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Considerations for selecting the correct animal model for dermal wound-healing studies

Pages 1087-1096 | Published online: 02 Apr 2012

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Jiacong Guo, Cheng Chang & Wei Li. (2017) The role of secreted heat shock protein-90 (Hsp90) in wound healing - how could it shape future therapeutics?. Expert Review of Proteomics 14:8, pages 665-675.
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Unnati Modi, Dhaval Kedaria, Bindiya Dhimmar & Rajesh Vasita. 2021. Emerging Trends in Nanomedicine. Emerging Trends in Nanomedicine 129 172 .
Yoram Vodovotz & Gary An. 2021. Complex Systems and Computational Biology Approaches to Acute Inflammation. Complex Systems and Computational Biology Approaches to Acute Inflammation 223 243 .
Joseph KuhnDarren L. SultanBukhtawar WaqasTrevor EllisonJennifer KwongCamille KimAbsara HassanPiul S. RabbaniDaniel J. Ceradini. (2020) Nrf2-activating Therapy Accelerates Wound Healing in a Model of Cutaneous Chronic Venous Insufficiency. Plastic and Reconstructive Surgery - Global Open 8:11, pages e3006.
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Hsin-ya Yang, Fernando Fierro, Michelle So, Daniel J. Yoon, Alan Vu Nguyen, Anthony Gallegos, Michelle D. Bagood, Tomas Rojo-Castro, Alan Alex, Heather Stewart, Marianne Chigbrow, Mohan R. Dasu, Thomas R. Peavy, Athena M. Soulika, Jan A. Nolta & R. Rivkah Isseroff. (2020) Combination product of dermal matrix, human mesenchymal stem cells, and timolol promotes diabetic wound healing in mice. Stem Cells Translational Medicine 9:11, pages 1353-1364.
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Joann Phan, Saba Ranjbar, Miki Kagawa, Matthew Gargus, Allon Israel Hochbaum & Katrine L. Whiteson. (2020) Thriving Under Stress: Pseudomonas aeruginosa Outcompetes the Background Polymicrobial Community Under Treatment Conditions in a Novel Chronic Wound Model. Frontiers in Cellular and Infection Microbiology 10.
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Elena Groppa, Andrea Colliva, Roman Vuerich, Tea Kocijan & Serena Zacchigna. (2020) Immune Cell Therapies to Improve Regeneration and Revascularization of Non-Healing Wounds. International Journal of Molecular Sciences 21:15, pages 5235.
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Molly E. Baumann, Britani N. Blackstone, Megan M. Malara, Isabelle A. Clairmonte, Dorothy M. Supp, J. Kevin Bailey & Heather M. Powell. (2020) Fractional CO2 laser ablation of porcine burn scars after grafting: Is deeper better?. Burns 46:4, pages 937-948.
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Noelle Remoué, Christelle Bonod, Bérengère Fromy & Dominique Sigaudo-Roussel. 2020. Innovations and Emerging Technologies in Wound Care. Innovations and Emerging Technologies in Wound Care 197 224 .
E. Drevon-Gaillot, T. Blair & G. Clermont. 2020. Biocompatibility and Performance of Medical Devices. Biocompatibility and Performance of Medical Devices 371 392 .
Wouter J. Geelhoed, Lorenzo Moroni & Joris I. Rotmans. 2019. Tissue-Engineered Vascular Grafts. Tissue-Engineered Vascular Grafts 1 23 .
Wouter J. Geelhoed, Lorenzo Moroni & Joris I. Rotmans. 2020. Tissue-Engineered Vascular Grafts. Tissue-Engineered Vascular Grafts 271 293 .
Jianmin Wu & Ning Xu Landén. 2020. Molecular Dermatology. Molecular Dermatology 239 247 .
Jialun Li, Jiecong Wang, Zhenxing Wang, Yun Xia, Muran Zhou, Aimei Zhong & Jiaming Sun. (2019) Experimental models for cutaneous hypertrophic scar research. Wound Repair and Regeneration.
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Yunsook Lim, Heaji Lee, Brittany Woodby & Giuseppe Valacchi. (2019) Ozonated Oils and Cutaneous Wound Healing. Current Pharmaceutical Design 25:20, pages 2264-2278.
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Molly E. Baumann, Isabelle A. Clairmonte, Danielle M. DeBruler, Britani N. Blackstone, Megan M. Malara, Dorothy M. Supp, J. Kevin Bailey & Heather M. Powell. (2019) FXCO2 laser therapy of existing burn scars does not significantly improve outcomes in a porcine model. Burns Open 3:3, pages 89-95.
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Yun-Yan Hsu, Kuan-Lin Liu, Hsun-Hua Yeh, Hong-Ru Lin, Hua-Lin Wu & Jui-Chen Tsai. (2019) Sustained release of recombinant thrombomodulin from cross-linked gelatin/hyaluronic acid hydrogels potentiate wound healing in diabetic mice. European Journal of Pharmaceutics and Biopharmaceutics 135, pages 61-71.
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M. J. Gómez-Benito, C. Valero, J. M. García-Aznar & E. Javierre. 2019. New Developments in Tissue Engineering and Regeneration. New Developments in Tissue Engineering and Regeneration 1 19 .
Thea Fleischmann, Flora Nicholls, Miriam Lipiski, Margarete Arras & Nikola Cesarovic. 2019. Skin Tissue Engineering. Skin Tissue Engineering 251 259 .
Mehdi Farokhi, Fatemeh Mottaghitalab, Yousef Fatahi, Ali Khademhosseini & David L. Kaplan. (2018) Overview of Silk Fibroin Use in Wound Dressings. Trends in Biotechnology 36:9, pages 907-922.
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Crossref
Helena D. Zomer & Andrea G. Trentin. (2018) Skin wound healing in humans and mice: Challenges in translational research. Journal of Dermatological Science 90:1, pages 3-12.
Crossref
Mohammed Ashrafi, Adam Hague, Mohamed Baguneid, Teresa Alonso-Rasgado & Ardeshir Bayat. 2018. Skin Tissue Models for Regenerative Medicine. Skin Tissue Models for Regenerative Medicine 201 221 .
Ana Tellechea, Leena Pradhan-Nabzdyk, Frank W. LoGerfo & Aristidis Veves. 2018. The Diabetic Foot. The Diabetic Foot 131 154 .
Thomas Später, Florian S. Frueh, Wolfgang Metzger, Michael D. Menger & Matthias W. Laschke. (2018) In vivo biocompatibility, vascularization, and incorporation of Integra ® dermal regenerative template and flowable wound matrix . Journal of Biomedical Materials Research Part B: Applied Biomaterials 106:1, pages 52-60.
Crossref
A. Jespersen, H. E. Jensen, J. F. Agger, P. M. H. Heegaard, P. Damborg, B. Aalbæk & A. S. Hammer. (2017) The effect of color type on early wound healing in farmed mink (Neovison vison). BMC Veterinary Research 13:1.
Crossref
Hiroko Ochiai, Kazuo Kishi, Yoshiaki Kubota, Aiko Oka, Eri Hirata, Hanayo Yabuki, Yoshitaka Iso, Hiroshi Suzuki & Akihiro Umezawa. (2017) Transplanted mesenchymal stem cells are effective for skin regeneration in acute cutaneous wounds of pigs. Regenerative Therapy 7, pages 8-16.
Crossref
Raha A. Been, Stéphanie F. Bernatchez, Deena M. Conrad‐Vlasak, Robert A. Asmus, Bruce P. Ekholm & Patrick J. Parks. (2016) In vivo methods to evaluate a new skin protectant for loss of skin integrity. Wound Repair and Regeneration 24:5, pages 851-859.
Crossref
Ghassan S. Kassab, Gary An, Edward A. Sander, Michael I. Miga, Julius M. Guccione, Songbai Ji & Yoram Vodovotz. (2016) Augmenting Surgery via Multi-scale Modeling and Translational Systems Biology in the Era of Precision Medicine: A Multidisciplinary Perspective. Annals of Biomedical Engineering 44:9, pages 2611-2625.
Crossref
Ayesha BhatiaKathryn O'BrienMei ChenDavid T. WoodleyWei Li. (2016) Keratinocyte-Secreted Heat Shock Protein-90alpha: Leading Wound Reepithelialization and Closure. Advances in Wound Care 5:4, pages 176-184.
Crossref
Ravi Starzl, Dolores Wolfram, Ruben Zamora, Bahiyyah Jefferson, Derek Barclay, Chien Ho, Vijay Gorantla, Gerald Brandacher, Stefan Schneeberger, W. P. Andrew Lee, Jaime Carbonell & Yoram Vodovotz. (2015) Cardiac Arrest Disrupts Caspase-1 and Patterns of Inflammatory Mediators Differently in Skin and Muscle Following Localized Tissue Injury in Rats: Insights from Data-Driven Modeling. Frontiers in Immunology 6.
Crossref
Cordelia Ziraldo, Alexey Solovyev, Ana Allegretti, Shilpa Krishnan, M. Kristi Henzel, Gwendolyn A. Sowa, David Brienza, Gary An, Qi Mi & Yoram Vodovotz. (2015) A Computational, Tissue-Realistic Model of Pressure Ulcer Formation in Individuals with Spinal Cord Injury. PLOS Computational Biology 11:6, pages e1004309.
Crossref
M. Seaton, A. Hocking & N. S. Gibran. (2015) Porcine Models of Cutaneous Wound Healing. ILAR Journal 56:1, pages 127-138.
Crossref
Justin Crawford, Karen Nygard, Bing Siang Gan & David Brian O'Gorman. (2015) Periostin induces fibroblast proliferation and myofibroblast persistence in hypertrophic scarring. Experimental Dermatology 24:2, pages 120-126.
Crossref
Hongling Li, Cong Cao, Ai Huang & Yi Man. (2015) Comment on “Topically Applied Connective Tissue Growth Factor/CCN2 Improves Diabetic Preclinical Cutaneous Wound Healing: Potential Role for CTGF in Human Diabetic Foot Ulcer Healing”. Journal of Diabetes Research 2015, pages 1-3.
Crossref
Yoram Vodovotz & Gary An. 2015. Translational Systems Biology. Translational Systems Biology 111 135 .
Kathryn O'Brien, Ayesha Bhatia, Fred Tsen, Mei Chen, Alex K. Wong, David T. Woodley & Wei Li. (2014) Identification of the Critical Therapeutic Entity in Secreted Hsp90α That Promotes Wound Healing in Newly Re-Standardized Healthy and Diabetic Pig Models. PLoS ONE 9:12, pages e113956.
Crossref
Fiona M. Wood. (2014) Skin regeneration: The complexities of translation into clinical practise. The International Journal of Biochemistry & Cell Biology 56, pages 133-140.
Crossref
Shin Ae Park, Vijay Krishna Raghunathan, Nihar M. Shah, Leandro Teixeira, Monica J. Motta, Jill Covert, Richard Dubielzig, Michael Schurr, Roslyn Rivkah Isseroff, Nicholas L. Abbott, Jonathan McAnulty & Christopher J. Murphy. (2014) PDGF-BB Does Not Accelerate Healing in Diabetic Mice with Splinted Skin Wounds. PLoS ONE 9:8, pages e104447.
Crossref
Shin Ae Park, Leandro B. C. Teixeira, Vijay Krishna Raghunathan, Jill Covert, Richard R. Dubielzig, Roslyn Rivkah Isseroff, Michael Schurr, Nicholas L. Abbott, Jonathan McAnulty & Christopher J. Murphy. (2014) Full-thickness splinted skin wound healing models in db/db and heterozygous mice: Implications for wound healing impairment. Wound Repair and Regeneration 22:3, pages 368-380.
Crossref
David M. Ansell, Laura Campbell, Helen A. Thomason, Andrew Brass & Matthew J. Hardman. (2014) A statistical analysis of murine incisional and excisional acute wound models. Wound Repair and Regeneration 22:2, pages 281-287.
Crossref
Cordelia ZiraldoQi MiGary AnYoram Vodovotz. (2013) Computational Modeling of Inflammation and Wound Healing. Advances in Wound Care 2:9, pages 527-537.
Crossref
Kedi Xu, David Antonio Cantu, Yao Fu, Jaehyup Kim, Xiaoxiang Zheng, Peiman Hematti & W. John Kao. (2013) Thiol-ene Michael-type formation of gelatin/poly(ethylene glycol) biomatrices for three-dimensional mesenchymal stromal/stem cell administration to cutaneous wounds. Acta Biomaterialia 9:11, pages 8802-8814.
Crossref
Clare Y. L. Chao, Gabriel Y. F. Ng, Kwok-Kuen Cheung, Yong-Ping Zheng, Li-Ke Wang & Gladys L. Y. Cheing. (2013) In Vivo and ex Vivo Approaches to Studying the Biomechanical Properties of Healing Wounds in Rat Skin. Journal of Biomechanical Engineering 135:10.
Crossref
Jean-François DenisMathieu LévesqueSimon D. TranAldo-Joseph CamardaStéphane Roy. (2013) Axolotl as a Model to Study Scarless Wound Healing in Vertebrates: Role of the Transforming Growth Factor Beta Signaling Pathway. Advances in Wound Care 2:5, pages 250-260.
Crossref
Stéphanie Rignault-Clerc, Christelle Bielmann, Frederik Delodder, Wassim Raffoul, Bernard Waeber, Lucas Liaudet, Mette M. Berger, François Feihl & Nathalie Rosenblatt-Velin. (2013) Functional late outgrowth endothelial progenitors isolated from peripheral blood of burned patients. Burns 39:4, pages 694-704.
Crossref
Jordan R. Stern, Cordelia Ziraldo, Yoram Vodovotz & Gary An. 2013. Complex Systems and Computational Biology Approaches to Acute Inflammation. Complex Systems and Computational Biology Approaches to Acute Inflammation 209 228 .
Cornelia Tolg, Sara R. Hamilton, Ewa Zalinska, Lori McCulloch, Ripal Amin, Natalia Akentieva, Francoise Winnik, Rashmin Savani, Darius J. Bagli, Len G. Luyt, Mary K. Cowman, Jim B. McCarthy & Eva A. Turley. (2012) A RHAMM Mimetic Peptide Blocks Hyaluronan Signaling and Reduces Inflammation and Fibrogenesis in Excisional Skin Wounds. The American Journal of Pathology 181:4, pages 1250-1270.
Crossref
David M. Ansell, Kirsty A. Holden & Matthew J. Hardman. (2012) Animal models of wound repair: Are they cutting it?. Experimental Dermatology 21:8, pages 581-585.
Crossref
G. Clermont. 2012. Biocompatibility and Performance of Medical Devices. Biocompatibility and Performance of Medical Devices 345 361 .
Sashwati Roy, Jason Driggs, Haytham Elgharably, Sabyasachi Biswas, Muna Findley, Savita Khanna, Urmila Gnyawali, Valerie K. Bergdall & Chandan K. Sen. (2011) Platelet-rich fibrin matrix improves wound angiogenesis via inducing endothelial cell proliferation. Wound Repair and Regeneration 19:6, pages 753-766.
Crossref
Gerwen LammersPauline D.H.M. VerhaegenMagda M.W. UlrichJoost SchalkwijkEsther MiddelkoopDaniela WeilandSuzan T.M. NillesenToin H. Van KuppeveltWilleke F. Daamen. (2011) An Overview of Methods for the In Vivo Evaluation of Tissue-Engineered Skin Constructs . Tissue Engineering Part B: Reviews 17:1, pages 33-55.
Crossref
Vincent C. van der Veen, Martijn B.A. van der Wal, Michiel C.E. van Leeuwen, Magda M.W. Ulrich & Esther Middelkoop. (2010) Biological background of dermal substitutes. Burns 36:3, pages 305-321.
Crossref
Chandan K. Sen, Gayle M. Gordillo, Sashwati Roy, Robert Kirsner, Lynn Lambert, Thomas K. Hunt, Finn Gottrup, Geoffrey C. Gurtner & Michael T. Longaker. (2009) Human skin wounds: A major and snowballing threat to public health and the economy. Wound Repair and Regeneration 17:6, pages 763-771.
Crossref
Jessica Walburn, Kavita Vedhara, Matthew Hankins, Lorna Rixon & John Weinman. (2009) Psychological stress and wound healing in humans: A systematic review and meta-analysis. Journal of Psychosomatic Research 67:3, pages 253-271.
Crossref
David O. Bracho, Lauren Barsan, Subramanyeswara R. Arekapudi, John A. Thompson, John Hen, Susan A. Stern & John G. Younger. (2009) Antibacterial Properties of an Iron-based Hemostatic Agent In Vitro and in a Rat Wound Model. Academic Emergency Medicine 16:7, pages 656-660.
Crossref
William J. Lindblad. (2008) Review Paper: Considerations for Determining if a Natural Product Is an Effective Wound-Healing Agent. The International Journal of Lower Extremity Wounds 7:2, pages 75-81.
Crossref

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