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iTRAQ-based quantitative proteomic analysis on differentially expressed proteins of rat mandibular condylarcartilage induced by reducing dietary loading

Liting Jiang,Yinyin Xie,Li Wei,Qi Zhou,Ning Li,Xinquan Jiang,Yiming Gao

Frontiers of Medicine 2017, Volume 11, Issue 1,   Pages 97-109 doi: 10.1007/s11684-016-0496-1

Abstract: , reducing dietary loading directly influences the development and metabolic activity of mandibular condylarcartilage (MCC).histological and tartrate-resistant acid phosphatase staining indicated the altered histological structure of condylarcartilage and increased bone remodeling activity in hard-diet group.Taken together, the present study provides an insight into the molecular mechanism of regulating condylar

Keywords: condylar cartilage     mechanical loading     proteomic analysis     iTRAQ     bioinformatics analysis    

Tissue engineering of cartilage, tendon and bone

Hengyun SUN, Wei LIU, Guangdong ZHOU, Wenjie ZHANG, Lei CUI, Yilin CAO

Frontiers of Medicine 2011, Volume 5, Issue 1,   Pages 61-69 doi: 10.1007/s11684-011-0122-1

Abstract: In our laboratory, we focus on construction of cartilage, tendon and bone.In cartilage engineering, articular cartilage was reconstructed and defects were repaired in animal modelsMore sophisticated tissues, such as cartilage in the ear and trachea, were reconstructed both in

Keywords: Tissue engineering     cartilage     bone     tendon     recent advances    

Functionalized Hydrogels for Articular Cartilage Tissue Engineering Review

Liangbin Zhou, Peng Guo, Matteo D’Este, Wenxue Tong, Jiankun Xu, Hao Yao, Martin J. Stoddart, Gerjo J.V.M. van Osch, Kevin Ki-Wai Ho, Zhen Li, Ling Qin

Engineering 2022, Volume 13, Issue 6,   Pages 71-90 doi: 10.1016/j.eng.2022.03.008

Abstract:

Articular cartilage (AC) is an avascular and flexible connective tissue located on the bone surfaceespecially full-thickness AC defects and osteochondral interfaces, fail to replace or regenerate damaged cartilagedevelopment advancements in AC tissue engineering (ACTE), functionalized hydrogels have emerged as promising cartilageThey can be rationally designed and conveniently tuned to simulate the extracellular matrix of cartilage

Keywords: Articular cartilage     Functionalized hydrogels     Cartilage repair     Cartilage tissue engineering     Clinical    

Recent Progress in Cartilage Tissue Engineering—Our Experience and Future Directions

Yu Liu, Guangdong Zhou, Yilin Cao

Engineering 2017, Volume 3, Issue 1,   Pages 28-35 doi: 10.1016/J.ENG.2017.01.010

Abstract: approaches for cartilage regeneration.There are two major applications for tissue-engineered cartilage.One is in orthopedic surgery, in which the engineered cartilage is usually used to repair cartilage defectsrepair cartilage defects or loss in an auricle, trachea, nose, larynx, or eyelid.by the engineered cartilage for the other application.

Keywords: Cartilage tissue engineering     Preclinical immunocompetent animal     investigation     Clinical translation     Orthopedic    

Characterization of the surface and interfacial properties of the lamina splendens

Joe T. REXWINKLE, Heather K. HUNT, Ferris M. PFEIFFER

Frontiers of Mechanical Engineering 2017, Volume 12, Issue 2,   Pages 234-252 doi: 10.1007/s11465-017-0409-2

Abstract: development of treatment programs for joint disease and trauma requires accurate assessment of articular cartilageThe articular cartilage is the interfacial tissue between articulating surfaces, such as bones, and actsDamage to the lamina splendens, which is the articular cartilage’s topmost layer, is an early indicatorbiomechanical models, as well as develop appropriate biomimetic materials for replacing damaged articular cartilagetechniques have found that the lamina splendens is composed of collagen fibers oriented parallel to the cartilage

Keywords: cartilage     lamina splendens     characterization     biomechanics     orthopaedic     review    

Glycosylation of dentin matrix protein 1 is critical for fracture healing via promoting chondrogenesis

Hui Xue, Dike Tao, Yuteng Weng, Qiqi Fan, Shuang Zhou, Ruilin Zhang, Han Zhang, Rui Yue, Xiaogang Wang, Zuolin Wang, Yao Sun

Frontiers of Medicine 2019, Volume 13, Issue 5,   Pages 575-589 doi: 10.1007/s11684-019-0693-9

Abstract: Crucial to fracture healing is cartilage formation, which provides a bone-regeneration environment.Cartilage consists of both chondrocytes and extracellular matrix (ECM).The ECM of cartilage includes collagens and various types of proteoglycans (PGs), which play importantThe PG form of dentin matrix protein 1 (DMP1-PG) is involved in maintaining the health of articular cartilage

Keywords: fracture     extracellular matrix     dentin matrix protein 1     proteoglycan     cartilage    

Title Author Date Type Operation

iTRAQ-based quantitative proteomic analysis on differentially expressed proteins of rat mandibular condylarcartilage induced by reducing dietary loading

Liting Jiang,Yinyin Xie,Li Wei,Qi Zhou,Ning Li,Xinquan Jiang,Yiming Gao

Journal Article

Tissue engineering of cartilage, tendon and bone

Hengyun SUN, Wei LIU, Guangdong ZHOU, Wenjie ZHANG, Lei CUI, Yilin CAO

Journal Article

Functionalized Hydrogels for Articular Cartilage Tissue Engineering

Liangbin Zhou, Peng Guo, Matteo D’Este, Wenxue Tong, Jiankun Xu, Hao Yao, Martin J. Stoddart, Gerjo J.V.M. van Osch, Kevin Ki-Wai Ho, Zhen Li, Ling Qin

Journal Article

Recent Progress in Cartilage Tissue Engineering—Our Experience and Future Directions

Yu Liu, Guangdong Zhou, Yilin Cao

Journal Article

Characterization of the surface and interfacial properties of the lamina splendens

Joe T. REXWINKLE, Heather K. HUNT, Ferris M. PFEIFFER

Journal Article

Glycosylation of dentin matrix protein 1 is critical for fracture healing via promoting chondrogenesis

Hui Xue, Dike Tao, Yuteng Weng, Qiqi Fan, Shuang Zhou, Ruilin Zhang, Han Zhang, Rui Yue, Xiaogang Wang, Zuolin Wang, Yao Sun

Journal Article

Qin Ling: Articular Cartilage Tissue Engineering based on Functional Hydrogels (2022-7-24)

27 Jul 2022

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