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Research Article

In Vivo Evaluation of the Effects of a New Ice-Free Cryopreservation Process on Autologous Vascular Grafts

Pages 279-288 | Published online: 09 Jul 2009

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Read on this site (4)

Gregory M. Fahy, Na Guan, Inge A. M. de Graaf, Yuansheng Tan, Lenetta Griffin & Geny M. M. Groothuis. (2013) Cryopreservation of precision-cut tissue slices. Xenobiotica 43:1, pages 113-132.
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Michael J. Taylor & Simona Baicu. (2009) Review of vitreous islet cryopreservation. Organogenesis 5:3, pages 155-166.
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Ying C. Song, Yuehuei H. An, Qian K. Kang, Chaoyang Li, Janet M. Boggs, Zhenzhen Chen, Michael J. Taylor & Kelvin G. M. Brockbank. (2004) Vitreous Preservation of Articular Cartilage Grafts. Journal of Investigative Surgery 17:2, pages 65-70.
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Luis Leon & Howard P Greisler. (2003) Vascular grafts. Expert Review of Cardiovascular Therapy 1:4, pages 581-594.
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Articles from other publishers (43)

Lia H. Campbell & Kelvin G. M. Brockbank. (2022) Development of a Vitrification Preservation Process for Bioengineered Epithelial Constructs. Cells 11:7, pages 1115.
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David E. Pegg, Lihong Wang & David Vaughan. (2020) Cryopreservation of articular cartilage. Part 3: The liquidus-tracking method. Cryobiology 93, pages 12-17.
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Alasdair G. Kay & Lilia L. Kuleshova. 2016. Low Temperature Materials and Mechanisms. Low Temperature Materials and Mechanisms 349 394 .
Sujune Tsai, Wish Yen, Suchana Chavanich, Voranop Viyakarn & Chiahsin Lin. (2015) Development of Cryopreservation Techniques for Gorgonian (Junceella juncea) Oocytes through Vitrification. PLOS ONE 10:5, pages e0123409.
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Kelvin G.M. Brockbank, Zhen Z. Chen & Ying C. Song. (2010) Vitrification of porcine articular cartilage. Cryobiology 60:2, pages 217-221.
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Brian Wowk. (2010) Thermodynamic aspects of vitrification. Cryobiology 60:1, pages 11-22.
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Raquel Magalhães, P.R. Anil Kumar, Feng Wen, Xuying Zhao, Hanry Yu & Lilia L. Kuleshova. (2009) The use of vitrification to preserve primary rat hepatocyte monolayer on collagen-coated poly(ethylene-terephthalate) surfaces for a hybrid liver support system. Biomaterials 30:25, pages 4136-4142.
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Nadr M. Jomha, Garson K. Law, Alireza Abazari, Kassim Rekieh, Janet A.W. Elliott & Locksley E. McGann. (2009) Permeation of several cryoprotectant agents into porcine articular cartilage. Cryobiology 58:1, pages 110-114.
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I.N. Mukherjee, Y. Li, Y.C. Song, R.C. LongJr.Jr. & A. Sambanis. (2008) Cryoprotectant transport through articular cartilage for long-term storage: experimental and modeling studies. Osteoarthritis and Cartilage 16:11, pages 1379-1386.
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S. Baicu, M.J. Taylor, Z. Chen & Y. Rabin. (2008) Cryopreservation of carotid artery segments via vitrification subject to marginal thermal conditions: Correlation of freezing visualization with functional recovery. Cryobiology 57:1, pages 1-8.
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Lilia Kuleshova & Dietmar Hutmacher. 2008. Tissue Engineering. Tissue Engineering 363 401 .
Ying C Song, Zhenzhen Chen, Carol Journey, Adelina M Emmi, Xiayang Xie & Rosemary L Song. 2007. Vitrification in Assisted Reproduction. Vitrification in Assisted Reproduction 273 292 .
Kelvin G.M. BrockbankYing C. SongElizabeth D. GreeneMichael J. Taylor. (2007) Quantitative Analyses of Vitrified Autologous Venous Arterial Bypass Graft Explants. Cell Preservation Technology 5:2, pages 68-76.
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Heidi Y. Elmoazzen, Anoop Poovadan, Garson K. Law, Janet A. W. Elliott, Locksley E. McGann & Nadr M. Jomha. (2006) Dimethyl sulfoxide toxicity kinetics in intact articular cartilage. Cell and Tissue Banking 8:2, pages 125-133.
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Rajrishi Sharma, Garson K. Law, Kassim Rekieh, Alireza Abazari, Janet A.W. Elliott, Locksley E. McGann & Nadr M. Jomha. (2007) A novel method to measure cryoprotectant permeation into intact articular cartilage. Cryobiology 54:2, pages 196-203.
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L.L. Kuleshova, S.S. Gouk & D.W. Hutmacher. (2007) Vitrification as a prospect for cryopreservation of tissue-engineered constructs. Biomaterials 28:9, pages 1585-1596.
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Else Müller-Schweinitzer, Heinz Striffeler, Thomas Grussenmeyer, David C. Reineke, Erika Glusa & Martin T.R. Grapow. (2007) Impact of freezing/thawing procedures on the post-thaw viability of cryopreserved human saphenous vein conduits. Cryobiology 54:1, pages 99-105.
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Markus HoenickaKarla LehleVolker R. JacobsFranz X. SchmidDietrich E. Birnbaum. (2007) Properties of the Human Umbilical Vein as a Living Scaffold for a Tissue-Engineered Vessel Graft. Tissue Engineering 13:1, pages 219-229.
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Markus Hoenicka, Karla Lehle, Volker R. Jacobs, Franz X. Schmid & Dietrich E. Birnbaum. (2006) Properties of the Human Umbilical Vein As a Living Scaffold for a Tissue-Engineered Vessel Graft. Tissue Engineering 0:0, pages 061228051513001.
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Markus Hoenicka, Karla Lehle, Volker R. Jacobs, Franz X. Schmid & Dietrich E. Birnbaum. (2006) Properties of the Human Umbilical Vein As a Living Scaffold for a Tissue-Engineered Vessel Graft. Tissue Engineering 0:0, pages 061220075423007.
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S. BaicuM.J. TaylorZ. ChenY. Rabin. (2006) Vitrification of Carotid Artery Segments: An Integrated Study of Thermophysical Events And Functional Recovery Toward Scale-Up for Clinical Applications. Cell Preservation Technology 4:4, pages 236-244.
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J. Guan, J.P.G. Urban, Z.H. Li, D.J.P. Ferguson, C.Y. Gong & Z.F. Cui. (2006) Effects of rapid cooling on articular cartilage. Cryobiology 52:3, pages 430-439.
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David E. Pegg, Lihong Wang & David Vaughan. (2006) Cryopreservation of articular cartilage. Part 3: The liquidus-tracking method. Cryobiology 52:3, pages 360-368.
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Raj R. Thakrar, Vishal P. Patel, George Hamilton, Barry J. Fuller & Alexander M. Seifalian. (2006) Vitreous cryopreservation maintains the viscoelastic property of human vascular grafts. The FASEB Journal 20:7, pages 874-881.
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Katja Schenke-Layland, Navid Madershahian, Iris Riemann, Barry Starcher, Karl-Jürgen Halbhuber, Karsten König & Ulrich A. Stock. (2006) Impact of Cryopreservation on Extracellular Matrix Structures of Heart Valve Leaflets. The Annals of Thoracic Surgery 81:3, pages 918-926.
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Shannon L.M. Dahl, Zhenzhen Chen, Amy K. Solan, Kelvin G.M. Brockbank, Laura E. Niklason & Ying C. Song. (2006) Feasibility of Vitrification as a Storage Method for Tissue-Engineered Blood Vessels. Tissue Engineering 0:0, pages 060224115912002.
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Shannon L.M. DahlZhenzhen ChenAmy K. SolanKelvin G.M. BrockbankLaura E. NiklasonYing C. Song. (2006) Feasibility of Vitrification as a Storage Method for Tissue-Engineered Blood Vessels. Tissue Engineering 12:2, pages 291-300.
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Saravana Kumar Balasubramanian, John C. Bischof & Allison Hubel. (2006) Water transport and IIF parameters for a connective tissue equivalent. Cryobiology 52:1, pages 62-73.
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Dan T. Simionescu, Qijin Lu, Ying Song, JeoungSoo Lee, Tabitha N. Rosenbalm, Catherine Kelley & Naren R. Vyavahare. (2006) Biocompatibility and remodeling potential of pure arterial elastin and collagen scaffolds. Biomaterials 27:5, pages 702-713.
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Y.C. Song, Z.Z. Chen, N. Mukherjee, F.G. Lightfoot, M.J. Taylor, K.G. Brockbank & A. Sambanis. (2005) Vitrification of tissue engineered pancreatic substitute. Transplantation Proceedings 37:1, pages 253-255.
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Bumsoo Han & John C. Bischof. (2004) Engineering Challenges in Tissue Preservation. Cell Preservation Technology 2:2, pages 91-112.
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Michael Taylor, Ying Song & Kelvin Brockbank. 2004. Life in the Frozen State. Life in the Frozen State 603 641 .
Gregory M Fahy, Brian Wowk, Jun Wu, John Phan, Chris Rasch, Alice Chang & Eric Zendejas. (2004) Cryopreservation of organs by vitrification: perspectives and recent advances. Cryobiology 48:2, pages 157-178.
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Monica Wusteman, Martin Robinson & David Pegg. (2004) Vitrification of large tissues with dielectric warming: biological problems and some approaches to their solution. Cryobiology 48:2, pages 179-189.
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Ying C. Song, Frederick G. Lightfoot, Zhenzhen Chen, Michael J. Taylor & Kelvin G. M. Brockbank. (2004) Vitreous Preservation of Rabbit Articular Cartilage. Cell Preservation Technology 2:1, pages 67-74.
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Gregory M Fahy, Brian Wowk, Jun Wu & Sharon Paynter. (2004) Improved vitrification solutions based on the predictability of vitrification solution toxicity. Cryobiology 48:1, pages 22-35.
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N. M. Jomha, P. C. Anoop & L. E. McGann. (2006) Intramatrix events during cryopreservation of porcine articular cartilage using rapid cooling. Journal of Orthopaedic Research 22:1, pages 152-157.
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Yoed Rabin & Ernest Bell. (2003) Thermal expansion measurements of cryoprotective agents. Part II: measurements of DP6 and VS55, and comparison with DMSO. Cryobiology 46:3, pages 264-270.
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N.M. Jomha, P.C. Anoop, K. Bagnall & L.E. McGann. (2002) Comparison of High Cryoprotectant Concentrations for Cryopreservation of Porcine Articular Cartilage. Cell Preservation Technology 1:3, pages 201-206.
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MEHMET TONER & JEFFERY KOCSIS. (2002) Storage and Translational Issues in Reparative Medicine. Annals of the New York Academy of Sciences 961:1, pages 258-262.
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N. M. Jomha, P. C. Anoop, K. Bagnall & L. E. McGann. (2002) Effects of Increasing Concentrations of Dimethyl Sulfoxide During Cryopreservation of Porcine Articular Cartilage. Cell Preservation Technology 1:2, pages 111-120.
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Elisabeth Jeremias, Mohamed A. Bedaiwy, Raffi Gurunluoglu, Charles V. Biscotti, Maria Siemionow & Tommaso Falcone. (2002) Heterotopic autotransplantation of the ovary with microvascular anastomosis: a novel surgical technique. Fertility and Sterility 77:6, pages 1278-1282.
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Monica C Wusteman, David E Pegg, Martin P Robinson, Li-Hong Wang & Paul Fitch. (2002) Vitrification media: toxicity, permeability, and dielectric properties. Cryobiology 44:1, pages 24-37.
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