Implantation of Cell-Matrix Structure Adjacent Mesentery, Omentum or Peritoneum Tissue
Abstract
A matrix structure containing attached cells such as endocrine cells, fibroblasts, endothelial cells or genitourinary cells is implanted in a patient adjacent tissue having a high surface area and vasculature such as mesentery, omentum or peritoneum tissue. Large volumes of cells can be attached to the matrix and the matrix implanted with minimum trauma and blood loss into a patient to produce a functional organ equivalent. Multiple matrix structures containing cells can be implanted to functionally resemble naturally occurring organs. Implanting multiple matrices between folds of the mesentery is particularly well suited for growth of endocrine structures, including liver, pancreas, and adrenal gland. The matrix structure is preferably formed from a biodegradable artificial polymer. Collagen and non-biodegradable materials can also be used, and the matrix structure can be overlaid with a material that enhances cell attachment. Materials such as angiogenesis factors can be incorporated into a matrix and implanted prior to implanting the matrix containing cells or the materials can be incorporated into the matrix containing cells. Cells attached to the matrix may be cultured in vitro prior to implanting. Matrix structures containing different types of cells can be implanted juxtapositioned with each other.
Metadata
Assignees
- Massachusetts Institute of Technology
- Children's Medical Center Corporation
Inventors
- Joseph P. Vacanti
- Robert S. Langer
- Lynt Johnson
Application Information
Classifications
Patent Drawings (4 sheets)
Description
Background of the Invention
Summary of the Invention
Brief Description of the Drawings
Detailed Description of the Invention
Claims
Certificate of Correction present
The claims shown below may not include correction changes. Use the corrected PDF for authoritative text.
Patent Citations (87)
| Patent | Date | Inventor | Cited By |
|---|---|---|---|
| US2609347 | 1952-09-01 | Wilson | |
| US2653917 | 1953-09-01 | Hammon | |
| US2659935 | 1953-11-01 | Hammon | |
| US2664366 | 1953-12-01 | Wilson | |
| US2664367 | 1953-12-01 | Wilson | |
| US2846407 | 1958-08-01 | Wilson | |
| US3826241 | 1974-07-01 | Bucalo | |
| US3880991 | 1975-04-01 | Yolles | |
| US3949073 | 1976-04-01 | Daniels | |
| US3960150 | 1976-06-01 | Hussain et al. | |
| US3974526 | 1976-08-01 | Dardik et al. | |
| US3982725 | 1976-09-01 | Homsy | |
| US3992725 | 1976-11-01 | Homsy | |
| US4026304 | 1977-05-01 | Levy | |
| US4060081 | 1977-11-01 | Yannas | |
| US4069307 | 1978-01-01 | Higuchi et al. | |
| US4137921 | 1979-02-01 | Okuzumi | |
| US4141087 | 1979-02-01 | Shalaby et al. | |
| US4144126 | 1979-03-01 | Burbidge | |
| US4186448 | 1980-02-01 | Brekke | |
| US4192827 | 1980-03-01 | Mueller et al. | |
| US4205399 | 1980-06-01 | Shalaby et al. | |
| US4228243 | 1980-10-01 | Iizuka | |
| US4239664 | 1980-12-01 | Teng et al. | |
| US4243775 | 1981-01-01 | Rosensaft et al. | |
| US4277582 | 1981-07-01 | Mueller et al. | |
| US4280954 | 1981-07-01 | Yannas et al. | |
| US4304591 | 1981-12-01 | Mueller et al. | |
| US4304866 | 1981-12-01 | Green et al. | |
| US4328204 | 1982-05-01 | Wasserman | |
| US4347847 | 1982-09-01 | Usher | |
| US4348329 | 1982-09-01 | Chapman | |
| US4352883 | 1982-10-01 | Lim et al. | |
| US4356261 | 1982-10-01 | Kuettner | |
| US4391797 | 1983-07-01 | Folkman et al. | |
| US4427808 | 1984-01-01 | Stol et al. | |
| US4431428 | 1984-02-01 | Schmer | |
| US4438198 | 1984-03-01 | Schmer | |
| US4439152 | 1984-03-01 | Small | |
| US4440921 | 1984-04-01 | Allcock et al. | |
| US4444887 | 1984-04-01 | Hoffmann | |
| US4446234 | 1984-05-01 | Russo et al. | |
| US4450150 | 1984-05-01 | Sidman | |
| US4456687 | 1984-06-01 | Green | |
| US4458678 | 1984-07-01 | Yannas et al. | |
| US4485096 | 1984-11-01 | Bell | |
| US4485097 | 1984-11-01 | Bell | |
| US4489056 | 1984-12-01 | Himmelstein | |
| US4495174 | 1985-01-01 | Allcock et al. | |
| US4505266 | 1985-03-01 | Yannas et al. | |
| US4520821 | 1985-06-01 | Schmidt | |
| US4528265 | 1985-07-01 | Becker | |
| US4544516 | 1985-10-01 | Hughes et al. | |
| US4545082 | 1985-10-01 | Hood | |
| US4546500 | 1985-10-01 | Bell | |
| US4559304 | 1985-12-01 | Kasai et al. | |
| US4563350 | 1986-01-01 | Nathan et al. | |
| US4563489 | 1986-01-01 | Urist | |
| US4563490 | 1986-01-01 | Stol et al. | |
| US4576608 | 1986-03-01 | Honsy | |
| US4609551 | 1986-09-01 | Caplan et al. | |
| US4637931 | 1987-01-01 | Schmitz | |
| US4642120 | 1987-02-01 | Nevo et al. | |
| US4645669 | 1987-02-01 | Reid | |
| US4675189 | 1987-06-01 | Kent et al. | |
| US4681763 | 1987-07-01 | Nathanson et al. | |
| US4713070 | 1987-12-01 | Mano | |
| US4757017 | 1988-07-01 | Cheung | |
| US4757128 | 1988-07-01 | Domb | |
| US4778749 | 1988-10-01 | Vasington et al. | |
| US4846835 | 1989-07-01 | Grande | |
| US4853324 | 1989-08-01 | Viles | |
| US4868121 | 1989-09-01 | Scharp et al. | |
| US4880622 | 1989-11-01 | Allcock et al. | |
| US4888176 | 1989-12-01 | Larger et al. | |
| US4891225 | 1990-01-01 | Langer et al. | |
| US5041138 | 1991-08-01 | Vacant et al. | |
| EPX226061 | 1987-06-01 | ||
| EPX282746 | 1988-09-01 | ||
| EPX339607 | 1989-11-01 | ||
| DEX2853614 | 1979-07-01 | ||
| JPX62-011459 | 1987-01-01 | ||
| JPX63-196273 | 1987-02-01 | ||
| JPX63-074498 | 1988-04-01 | ||
| JPX63-196595 | 1988-08-01 | ||
| WOXWO87/06120 | 1987-10-01 | ||
| WOXWO89/00413 | 1989-01-01 |
Non-Patent Literature (138)
- Yannas, et al., Science 215, 174-176 (1982).
- Yannas, et al., Polym. Prepr. Am. Chem. Soc. Div. Polym. Chem. 16(2), 209-214 (1975).
- Yannas, et al., J. Biomen. Mater. Res. 14, 65-81 (1980).
- Jaksie, et al., Ann. Rev. Med. 38, 107 (1987).
- Burke, The Role of Extracellular Matrix in Development 351-355 (Alan R. Liss, Inc., NY 1984).
- Yannas, et al., Iss. Polym. Biomaterial 106, 221-230 (1986).
- Yannas, J. of Trauma 24(9), S29-S39 (1984).
- Yannas, et al., Polym. Sci. Technol. Iss. Adv. Biomed. Polymer 35, 1-9 (Plenum 1987).
- Yannas, et al., Polym. Material Sci. Eng. 53, 216-218 (1985).
- Cosimi, et al., Surgical Clinics of N.A. 58(2), 435-451 (1978).
- Jones, et al., Cancer Invasion and Metastasis: Biologic and Therapeutic Aspects pp. 177-185 (Raven Press, NY 1984).
- Schubert, et al., J. Cell. Biol. 104, 635-643 (1987).
- Bazeed et al., Urology 21(5), 501-504 (1983).
- Mounzer et al., Urology 28(2), 127-130 (1986).
- Bazeed et al., Urology 21(1), 53-57 (1983).
- Kusano, et al., Acta Japoni Hepato 63, 345-351 (1089).
- Alberts, et al., Molecular Biology of the Cell, 893 and 894 (1983).
- Allcock, et al., "Synthesis of Poly(amino acid alkyl ester)phosphazenes," Macromolecules 10:824-830 (1977).
- Allcock, H.R., et al., "Phosponitrillic Compounds. XV. High Molecular Weight Polybis(amino)phosphazenes! and Mixed-Substituent Poly(aminophosphazenes)," Inorg. Chem. 11(11), 2584-2590 (1972).
- Allcock, et al., "Synthesis of Sugar-Substituted Cyclic and Polymeric Phosphazenes and Their Oxidation, Reduction, and Acetylation Reactions," Macromolecules 16(4), 715 (Apr. 1983).
- Allcock, et al., "Polyphosphazenes with Etheric Side Groups: Prospective Biomedical and Solid Electrolyte Polymers," Macromolecules 19(1), 1508 (Jan. 1986).
- Allcock, et al., "Amphiphilic polyphosphazenes as membrane materials: influence of side group on radiation cross-linking," Biomaterials, 9(6), 500-508 (Nov. 1988).
- Allcock, et al., "Glyceryl Polyphosphazenes: Synthesis, Properties, and Hydrolysis," Macromolecules 21(7), pp. 1980-1985 (1988).
- Allcock, et al., "Hydrolysis Pathways for Aminophosphazenes," Inorg. Chem. 21(1), 515-521 (Jan. 1982).
- Allcock, et al., "An Ionically Cross-Linkable Polyphosphazene: Polybis(carboxylatophenoxy)phosphazene! and Its Hydrogels and Membranes," Macromolecules 22(1), 75 (Jan. 1989).
- Anderson, David J., et al., Caltech Biology (1987).
- Anderson, Kathryn D., et al., "Gene Expression in Implanted Rat Hepatocytes Following Retroviral-Mediated Gene Transfer," Somatic Cell and Molecular Genetics, vol. 15, pp. 215-227 (1989).
- Backlund, Erik-Olof, et al., "Toward a Transplantation Therapy in Parkinson's Disease," Annals of the N.Y. Academy of Science, vol. 495, pp. 658-673 (1987).
- Stemple, Derek L., "A Factor that Induces Adrenergic Differentiation in Avian Neural Creat Cells," Caltech Biology (1987).
- Sullivan, Walter, "Spinal Injury Research Yields a Glimmer of Hope," The New York Times, (Jul. 14, 1987).
- Tavassoli, Mehdi, et al., "Studies on Regeneration of Heterotopic Spienic Autotransplants," Blood, vol. 41, No. 5, pp. 701-709 (May 1973).
- Thompson, John A., et al., "Heparin-Binding Growth Factor 1 Induces the Formation of Organoid Neovascular Structures In Vivo," Proc. Natl. Acad. Sci. U.S.A., vol. 86, pp. 7928-7932 (Oct. 1989).
- Thompson, J.A., et al., "Implantable Bioreactors: Modern Concepts of Gene Therapy," Current Communications in Molecular Biology: Therapeutic Peptides and Proteins, D. Marshak, ed., pp. 143-147 (Cold Spring Harbor Laboratory 1989).
- Tomomura, Akito, et al., "The Control of DNA Synthesis in Primary Cultures of Hepatocytes From Adult and Young Rats: Interactions of Extracellular Matrix Components, Epidermal Growth Factor, and the Cell Cycle," J. Cellular Physiology, vol. 130, No. 1, pp. 221-227 (1987).
- Unipoint Industries, Inc., "Polyvinyl Alcohol Foam for Surgical and Industrial Use" (May 1983).
- Vargo, Rita, et al., "Infection as a Complication of Liver Transplant," Critical Care Nurse, vol. 9, No. 4, pp. 52-62 (Apr. 1989).
- Viig, J., et al., "UV-Induced DNA Excision Repair in Rat Fibroblasts During Immortalization and Terminal Differentiation In Vitro," Exp. Cell Res. 167 (Dec. 1986) 517-530.
- Rosen, Howard B., et al., "Bioerodible Polymers for Controlled Release Systems," Controlled Release Systems: Fabrication Technology, vol. 11, Chapter 5, pp. 83-110 (1983).
- Rosen, Howard B., et al., "Bloerodible Polyanhydrides for Controlled Drug Delivery," Butterworth & Co. (Publishers) Ltd. (1983).
- Sawada, N., et al., "Effects of Extracellular Matrix Components of the Growth and Differentiation of Cultured Rat Hepatocytes," In Vitro Cellular & Development Biology, vol. 23, No. 4, pp. 267-273 (Apr. 1987).
- Schmeck, Harold M., "Doctors Try to Capitalize on the Liver's Ability to Regenerate Itself," The New York Times Medical Science (May 16, 1989).
- Seckel, B.R., et al., "Nerve Regeneration Through Synthetic Biodegradable Nerve Guides: Regulation by the Target Organ," Plast. Reconstr. Surg., 74(2):173-81 (Aug. 1974).
- Shine, H.D., et al., "Cultured Peripheral Nervous System Cells Support Peripheral Nerve Regeneration Through Tubes in the Absence of Distal Nerve Stump," J. Neuroscience Res., 14(4):393-401 (1985).
- Siegel, Ronald A., et al., "Controlled Release of Polypeptides and Other Macromolecules," Pharmaceutical Research 1984, pp. 2-10.
- Sirica, Alphonse, et al., "Fetal Phenotypic Expression by Adult Rat Hepatocytes on Collagen Gel/Nylon Meshes," Proc. National Academy Science USA, vol. 76, No. 1, pp. 283-287 (Jan. 1979).
- Sirica, Alphonse, et al., "Use of Primary Cultures of Adult Rat Hepatocytes on Collagen Gel-Nylon Mesh to Evaluate Carcinogen-Induced Unscheduled DNA Synthesis," Cancer Research, 40, 3259-3267 (Sep. 1980).
- Sladek, J.R., Jr., et al., "Reversal of Parkinsonism by Fetal Nerve Cell Transplants in Primate Brain," Annals of the New York Academy of Sciences, vol. 495, pp. 641-657 (New York 1987).
- Sladek, J.R., Jr., et al., "Survival and Growth of Fetal Catecholamine Neurons Transplanted into Primate Brain," Brain Res. Bull., 17(6):809-18 (Dec. 1986).
- Sladek, John R., Jr., et al., "Neural Transplantation: A Call for Patience Rather Than Patients," Science,vol. 240, pp. 386-388 (Jun. 10, 1988).
- Sladek, John R., Jr., et al., "Transplantation of Fetal Dopamine Neurons in Primate Brain Reverses MPTP Induced Parkinsonism," Progress in Brain Research, vol. 71, pp. 309-323 (1987).
- Notter, M.F., et al., "Neuronal Properties of Monkey Adrenal Medulla In Vitro," Cell Tissue Res., 244(1):69-76 (1986).
- Nyilas E., et al., "Peripheral Nerve Repair with Bioresorbable Prosthesis," Trans. Am. Soc. Artif. Intern. Organs, 29:307-13 (1983).
- Oellrich, R.G., et al., "Biliary Atresia," Neonatal Network, pp. 25-30 (Apr. 1987).
- Oliwenstein, Lori, "The Power of Plastics," Discover, p. 18 (Dec. 1989).
- Omery, Anna, et al., "A Nursing Perspective of the Ethical Issues Surrounding Liver Transplantation," Heart & Lung, vol. 17, No. 6 (Nov. 1988).
- Pasik, P., Annals of the N.Y. Academy of Science, vol. 495, pp. 674-675 (1987).
- Patterson, P.H., et al., "Adrenal Chromaffin Cell-Derived Cholinergic Neurons for Brain Transplants," Caltech Biology (1987).
- Patterson, P.H., et al., Caltech Biology, pp. 199-200 (1987).
- Perlow, M.J., "Brain Grafting as a Treatment for Parkinson's Disease," Neurosurgery, vol. 20, No. 2, pp. 335-342 (1987).
- Ptasinska-Urbanska, et al., "Intrascleral Introduction of Isolated Allogeneic Chondrocytes Capable of Cartilage Reformation in Rabbits; Possible Procedure in Treatment of Detachment of the Retina," Exp. Eye Res., vol. 24, No. 3, pp. 241-247 (1977).
- Redmond, D.E., Jr., et al., "Fetal Neuronal Grafts in Monkeys Given Methyphenyltetrahydropyridine," The Lancet, pp. 1125-1127 (May 17, 1986).
- Redmond, D.E., Jr., et al., "Transplants of Primate Neurons," Lancet, 2(8514):1046 (Nov. 1, 1986).
- Reid, L.M., et al., "Long-Term Cultures of Normal Ray Hepatocytes on Liver Biomatrix," Ann. NY Acad. Sci. (1980).
- Rhine, et al., "Polymers for Sustained Macromolecule Release: Procedures to Fabricate Reproducible Delivery Systems and Control Release Kinetics," Journal of Pharmaceutical Sciences, vol. 69, No. 3 (Mar. 1980).
- Madison, R., et al., "Nontoxic Nerve Guide Tubes Support Neovascular Growth in Transected Rat Optic Nerve," Exp Neurol, 86(3):448-61 (Dec. 1984).
- Madison, R., et al., "Peripheral Nerve Regeneration With Entubulation Repair: Comparison of Biodegradeable Nerve Guides Versus Polyethylene Tubes and the Effects of a Laminin-Containing Gel," Exp Neurol, 95(2):387-90 (Feb. 1987).
- Marciano, F.F., et al., "Structural and Functional Relationships of Grafted Vasopressin Neurons," Brain Res., 370(2):338-42 (Apr. 9, 1986).
- Mesnil, et al., "Cell Contact but Not Junctional Communication (Dye Coupling) with Biliary Epithelial Cells is Required for Hepatocytes to Maintain Differentiated Functions," Exper. Cell Res., 173 (1987) 524-533.
- Michalopoulos, G., et al., "Primary Culture of Parenchymal Liver cells on Collagen Membranes," Exper. Cell. Res. 94 (1975) 70-78.
- Millaruelo, Ana I., "Role of Plasminogen Activator and its Inhibitors in Axonal Outgrowth and Regeneration In Vivo," Caltech Biology, (1987).
- Mooney, David, et al., "Control of Hepatocyte Function Through Polymer-Substrate Modulation," Thesis Proposal--Department of Chemical Engineering, Massachusetts Institute of Technology (Sep. 22, 1989).
- Mooney, David, et al., "Switching from Differentiation to Growth in Hepatocytes: Control by Extracellular Matrix," J. Cell Biology, V. 111, No. 5, p. 149a (Nov. 1990).
- Movitz, David, "Accessory Spleens and Experimental Splenosis Principles of Growth," The Chicago Medical School Quarterly, vol. 26, No. 4, pp. 183-187 (Winter-Spring 1967).
- Nastelin, Jennifer Green, "Pancreatic Islet Cell Transplantation: Optimization of Islet Cell Adhesion by Altering Polymer Surface Characteristics," Harvard-M.I.T. Division of Health Sciences and Technology (Feb. 1990).
- Naughton, B.A., et al., "Granulopoiesis and Colony Stimulating Factor Production in Regenerating Liver," Exp. Hematol., vol. 10, No. 5, pp. 451-458 (May 1982).
- Naughton, B.A., et al., "Long-Term Growth of Rat Bone Marrow Cells in a Three-Dimensional Matrix," The Anatomical Record, vol. 18, No. 1, p. 97A (May 1987).
- Naughton, G.K., et al., "Erythropoietin Production by Macrophages in the Regenerating Liver," Journal of Surgical Oncology, vol. 30, pp. 184-197 (1985).
- Ingber, et al., "Control of Capillary Morphogenesis: A Molecular System of Mechanical Switches," J. Cell Biol., 107:797a (1988).
- Ingber, et al., "Growth Control through Fibronectin-Dependent Modulation of Cell Shape," J. Cell Biol., 105:219a (1987).
- Ingber, et al., "How Does Extracellular Matrix Control Capillary Morphogenesis?", Cell, vol. 58, pp. 803-805 (Sep. 8, 1989).
- Ingber, et al., "Mechanochemical Switching Between Growth and Differentiation During Fibroblast Growth Factor-Stimulated Angiogenesis Vitro: Role of Extracellular Matrix," J. Cell Biol., vol. 109, pp. 317-330 (1989).
- Jauregui, H.O., et al., "Attachment and Long Term Survival of Adult Rat Hepatocytes in Primary Monolayer Cultures: Comparison of Different Substrata and Tissue Culture Media Formulations," In Vitro Cellular & Development Biology, vol. 22, No. 1, pp. 13-22 (Jan. 1986).
- Kleinman, H.K., et al., "Use of Extracellular Matrix Components for Cell Culture," Analytical Biochemistry 166, 1-13 (1987).
- Kolata, Gina, "Parkinson Procedure: Fervor Turns to Disillusion," The New York Times, (Apr. 21, 1988).
- Kordower, J.H., et al., "An in Vivo and in Vitro Assessment of Differentiated Neuroblastoma Cells as a Source of Donor Tissue for Transplantation," Annals of the New York Academy of Sciences, vol. 495, pp. 606-622 (New York 1987).
- Kordower, J.H., et al., "Neuroblastoma Cells in Neural Transplants: A Neuroanatomical and Behavioral Analysis," Brain Research, 417(1):85-98 (Aug. 4, 1987).
- Letourneau, "Possible Roles for Cell-to-Substratum Adhesion in Neuronal Morphogenesis," Developmental Biology, 44, 77-91 (1975).
- Lewin, "Cloud over Parkinson's Therapy," Science, vol. 240, pp. 390-392, (Apr. 22, 1988).
- Lewin, "Disappointing Brain Graft Results," Science, pp. 1407, (Jun. 10, 1988).
- Li, M.L., et al., "Influence of a Reconstituted Basement Membrane and Its Components on Casein Gene Expression and Secretion in Mouse Mammary Epithelial Cells," Proc. Natl. Acad. Sci. USA vol. 84, pp. 136-140 (Jan. 1987).
- Macklis, J.D., et al., "Cross-Linked Collagen Surface for Cell Culture that is Stable, Uniform, and Optically Superior to Conventional Surfaces," In Vitro Cellular & Developmental Biology, vol. 21, No. 3, part 1, pp. 189-194 (Mar. 1985).
- Madison, R., et al., "Increased Rate of Peripheral Nerve Regeneration Using Bioresorbable Nerve Guides and a Laminin-Containing Gel," Exp. Neurol., 88(3):767-72 (Jun. 1985).
- da Silva, C.F., et al., "An In Vivo Model to Quantify Motor and Sensory Peripheral Nerve Regeneration Using Bioresorbable Nerve Guide Tubes," Brain Research, vol. 342, pp. 307-315 (1985).
- del Cerro, M., et al., "Retinal Transplants into the Anterior Chamber of the Rat Eye," Neuroscience vol. 21(3):707-23 (Jun. 1987).
- Doillon, C.J., et al., "Collagen-Based Wound Dressings: Control of the Pore Structure and Morphology," Journal of Biomedical Materials Research, vol. 20, pp. 1219-1228 (Oct. 1986).
- Doillon, C.J., et al., "Epidermal Cells Cultured on a Collagen-Based Material," G.W. Bailey, Editor, Proceedinas of the 44th Annual Meeting of the Electron Microscopy Society of America, (1986).
- Folkman, Judah, et al., "Angiogenic Factors," Science, vol. 235, pp. 442-447 (Jan. 23, 1987).
- Gash, D.M., et al., "Amitotic Neuroblastoma Cells Used for Neural Implants in Monkeys," Science, 233(4771):1420-2 (Sep. 26, 1986).
- Gash, D.M., "Neural Transplantation: Potential Therapy for Alzheimer's Disease," J. Neural Transm., Suppl.! 24:301-8 (1987).
- Grande, Daniel A., et al., "Healing of Experimentally Produced Lesions in Articular Cartilage Following Chondrocyte Transplantation," The Anatomical Record 218:142-148 (1987).
- Grande, Daniel A., et al., "The Repair of Experimentally Produced Defects in Rabbit Articular Cartilage by Autologous Chondrocyte Transplantation," (May 11, 1988).
- Harris, A.K., et al., "Silicone Rubber Substrata: A New Wrinkle in the Study of Cell Locomotion," Science (Wash. D.C.) 208:177-179 (1980).
- Henry, E.W., et al., "Nerve Regeneration Through Biodegradable Polyester Tubes," Exp. Neurol., 90(3):652-76 (Dec. 1985).
- Ingber, D.E., et al., "Cells as Tensegrity Structures: Architectural Regulation of Histodifferentiation by Physical Forces Transduced Over Basement Membrane," Gene Expression During Normal and Malignant Differentiation, L.C. Andersson, et al., editors, pp. 13-32 (Academic Press, Orlando, FL 1985).
- Ben-Ze'ev, A., et al., "Cell-Cell and Cell-Matrix Interactions Differentially Regulate the Expression of Hepatic and Cytoskeletal Genes in Primary Cultures of Rat Hepatocytes," Proc. Natl. Acad. Sci. USA vol. 85, pp. 2161-2165 (Apr. 1988).
- Biers, Elizabeth, "Organogensis' Human Artery Equivalent May Revolutionize Vascular Grafts," Genetic Engineering News, (Nov.-Dec. 1987).
- Bissell, D. Montgomery, et al., "Interactions of Rat Hepatocytes with Type IV Collagen, Fibronectin and Laminin Matrices, Distinct Matrix-Controlled Modes of Attachment and Spreading," European Journal of Cell Biology 40, 72-78 (Mar. 1986).
- Bissell, D.M., et al., "Support of Cultured Hepatocytes by a Laminin-Rich Gel, Evidence of a Functionally Significant Subendothelial Matrix in Normal Rat Liver," J. Clin. Invest., vol. 79, pp. 801-812 (Mar. 1987).
- Bissell, D.M., et al., "The Role of Extracellular Matrix in Normal Liver," Scand. J. Gastroenterol. 23:107 (1988).
- Bjorklund, A., Annals of the N.Y. Academy of Science, vol. 495, pp. 676-686 (1987).
- Bohn, M.C., et al., "Adrenal Medulla Grafts Enhance Recovery of Striatal Dopaminergic Fibers," Science 238(4817):913-6 (Aug. 21, 1987).
- "Brain Graft Seeks to Relieve Huntington Disease Patient," The New York Times, (Mar. 4, 1988).
- Brown, Norman, "Fibrin-Collagen Nerve Repair Device," Inventors: Russ Griffiths, Larry Stensaas and Ken Horch, Letter dated May 10, 1988.
- Burke, John F., et al., "Successful Use of a Physiologically Acceptable Artificial Skin in the Treatment of Extensive Burn Injury," Ann. Surg., 194(1):413-428 (1981).
- Craig, et al., "A Biologic Comparison of Polyglactin 910 and Polyglycolic Acid Synthetic Absorbable Sutures," Surgery Gynecology & Obstetrics, vol. 141, No. 1, pp. 1-10 (Jul. 1975).
- Culliton, Barbara J., "Gore Tex Organoids and Genetic Drugs," Science, vol. 246. pp. 747-749 (Nov. 1989).
- Davis, George E., et al., "Human Amnion Membrane Serves as a Substratum for Growing Axons In Vitro and In Vivo," Science, vol. 236, pp. 1106-1109 (May 29, 1987).
- Thuroff et al, "Cultured Rabbit Vesical Smooth Muscle Cells for Lining of Dissolvable Synthetic Prosthesis", Urology, V. 21, 155-158, 1983.
- Pimpl et al (A), Biological Abstracts 78(4):24889, 1984.
- Sasaki et al, Biological Abstracts 82(9):80762, 1986.
- Pimpl et al (B) Biological Abstracts 83(8):76014, 1987.
- Sapozhnikova et al, Biological Abstracts 86(8):76896, 1988.
- Leeson et al Histology WB Saunders Co 1976 pp. 86, 87 and 114.
- Structure & Function in Man WB Saunders Co 1982 pp. 85-88, 383, 384, 484 & 413.
- Thompson Science 258:744-746 1992.
- Culliton Science 246:748 1989.
- Kretschmer, et al., Ann. Surg. 187, 79-86 (1978).
- Naji, et al., Surgery 86, 218-226 (1979).
- Sutherland, et al., Surgery 82, 124-132 (1977).
- Groth, et al., Transplant. Proc. 9, 313-316 (1977).
- Matas, et al., Science 192, 892-894 (1976).
- Ebata, et al., Surg. Forum 29, 338-340 (1978).
- Seldon, et al., Transplant 38, 81-83 (1984).
- Minato, et al., Euro. Surg. REs. 16, 162-169 (1984).
- Vroeman, et al., Transplantation 42, 130-135 (1986).
- Strom, et al., JNCI 68, 771-778 (1982).
- Vacant, et al J Pediatric Surgery 23(1) 3-9 1982.
- Leong, et al J Biomedical Materials Research vol. 19:941-955 1985.