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Articles

Histological Processing of Hydrogel Scaffolds for Tissue-Engineering Applications

Pages 133-139 | Published online: 18 Jul 2013

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Brittany H McGowan & Jiro Nagatomi. (2013) Histological techniques for preservation of alginate bead structural integrity using glycolmethacrylate. Journal of Histotechnology 36:3, pages 100-105.
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C.-C. Yang, L. Jenkins & K. J. L. Burg. (2007) Adapted Cryosectioning Method for Hydrogels Used in Regenerative Medicine. Journal of Histotechnology 30:3, pages 185-191.
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Nabeel Farooqui, David Myung, Wongun Koh, Marilyn Masek, Roopa Dalal, Michael R. Carrasco, Jaan Noolandi, Curtis W. Frank & Christopher N. Ta. (2007) Histological Processing of pH-Sensitive Hydrogels Used in Corneal Implant Applications. Journal of Histotechnology 30:3, pages 157-163.
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Nancy W. Troiano & Melissa A. Kacena. (2006) Bone Implants: Processing, Embedding, Cutting, and Histopathology. Journal of Histotechnology 29:4, pages 253-264.
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Jason D. Roh, Melissa A. Kacena, Reynold I. Lopz-Soler, Christiane E. Coady, Nancy W. Troiano & Christopher K. Breuer. (2006) Glycolmethacrylate Is Superior to Methylmethacrylate for Histologic Evaluation of Biodegradable Polymer Scaffolds Used for Vascular Tissue Engineering. Journal of Histotechnology 29:4, pages 245-250.
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Linda L. Jenkins & Pamela A. Marcum. (2006) How to Select the Best Monomer for Implant Pathology. Journal of Histotechnology 29:4, pages 237-243.
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Articles from other publishers (11)

Iran Augusto Da Silva, Nika Gvazava, Indra Putra Wendi, Rodrigo Guinea, Francisco García Giménez, John Stegmayr, Oxana Klementieva & Darcy E. Wagner. (2023) Formalin-free fixation and xylene-free tissue processing preserves cell-hydrogel interactions for histological evaluation of 3D calcium alginate tissue engineered constructs. Frontiers in Biomaterials Science 2.
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Nicolas Germain, Melanie Dhayer, Salim Dekiouk & Philippe Marchetti. (2022) Current Advances in 3D Bioprinting for Cancer Modeling and Personalized Medicine. International Journal of Molecular Sciences 23:7, pages 3432.
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Daniele Zuncheddu, Elena Della Bella, Andrea Schwab, Dalila Petta, Gaia Rocchitta, Silvia Generelli, Felix Kurth, Annapaola Parrilli, Sophie Verrier, Julietta V. Rau, Marco Fosca, Margherita Maioli, Pier Andrea Serra, Mauro Alini, Heinz Redl, Sibylle Grad & Valentina Basoli. (2021) Quality control methods in musculoskeletal tissue engineering: from imaging to biosensors. Bone Research 9:1.
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Gizem Altay, Sébastien Tosi, María García-Díaz & Elena Martínez. (2020) Imaging the Cell Morphological Response to 3D Topography and Curvature in Engineered Intestinal Tissues. Frontiers in Bioengineering and Biotechnology 8.
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Aritz Bidaguren, Javier Mendicute, Iratxe Madarieta & Nerea Garagorri. (2019) Confocal and Histological Features After Poly(Ethylene Glycol) Diacrylate Corneal Inlay Implantation. Translational Vision Science & Technology 8:6, pages 39.
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Steven R Caliari & Jason A Burdick. (2016) A practical guide to hydrogels for cell culture. Nature Methods 13:5, pages 405-414.
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Delfo D’Alessandro, Gianni Pertici, Stefania Moscato, Maria Rita Metelli, Sabrina Danti, Claudia Nesti, Stefano Berrettini, Mario Petrini & Serena Danti. (2014) Processing large-diameter poly(L-lactic acid) microfiber mesh/mesenchymal stromal cell constructs via resin embedding: an efficient histologic method. Biomedical Materials 9:4, pages 045007.
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Jia-Ling RuanNathaniel L. TullochVeronica MuskheliE. Erin GenovaPeter D. MarinerKristi S. AnsethCharles E. Murry. (2013) An Improved Cryosection Method for Polyethylene Glycol Hydrogels Used in Tissue Engineering. Tissue Engineering Part C: Methods 19:10, pages 794-801.
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Karen J. L. Burg, Nichole Myers Cavin & Katherine Neser. 2011. Adipose Stem Cells and Regenerative Medicine. Adipose Stem Cells and Regenerative Medicine 93 101 .
Gregory H. Underhill, Alice A. Chen, Dirk R. Albrecht & Sangeeta N. Bhatia. (2007) Assessment of hepatocellular function within PEG hydrogels. Biomaterials 28:2, pages 256-270.
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R. Quinn Brown, Andrew Mount & Karen J. L. Burg. (2005) Evaluation of polymer scaffolds to be used in a composite injectable system for intervertebral disc tissue engineering. Journal of Biomedical Materials Research Part A 74A:1, pages 32-39.
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