Bacterial synthesized cellulose — artificial blood vessels for microsurgery
Tóm tắt
Từ khóa
Tài liệu tham khảo
Tarchevsky, 1991
Klemm, 1998, vol. 1/2
Vandamme, 1998, Improved production of bacterial cellulose and its application potential, Polym Degrad Stab, 59, 93, 10.1016/S0141-3910(97)00185-7
Jonas, 1998, Production and application of microbial cellulose, Polym Degrad Stab, 59, 101, 10.1016/S0141-3910(97)00197-3
Kobayashi, 1992, Enzymatic polymerization: the first in vitro synthesis of cellulose via nonbiosynthetic path catalysed by cellulase, Makromol Chem, Macromol Symp, 54/55, 509, 10.1002/masy.19920540138
Kobayashi, 1991, Novel method for polysaccharide synthesis using an enzyme: the first in vitro synthesis of cellulose via a nonbiosynthetic path utilizing cellulase as catalyst, J Am Chem Soc, 113, 3079, 10.1021/ja00008a042
Nakatsubo, 1996, Cationic ring-opening polymerization of 3,6-d-O-benzyl-a-d-glucose 1,2,4-orthopivalate and the first chemical synthesis of cellulose, J Am Chem Soc, 118, 1677, 10.1021/ja953286u
Hestrin, 1954, Synthesis of cellulose by Acetobacter xylinum. 2. Preparation of freeze dried cells capable of polymerizing glucose to cellulose, Biochem J, 58, 345, 10.1042/bj0580345
Ross, 1991, Cellulose biosynthesis and function in bacteria, Microbiol Rev, 55, 35, 10.1128/MR.55.1.35-58.1991
De Wulf, 1996, Improved cellulose formation by an Acetobacter xylinum mutant limited in (keto)gluconate synthesis, J Chem Technol Biotechnol, 67, 376, 10.1002/(SICI)1097-4660(199612)67:4<376::AID-JCTB569>3.0.CO;2-J
Brown, 1992, Emerging technologies and future prospects for industrialization of microbially derived cellulose, 76
White, 1989, Prospects for the commercialization of the biosynthesis of microbial cellulose, 573
Yamanaka, 1989, The structure and mechanical properties of sheets prepared from bacterial cellulose, J Mater Sci, 24, 3141, 10.1007/BF01139032
Cannon, 1991, Biogenesis of bacterial cellulose, Crit Rev Microbiol, 17, 435, 10.3109/10408419109115207
Ciechanska, 1998, Biosynthesis of cellulose in static conditions, Fibres Textiles Eastern Eur, January/March, 59
Brown, 1886, The chemical action of pure cultivation of bacterium aceti, J Chem Soc, 49, 432, 10.1039/CT8864900432
Delmer, 1999, Cellulose biosynthesis: exciting times for a difficult field of study, Annu Rev Plant Physiol Plant Mol Biol, 50, 245, 10.1146/annurev.arplant.50.1.245
Premjet, 1999, The importance of TCA cycle related acids in bacterial cellulose production, Transaction, 55, 48
Salmon, 1997, Crystal morphology, biosynthesis, and physical assembly of cellulose, chitin, and chitosan, JMS-Rev Macromol Chem Phys, C37, 199
Fink, 1997, Investigation of the supramolecular structure of never dried bacterial cellulose, Macromol Symp, 120, 207, 10.1002/masy.19971200121
Hori, 1997, Evidence for the periodically alternating microfibrillar structure of bacterial cellulose, Biosci Biotechnol Biochem, 61, 1401, 10.1271/bbb.61.1401
Weinhouse, 1997, c-di-CMP-binding protein, a new factor regulating cellulose synthesis in Acetobacter xylinum, FEBS Lett, 416, 207, 10.1016/S0014-5793(97)01202-7
Hirai, 1998, Helical sense of ribbon assemblies and splayed microfibrils of bacterial cellulose, Sen'i Gakkaishi, 54, 506, 10.2115/fiber.54.10_506
Iwata, 1998, Affinity of hemicellulose for cellulose production by Acetobacter xylinum, Cellulose (London), 5, 215, 10.1023/A:1009237401548
Whitney, 1998, Struktural aspects of the interaction of mannan-based polysaccharides with bacterial cellulose, Carbohydr Res, 307, 299, 10.1016/S0008-6215(98)00004-4
Koo, 1998, Evidence that a β-1,4-endoglucanase secreted by Acetobacter xylinum plays an essential role for the formation of cellulose fiber, Biosci Biotechnol Biochem, 62, 2257, 10.1271/bbb.62.2257
Brown, 1998, Cellulose biogenesis and a decade of progress: a person perspective, 639
Colvin, 1985, A heretical view of cellulose biosynthesis, 279
Standal, 1994, A new gen required cellulose production and a gen encoding cellulolytic activity in Acetobacter xylinum are colocalized with the bcs operon, J Bacteriol, 176, 665, 10.1128/jb.176.3.665-672.1994
Yamamoto, 1996, In situ crystallization of bacterial cellulose. II. Influences of different polymeric additives on the formation of celluloses Iα and Iβ at the early stage of incubation, Cellulose (London), 3, 229, 10.1007/BF02228804
Haigler, 1988, Electron diffraction analysis of the altered cellulose synthesized by Acetobacter xylinum in the presence of fluorescent brightening agents and direct dyes, Ultrastruct Mol Struct Res, 98, 299, 10.1016/S0889-1605(88)80922-4
Brown, 2000, Cellulose biosynthesis: a model for understanding the assembly of biopolymers, Plant Physiol Biochem, 38, 57, 10.1016/S0981-9428(00)00168-6
Bungay, 1997, Environmental implications of microbial cellulose, 691
Hwang, 1999, Effects of pH and dissolved oxygen on cellulose production by Acetobacter xylinum BRC5 in agitated culture, J Biosci Bioeng, 88, 183, 10.1016/S1389-1723(99)80199-6
Chen, 1999, Thermal stability of the cellulose synthase complex of Acetobacter xylinum, Cellulose (Dordrecht, Neth), 6, 137
Boisset, 1999, Digestion of crystalline cellulose substrated by the Clostridium thermocellum cellulosome: structural and morphological aspects, Biochem J, 340, 829, 10.1042/bj3400829
Umeda, 1999, Cloning of cellulose synthase genes from Acetobacter xylinum JCM 7664:implication of a novel set of cellulose synthase genes, DNA Res, 6, 109, 10.1093/dnares/6.2.109
Chen, 1998, Occurrence of polypeptides in other organisms cross-reacting with antibodies against A. xylinum cellulose synthase, Cellulose (Dordrecht, Neth), 5, 263
Han, 1998, The mechanism of Acetobacter xylinum cellulose biosynthesis: direction of chain elongation and the role of lipid pyrophosphate intermediates in the cell membrane, Carbohydr Res, 313, 125, 10.1016/S0008-6215(98)00253-5
Shibazaki, 1998, Native cellulose II production by Acetobacter xylinum under physical constraints, Cellulose (London), 5, 165, 10.1023/A:1009277122329
Tahara, 1998, Purfication and characterization of exo-1,4-β-glucosidase from Acetobacter xylinum BPR 2001, J Ferment Bioeng, 85, 589, 10.1016/S0922-338X(98)80010-X
Haigler, 1991, Relationship between polymerization and crystallization in microfibril biogenesis, 99
Kuga, 1991, Physical structures of cellulose microfibrils: implication for biogenesis, 125
Ross, 1991, Biochemistry of cellulose synthesis in Acetobacter xylinum, 219
Hestrin, 1963, Bacterial cellulose, Meth Carbohydr Chem, 3, 4
Samon, 1997, Crystal morphology, biosynthesis, and physical assembly of cellulose, chitin, and chitosan, JMS-Rev Macromol Chem Phys, C37, 199
Tokoh, 1998, Cellulose synthesized by Acetobacter xylinum in the presence of acetyl glucomannan, Cellulose (Dordrecht, Neth), 5, 249
Yamanaka, 1994, Application of bacterial cellulose, 207
Yoshinaga, 1997, Research progress in production of bacterial cellulose by aeration and agitation culture and its application as a new industrial material, Biosci Biotechnol Biochem, 61, 219, 10.1271/bbb.61.219
Williams, 1989, Alternative environmental roles for cellulose produced by Acetobacter xylinum, Appl Environ Microbiol, 55, 2448, 10.1128/AEM.55.10.2448-2452.1989
Iguchi, 2000, Bacterial cellulose — a masterpiece of nature's arts, J Mater Sci, 35, 261, 10.1023/A:1004775229149
Ogawa, 1991, Preparation of bacterial polysaccaride of hybridized enzyme susceptibility, Sen-i Gakkaishi, 456, 10.2115/fiber.47.8_456
Ogawa, 1992, Preparation of bacterial cellulose containing N-acetylglucosamine residue, Carbohydr Polym, 19, 171, 10.1016/0144-8617(92)90158-M
Ogawa, 1992, Susceptibilities of bacterial cellulose containing N-acetylglucosamine residues for celluloytic and chinolytic enzymes, Int J Biol Macromol, 14, 343, 10.1016/S0141-8130(05)80076-5
Einfeldt, 1993, Acetylated cabohydrate derivatives as C sources for Acetobacter xylinum, Natl Prod Lett, 2, 263, 10.1080/10575639308043820
Geyer, 1994, Kinetics of the utilization of different C sources and the cellulose formation by Acetobacter xylinum, Acta Biotechnol, 14, 261, 10.1002/abio.370140308
Einfeldt L. Aufbau modifizierter Cellulose durch Acetobacter xylinum — Eine biotechnologische Alternative zur regioselektiven chemischen Derivatisierung von Cellulose? Dissertation 1995, Friedrich–Schiller-Universität Jena.
Hyatt JA, Gardner RM, Thatcher SR. US Patent 5,360,723. Assigned to Eastman Chemical Company, Kingsport, TN.
Tajima, 1999, Enhancement of bacterial cellulose (BC) production by carboxymethyl cellulose (CMC), Cellul Commun, 6, 18
Uhlin, 1995, Influence of hemicelluloses on the aggregation patterns of bacterial cellulose, Cellulose (London), 2, 129, 10.1007/BF00816385
Tajima, 1995, Synthesis of bacterial cellulose composite by Acetobacter xylinum I. Its mechanical strength and biodegradability, Mokuzai Gakkaishi, 41, 749
Bohn A, Fink H-P, Glasser W. Influence of xylan on the structure of bacterial cellulose. 4. Berichtskolloquium des Schwerpunktprogramms der DFG. Cellulose und Cellulosederivate — Molekulares und Supramolekulares Strukturdesign. 14.-16.3.1999, Bad Herrenalb, Germany. In: Klemm, D., coordinator, Book of abstracts 1999, Friedrich-Schiller Universität Jena.
Azuma, 1999, Composite formation of cellulose with hemicellulose, Cellul Commun, 6, 12
Atalla, 1993, Hemicelluloses as structure regulators in the aggregation of native cellulose, Int J Biol Macromol, 15, 109, 10.1016/0141-8130(93)90007-9
Tajima, 1996, Enhancement of bacterial cellulose productivity by water-soluble chitosan, Mokuzai Gakkaishi, 42, 279
Kai, 1998, Structure of nascent microbial cellulose. Influence of number of sulfonate groups in fluorescent brightener on crystal structure of microbial cellulose, Polym J, 30, 996, 10.1295/polymj.30.996
Tonouchi, 1995, Addition of a small amount of an endoglucanase enhances cellulose production by Acetobacter xylinum, Biosci Biotechnol Biochem, 59, 805, 10.1271/bbb.59.805
Kim, 1999, Modifications of Acetobacter xylinum bacterial cellulose using dextransucrase and alternansucrase, J Microbiol Biotechnol, 9, 704
Tokura, 1998, Direct filature of bacterial cellulose from culture medium, Macromol Symp, 127, 23, 10.1002/masy.19981270106
Sakairi, 1998, Biosynthesis of hetero-polysaccharides by Acetobacter xylinum — synthesis and characterization of metal-ion adsorptive properties of partially carboxymethylated cellulose, Carbohydr Polym, 37, 409, 10.1016/S0144-8617(97)00226-9
Geyer, 1994, Formation, derivatization and application of bacterial cellulose, Int J Biol Macromol, 16, 343, 10.1016/0141-8130(94)90067-1
Tabuchi, 1998, Acetylation of bacterial cellulose: preparation of cellulose acetate having a high degree of polimerization, Biosci Biotechnol Biochem, 62, 1451, 10.1271/bbb.62.1451
Cheng, 1998, Bacterial cellulose and its CMC derivatives, Polym Prepr, 39, 695
Dicke R. Untersuchungen an Bakteriencellulose. Diplomarbeit 1996, Friedrich-Schiller-Universität Jena.
Scheffler F. Untersuchungen zur Reaktivität von Bakteriencellulose. Diplomarbeit 1996, Friedrich-Schiller-Universitiät Jena.
Verlhac, 1990, Availability of surface hydroxyl groups in Valonia and bacterial cellulose, J Polym Sci, Part A: Polym Chem, 28, 1171, 10.1002/pola.1990.080280517
Takai, 1987, Crystalline polymorphism of cellulose triacetate, 111
Sourty, 1998, Characterization of magnetic membranes based on bacterial and man-made cellulose, Cellulose (London), 5, 5, 10.1023/A:1009207027869
Sourty, 1998, Ferrite-loaded membranes of microfibrillar bacterial cellulose prepared by in situ precipitation, Chem Mater, 10, 1755, 10.1021/cm980024t
Saalwächter, 2000, Cellulose solutions in water containing metal complexes, Macromolecules, 33, 4094, 10.1021/ma991893m
Laszkiewicz, 1998, Solubility of bacterial cellulose and its structural properties, J Appl Polym Sci, 67, 1871, 10.1002/(SICI)1097-4628(19980314)67:11<1871::AID-APP5>3.0.CO;2-I
Shibazaki, 1997, Mercerization and acid hydrolysis of bacterial cellulose, Cellulose (London), 4, 75, 10.1023/A:1024273218783
1984, vol. 1, 267
Fiedler, 1989, Gewinnung und Anwendung von Bakteriencellulose I. Übersicht zum Stand der Forschung und Untersuchungen zur Fermentationskinetik, Zentralbl Mikrobiol, 144, 473, 10.1016/S0232-4393(89)80037-X
Park, 1999, Effect of gluconic acid on the production of cellulose in Acetobacter xylinum BRC5, J Microb Biotechnol, 9, 683
Matsaoka, 1993, Production of cellulose from glucose by Acetobacter xylinum, J Ferment Bioeng, 75, 18, 10.1016/0922-338X(93)90171-4
Budhiono, 1999, Kinetic aspects of bacterial cellulose formation in nata-de-coco culture system, Carbohydr Polym, 40, 137, 10.1016/S0144-8617(99)00050-8
Borzani, 1995, Mechanism of the film thickness increasing during the bacterial production of cellulose on non-agitated liquid media, Biotechnol Lett, 17, 1271, 10.1007/BF00128400
Embuscado, 1996, Isolation and partial characterization of cellulose produced by Acetobacter xylinum, Food Hydrocolloids, 10, 75, 10.1016/S0268-005X(96)80057-9
Dugarma S. Untersuchungen zur Reinigung und Bildung der Bakteriencellulose von Acetobacter xylinum. Diplomarbeit 1995, Friedrich-Schiller-Universität Jena.
Jayme, 1948, Development of a standard centrifugal method for determining the swelling values of pulps, Papier (Darmstadt), 2, 7
Johnson, 1990, Bacterial cellulose has potential application as new paper coating, Pulp Pap, 64, 105
Kent, 1991, Bacterial cellulose fiber provides an alternative for thickening and coating, Food Technol, 45, 108
Shibazaki, 1993, Bacterial cellulose membrane as separation medium, J Appl Polym Sci, 50, 965, 10.1002/app.1993.070500605
Watanabe, 1994, Bacterial cellulose: structure, physiochemical property and application, Proc ISF, 94, 445
Okiyama, 1993, Bacterial cellulose IV. Applications to processed foods, Food Hydrocolloids, 6, 503, 10.1016/S0268-005X(09)80074-X
Fontana, 1990, Acetobacter cellulose pellicle as a temporary skin substitute, Appl Biochem Biotechnol, 24/25, 253, 10.1007/BF02920250
Novaes, 1992, IMZ implants placed into extraction sockets in association with membrane therapy (Gengiflex) and porous hydroxyapatite: a case report, Int J Oral Maxillofac Implants, 7, 536
Novaes, 1993, Bone formation over a TIAL6V4 (IMZ) implant placed into an extraction socket in association with membrane therapy (Gengiflex), Clin Oral Implants Res, 4, 106, 10.1034/j.1600-0501.1993.040207.x
dos Anjos, 1998, Clinical comparison of cellulose and expanded polytetrafluroethylene membranes in the treatment of class II furcations in mandibular molars with 6-month re-entry, J Periodontol, 69, 454, 10.1902/jop.1998.69.4.454
Novaes, 1997, Soft tissue management for primary closure in guided bone regeneration: surgical techniques and case report, Int J Oral Maxillofac Implants, 12, 84
Novaes, 1995, Immediate implants placed into infected sites: a clinical report, Int J Oral Maxillofac Implants, 10, 609
Salata, 1995, In-vivo evaluation of a new membrane (Gengiflex) for guided bone regeneration. Divisional abstracts: The British society of Dental Reasearch, J Dent Res, 74, 825
He, 1997, Artificial biological skin for preventing adhesion of repaired tendon in white rats, Hu-Nan I Ko Ta Hsueh Hsueh Pao, 22, 287
Rebello, 1987, Biofill a new skin substitute our experience, Rev Bras Cir, 77, 407
Fontana, 1991, Nature of plant stimulators in the production of Acetobacter xylinum (tea fungus) bioflim used in skin therapy, Appl Biochem Biotechnol, 28/29, 341, 10.1007/BF02922613
Pitanguy, 1988, Utilization of the cellulose pellicle biofill as a biological dressing, Rev Bras Cir, 78, 317
Fontana, 1997, Acetobacter cellulosic bioflims search for new modulators of cellulogenesis and native membrane treatment, Appl Biochem Biotechnol, 63–65, 327, 10.1007/BF02920434
Slezak, 1998, Testing the osmotic-diffusion properties for the membranous dressing bioprocess, Polym Med, 28, 3
Schmauder, 2000, Bakterienzellulose — ein interessantes biomaterial, Bioforum, 23, 484
Mello, 1997, Duraplasty with biosynthesis cellulose: an experimental study, J Neurosurg, 86, 143, 10.3171/jns.1997.86.1.0143
Roberts EM, Hardison LK, Brown Jr, RM. EP Patent 0 186 495. Assigned to the University of Texas System Board of Reagents.
Ono E, Watanabe O, Yamanaka S. JP Patent 03165774. Assigned to Ajinomoto Co Inc.
Yamanaka S, Ono E. JP Patent 08126697. Assigned to Ajinomoto Co Inc.
Yamanaka S, Ono E, Watanabe O, Kusakabe M, Suzuki Y. JP Patent 03272772. Assigned to Ajinomoto Co Inc., Sony Corp.
Hajime K, Shiro S, Sadao K. JP Patent 63205109. Assigned to Daicel Chem Ind Ltd.
Yamanaka S, Ono E, Watanabe K, Kusakabe M, Suzuki Y. EP Patent 0 369 344. Assigned to Ajinomoto Co Inc, Sony Corp.
Yamanaka, 1989, Production and application of bacterial cellulose, 175
Buncke, 1975
Schulz, 1999, Lebende Gewebe aus dem Reagenzglas. Wie sich Knochen, Knorpel und andere Geweb in vitro erzeugen lassen. Blick in die Wissenschaft, Forschungsmagazin Universität Regensburg, 11, 16
Fujita, 1986
Tonneson, 2000, Angiogenesis in wound healing, J Invest Dermatol Symp Proc, 5, 40, 10.1046/j.1087-0024.2000.00014.x
Tominaga, 2001, Expression of gene for EIIIA- and EIIIB-fibronectin, fetal types of fibronectin, during gastric ulcer healing in rats, Dig Dis Sci, 46, 311, 10.1023/A:1005541305255
Grinnell, 1987, Activation of keratinocyte fibronectin receptor function during cutaneous wound healing, J Cell Sci Suppl, 8, 199, 10.1242/jcs.1987.Supplement_8.11
Kumazaki, 1993, Enhanced expression of fibronectin during in vivo cellular aging of human vascular endothelial cells and skin fibroblasts, Exp Cell Res, 205, 396, 10.1006/excr.1993.1103
Ishiwata, 1994, Fibronectin biosynthesis in endothelial regeneration after intimal injury, Exp Mol Pathol, 60, 1, 10.1006/exmp.1994.1001
Romeis, 1968, vol. 1226
Christner, 1999, Synthesis and cytotoxic evaluation of cycloheximide derivates as potential inhibitors of FKBP12 with neuroregenerative properties, J Med Chem, 42, 3515, 10.1021/jm991038t
Grünberg S, Krause A. Quantitative Betrachtungen der Intimaproliferation an der Arteria carotis und Arteria femoralis der Ratte nach temporärem Clipverschluß. Dissertation 1996, Medizinische Fakultät Friedrich-Schiller-Universität Jena.
Schädlich J. Die Wirkung temporären Verschlusses durch Mikrogefäßclips auf die Wandstruktur von Mikrogefäßen. Diplomarbeit 1978, Medizinische Fakultät der Friedrich-Schiller-Universitat Jena.
Schädlich, J., Die Reaktion der Gefäßwand nach Einwirkung von Mikrogefäßclips. Experimentalle Untersuchungen an der Ratte. Dissertation 1998, Medizinische Fakultät der Friedrich-Schiller-Universität Jena.
Tilgner, 1981, Microvascular clips and lesions of the vessel wall. Histological investigations on the femoral vessels of the rat, Zentralbl Chir, 106, 961
Tilgner, 1986, Histopathology of the arterial wall after animal experiment microsurgical operations, Z Exp Chir Transplant Künstliche Organe, 19, 100
Schumann, 1995, Quantitative Untersuchungen der Intimaproliferation von Mikrogefäßen der Ratte, H+G Zeitschrift Hautkrankheiten, 70, 391
Carrel A. La technique operatoire des anastomoses vascularies et la transplantation des visceres. Lyon Med 1902;98:859 (English translation in Clin Orthop, 1963;29:3).
Lexer, 1907, Die ideale Operation des arteriellen und arteriell-venösen Aneurismas, Archiv Klin Chir, 83, 459
Bschorer, 1994, Experimental improvement of microvascullar allografts with the new material polyurethane and microvessel endothelial cell seeding, Int J Oral Maxillofac Surg, 23, 389, 10.1016/S0901-5027(05)80026-8
Hess, 1985, Three years experience with experimental implantation of fibrous polyurethane microvascular prostheses in carotid arteries of rabbits, Microsurgery, 6, 155, 10.1002/micr.1920060306
Joos, 1990, Microarterial synthetic graft repair: interstitial cellular components, Microsurgery, 11, 268, 10.1002/micr.1920110404
Masumoto, 1973, A new vascular prosthesis for a small caliber artery, Surgery, 74, 519
Samuels, 1989, Long-term histological changes in 1 millimeter polytetrafluoroethylene (Gore-Tex) prosthetic arterial grafts, Microsurgery, 10, 274, 10.1002/micr.1920100405
Bravo, 1997, Patency failures in microvascular prosthetic grafts, J Acta Vet Brno, 66, 183, 10.2754/avb199766030183
Maeda, 1998, Histologic findings in polyacrylamide-coated polytetrafluoroethylene (PTFE) arterial grafts in the rat abdominal aorta, J Reconstr Microsurg, 14, 491, 10.1055/s-2007-1000212
Yoneyama, 1998, Short term in vivo evaluation of small-diameter vascular prosthesis composed of segmented poly(etherurethane)/2-methacryloyloxethyl phosphorylcholine polymer blend, J Biomed Mater Res, 43, 15, 10.1002/(SICI)1097-4636(199821)43:1<15::AID-JBM2>3.0.CO;2-P
Doi, 1997, Significance of porosity and compliance of microporous polyurethane-based microarterial vessel on neoarterial wall regeneration, J Biomed Mater Res, 37, 573, 10.1002/(SICI)1097-4636(19971215)37:4<573::AID-JBM17>3.0.CO;2-9
Lanzetta, 1992, Achieving better patency rates and neoendothelialization in 1-millimeter polytetrafluoroethylene grafts by varying fibril length and wall thickness, Microsurgery, 13, 76, 10.1002/micr.1920130206
Ritter, 1997, Heparin coating of vascular prostheses reduces thromboemboli, Surgery, 122, 888, 10.1016/S0039-6060(97)90329-9
Viscardi, 1997, Iloprost in alginate decrease the thrombogenicity of expanded polytetrafluoroethylene, J Reconstr Microsurg, 13, 303, 10.1055/s-2007-1000240
Greisler, 1992, Polypropylene small-diameter vascular grafts, J Biomed Mater Res, 26, 1383, 10.1002/jbm.820261009
Guidoin, 1989, Collagen coatings as biological sealants for textile arterial prostheses, Biomaterials, 10, 156, 10.1016/0142-9612(89)90018-5
Hirt, 1993, Comparative in vivo study on the healing qualities of four different presealed vascular prostheses, J Vasc Surg, 17, 538, 10.1067/mva.1993.39245
Jonas, 1988, A new sealant for knitted Dacron prostheses: minimally cross-linked gelatin, J Vasc Surg, 7, 414, 10.1016/0741-5214(88)90437-5
Sasajima, 1997, Myristoyl gelatin as a sealant for Dacron vascular prostheses, Artif Organs, 21, 287, 10.1111/j.1525-1594.1997.tb00363.x
Sigot-Luizard, 1984, Cytocompatibility of albuminated polyester fabrics, J Biomed Mater Res, 18, 895, 10.1002/jbm.820180805
Cziperle, 1992, Albumin impregnated vascular grafts: albumin resorption and tissue reactions, J Cardiovasc Surg (Torino), 33, 407
Haimovich, 1997, A new method for membrane construction on ePTFE vascular grafts: effect on surface morphology and platelet adhesion, J Appl Polym Sci, 63, 1393, 10.1002/(SICI)1097-4628(19970314)63:11<1393::AID-APP1>3.0.CO;2-H
Kito, 1996, Biocompatible coatings for luminal and outer surfaces of small-caliber artificial grafts, J Biomed Mater Res, 30, 321, 10.1002/(SICI)1097-4636(199603)30:3<321::AID-JBM6>3.0.CO;2-S
Bhat, 1998, Improving endothelial cell adhesion to vascular graft surfaces: clinical need and strategies, J Biomater Sci Polym, 9, 1117, 10.1163/156856298X00686
Meinhart, 1997, Eight years of clinical endothelial cell transplantation. Closing the gap between prosthetic grafts and vein grafts, ASAIO J, 43, M515, 10.1097/00002480-199709000-00034
Carr, 1996, Endothelial cell seeding kinetics under chronic flow in prosthetic grafts, Ann Vasc Surg, 10, 469, 10.1007/BF02000595
Vohra, 1991, Comparison of different vascular prostheses and matrices in relation to endothelial seeding, Br J Surg, 78, 417, 10.1002/bjs.1800780411
Vohra, 1990, Fibronectin coating of expanded polytetrafluoroethylene (ePTFE) grafts and its role in entdothelial seeding, Artif Organs, 14, 41, 10.1111/j.1525-1594.1990.tb01590.x
Curti, 1989, An ultrastructural and immunocytochemical analysis of human endothelial cell adhesion on coated vascular grafts, Ann Vasc Surg, 3, 351, 10.1016/S0890-5096(06)60159-3
Herring MB, Compton RS, LeGrand DR, Gardner AL, Madison DL, Glover JL. Endothelial seeding of polytetrafluoroethylene popliteal bypasses. A preliminary report. J Vasc Surg 1987;6(2):114–8.
Lindblad, 1986, Endothelial cell seeding efficiency onto expanded polytetrafluoroethylene grafts with different coatings, Acta Chir Scand, 152, 653
Herring, 1978, A single-staged technique for seeding vascular grafts with autogenous endothelium, Surgery, 84, 498
Hubbell, 1991, Endothelial cell-selective materials for tissue engineering in the vascular graft via a new receptor, Biotechnology (NY), 9, 568, 10.1038/nbt0691-568
Zarge, 1997, Platelet deposition on ePTFE grafts coated with fibrin glue with or without FGF-1 and heparin, J Surg Res, 67, 4, 10.1006/jsre.1996.4903
Masuda, 1997, Vascular endothelial growth factor enhances vascularization in microporous small caliber polyurethane grafts, ASAIO J, 43, M530, 10.1097/00002480-199709000-00037
Doi, 1997, Enhanced vascularization in a microporous polyurethane graft impregnated with basic fibroblast growth factor and heparin, J Biomed Mater Res, 34, 361, 10.1002/(SICI)1097-4636(19970305)34:3<361::AID-JBM11>3.0.CO;2-J
Schumann D, Marsch S. BASYC (BActerial SYnthesized Cellulose)-First results of its development to a microvessel prosthesis. J Craniomaxillofac Surg 1998, Suppl 1, XIV Congress of the European Association for Cranio-Maxillofacial Surgery, EACMFS, Helsinki, Finland, 1–5 September 1998, Abstracts.
Klemm, 1999, BASYC — BActerial SYnthesized Cellulose: miniaturized tubes for microsurgery, Polym News, 24, 373
Schumann D, Marsch S, Geyer U, Stein A, Heinze Th, Klemm D, Schmauder HP. Contribution to the cuff technique for the microsurgical vessel and nerve suture. J Craniomaxillofac Surg 1996 Suppl. 1, Jubilee Congress of the European Association for Cranio-Maxillofacial Surgery, Zurich, Switzerland, 3–7 September 1996, Abstracts.
Schumann D, Marsch S, Geyer U, Klemm D, Schmauder HP. BActerial SYnthesized Cellulose as a biomaterial in microsurgery — BASYC versus PDS. 47. Jahreskongreß der Deutschen Gesellschaft für Mund-, Kiefer-und Gesichtschirurgie, Hamburg, Germany, 20–24 May 1997, book of abstracts.
Marsch S, Schumann D. A new biomaterial (BASYC) for the use in microsurgery. International Workshop for Microsurgery at the European Surgical Institute, Norderstedt, Germany, 30–31 March 1998.
Schumann D, Marsch S, Udhardt-Geyer U, Wolf H. News on material, equipments and techniques in microsurgery. Workshop, European Surgical Institute, Hamburg, Germany, 18–20 May 1998.
Marsch S, Udhardt U, Schumann D. First results of experimental use of the new biomaterial BASYC (BActerial SYnthesized Cellulose) in mocrovessel surgery. VII Congress of Polish Society of Plastic, Reconstructive and Esthetic Surgery, Polanica Zdroj, Poland, 27–29 May 1999.
Udhardt URE, Marsch SE, Klemm DO, Schumann DA. BASYC: BActerial SYnthesized Cellulose as a novel biomaterial in microsurgery. APME'99, The Third International Conference on Advanced Polymers via Macromolecular Engineering, Colonial Williamsburg, USA, 31 July–5 August 1999, book of abstracts.
Klemm DO, Udhardt URE. Biochemical building of artificial cellulosic blood vessels. Congress, Surgery Room of the 21st Century, Glasgow, UK, 1–2 November 1999.
Schumann DA, Marsch SE. Advantages and application of artificial blood vessels from cellulose. Congress, Surgery Room of the 21st Century, Glasgow, UK, 1–2 November 1999.
Udhardt URE, Klemm DO, Marsch SE, Schumann DA. Structural design of bacterial cellulose as biomaterial in microsurgery. 219th ACS National Meeting, San Francisco, USA, 26–30 March 2000, book of abstracts.
Marsch S, Udhardt U, Wurdinger J, Schumann D. BASYC (BActerial SYnthesized Cellulose) — the creation of artificial blood vessels for microsurgery. Fifth E.F.S.M. Congress (European Federation for Societies of Microsurgery), Coimbra, Portugal, 1–4 June 2000. Microsurgery (Abstracts from the European Federation for Societies of Microsurgery) 2000;20(6):273.
Wurdinger J, Marsch S, Udhardt U, Schumann D. BASYC (BActerial SYnthesized Cellulose) — the vitalization of a microvessel-prosthesis in the rat. Fifth E.F.S.M. Congress (European Federation for Societies of Microsurgery), Coimbra, Portugal, 1–4 June 2000. Microsurgery (Abstracts for the European Federation for Societies of Microsurgery) 2000;20(6):268.
Schumann D, Marsch S, Udhardt U, Klemm D. Building artificial blood vessels. 11th Annual Meeting of EURAPS, Berlin, Germany, 1–3 June 2000, book of abstracts.
Klemm D, Udhardt U, Marsch S, Schumann D. Cellulose — biomaterialien durch supramolekulares Strukturdesign. Fourth International Symposium Alternative Cellulose — Manufacturing, Forming, Properties, Rudolstadt, Germany, 6–7 September 2000, book of papers, Thüringisches Institut für Textil-und Kunststoff-Forschung e.V. Rudolstadt (TITK).
Millesi, 1972, Experimentelle Untersuchungen zur Heilung durchtrennter peripherer Nerven, Chir Plastics (Berlin), 1, 174, 10.1007/BF01799098
Philipp, 1973, Zum zeitlichen Verlauf der Quellung von Celluloseregeneratfäden und — folien in organischen Flüssigkeiten, Faserforsch Textiltech, 24, 106
Schleicher, 1980, Reaktivitätsbeeinflussung der Cellulose und Aktivierung, Papier (Darmstadt), 34, 550
Schleicher, 1980, Untersuchungen zum Einfluß einer Aktivierung auf nachfolgende Umsetzungen der Cellulose, Cellul Chem Technol, 14, 317
Klemm, 1998, vol. 2