Erythropoietin In Vitro"; John R. Stephenson, et al; Proc. Nat. Acad. Sci. USA, vol. 68, No. 7; Jul., 1971; pp. 1542-1546.
"Retrovirus-mediated transfer and expression of drug resistance genes in human haematopoietic progenitor cells"; Randy A. Hock, et al; Nature, vol. 230; Mar. 20, 1986; pp. 275-277.
"Canine Model for Gene Therapy: Inefficient Gene Expression in Dogs Reconstituted With Autologous Marrow Infected With Retroviral Vectors"; Richard B. Stead, et al; Blood, vol. 71, No. 3; Mar., 1988; pp. 742-747.
"The Basic Science of Gene Therapy"; Richard C. Mulligan; Science, vol. 260; May 14, 1993; pp. 926-932.
"Human IL-3 (Multi-CSF): Identification by Expression Cloning of a Novel Hematopoietic Growth Factor Related to Murine IL-3"; Yu-Chung Yang, et al; Cell, vol. 47; Oct. 10, 1986; pp. 3-10.
"A Cell Culture Model for T Lymphocyte Clonal Anergy"; Ronald H. Schwartz; Science, vol. 248; Jun. 15, 1990; pp. 1349-1356.
"Mammalian cell culture; engineering principles and scale-up"; M. W. Glacken, et al; Trends in Biotechnology, vol. 1, No. 4; 1983; pp. 102-108.
"Reduced Oxygen Tension Increases Hematopoiesis in Long-term Culture of Human Stem and Progenitor Cells from Cord Blood and Bone Marrow"; Manfred R. Koller, et al; Experimental Hematology, 20; 1992; pp. 264-270.
"Effects of Synergistic Cytokine Combinations, Low Oxygen, and Irradiated Stroma on the Expansion of Human Cord Blood Progenitors"; Manfred R. Koller, et al; Blood, vol. 80, No. 2; Jul. 15, 1992; pp. 403-411.
Gail K. Naughton, et al.; Journal of Cellular Biochemistry; Hematopoeisis on Nylon Mesh Microenvironments; 19th Annual Meeting (1990).
Jerry Caldwell, et al.; Biotechnology Progress; Influence of Medium Exchange Schedules on Metabolic, Growth, and GM-CSF Secretion Rates of Genetically Engineered NIH-3T3 C

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