Showing 561 - 580 results of 619 for search '"tissue engineering"', query time: 0.07s Refine Results
  1. 561

    Regeneration of Rabbit Auricular Cartilage After the Intravenous Stem Cell Injection by Pavlo Virych, Nadiia Shuvalova, Anton Karas, Galina Karas, Svitlana Chaika, Tetiana Kucherenko, Ganna Minina, Marina Timchenko, Oleg Melnykov, Yurii Minin

    Published 2023-11-01
    “…The low regenerative capacity of cartilage requires alternative approaches such as cell and tissue engineering. Stem cells are one of the ways to repair auricular cartilage damages. …”
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    A bibliometric analysis of hydrogel research in various fields: the trends and evolution of hydrogel application by Zhong-Zhu Yuan, Yu-Zhou Fan, Shao-Jun Cheng, Feng-Jie Wei, Jing Gao, Chen-Xi Wang, Bo-Shuang Song, Si-Lu Tan, Si-Lian Gao, Juan-Juan Kang, Yan Liu, Sheng-Hong Li

    Published 2025-01-01
    “…We encapsulated applications and the potential of hydrogel in wound healing, drug delivery, cell encapsulation, bioprinting, tissue engineering, electronic products, environment applications, and disease treatment. …”
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    Advancements in bioengineered and autologous skin grafting techniques for skin reconstruction: a comprehensive review by Jillian Dean, Cosima Hoch, Barbara Wollenberg, Justin Navidzadeh, Bhagvat Maheta, Anisha Mandava, Samuel Knoedler, Khalil Sherwani, Helena Baecher, Alina Schmitz, Michael Alfertshofer, Max Heiland, Kilian Kreutzer, Steffen Koerdt, Leonard Knoedler

    Published 2025-01-01
    “…Bioengineered skin grafts (BSGs) aim to address these drawbacks through advanced tissue engineering and biomaterial science. This study conducts a systematic review to describe the benefits and shortcomings of BSGs and ASGs across wound healing efficacy, tissue integration, immunogenicity, and functional outcomes focusing on wound re-epithelialization, graft survival, and overall aesthetic outcomes. …”
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    Functional differentiation of human dental pulp stem cells into neuron-like cells exhibiting electrophysiological activity by B. Pardo-Rodríguez, A. M. Baraibar, I. Manero-Roig, J. Luzuriaga, J. Salvador-Moya, Y. Polo, R. Basanta-Torres, F. Unda, S. Mato, Gaskon Ibarretxe, Jose Ramon Pineda

    Published 2025-01-01
    “…Conclusion Our study demonstrates that hDPSCs can be differentiated to neuronal-like cells that display functional excitability and thus evidence the potential of these easily accessible human stem cells for nerve tissue engineering. These results highlight the importance of choosing an appropriate culture protocol to successfully neurodifferentiate hDPSCs.…”
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    DNA-based hydrogels for bone regeneration: A promising tool for bone organoids by Xiang Wu, Yan Hu, Shihao Sheng, Huijian Yang, Zuhao Li, Qinglin Han, Qin Zhang, Jiacan Su

    Published 2025-04-01
    “…With these advantages and properties, these DNA-based hydrogels can be used to construct bone organoids, providing an innovative tool for disease modeling and therapeutic applications in bone tissue engineering. Finally, we discuss the current challenges and future prospects, emphasizing the potential impacts and applications in regenerative medicine.…”
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    PLL-g-HPA Hydrogel Loaded Human Umbilical Cord Mesenchymal Stem Cells Promote Burn Wound Healing in Rat Model by Regulating Inflammation Response by Tian L, Wang Z, Lei T, Feng L, Li Y, Wang K, Zhang Y, Zhang C, Liu J, Xing H, Ren W

    Published 2025-01-01
    “…Linqiang Tian,1,2 Zhaodong Wang,1,2 Tingting Lei,1,3 Lili Feng,1 Yanyan Li,1 Kunxi Wang,1 Yue Zhang,1 Chengshu Zhang,4 Jie Liu,1 Hongxia Xing,3 Wenjing Ren5 1Henan Key Medical Laboratory of Traumatics and Orthopaedics’ Research, The Third Affiliated Hospital of Xinxiang Medical University, Xinxiang, People’s Republic of China; 2Department of Orthopedics Surgery, The Third Affiliated Hospital of Xinxiang Medical University, Xinxiang, People’s Republic of China; 3Department of Neurology, The Third Affiliated Hospital of Xinxiang Medical University, Xinxiang, People’s Republic of China; 4Department of Burn and Plastic Surgery, General Hospital of PINGMEI SHENMA Group, Pingdingshan, People’s Republic of China; 5Clinical Medical Center of Tissue Engineering and Regeneration, Xinxiang Medical University, Xinxiang, People’s Republic of ChinaCorrespondence: Hongxia Xing; Wenjing Ren, Email xhxwh02@163.com; xxmu_rwj@163.comPurpose: Treatment of severe burn wound injury remains a significant clinical challenge as serious infections/complex repair process and irregulating inflammation response. …”
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